SlideShare a Scribd company logo
1 of 5
Download to read offline
International Journal of Trend in Scientific Research and Development (IJTSRD)
Volume 3 Issue 6, October 2019 Available Online: www.ijtsrd.com e-ISSN: 2456 – 6470
@ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 393
Effect of Oil Extraction Method on the
Functional Properties of Biodiesels of Selected Oilseeds
Gbashi M. Samuel, Yanshio T. Emmauel, Kingsley N. Nwankwo
Department of Mechanical Engineering, University of Agriculture, Makurdi, Benue, Nigeria
ABSTRACT
Owing to the rise in demand for petroleum and environmental concerns, the
search for alternative fuels has gained prominence. This study examined the
effect of the method of extraction of the base oilonthefunctional propertiesof
biodiesel produced from Jatropha, Yellow oleander and Castor oilseeds. The
study revealed that the method of extraction had significant effect on the
properties of the oil extracted and hence the biodiesel produced from the oil.
Hydrogenation during oven heating after solvent extraction affected the
unsaturation of the base oils and the biodiesels produced from them. The
kinematic viscosities of the biodiesel samples obtained from the oil samples
extracted by solvent extraction were generally higher than those obtained
from the oil samples extracted by mechanical extraction. The flash and fire
points of the biodiesel samples obtained from the oil samples extracted by
solvent extraction were higher than that obtained from the oil samples
extracted by mechanical extraction. The pour points of the biodiesels
produced from the oils extracted by mechanical extraction were lower than
those produced from the oils extracted by solvent extraction.
KEYWORDS: Mechanical Extraction, Solvent Extraction, Jathropha, Yellow
oleander, Castor, Oilseed, ChemophysicalProperties, Transesterification, Biodiesel
Symbols: J: Jatropha, Y: Yellow Oleander, C: Castor, ME: Mechanical Extraction,
SE: Solvent Extraction
How to cite this paper: Gbashi M. Samuel
| Yanshio T. Emmauel | Kingsley N.
Nwankwo "EffectofOil ExtractionMethod
on the Functional Properties of Biodiesels
of Selected
Oilseeds" Published
in International
Journal of Trend in
Scientific Research
and Development
(ijtsrd), ISSN: 2456-
6470, Volume-3 |
Issue-6, October 2019, pp.393-397, URL:
https://www.ijtsrd.com/papers/ijtsrd25
252.pdf
Copyright © 2019 by author(s) and
International Journal ofTrendinScientific
Research and Development Journal. This
is an Open Access article distributed
under the terms of
the Creative
CommonsAttribution
License (CC BY 4.0)
(http://creativecommons.org/licenses/by
/4.0)
1. INTRODUCTION
In recent years, the use of biodiesels as alternative fuels as
opposed to conventional diesel has been extensively
investigated with the goal of ensuring energy security and
reducing the environmental impacts of emission [1].
Biodiesel is mono-alkyl esters of fatty acids derived from
vegetable oils or animal fats, produced by the
transesterification of vegetable oils or animal fats with an
alcohol [2]. It is a clear amber-yellow liquid obtained from
vegetable oils, animal fats or grease. It’s non-flammability,
biodegradability, non-toxicityandnon-explosivenessmakes
it more environmentally friendly compared to petroleum
diesel [3]. Emil et al. [4] noted that the cost of feedstock
account for a large percent of the directbiodieselproduction
costs; current trend is towards the use of inedible vegetable
oils for biodiesel production.
Jatropha (Jatropha curcas) is a non-edible oil bearing shrub.
It grows under (sub) tropical conditions and can withstand
conditions of severe drought and low soil fertility. Oil yield
from Jatropha depends on climate, soil, rainfall and
treatment duringsowingandharvesting[5].Yellowoleander
(Thevetia peruviana)isa non-edibleoil-bearinganddrought-
evergreen tropical shrub that belongs to the Apocynaceae
family. It thrives well in all the climatic and vegetation belts
of Nigeria. The plant starts flowering after one and a half
year from plantation and there after bloomsthricea year [6].
Castor (Ricinus communis) is a specie of flowering plant in
the spurge family (Euphorbiaceae) mostly native to the
tropics. Castor is a hardy crop, easy to establish on the field,
resistant to drought, tolerates different types of soil even
marginal soil and yields 350 – 900 kg oil per hectare. Castor
is an important oilseed crop with great utilitarian value in
industry, pharmaceutical and agricultural sectors [7].
Two techniques are commonly employed in extracting oil
from oilseeds, these are: mechanical and solvent extraction.
Mechanical extraction is the mostconventional methodofoil
extraction. It involves the application of pressure to already
pre-treated oil-bearing products. It employs the use of
