SlideShare a Scribd company logo
1 of 6
Download to read offline
International
OPEN ACCESS Journal
Of Modern Engineering Research (IJMER)
| IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 49|
Effectiveness of Use of Rice Husk Ash as Partial Replacement
of Cement in Concrete
Mohammad Iqbal Malik1
, Aarif Manzoor2
, Barkat Ahmad3
, Syed Asima4
,
Rozi Ali5
1
Assistant Professor, Department of Civil Engineering, IUST, Awantipora
2, 3, 4, 5,
Civil Engineering Graduate Student, IUST, Awantipora.
I. Introduction
Milling of rice generates a byproduct know as husk. The rice grain is protected by husk as its skin.
During milling of paddy about 78 % of weight is received as rice, broken rice and bran. Rest 22 % of the weight
of paddy is received as husk. This husk is used as fuel in the rice mills to generate steam for the parboiling
process. This husk has about 75 % organic volatile matter and the remaining 25 % of the weight of this husk is
converted into ash during the burning process, is known as rice husk ash (RHA). This RHA in turn contains
around 85 % - 90 % amorphous silica. Hence, RHA can act as a good super-pozzolana.
1.1 Environmental Impact of Cement Production:
In 2007, United States produced 110 metric tons of cement. For every ton of cement produced,
approximately one ton of carbon dioxide is released into atmosphere. The cement industry produces about 5% of
global man-made CO2 emissions. Also cement production leads to disturbance to the landscape, dust and noise
and disruption to local biodiversity from quarrying limestone which is raw material for cement production.
Moreover rice husk ash is regarded as a waste and has disposal problem because of the fact that it consumes a
vast area for dumping. There are numerous ways for disposing it by making commercial use of this rice husk
ash. Hence, if waste rice husk ash provides an opportunity to be used as partial replacement of cement in
concrete, it will help in reducing the CO2 emissions, soil pollution and amount of dust into the atmosphere.
Moreover its usage in concrete will reduce the cost.
About 20 million tons of RHA is produced annually. Rice husk ash which was used in this research
finer than cement having very small particle size of 30 microns, so much so that it fills the interstices in between
the cement in the aggregate. From previous researches it has been found that Rice Husk Ash minimizes alkali-
aggregate reaction, reduces expansion, polishes pore structure and hinders diffusion of alkali ions to the surface
of aggregate by micro porous structure .The rice husk ash cement on hydration produces practically no Calcium
Hydroxide and hence is superior to Portland cement.
In this research, cement was partially replaced by waste RHA as 5%, 10% and 15% by weight.
Concrete specimens were tested for compressive strength, durability (water absorption) and light weight nature
for different waste RHA percentages. The results obtained were compared with results of normal M-25 concrete
mix and it was found that maximum increase in compressive strength occurred for the concrete mix containing
10% waste RHA as cement. With increase in waste RHA content, water absorption increases indicating
decrease in durability. Density of concrete decreased with increase in waste RHA content thus making concrete
light weight in nature.
ABSTRACT: India is a major rice producing country, and the husk generated during milling is mostly
used as a fuel in the boilers for processing paddy and producing energy through direct combustion.
About 21 million tones of Rice Husk Ash (RHA) is produced annually. This RHA is regarded as a waste
and has disposal problem because of the fact that it consumes a vast area for dumping. Lots of ways are
being thought of for disposing them by making commercial use of this RHA. RHA can be used as a
replacement for concrete (5 to 15%).This paper evaluates how different contents of Rice Husk Ash
added to concrete may influence its properties. In this study, cement was replaced by waste RHA as
5%,10% and 15% by weight for M-25 mix. The concrete specimens were tested for compressive
strength, durability (water absorption) and density at 28 days of age and the results obtained were
compared with those of normal concrete. The results concluded the permissibility of using waste RHA
as partial replacement of cement up to 10% by weight of cement.
Keywords: Rice Husk Ash (RHA) , Concrete, Compressive strength, Density and Durability.
Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete
| IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 50|
This paper summarized the behavior of concrete involving replacement of cement by waste RHA as
5%,10%and 15% by weight which may help to reduce the disposal problems of waste RHA and will make
concrete economical.
II. Materials Used
2.1. Cement and Aggregates
Khyber ordinary Portland cement of 43 grade confining to IS 8112 was used throughout the work. Fine
aggregates used throughout the work comprised of clean river sand with maximum size of 4.75mm conforming
to zone II as per IS383-1970 with specific gravity of 2.6. Coarse aggregates used consisted of machine crushed
stone angular in shape passing through 20mm IS sieve and retained on 4.75mm IS sieve with specific gravity of
2.7.
2.2.Rice Husk Ash
Waste RHA was collected from Paddy fields of Kulgam, J&K. It was then sun dried and burned so as
to convert it into ash. The ash was sieved through 90 micron (90µm) Indian Standard sieve. The specific gravity
of waste rice husk ash was found to be 2.6. Chemical composition of RHA is presented in TABLE 1. Fig.1
shows RHA.
TABLE 1 – Chemical Composition of RHA
III. Experimental Investigation
3.1. Mix Proportion
The concrete mix design was proposed by using IS 10262. The grade of concrete used was M-25 with
water to cement ratio of 0.45. The mixture proportions used in laboratory for experimentation are shown in
TABLE 2.
3.2. Test on Fresh Concrete
The workability of all concrete mixtures was determined through slump test utilizing a metallic slump
mould. The difference in level between the height of mould and that of highest point of the subsided concrete
was measured and reported as slump. The slump tests were performed according to IS 1199-1959.
3.3. Tests on hardened concrete
From each concrete mixture, cubes of size 150mm x 150mm x 150mm have been casted for the
determination of compressive strength. The concrete specimens were cured under normal conditions as per IS
516-1959 and were tested at 7 days and 28days for determining compressive strength as per IS 516-1959 .
3.4. Water absorption test
The average dry weight of cube specimens after removing from moulds was measured and the average
weight of cube specimens after submerging in water for curing was measured at 28 days of age. The percentage