devices like screw and hydraulic presses as a means of
applying the pressure. The seeds are conveyed by a
horizontally rotating metal screw into a barrel shaped outer
casing with perforated walls. The products are continuously
fed to the expeller, which crushes and pressestheoil outasit
passes through the machine. The pressure ruptures the oil
matrix in the product and oil flows through the perforations
in the casing and is collected in a trough underneath [8].
Solvent extraction is the technique of removing one
constituent from a solid by means of a liquid solvent. In this
process, a chemical solvent such as n-hexane is used to
saturate the crushed seed and pull out the oils. After
completion of the extraction process the solvent is
condensed and reclaimed. The liquid chosen should be a
good selective solvent and its viscosity shouldbesufficiently
low for it to circulate freely [9].
IJTSRD25252
International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470
@ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 394
Biodiesel can be produced from vegetable oil by the process
of transesterification. Transesterification is a term used to
describe the reaction between alcohols and vegetable oil to
yield esters (biodiesel) and glycerol. Base catalyzed
transesterification referstotheprocessofreactingvegetable
oil with an alcohol in the presence of a base catalyst and is
used when the free fatty acid content of the oil is less than 1
%. In handling high free fatty acid content feedstock
however, two-step acid-base catalyzed transesterification is
often used [10].
Two-step acid-base catalyzed transesterification involves
acid-catalyzed esterification followed by base catalyzed
transesterification. In acid catalyzed esterification, the oil is
reacted with an alcohol in the presence of a strong acid
catalyst like sulphuric acid; this converts the free fatty acids
to esters, yielding water as a by-product. The next step
involves performing a base catalyzed transesterification
[11].
This study compares the chemophysical and thermal
properties of biodiesel produced from oils gotten from the
selected vegetable oil seeds after mechanical extraction with
those properties gotten after solvent extraction.
2. METHODOLOGY
2.1. Seeds Source
Seeds of Jathropha (Jatropha curcas), Yellow oleander
(Thevetia peruviana) and Castor (Ricinus communis) plants
were sourced locally.
2.2. Seeds Preparation
The seeds were cleaned and dried for several days until
constant weights were obtained.
2.3. Oil Extraction
Two methods were used for the extraction of oil from the
collected oilseedsnamely:solventextractionandmechanical
extraction.
2.3.1. Solvent extraction
The seeds were dried and ground into powder. The ground
seeds were dissolved in ethanol and left for 24 hours. The
following day, the mixture was filtered and the chaff
discarded. The filtrate, consisting of extracted lipids,
dissolved in ethanol was sun-dried for 3 days after which it
was dried in an electric oven to ensure the complete
evaporation of ethanol and moisture.
2.3.2. Mechanical extraction
The dried seeds were cleaned, roasted and fed into a
mechanical oil press without removing the husk. The crude
oil extracted was refined and made ready for blending and
characterization.
2.4. Generation of Samples
For each method of extraction, 12 oil samples were
generated by blending the oils with each other in different
proportions as shown in Table 1.
2.5. Determination of Chemophysical and Thermal
Properties of Oil
The Chemophysical and Thermal properties of the oil
samples were determined using standard ASTM, AOAC and
AOCS methods.
2.6. Production of biodiesel
The oil samples generatedwereusedto producebiodiesel by
two-step acid-base catalyzed transesterification [12]. This
method of transesterification was chosen because most of
the oil samples contained high free fatty acids.
2.6.1. Acid pre-treatment
A solution of concentrated H2SO4 (1 % based on the oil
weight) in methanol was mixed with each of the oil samples
at 70 % w/w of methanol to oil ratio in a reaction bottle. The
mixture was agitated at room temperature on an electrically
operated flask shaker for about30minutes.Themixturewas
then poured into a separating funnel and allowed to stand
till phase separation occurred.The bottomlayerwasdrained
for the next step transesterification.
2.6.2. Base catalyzed transesterification
In the second step, KOH pellets (1.4 % based on oil weight)
were dissolved in methanol.Thesolutionwasmixedwith the
oil at a methanol to oil ratio of 24 % w/w. The mixture was
agitated on a flask shaker for 1 hr at room temperature,
poured into a separating funnel and allowed to stand for 24
hrs. The next day, the bottom layer (containing glycerol,
excess methanol and unreacted catalyst) was drained out.
The top layer (containing biodiesel and excess methanol)
was collected for purification.
2.7. Determination of Chemophysical and Thermal
Properties of Biodiesel
The chemophysical and thermal properties of the biodiesel
samples were determined using standard ASTM, AOAC and
AOCS methods.
3. RESULTS/DISCUSSION
The result of the percentage biodiesel yield for mechanical
and solvent extraction is presented in Table 2. The iodine
values of the base oil samples for mechanical and solvent
extraction are compared in Figure 1. The viscosities of the
biodiesel samples for mechanical and solvent extraction of
the base oil are compared in Figure 2. The flash points of the
biodiesel samples for mechanical and solvent extraction of
the base oil are compared in Figure 3. The fire points of the
biodiesel samples for mechanical and solvent extraction of
the base oil are compared in Figure 4. The pour points of the
biodiesel samples for mechanical and solvent extraction of
the base oil are compared in Figure 5.
Table1: Blending Proportion
Sample No Proportion
S1 J100%
S2 Y100%
S3 C100%
S4 J50% + Y50%
S5 J50% + C50%
S6 Y50% + C50%
S7 J70% + Y30%
S8 J30%+ Y70%
S9 J70% + C30%
S10 J30%+ C70%
S11 Y70% + C30%
S12 Y30%+ C70%
International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470
@ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 395
Table2: Percentage Biodiesel Yields - Mechanical and Solvent Extractions
Sample Code Percentage Biodiesel Yield (%)
ME SE
J 68 65
Y 66 50
C 50 50
Figure1: Iodine Values of Oil Samples - Mechanical and Solvent Extractions
Figure 2: Viscosity of Biodiesel Samples - Mechanical and Solvent Extractions
Figure3: Flash Point of Biodiesel Samples - Mechanical and Solvent Extractions
International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470
@ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 396
Figure4: Fire Point of Biodiesel Samples - Mechanical and Solvent Extractions
Figure5: Pour Point of Biodiesel Samples - Mechanical and Solvent Extractions
From Table 2, the average biodiesel yield from the oil
samples obtained by mechanical extraction was 61 %
whereas that from the oil samples obtained by solvent
extraction was 55 %. Higher yields were obtained from the
samples extracted by mechanical extraction because of the
lower free fatty acid content of the oil samples which
resulted in minimal refining loss during acid pre-treatment
[10].
The iodine values of the base oil samples for mechanical and
solvent extraction are compared inFigure1.Fromtheresult,
it is seen that the iodine values of the base oil samples
extracted by solvent extractionarecomparativelylowerthan
those of the base oil samples extracted by mechanical
extraction. This shows that the oil samples extracted by
solvent extraction had lower concentration of unsaturated
fatty acids. The lower concentration of unsaturated fatty
acids in the oil samples extracted by solvent extraction may
be attributed to hydrogenation in the oil samples during the
drying process done after solvent extraction. The heating of
vegetable oils results in a marginal decrease in their
unsaturated fatty acids due to hydrogenation [13], [14] and
[15]. After production of biodiesel, it was observed that the
concentration of unsaturated fatty acid esters of the
biodiesel samples were proportionate to the concentration
of unsaturated fatty acids in the base oils. Hence, biodiesel
samples obtained from the oil samples extracted by
mechanical extraction had a higher concentration of
unsaturated fatty acid esters than those obtained from oil
samples extracted by solvent extraction.
In figure 2, the kinematic viscosities of the biodiesel samples
for mechanical and solvent extraction of the base oil are
compared. The result shows that the biodiesel samples
produced from oil samples extracted by mechanical
extraction had lowerviscositiescomparedtothoseproduced
from oil samples extracted by solvent extraction. The lower
viscosities of the biodiesel samples obtained from the oil
samples extracted by mechanical extraction compared to
those from the oil samples extracted by solvent extraction
may be linked to the higher concentration of unsaturated
fatty acid esters in the former. The decrease in kinematic
viscosity with increase in unsaturation was observed by
Zdzislaw and Anna [16].
Figure 3 compares the flash points of the biodiesel samples
obtained from the oil samples extracted by mechanical
extraction with those from the oil samples extracted by
solvent extraction. Figure4likewisecomparesthefire points
of the biodiesel samples obtained from the oil samples
extracted by mechanical extraction with those from the oil
samples extracted by solvent extraction. The flash and fire
points of the biodiesel samplesobtainedfromtheoil samples