of water absorption was measured for each concrete specimen and it gave indirect measure of durability.
3.5. Light weight character
The average dry weight of concrete cube specimens containing 5%, 10% and 15% waste RHA in place of
cement was compared with average dry weight of normal M-25 concrete cube specimens and the percentage
decrease in dry weight was measured.
IV. Results And Discussion
4.1. Fresh concrete
The slump values of all the mixtures are represented in TABLE 2. The slump decreases with the
increase in waste RHA content. The reason is that rice husk ash is highly porous and hydraulic in nature. It
absorbs water for reaction and some amount is trapped in pores also. The variation of slump with waste RHA
content is depicted in Fig. 2.
4.2. Hardened concrete
The compressive strength tests are presented in TABLE 3. Compressive strength tests were carried out
at 7 and 28 days. An increase in compressive strength was observed up to 10% replacement of cement by waste
RHA and thereafter decreasing. The maximum compressive strength measured was 3.25% more than that of
Oxides SiO2 Fe2O3 Al₂O₃ CaO MgO SO₃ Al2O3+Fe2O3 Na2O K2O
Percentage 92.99 0.43 0.18 1.03 0.35 0.1 0.61 3.56 0.72
Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete
| IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 51|
reference mix at 28 days corresponding to concrete mix containing 10% waste rice husk ash in place of cement.
Compressive strength for concrete mix with 15% waste RHA content was found to be less than that of reference
mix. Figure 3 and 4 present compressive strength of all mixtures at 7 and 28 days respectively.
4.3. Water absorption
Water absorption test was carried out for all mixtures and percentage water absorption was measured.
The percentage water absorption increased with increase in waste rice husk ash content. The highest value of
water absorption was found for concrete mix with 15% waste RHA content. TABLE 4 depicts the percentage
water absorption for all mixtures and Figure-5 represents percentage water absorption for all mixtures.
4.4. Light weight character
Average dry weight of cube specimens of each mixture as compared to reference mix was studied and
it was observed that density decreased with increase in waste rice husk ash content. The results showed 3.34%
reduction in dry weight of concrete cube specimens for concrete mix with 15% waste RHA content as compared
to reference mix. Thus, waste RHA concrete is light weight in nature. TABLE 5 depicts the value of dry density
and percentage change in dry weight with respect to reference mix and Figure-6 represents dry density of cubes
for all mixtures.
Fig.1 – Rice husk ash
Table-2 Mix Proportion
Rice Husk
Ash
%
w/c
ratio
Water
(Kg/m3
)
Cement
(Kg/m3
)
Fine
Aggregate
(Kg/m3
)
Rice Husk
Ash
(Kg/m3
)
Coarse
Aggregate
(Kg/m3
)
Slump
(mm)
0 0.45 191.6 425.80 543.5 0.00 1199.36 60
5 0.45 191.6 404.51 543.5 21.29 1199.36 20
10 0.45 191.6 383.22 543.5 42.58 1199.36 15
15 0.45 191.6 361.93 543.5 63.87 1199.36 10
Table-3 Compressive strength test results
Waste RHA
%
Avg. load @
7days (KN)
Avg. Load @ 28
days(KN)
Avg. Compressive
Strength @7
days(N/mm2
)
Avg. Compressive
Strength @28
days(N/mm2
)
0% 498 678 22.13 30.13
5% 530 690 23.55 30.67
10% 580 700 25.78 31.11
15% 490 670 21.78 29.78
Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete
| IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 52|
TABLE 4 – Water absorption test results for cube specimens of size 150mm x 150mm x 150mm
Waste
RHA %
Avg. Dry weight
of cube (gm)
Avg. Wet weight
of cube (gm)
Water absorbed
(gm)
Percentage water
absorption
0% 8390 8480 90 1.07%
5% 8350 8450 100 1.197%
10% 8225 8340 115 1.398%
15% 8110 8240 130 1.603%
Table 5 – Light weight test results for cube specimens of size 150mm x 150mm x 150mm
Waste RHA
%
Avg. Dry
weight of cube
(gm)
Avg. dry density of cube
(KN/m3
)
Percentage change in weight as
compared to reference (%)
0% 8390 24.86 0%
5% 8350 24.74 - 0.483%
10% 8225 24.37 - 1.971%
15% 8110 24.03 - 3.339%
Fig.2 – Variation of slump with waste RHA content.
Fig.3 – Compressive Strength of Cubes at 7 Days
Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete
| IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 53|
Fig.4 – Compressive Strength of Cubes at 28 Days
Fig.5 – Percentage water absorption
Fig.6 – Dry density of cubes
Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete
| IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 54|
V. Conclusion
On the basis of results obtained, following conclusions can be drawn:
1. 10% replacement of cement by waste rice husk ash showed 16% increase in compressive strength at 7 days
and 3.25% increase in compressive strength at 28 days.
2. The optimum value for cement replacement is 10% as obtained from graph-2.
3. With increase in waste rice husk ash content, percentage water absorption increases.
4. With increase in waste rice husk ash content, average weight decreases by 3.34% for mixture with 15%
waste rice husk ash content thus making waste rice husk ash concrete light weight.
5. Workability of concrete mix decreases with increase in waste rice husk ash content.
6. Use of waste rice husk ash in concrete can prove to be economical as it is free of cost.
7. Use of waste rice husk ash will eradicate its disposal problem and reduce carbon emissions (CO2) thus
proves to be environment friendly thus paving way for greener concrete.
In order to be sustainable for future generations we must fully exploit by-product materials like waste
rice husk ash. This will reduce the greenhouse gas emissions. It is our duty to take sensible engineering
judgments based on facts about byproducts and not on the prejudice of assuming a ‘WASTE’ is somehow
inferior or less suitable.
REFERENCES
[1]. Houston, D.F (1972) Rice Chemistry and Technology. American Association of Cereal chemistry, Minnesite.
[2]. Neville A. M., (1987) Concrete Technology 4th edition Great Britain: Pitman Books.
[3]. Shetty M. S.,”Concrete Technology”, S. Chand & Co. Ltd., New Delhi.
[4]. Ramasamy.V et al., 2008: Performance of Rice Husk Ash Concrete with Superplasticizer. In ICI Journal, Indian
Concrete Institute.
[5]. Chao Lung Hwang & Satish Chandra, The use of RHA in concrete.
[6]. 43 Grade Ordinary Portland Cement – Specification. IS 8112:1989, Bureau of Indian Standards, New Delhi.
[7]. Specification for Coarse and Fine Aggregates from Natural Sources for Concrete. IS: 383-1970, Bureau of Indian
Standards, New Delhi.
[8]. Recommended Guidelines for Concrete Mix Design. IS: 10262-1982, Bureau of Indian Standards, New Delhi.
[9]. Methods of Sampling and Analysis of Concrete. IS: 1199-1959, Bureau of Indian Standards, New Delhi.
[10]. Methods of Tests for Strength of Concrete. IS: 516-1959, Bureau of Indian Standards, New Delhi.
[11]. Methods of Tests for Strength of Concrete. IS: 516-1959, Bureau of Indian Standards, New Delhi.