extracted by solvent extraction were generally higher than
International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470
@ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 397
those obtained from the oils samples extracted by
mechanical extraction. This can be linked to the high
viscosities of the biodiesel samples obtained from the oil
samples extracted by solvent extraction compared to those
obtained from the oil samples extracted by mechanical
extraction.
Since the biodiesel samples obtained from the oil samples
extracted by mechanical extractionhadhigherconcentration
unsaturated fatty acid esters, theyhadlowerpour pointsand
better flow properties compared to the biodiesel samples
obtained from oil samples extracted by solvent extraction
[17].
4. CONCLUSION
The study revealed that the method of extraction had
significant effect on the properties of the oils extracted and
hence the biodiesels produced from the oil. Mechanical
extraction of the base oil resulted in oil samples that yielded
more biodiesel than solvent extraction. The kinematic
viscosities of the biodiesel samples obtained from the oil
samples extracted by solvent extraction were generally
higher than those obtained fromtheoil samplesextracted by
mechanical extraction. The flash and fire points of the
biodiesel samples obtainedfromtheoil samplesextractedby
solvent extraction were higher than that obtained from the
oil samples extracted by mechanical extraction. The pour
points of the biodiesel produced from the oils extracted by
mechanical extraction were lower than those of the
biodiesels produced from the oils extracted by solvent
extraction.
REFERENCES
[1] Refaat, A. A., (2010). Different Techniques for the
Production of Biodiesel from Waste Vegetable Oil.
International Journal of Environmental Science and
Technology, 7 (1): 183-213.
[2] Knothe, G. (2006). Analyzing Biodiesel: Standards and
other Methods. Journal of Oil Chemistry, 5(3):
823-830.
[3] Demirbas A. (2005), “Biodiesel production from
vegetable oils via catalytic and non-catalytic
supercritical methanol transesterification methods,”
Progress in Energy and Combustion Science, 31(5):466-
487.
[4] Emil, A., Zahira, Y. and Siti, K. (2009). Characteristic
and Composition of Jatropha Curcas Oil Seed from
Malaysia and its Potential as Biodiesel Feedstock.
European Journal ofScientific Research,29(3):396-403.
[5] Romano, S. D. and Sorichetti, P. A. (2011). Dielectric
Spectroscopy in Biodiesel Production and
Characterization.GreenEnergyandTechnology,3(2):9-
12.
[6] Yarkasuwa, C. I., Wilson, D. and Michael, E. (2013).
Production of Biodiesel from Yellow Oleander
(Thevetia Peruviana) Oil and Its Biodegradability.
Journal of the Korean Chemical Society, 57(3): 765 –
777.
[7] Salihu, B. Z., Gana, A. K. and Apuyor,B.O.(2014).Castor
Oil Plant (Ricinus communis L.): Botany, Ecology and
Uses. International Journal of Science and Research,
3(5): 835-856.
[8] Ager, P. (2011). The Effects of Processing Methods on
Chemo-physical, Rheological and Oxidation Properties
of Jathropha (Jathropha curcas) and Calabash
(Lageneria vulgaris) Oil Lubricants. Masters thesis.
Department of Mechanical Engineering, University of
Agriculture, Makurdi, Nigeria. 151pp.
[9] Harker, J. H., Backhurst, J. R. Richardson, J.F., (2002).
Chemical Engineering 2nd ed., Butterworth
Heinemann
[10] Bredeli, J. K. (2011). Synthesis of Biodiesel from
Triglyceride Oil. 1st Edition, Bangladesh. Bio-Tech
Press. 321pp.
[11] Pintilie, L., Ileana, P. and Cristiana, H. (2014). Studies
on Two-step Acid-baseCatalyzedTransesterificationof
Refined Ostrich Oil. JournalofRenewableEnergy, 19(2):
4555-4567.
[12] Berchmans, H. J. and Hirata, S. (2008). Biodiesel
Production from Crude Jatropha Curcas Seed Oil witha
High Content of Free Fatty Acids. Bioresource
Technology,99(6):101-176.
[13] Alireza, S., Tan, C. P., Hamed, M. and Che Man, Y. B.
(2010). Effect of Frying Process on Fatty Acid
Composition and Iodine Value of Selected Vegetable
Oils and their Blends. International Food Research
Journal, 17: 295-302.
[14] Adejumo, B. A., Alakowe, A.T and Obi, D. E (2013).
Effect of Heat Treatment on the Characteristics and Oil
Yield of Moringa Oleifera Seeds. The International
Journal of Engineering and Science, 2(1): 232-239.
[15] Van de Vort, F., Ismail, A., Sedman, J. and Emo, G.
(1994). Monitoring the Oxidation of Three Edible Oils
by FTIR Spectroscopy. Journal of American Oil
Chemical Society, 71: 243-253.
[16] Zdzislaw, Z. E. and Anna, K. (2003). Chemical and
Functional Properties of Food Lipids. 3rd Edition, New
Jersey, CRC Press. 400pp.
[17] Devaraj, A. (2013). The Effect of Biofertilizer
Application on Chemical CompositionofOil fromMicro
propagated Jatropha Curcas L. Seeds. Journal of
Biofuels, 2(4): 567-577.