More Related Content

What's hot

improving weathering resistance on concrete
improving weathering resistance on concreteimproving weathering resistance on concrete
improving weathering resistance on concreteÝöğéśh Ķümäř
 
Preparation and characterization of rice husk ash as filler material in to
Preparation and characterization of rice husk ash as filler material in toPreparation and characterization of rice husk ash as filler material in to
Preparation and characterization of rice husk ash as filler material in toAlexander Decker
 
Partial Replacement of Cement by Rice Husk Ash
Partial Replacement of Cement by Rice Husk AshPartial Replacement of Cement by Rice Husk Ash
Partial Replacement of Cement by Rice Husk AshIRJET Journal
 
IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...
IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...
IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...IRJET Journal
 
replacement of cement with rice husk ash by 20%
replacement of cement with rice husk ash by 20%replacement of cement with rice husk ash by 20%
replacement of cement with rice husk ash by 20%Rajput Praveer
 
ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)
ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)
ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)AM Publications
 
A study on use of cowdung ash and rice husk ash in concrete
A study on use of cowdung ash and rice husk ash in concreteA study on use of cowdung ash and rice husk ash in concrete
A study on use of cowdung ash and rice husk ash in concreteeSAT Journals
 
Thesis rice husk_ash
Thesis rice husk_ashThesis rice husk_ash
Thesis rice husk_ashkhieuconbp
 
Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...
Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...
Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...rajatsikarwar
 
A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...
A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...
A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...IAEME Publication
 
Rice Husk Ash
Rice Husk Ash Rice Husk Ash
Rice Husk Ash mujtaba313
 
UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...
UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...
UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...IAEME Publication
 
Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...
Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...
Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...iosrjce
 
STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...
STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...
STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...IAEME Publication
 
Partial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable Approach
Partial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable ApproachPartial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable Approach
Partial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable ApproachIJERD Editor
 
Utilization of sugarcane bagasse ash in concrete
Utilization of sugarcane bagasse ash in concreteUtilization of sugarcane bagasse ash in concrete
Utilization of sugarcane bagasse ash in concretesnehith devasani
 
Utilization of Sugarcane Bagasse Ash in Concrete
Utilization of Sugarcane Bagasse Ash in ConcreteUtilization of Sugarcane Bagasse Ash in Concrete
Utilization of Sugarcane Bagasse Ash in Concreteijsrd.com
 

What's hot (20)

improving weathering resistance on concrete
improving weathering resistance on concreteimproving weathering resistance on concrete
improving weathering resistance on concrete
 
Preparation and characterization of rice husk ash as filler material in to
Preparation and characterization of rice husk ash as filler material in toPreparation and characterization of rice husk ash as filler material in to
Preparation and characterization of rice husk ash as filler material in to
 
Partial Replacement of Cement by Rice Husk Ash
Partial Replacement of Cement by Rice Husk AshPartial Replacement of Cement by Rice Husk Ash
Partial Replacement of Cement by Rice Husk Ash
 
IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...
IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...
IRJET- Experimental Investigation on Partial Replacement of Cement with Fly A...
 
replacement of cement with rice husk ash by 20%
replacement of cement with rice husk ash by 20%replacement of cement with rice husk ash by 20%
replacement of cement with rice husk ash by 20%
 
ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)
ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)
ALTERNATE AND LOW COST CONSTRUCTION MATERIAL: RICE HUSK ASH (RHA)
 
Variation of Some Physical Properties of Rice Husk Ash Refractory with Temper...
Variation of Some Physical Properties of Rice Husk Ash Refractory with Temper...Variation of Some Physical Properties of Rice Husk Ash Refractory with Temper...
Variation of Some Physical Properties of Rice Husk Ash Refractory with Temper...
 
A study on use of cowdung ash and rice husk ash in concrete
A study on use of cowdung ash and rice husk ash in concreteA study on use of cowdung ash and rice husk ash in concrete
A study on use of cowdung ash and rice husk ash in concrete
 
Thesis rice husk_ash
Thesis rice husk_ashThesis rice husk_ash
Thesis rice husk_ash
 
Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...
Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...
Utilization of rice husk ash in mix asphalt concrete as mineral fillar replac...
 
Bagasse ash ppt
Bagasse ash pptBagasse ash ppt
Bagasse ash ppt
 
A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...
A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...
A COMPREHENSIVE STUDY ON PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE...
 
Rice Husk Ash
Rice Husk Ash Rice Husk Ash
Rice Husk Ash
 
UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...
UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...
UTILIZATION OF SUGARCANE BAGASSE ASH AS A SUPPLEMENTARY CEMENTITIOUS MATERIAL...
 
Industrial byproducts
Industrial byproductsIndustrial byproducts
Industrial byproducts
 
Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...
Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...
Utilization Of Sugarcane Bagasse Ash (SCBA) In Concrete By Partial Replacemen...
 
STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...
STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...
STUDY ON BEHAVIOUR OF PARTIAL REPLACEMENT OF CEMENT WITH SUGARCANE BAGASSE AS...
 
Partial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable Approach
Partial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable ApproachPartial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable Approach
Partial Replacement of Cement by Saw Dust Ash in Concrete A Sustainable Approach
 
Utilization of sugarcane bagasse ash in concrete
Utilization of sugarcane bagasse ash in concreteUtilization of sugarcane bagasse ash in concrete
Utilization of sugarcane bagasse ash in concrete
 
Utilization of Sugarcane Bagasse Ash in Concrete
Utilization of Sugarcane Bagasse Ash in ConcreteUtilization of Sugarcane Bagasse Ash in Concrete
Utilization of Sugarcane Bagasse Ash in Concrete
 

Viewers also liked

Effect of rice husk ash on the strenght and durability of concrete by debasree
Effect of rice husk ash on the strenght and durability of concrete  by debasreeEffect of rice husk ash on the strenght and durability of concrete  by debasree
Effect of rice husk ash on the strenght and durability of concrete by debasreeDEBASREE GHOSH
 
Rice Husk Ash
Rice Husk Ash Rice Husk Ash
Rice Husk Ash mujtaba313
 
A comparative investigation on physical and mechanical properties of mmc rein...
A comparative investigation on physical and mechanical properties of mmc rein...A comparative investigation on physical and mechanical properties of mmc rein...
A comparative investigation on physical and mechanical properties of mmc rein...eSAT Journals
 
Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...
Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...
Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...IDES Editor
 
A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...
A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...
A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...ijsrd.com
 
Presentation paper id 11-14
Presentation paper id 11-14Presentation paper id 11-14
Presentation paper id 11-14Monjurul Shuvo
 
STUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETE
STUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETESTUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETE
STUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETEIAEME Publication
 
BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES
 BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES  BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES
BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES Eswari Kasil
 
FINAL YEAR PROJECT PPT
FINAL YEAR PROJECT PPTFINAL YEAR PROJECT PPT
FINAL YEAR PROJECT PPTMATHAVAN S
 
Fly ash concrete ppt
Fly ash concrete pptFly ash concrete ppt
Fly ash concrete pptmkmanish454
 
Soil stabilisation (1)
Soil stabilisation (1)Soil stabilisation (1)
Soil stabilisation (1)Safiullah Khan
 
Durability and Permeability of Concrete
Durability  and Permeability of ConcreteDurability  and Permeability of Concrete
Durability and Permeability of ConcreteGAURAV. H .TANDON
 
Use of Waste Materials As a replacement of Coarse Aggregate in Concrete Mix
Use of Waste Materials As a replacement of  Coarse Aggregate in Concrete MixUse of Waste Materials As a replacement of  Coarse Aggregate in Concrete Mix
Use of Waste Materials As a replacement of Coarse Aggregate in Concrete MixNitin Yadav
 
Health service quality development 282 presentation
Health service quality development 282 presentationHealth service quality development 282 presentation
Health service quality development 282 presentationE-gama
 
Study of Performance of Different Blends of Biodiesel Prepared From Waste Co...
Study of Performance of Different Blends of Biodiesel Prepared  From Waste Co...Study of Performance of Different Blends of Biodiesel Prepared  From Waste Co...
Study of Performance of Different Blends of Biodiesel Prepared From Waste Co...IJMER
 

Viewers also liked (16)

Effect of rice husk ash on the strenght and durability of concrete by debasree
Effect of rice husk ash on the strenght and durability of concrete  by debasreeEffect of rice husk ash on the strenght and durability of concrete  by debasree
Effect of rice husk ash on the strenght and durability of concrete by debasree
 
Rice Husk Ash
Rice Husk Ash Rice Husk Ash
Rice Husk Ash
 
A comparative investigation on physical and mechanical properties of mmc rein...
A comparative investigation on physical and mechanical properties of mmc rein...A comparative investigation on physical and mechanical properties of mmc rein...
A comparative investigation on physical and mechanical properties of mmc rein...
 
Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...
Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...
Strength Studies on Metakaolin Modified Cement Mortar with Quarry Dust as Fin...
 
A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...
A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...
A Study on Mechanical Properties of Aluminum, Rice Husk and Silicon Carbide M...
 
Presentation paper id 11-14
Presentation paper id 11-14Presentation paper id 11-14
Presentation paper id 11-14
 
STUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETE
STUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETESTUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETE
STUDY OF THE PROPERTIES OF METAKIOLIN AND GGBS BASED GEOPOLYMER CONCRETE
 
M.tech ppt
M.tech pptM.tech ppt
M.tech ppt
 
BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES
 BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES  BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES
BEHAVIOUR OF REINFORCED CONCRETE BEAMS WITH COCONUT SHELL AS COARSE AGGREGATES
 
FINAL YEAR PROJECT PPT
FINAL YEAR PROJECT PPTFINAL YEAR PROJECT PPT
FINAL YEAR PROJECT PPT
 
Fly ash concrete ppt
Fly ash concrete pptFly ash concrete ppt
Fly ash concrete ppt
 
Soil stabilisation (1)
Soil stabilisation (1)Soil stabilisation (1)
Soil stabilisation (1)
 
Durability and Permeability of Concrete
Durability  and Permeability of ConcreteDurability  and Permeability of Concrete
Durability and Permeability of Concrete
 
Use of Waste Materials As a replacement of Coarse Aggregate in Concrete Mix
Use of Waste Materials As a replacement of  Coarse Aggregate in Concrete MixUse of Waste Materials As a replacement of  Coarse Aggregate in Concrete Mix
Use of Waste Materials As a replacement of Coarse Aggregate in Concrete Mix
 
Health service quality development 282 presentation
Health service quality development 282 presentationHealth service quality development 282 presentation
Health service quality development 282 presentation
 
Study of Performance of Different Blends of Biodiesel Prepared From Waste Co...
Study of Performance of Different Blends of Biodiesel Prepared  From Waste Co...Study of Performance of Different Blends of Biodiesel Prepared  From Waste Co...
Study of Performance of Different Blends of Biodiesel Prepared From Waste Co...
 

Similar to Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete

IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...
IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...
IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...IRJET Journal
 
Durability Studies on Concrete and Comparison with Partial Replacement of Cem...
Durability Studies on Concrete and Comparison with Partial Replacement of Cem...Durability Studies on Concrete and Comparison with Partial Replacement of Cem...
Durability Studies on Concrete and Comparison with Partial Replacement of Cem...IJERA Editor
 
Rice Husk Ash Sandcrete Block as Low Cost Building Material
Rice Husk Ash Sandcrete Block as Low Cost Building MaterialRice Husk Ash Sandcrete Block as Low Cost Building Material
Rice Husk Ash Sandcrete Block as Low Cost Building MaterialIJERA Editor
 
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...inventionjournals
 
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...inventionjournals
 
Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...
Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...
Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...IRJET Journal
 
Durability of Bricks Cast With Industrial Sludge
Durability of Bricks Cast With Industrial SludgeDurability of Bricks Cast With Industrial Sludge
Durability of Bricks Cast With Industrial SludgeIOSR Journals
 
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...IRJET Journal
 
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with differ...
IRJET-  	  A Laboratory Investigation on Type III Micro-Surfacing with differ...IRJET-  	  A Laboratory Investigation on Type III Micro-Surfacing with differ...
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with differ...IRJET Journal
 
Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...
Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...
Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...IJERA Editor
 
Utilization of Coconut Shell in Different Forms in Concrete
Utilization of Coconut Shell in Different Forms in ConcreteUtilization of Coconut Shell in Different Forms in Concrete
Utilization of Coconut Shell in Different Forms in Concreteijsrd.com
 
Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...
Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...
Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...ijtsrd
 
OLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCK
OLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCKOLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCK
OLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCKIRJET Journal
 
Study of Performance of Cement Mortar by Partial Replacement of Cement using ...
Study of Performance of Cement Mortar by Partial Replacement of Cement using ...Study of Performance of Cement Mortar by Partial Replacement of Cement using ...
Study of Performance of Cement Mortar by Partial Replacement of Cement using ...IRJET Journal
 

Similar to Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete (20)

IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...
IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...
IRJET - A Study on the Efficacy of RHA as a Full Replacement for Clay in Bric...
 