More Related Content

What's hot

Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...
Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...
Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...
IJEAB
 
biodiesel project report presentation
biodiesel project report presentationbiodiesel project report presentation
biodiesel project report presentation
Manu Nair
 

What's hot (20)

Biodiesel
BiodieselBiodiesel
Biodiesel
 
Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...
Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...
Production of Biodiesel using waste temple oil from Shani Shingnapur temple (...
 
Use of Jatropha Biodiesel in C.I. Engines- A review
Use of Jatropha Biodiesel in C.I. Engines- A reviewUse of Jatropha Biodiesel in C.I. Engines- A review
Use of Jatropha Biodiesel in C.I. Engines- A review
 
Bio Diesel
Bio DieselBio Diesel
Bio Diesel
 
BIODIESEL FROM JATROPHA
BIODIESEL FROM JATROPHABIODIESEL FROM JATROPHA
BIODIESEL FROM JATROPHA
 
Biodiesel Production for On-Farm Use: A curriculum for agricultural producers
Biodiesel Production for On-Farm Use: A curriculum for agricultural producersBiodiesel Production for On-Farm Use: A curriculum for agricultural producers
Biodiesel Production for On-Farm Use: A curriculum for agricultural producers
 
BIO DIESEL PPT
 BIO DIESEL  PPT BIO DIESEL  PPT
BIO DIESEL PPT
 
Transesterification and its mechanism, its application in dairy industry
Transesterification and its mechanism, its application in dairy industryTransesterification and its mechanism, its application in dairy industry
Transesterification and its mechanism, its application in dairy industry
 
biodiesel
 biodiesel  biodiesel
biodiesel
 
Bio diesel production
Bio diesel productionBio diesel production
Bio diesel production
 
Castor biodiesel
Castor biodieselCastor biodiesel
Castor biodiesel
 
Biodiesel
BiodieselBiodiesel
Biodiesel
 
A0530104
A0530104A0530104
A0530104
 
Biodiesel
BiodieselBiodiesel
Biodiesel
 
Recycling of waste cooking oil
Recycling of waste cooking oilRecycling of waste cooking oil
Recycling of waste cooking oil
 
K43056467
K43056467K43056467
K43056467
 
Effect of Glucose on Biosurfactant Production using Bacterial Isolates from O...
Effect of Glucose on Biosurfactant Production using Bacterial Isolates from O...Effect of Glucose on Biosurfactant Production using Bacterial Isolates from O...
Effect of Glucose on Biosurfactant Production using Bacterial Isolates from O...
 
Production of biodiesel from vegetable oils
Production of biodiesel from vegetable oilsProduction of biodiesel from vegetable oils
Production of biodiesel from vegetable oils
 
biodiesel project report presentation
biodiesel project report presentationbiodiesel project report presentation
biodiesel project report presentation
 
Biodiesel
Biodiesel Biodiesel
Biodiesel
 

Similar to Effect of Oil Extraction Method on the Functional Properties of Biodiesels of Selected Oilseeds

Experimental investigation of neem and mixed pongamia coconut methyl esters a
Experimental investigation of neem and mixed pongamia coconut methyl esters aExperimental investigation of neem and mixed pongamia coconut methyl esters a
Experimental investigation of neem and mixed pongamia coconut methyl esters a
IAEME Publication
 
The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...
The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...
The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...
IJERA Editor
 

Similar to Effect of Oil Extraction Method on the Functional Properties of Biodiesels of Selected Oilseeds (20)

Welcome to International Journal of Engineering Research and Development (IJERD)
Welcome to International Journal of Engineering Research and Development (IJERD)Welcome to International Journal of Engineering Research and Development (IJERD)
Welcome to International Journal of Engineering Research and Development (IJERD)
 
IRJET-Algae as a Potential Feedstock for Production of Biodiesel
IRJET-Algae as a Potential Feedstock for Production of BiodieselIRJET-Algae as a Potential Feedstock for Production of Biodiesel
IRJET-Algae as a Potential Feedstock for Production of Biodiesel
 
IRJET- Production of Biodiesel from Cannabis Sativa (Hemp) Seed Oil and its P...
IRJET- Production of Biodiesel from Cannabis Sativa (Hemp) Seed Oil and its P...IRJET- Production of Biodiesel from Cannabis Sativa (Hemp) Seed Oil and its P...
IRJET- Production of Biodiesel from Cannabis Sativa (Hemp) Seed Oil and its P...
 
Oil Production from Yarrowia lipolytica Po1g Using Rice Bran Hydrolysate
Oil Production from Yarrowia lipolytica Po1g Using Rice Bran Hydrolysate  Oil Production from Yarrowia lipolytica Po1g Using Rice Bran Hydrolysate
Oil Production from Yarrowia lipolytica Po1g Using Rice Bran Hydrolysate
 
Production of Biodiesel from Vernonia Galamensis Oil using Ethanol with Alkal...
Production of Biodiesel from Vernonia Galamensis Oil using Ethanol with Alkal...Production of Biodiesel from Vernonia Galamensis Oil using Ethanol with Alkal...
Production of Biodiesel from Vernonia Galamensis Oil using Ethanol with Alkal...
 
Biodiesel Production from waste Oil with Micro-Scale Biodiesel System Under L...
Biodiesel Production from waste Oil with Micro-Scale Biodiesel System Under L...Biodiesel Production from waste Oil with Micro-Scale Biodiesel System Under L...
Biodiesel Production from waste Oil with Micro-Scale Biodiesel System Under L...
 
Biodiesel as an Alternative Fuel
Biodiesel as an Alternative FuelBiodiesel as an Alternative Fuel
Biodiesel as an Alternative Fuel
 
Performance Characteristics of a Diesel Engine Fuelled with Biodiesel Produce...
Performance Characteristics of a Diesel Engine Fuelled with Biodiesel Produce...Performance Characteristics of a Diesel Engine Fuelled with Biodiesel Produce...
Performance Characteristics of a Diesel Engine Fuelled with Biodiesel Produce...
 
Experimental investigation of neem and mixed pongamia coconut methyl esters a
Experimental investigation of neem and mixed pongamia coconut methyl esters aExperimental investigation of neem and mixed pongamia coconut methyl esters a
Experimental investigation of neem and mixed pongamia coconut methyl esters a
 
Experimental Investigation on Performance and Exhaust Emissions of a Diesel E...
Experimental Investigation on Performance and Exhaust Emissions of a Diesel E...Experimental Investigation on Performance and Exhaust Emissions of a Diesel E...
Experimental Investigation on Performance and Exhaust Emissions of a Diesel E...
 
The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...
The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...
The Investigation Of Utilizing Rapeseed Flowers Oil As A Reliable Feedstock T...
 