D05911621
D05911621D05911621
D05911621
 
Durability Studies on Concrete and Comparison with Partial Replacement of Cem...
Durability Studies on Concrete and Comparison with Partial Replacement of Cem...Durability Studies on Concrete and Comparison with Partial Replacement of Cem...
Durability Studies on Concrete and Comparison with Partial Replacement of Cem...
 
Rice Husk Ash Sandcrete Block as Low Cost Building Material
Rice Husk Ash Sandcrete Block as Low Cost Building MaterialRice Husk Ash Sandcrete Block as Low Cost Building Material
Rice Husk Ash Sandcrete Block as Low Cost Building Material
 
X04504144149
X04504144149X04504144149
X04504144149
 
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
 
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
The Effect of Local Brewery Waste and Bitter Cassava Flour on Compressive Str...
 
Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...
Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...
Examining the Use of Pond Ash and Rice Husk Ash (RHA) in Place of Cement and ...
 
Durability of Bricks Cast With Industrial Sludge
Durability of Bricks Cast With Industrial SludgeDurability of Bricks Cast With Industrial Sludge
Durability of Bricks Cast With Industrial Sludge
 
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with different ...
 
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with differ...
IRJET-  	  A Laboratory Investigation on Type III Micro-Surfacing with differ...IRJET-  	  A Laboratory Investigation on Type III Micro-Surfacing with differ...
IRJET- A Laboratory Investigation on Type III Micro-Surfacing with differ...
 
Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...
Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...
Effect of Acidic Environment (HCL) on Concrete With Sugarcane Bagasse Ash As ...
 
G012214045
G012214045G012214045
G012214045
 
Utilization of Coconut Shell in Different Forms in Concrete
Utilization of Coconut Shell in Different Forms in ConcreteUtilization of Coconut Shell in Different Forms in Concrete
Utilization of Coconut Shell in Different Forms in Concrete
 
Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...
Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...
Effect on Concrete Strength by Partial Replacement of Cement with Cotton Stal...
 
OLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCK
OLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCKOLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCK
OLIVE SEED ASH AS PARTIAL REPLACEMENT OF CEMENT IN SANDCRETE BLOCK
 
Study of Performance of Cement Mortar by Partial Replacement of Cement using ...
Study of Performance of Cement Mortar by Partial Replacement of Cement using ...Study of Performance of Cement Mortar by Partial Replacement of Cement using ...
Study of Performance of Cement Mortar by Partial Replacement of Cement using ...
 
EXPERIMENTAL STUDY ON UTILIZATION OF INDUSTRIAL WASTE IN CONCRETE
EXPERIMENTAL STUDY ON UTILIZATION OF INDUSTRIAL WASTE IN CONCRETEEXPERIMENTAL STUDY ON UTILIZATION OF INDUSTRIAL WASTE IN CONCRETE
EXPERIMENTAL STUDY ON UTILIZATION OF INDUSTRIAL WASTE IN CONCRETE
 
2015.11 pov kirupa_sakthieswaran
2015.11 pov kirupa_sakthieswaran2015.11 pov kirupa_sakthieswaran
2015.11 pov kirupa_sakthieswaran
 
A1304030105
A1304030105A1304030105
A1304030105
 

More from IJMER

A Study on Translucent Concrete Product and Its Properties by Using Optical F...
A Study on Translucent Concrete Product and Its Properties by Using Optical F...A Study on Translucent Concrete Product and Its Properties by Using Optical F...
A Study on Translucent Concrete Product and Its Properties by Using Optical F...IJMER
 
Developing Cost Effective Automation for Cotton Seed Delinting
Developing Cost Effective Automation for Cotton Seed DelintingDeveloping Cost Effective Automation for Cotton Seed Delinting
Developing Cost Effective Automation for Cotton Seed DelintingIJMER
 
Study & Testing Of Bio-Composite Material Based On Munja Fibre
Study & Testing Of Bio-Composite Material Based On Munja FibreStudy & Testing Of Bio-Composite Material Based On Munja Fibre
Study & Testing Of Bio-Composite Material Based On Munja FibreIJMER
 
Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)
Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)
Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)IJMER
 
Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...
Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...
Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...IJMER
 
Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...
Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...
Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...IJMER
 
Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...
Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...
Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...IJMER
 
Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...
Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...
Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...IJMER
 
Static Analysis of Go-Kart Chassis by Analytical and Solid Works Simulation
Static Analysis of Go-Kart Chassis by Analytical and Solid Works SimulationStatic Analysis of Go-Kart Chassis by Analytical and Solid Works Simulation
Static Analysis of Go-Kart Chassis by Analytical and Solid Works SimulationIJMER
 
High Speed Effortless Bicycle
High Speed Effortless BicycleHigh Speed Effortless Bicycle
High Speed Effortless BicycleIJMER
 
Integration of Struts & Spring & Hibernate for Enterprise Applications
Integration of Struts & Spring & Hibernate for Enterprise ApplicationsIntegration of Struts & Spring & Hibernate for Enterprise Applications
Integration of Struts & Spring & Hibernate for Enterprise ApplicationsIJMER
 
Microcontroller Based Automatic Sprinkler Irrigation System
Microcontroller Based Automatic Sprinkler Irrigation SystemMicrocontroller Based Automatic Sprinkler Irrigation System
Microcontroller Based Automatic Sprinkler Irrigation SystemIJMER
 
On some locally closed sets and spaces in Ideal Topological Spaces
On some locally closed sets and spaces in Ideal Topological SpacesOn some locally closed sets and spaces in Ideal Topological Spaces
On some locally closed sets and spaces in Ideal Topological SpacesIJMER
 
Intrusion Detection and Forensics based on decision tree and Association rule...
Intrusion Detection and Forensics based on decision tree and Association rule...Intrusion Detection and Forensics based on decision tree and Association rule...
Intrusion Detection and Forensics based on decision tree and Association rule...IJMER
 
Natural Language Ambiguity and its Effect on Machine Learning
Natural Language Ambiguity and its Effect on Machine LearningNatural Language Ambiguity and its Effect on Machine Learning
Natural Language Ambiguity and its Effect on Machine LearningIJMER
 
Evolvea Frameworkfor SelectingPrime Software DevelopmentProcess
Evolvea Frameworkfor SelectingPrime Software DevelopmentProcessEvolvea Frameworkfor SelectingPrime Software DevelopmentProcess
Evolvea Frameworkfor SelectingPrime Software DevelopmentProcessIJMER
 
Material Parameter and Effect of Thermal Load on Functionally Graded Cylinders
Material Parameter and Effect of Thermal Load on Functionally Graded CylindersMaterial Parameter and Effect of Thermal Load on Functionally Graded Cylinders
Material Parameter and Effect of Thermal Load on Functionally Graded CylindersIJMER
 
Studies On Energy Conservation And Audit
Studies On Energy Conservation And AuditStudies On Energy Conservation And Audit
Studies On Energy Conservation And AuditIJMER
 
An Implementation of I2C Slave Interface using Verilog HDL
An Implementation of I2C Slave Interface using Verilog HDLAn Implementation of I2C Slave Interface using Verilog HDL
An Implementation of I2C Slave Interface using Verilog HDLIJMER
 
Discrete Model of Two Predators competing for One Prey
Discrete Model of Two Predators competing for One PreyDiscrete Model of Two Predators competing for One Prey
Discrete Model of Two Predators competing for One PreyIJMER
 

More from IJMER (20)

A Study on Translucent Concrete Product and Its Properties by Using Optical F...
A Study on Translucent Concrete Product and Its Properties by Using Optical F...A Study on Translucent Concrete Product and Its Properties by Using Optical F...
A Study on Translucent Concrete Product and Its Properties by Using Optical F...
 
Developing Cost Effective Automation for Cotton Seed Delinting
Developing Cost Effective Automation for Cotton Seed DelintingDeveloping Cost Effective Automation for Cotton Seed Delinting
Developing Cost Effective Automation for Cotton Seed Delinting
 
Study & Testing Of Bio-Composite Material Based On Munja Fibre
Study & Testing Of Bio-Composite Material Based On Munja FibreStudy & Testing Of Bio-Composite Material Based On Munja Fibre
Study & Testing Of Bio-Composite Material Based On Munja Fibre
 
Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)
Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)
Hybrid Engine (Stirling Engine + IC Engine + Electric Motor)
 
Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...
Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...
Fabrication & Characterization of Bio Composite Materials Based On Sunnhemp F...
 
Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...
Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...
Geochemistry and Genesis of Kammatturu Iron Ores of Devagiri Formation, Sandu...
 
Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...
Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...
Experimental Investigation on Characteristic Study of the Carbon Steel C45 in...
 
Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...
Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...
Non linear analysis of Robot Gun Support Structure using Equivalent Dynamic A...
 
Static Analysis of Go-Kart Chassis by Analytical and Solid Works Simulation
Static Analysis of Go-Kart Chassis by Analytical and Solid Works SimulationStatic Analysis of Go-Kart Chassis by Analytical and Solid Works Simulation
Static Analysis of Go-Kart Chassis by Analytical and Solid Works Simulation
 
High Speed Effortless Bicycle
High Speed Effortless BicycleHigh Speed Effortless Bicycle
High Speed Effortless Bicycle
 
Integration of Struts & Spring & Hibernate for Enterprise Applications
Integration of Struts & Spring & Hibernate for Enterprise ApplicationsIntegration of Struts & Spring & Hibernate for Enterprise Applications
Integration of Struts & Spring & Hibernate for Enterprise Applications
 
Microcontroller Based Automatic Sprinkler Irrigation System
Microcontroller Based Automatic Sprinkler Irrigation SystemMicrocontroller Based Automatic Sprinkler Irrigation System
Microcontroller Based Automatic Sprinkler Irrigation System
 
On some locally closed sets and spaces in Ideal Topological Spaces
On some locally closed sets and spaces in Ideal Topological SpacesOn some locally closed sets and spaces in Ideal Topological Spaces
On some locally closed sets and spaces in Ideal Topological Spaces
 
Intrusion Detection and Forensics based on decision tree and Association rule...
Intrusion Detection and Forensics based on decision tree and Association rule...Intrusion Detection and Forensics based on decision tree and Association rule...
Intrusion Detection and Forensics based on decision tree and Association rule...
 
Natural Language Ambiguity and its Effect on Machine Learning
Natural Language Ambiguity and its Effect on Machine LearningNatural Language Ambiguity and its Effect on Machine Learning
Natural Language Ambiguity and its Effect on Machine Learning
 
Evolvea Frameworkfor SelectingPrime Software DevelopmentProcess
Evolvea Frameworkfor SelectingPrime Software DevelopmentProcessEvolvea Frameworkfor SelectingPrime Software DevelopmentProcess
Evolvea Frameworkfor SelectingPrime Software DevelopmentProcess
 
Material Parameter and Effect of Thermal Load on Functionally Graded Cylinders
Material Parameter and Effect of Thermal Load on Functionally Graded CylindersMaterial Parameter and Effect of Thermal Load on Functionally Graded Cylinders
Material Parameter and Effect of Thermal Load on Functionally Graded Cylinders
 
Studies On Energy Conservation And Audit
Studies On Energy Conservation And AuditStudies On Energy Conservation And Audit
Studies On Energy Conservation And Audit
 
An Implementation of I2C Slave Interface using Verilog HDL
An Implementation of I2C Slave Interface using Verilog HDLAn Implementation of I2C Slave Interface using Verilog HDL
An Implementation of I2C Slave Interface using Verilog HDL
 
Discrete Model of Two Predators competing for One Prey
Discrete Model of Two Predators competing for One PreyDiscrete Model of Two Predators competing for One Prey
Discrete Model of Two Predators competing for One Prey
 

Recently uploaded

Call Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call GirlsCall Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call Girlsssuser7cb4ff
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130Suhani Kapoor
 
Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.eptoze12
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024Mark Billinghurst
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escortsranjana rawat
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )Tsuyoshi Horigome
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝soniya singh
 
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfAsst.prof M.Gokilavani
 
Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...VICTOR MAESTRE RAMIREZ
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
Current Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCLCurrent Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCLDeelipZope
 
microprocessor 8085 and its interfacing
microprocessor 8085  and its interfacingmicroprocessor 8085  and its interfacing
microprocessor 8085 and its interfacingjaychoudhary37
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...Soham Mondal
 
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZTE
 
chaitra-1.pptx fake news detection using machine learning
chaitra-1.pptx  fake news detection using machine learningchaitra-1.pptx  fake news detection using machine learning
chaitra-1.pptx fake news detection using machine learningmisbanausheenparvam
 

Recently uploaded (20)

Call Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call GirlsCall Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call Girls
 
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
VIP Call Girls Service Hitech City Hyderabad Call +91-8250192130
 
Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
 
★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR
★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR
★ CALL US 9953330565 ( HOT Young Call Girls In Badarpur delhi NCR
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
 
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
 
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 
Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...
 
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCRCall Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
Current Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCLCurrent Transformer Drawing and GTP for MSETCL
Current Transformer Drawing and GTP for MSETCL
 
microprocessor 8085 and its interfacing
microprocessor 8085  and its interfacingmicroprocessor 8085  and its interfacing
microprocessor 8085 and its interfacing
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
OSVC_Meta-Data based Simulation Automation to overcome Verification Challenge...
 
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
ZXCTN 5804 / ZTE PTN / ZTE POTN / ZTE 5804 PTN / ZTE POTN 5804 ( 100/200 GE Z...
 
chaitra-1.pptx fake news detection using machine learning
chaitra-1.pptx  fake news detection using machine learningchaitra-1.pptx  fake news detection using machine learning
chaitra-1.pptx fake news detection using machine learning
 

Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete

  • 1. International OPEN ACCESS Journal Of Modern Engineering Research (IJMER) | IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 49| Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete Mohammad Iqbal Malik1 , Aarif Manzoor2 , Barkat Ahmad3 , Syed Asima4 , Rozi Ali5 1 Assistant Professor, Department of Civil Engineering, IUST, Awantipora 2, 3, 4, 5, Civil Engineering Graduate Student, IUST, Awantipora. I. Introduction Milling of rice generates a byproduct know as husk. The rice grain is protected by husk as its skin. During milling of paddy about 78 % of weight is received as rice, broken rice and bran. Rest 22 % of the weight of paddy is received as husk. This husk is used as fuel in the rice mills to generate steam for the parboiling process. This husk has about 75 % organic volatile matter and the remaining 25 % of the weight of this husk is converted into ash during the burning process, is known as rice husk ash (RHA). This RHA in turn contains around 85 % - 90 % amorphous silica. Hence, RHA can act as a good super-pozzolana. 1.1 Environmental Impact of Cement Production: In 2007, United States produced 110 metric tons of cement. For every ton of cement produced, approximately one ton of carbon dioxide is released into atmosphere. The cement industry produces about 5% of global man-made CO2 emissions. Also cement production leads to disturbance to the landscape, dust and noise and disruption to local biodiversity from quarrying limestone which is raw material for cement production. Moreover rice husk ash is regarded as a waste and has disposal problem because of the fact that it consumes a vast area for dumping. There are numerous ways for disposing it by making commercial use of this rice husk ash. Hence, if waste rice husk ash provides an opportunity to be used as partial replacement of cement in concrete, it will help in reducing the CO2 emissions, soil pollution and amount of dust into the atmosphere. Moreover its usage in concrete will reduce the cost. About 20 million tons of RHA is produced annually. Rice husk ash which was used in this research finer than cement having very small particle size of 30 microns, so much so that it fills the interstices in between the cement in the aggregate. From previous researches it has been found that Rice Husk Ash minimizes alkali- aggregate reaction, reduces expansion, polishes pore structure and hinders diffusion of alkali ions to the surface of aggregate by micro porous structure .The rice husk ash cement on hydration produces practically no Calcium Hydroxide and hence is superior to Portland cement. In this research, cement was partially replaced by waste RHA as 5%, 10% and 15% by weight. Concrete specimens were tested for compressive strength, durability (water absorption) and light weight nature for different waste RHA percentages. The results obtained were compared with results of normal M-25 concrete mix and it was found that maximum increase in compressive strength occurred for the concrete mix containing 10% waste RHA as cement. With increase in waste RHA content, water absorption increases indicating decrease in durability. Density of concrete decreased with increase in waste RHA content thus making concrete light weight in nature. ABSTRACT: India is a major rice producing country, and the husk generated during milling is mostly used as a fuel in the boilers for processing paddy and producing energy through direct combustion. About 21 million tones of Rice Husk Ash (RHA) is produced annually. This RHA is regarded as a waste and has disposal problem because of the fact that it consumes a vast area for dumping. Lots of ways are being thought of for disposing them by making commercial use of this RHA. RHA can be used as a replacement for concrete (5 to 15%).This paper evaluates how different contents of Rice Husk Ash added to concrete may influence its properties. In this study, cement was replaced by waste RHA as 5%,10% and 15% by weight for M-25 mix. The concrete specimens were tested for compressive strength, durability (water absorption) and density at 28 days of age and the results obtained were compared with those of normal concrete. The results concluded the permissibility of using waste RHA as partial replacement of cement up to 10% by weight of cement. Keywords: Rice Husk Ash (RHA) , Concrete, Compressive strength, Density and Durability.
  • 2. Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete | IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 50| This paper summarized the behavior of concrete involving replacement of cement by waste RHA as 5%,10%and 15% by weight which may help to reduce the disposal problems of waste RHA and will make concrete economical. II. Materials Used 2.1. Cement and Aggregates Khyber ordinary Portland cement of 43 grade confining to IS 8112 was used throughout the work. Fine aggregates used throughout the work comprised of clean river sand with maximum size of 4.75mm conforming to zone II as per IS383-1970 with specific gravity of 2.6. Coarse aggregates used consisted of machine crushed stone angular in shape passing through 20mm IS sieve and retained on 4.75mm IS sieve with specific gravity of 2.7. 2.2.Rice Husk Ash Waste RHA was collected from Paddy fields of Kulgam, J&K. It was then sun dried and burned so as to convert it into ash. The ash was sieved through 90 micron (90µm) Indian Standard sieve. The specific gravity of waste rice husk ash was found to be 2.6. Chemical composition of RHA is presented in TABLE 1. Fig.1 shows RHA. TABLE 1 – Chemical Composition of RHA III. Experimental Investigation 3.1. Mix Proportion The concrete mix design was proposed by using IS 10262. The grade of concrete used was M-25 with water to cement ratio of 0.45. The mixture proportions used in laboratory for experimentation are shown in TABLE 2. 3.2. Test on Fresh Concrete The workability of all concrete mixtures was determined through slump test utilizing a metallic slump mould. The difference in level between the height of mould and that of highest point of the subsided concrete was measured and reported as slump. The slump tests were performed according to IS 1199-1959. 3.3. Tests on hardened concrete From each concrete mixture, cubes of size 150mm x 150mm x 150mm have been casted for the determination of compressive strength. The concrete specimens were cured under normal conditions as per IS 516-1959 and were tested at 7 days and 28days for determining compressive strength as per IS 516-1959 . 3.4. Water absorption test The average dry weight of cube specimens after removing from moulds was measured and the average weight of cube specimens after submerging in water for curing was measured at 28 days of age. The percentage of water absorption was measured for each concrete specimen and it gave indirect measure of durability. 3.5. Light weight character The average dry weight of concrete cube specimens containing 5%, 10% and 15% waste RHA in place of cement was compared with average dry weight of normal M-25 concrete cube specimens and the percentage decrease in dry weight was measured. IV. Results And Discussion 4.1. Fresh concrete The slump values of all the mixtures are represented in TABLE 2. The slump decreases with the increase in waste RHA content. The reason is that rice husk ash is highly porous and hydraulic in nature. It absorbs water for reaction and some amount is trapped in pores also. The variation of slump with waste RHA content is depicted in Fig. 2. 4.2. Hardened concrete The compressive strength tests are presented in TABLE 3. Compressive strength tests were carried out at 7 and 28 days. An increase in compressive strength was observed up to 10% replacement of cement by waste RHA and thereafter decreasing. The maximum compressive strength measured was 3.25% more than that of Oxides SiO2 Fe2O3 Al₂O₃ CaO MgO SO₃ Al2O3+Fe2O3 Na2O K2O Percentage 92.99 0.43 0.18 1.03 0.35 0.1 0.61 3.56 0.72
  • 3. Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete | IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 51| reference mix at 28 days corresponding to concrete mix containing 10% waste rice husk ash in place of cement. Compressive strength for concrete mix with 15% waste RHA content was found to be less than that of reference mix. Figure 3 and 4 present compressive strength of all mixtures at 7 and 28 days respectively. 4.3. Water absorption Water absorption test was carried out for all mixtures and percentage water absorption was measured. The percentage water absorption increased with increase in waste rice husk ash content. The highest value of water absorption was found for concrete mix with 15% waste RHA content. TABLE 4 depicts the percentage water absorption for all mixtures and Figure-5 represents percentage water absorption for all mixtures. 4.4. Light weight character Average dry weight of cube specimens of each mixture as compared to reference mix was studied and it was observed that density decreased with increase in waste rice husk ash content. The results showed 3.34% reduction in dry weight of concrete cube specimens for concrete mix with 15% waste RHA content as compared to reference mix. Thus, waste RHA concrete is light weight in nature. TABLE 5 depicts the value of dry density and percentage change in dry weight with respect to reference mix and Figure-6 represents dry density of cubes for all mixtures. Fig.1 – Rice husk ash Table-2 Mix Proportion Rice Husk Ash % w/c ratio Water (Kg/m3 ) Cement (Kg/m3 ) Fine Aggregate (Kg/m3 ) Rice Husk Ash (Kg/m3 ) Coarse Aggregate (Kg/m3 ) Slump (mm) 0 0.45 191.6 425.80 543.5 0.00 1199.36 60 5 0.45 191.6 404.51 543.5 21.29 1199.36 20 10 0.45 191.6 383.22 543.5 42.58 1199.36 15 15 0.45 191.6 361.93 543.5 63.87 1199.36 10 Table-3 Compressive strength test results Waste RHA % Avg. load @ 7days (KN) Avg. Load @ 28 days(KN) Avg. Compressive Strength @7 days(N/mm2 ) Avg. Compressive Strength @28 days(N/mm2 ) 0% 498 678 22.13 30.13 5% 530 690 23.55 30.67 10% 580 700 25.78 31.11 15% 490 670 21.78 29.78
  • 4. Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete | IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 52| TABLE 4 – Water absorption test results for cube specimens of size 150mm x 150mm x 150mm Waste RHA % Avg. Dry weight of cube (gm) Avg. Wet weight of cube (gm) Water absorbed (gm) Percentage water absorption 0% 8390 8480 90 1.07% 5% 8350 8450 100 1.197% 10% 8225 8340 115 1.398% 15% 8110 8240 130 1.603% Table 5 – Light weight test results for cube specimens of size 150mm x 150mm x 150mm Waste RHA % Avg. Dry weight of cube (gm) Avg. dry density of cube (KN/m3 ) Percentage change in weight as compared to reference (%) 0% 8390 24.86 0% 5% 8350 24.74 - 0.483% 10% 8225 24.37 - 1.971% 15% 8110 24.03 - 3.339% Fig.2 – Variation of slump with waste RHA content. Fig.3 – Compressive Strength of Cubes at 7 Days
  • 5. Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete | IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 53| Fig.4 – Compressive Strength of Cubes at 28 Days Fig.5 – Percentage water absorption Fig.6 – Dry density of cubes
  • 6. Effectiveness of Use of Rice Husk Ash as Partial Replacement of Cement in Concrete | IJMER | ISSN: 2249–6645 | www.ijmer.com | Vol. 5 | Iss.2| Feb. 2015 | 54| V. Conclusion On the basis of results obtained, following conclusions can be drawn: 1. 10% replacement of cement by waste rice husk ash showed 16% increase in compressive strength at 7 days and 3.25% increase in compressive strength at 28 days. 2. The optimum value for cement replacement is 10% as obtained from graph-2. 3. With increase in waste rice husk ash content, percentage water absorption increases. 4. With increase in waste rice husk ash content, average weight decreases by 3.34% for mixture with 15% waste rice husk ash content thus making waste rice husk ash concrete light weight. 5. Workability of concrete mix decreases with increase in waste rice husk ash content. 6. Use of waste rice husk ash in concrete can prove to be economical as it is free of cost. 7. Use of waste rice husk ash will eradicate its disposal problem and reduce carbon emissions (CO2) thus proves to be environment friendly thus paving way for greener concrete. In order to be sustainable for future generations we must fully exploit by-product materials like waste rice husk ash. This will reduce the greenhouse gas emissions. It is our duty to take sensible engineering judgments based on facts about byproducts and not on the prejudice of assuming a ‘WASTE’ is somehow inferior or less suitable. REFERENCES [1]. Houston, D.F (1972) Rice Chemistry and Technology. American Association of Cereal chemistry, Minnesite. [2]. Neville A. M., (1987) Concrete Technology 4th edition Great Britain: Pitman Books. [3]. Shetty M. S.,”Concrete Technology”, S. Chand & Co. Ltd., New Delhi. [4]. Ramasamy.V et al., 2008: Performance of Rice Husk Ash Concrete with Superplasticizer. In ICI Journal, Indian Concrete Institute. [5]. Chao Lung Hwang & Satish Chandra, The use of RHA in concrete. [6]. 43 Grade Ordinary Portland Cement – Specification. IS 8112:1989, Bureau of Indian Standards, New Delhi. [7]. Specification for Coarse and Fine Aggregates from Natural Sources for Concrete. IS: 383-1970, Bureau of Indian Standards, New Delhi. [8]. Recommended Guidelines for Concrete Mix Design. IS: 10262-1982, Bureau of Indian Standards, New Delhi. [9]. Methods of Sampling and Analysis of Concrete. IS: 1199-1959, Bureau of Indian Standards, New Delhi. [10]. Methods of Tests for Strength of Concrete. IS: 516-1959, Bureau of Indian Standards, New Delhi. [11]. Methods of Tests for Strength of Concrete. IS: 516-1959, Bureau of Indian Standards, New Delhi.