Biodiesel production from algae
Biodiesel production from algaeBiodiesel production from algae
Biodiesel production from algae
 
IRJET- Enhanced Biodiesel Production using Eggshell as the Catalyst
IRJET- Enhanced Biodiesel Production using Eggshell as the CatalystIRJET- Enhanced Biodiesel Production using Eggshell as the Catalyst
IRJET- Enhanced Biodiesel Production using Eggshell as the Catalyst
 
Effect of injection pressure on performance and emission analysis of ci engin...
Effect of injection pressure on performance and emission analysis of ci engin...Effect of injection pressure on performance and emission analysis of ci engin...
Effect of injection pressure on performance and emission analysis of ci engin...
 
F0443041
F0443041F0443041
F0443041
 
F0443041
F0443041F0443041
F0443041
 
Performance Characterstics of CI Engine Using Calophyllum Inophyllum as Biofu...
Performance Characterstics of CI Engine Using Calophyllum Inophyllum as Biofu...Performance Characterstics of CI Engine Using Calophyllum Inophyllum as Biofu...
Performance Characterstics of CI Engine Using Calophyllum Inophyllum as Biofu...
 
Analysis of Thermal Efficiency of Bio Ethyl Ester of Karanja, Jatropha and Ku...
Analysis of Thermal Efficiency of Bio Ethyl Ester of Karanja, Jatropha and Ku...Analysis of Thermal Efficiency of Bio Ethyl Ester of Karanja, Jatropha and Ku...
Analysis of Thermal Efficiency of Bio Ethyl Ester of Karanja, Jatropha and Ku...
 
Production of Biodiesel from Waste Cooking Oil By Co-Solvent Method.
Production of Biodiesel from Waste Cooking Oil By Co-Solvent Method.Production of Biodiesel from Waste Cooking Oil By Co-Solvent Method.
Production of Biodiesel from Waste Cooking Oil By Co-Solvent Method.
 
EXPERMENTAL ANALYSIS OF PEANUT OIL AS BIO-DIESEL ON CI ENGINE
EXPERMENTAL ANALYSIS OF PEANUT OIL AS BIO-DIESEL ON CI ENGINEEXPERMENTAL ANALYSIS OF PEANUT OIL AS BIO-DIESEL ON CI ENGINE
EXPERMENTAL ANALYSIS OF PEANUT OIL AS BIO-DIESEL ON CI ENGINE
 

More from ijtsrd

‘Six Sigma Technique’ A Journey Through its Implementation
‘Six Sigma Technique’ A Journey Through its Implementation‘Six Sigma Technique’ A Journey Through its Implementation
‘Six Sigma Technique’ A Journey Through its Implementation
ijtsrd
 
Dynamics of Communal Politics in 21st Century India Challenges and Prospects
Dynamics of Communal Politics in 21st Century India Challenges and ProspectsDynamics of Communal Politics in 21st Century India Challenges and Prospects
Dynamics of Communal Politics in 21st Century India Challenges and Prospects
ijtsrd
 
Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...
Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...
Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...
ijtsrd
 
The Impact of Digital Media on the Decentralization of Power and the Erosion ...
The Impact of Digital Media on the Decentralization of Power and the Erosion ...The Impact of Digital Media on the Decentralization of Power and the Erosion ...
The Impact of Digital Media on the Decentralization of Power and the Erosion ...
ijtsrd
 
Problems and Challenges of Agro Entreprenurship A Study
Problems and Challenges of Agro Entreprenurship A StudyProblems and Challenges of Agro Entreprenurship A Study
Problems and Challenges of Agro Entreprenurship A Study
ijtsrd
 
Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...
Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...
Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...
ijtsrd
 
A Study on the Effective Teaching Learning Process in English Curriculum at t...
A Study on the Effective Teaching Learning Process in English Curriculum at t...A Study on the Effective Teaching Learning Process in English Curriculum at t...
A Study on the Effective Teaching Learning Process in English Curriculum at t...
ijtsrd
 
The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...
The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...
The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...
ijtsrd
 
Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...
Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...
Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...
ijtsrd
 
Sustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. Sadiku
Sustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. SadikuSustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. Sadiku
Sustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. Sadiku
ijtsrd
 
Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...
Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...
Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...
ijtsrd
 
Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...
Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...
Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...
ijtsrd
 
Activating Geospatial Information for Sudans Sustainable Investment Map
Activating Geospatial Information for Sudans Sustainable Investment MapActivating Geospatial Information for Sudans Sustainable Investment Map
Activating Geospatial Information for Sudans Sustainable Investment Map
ijtsrd
 
Educational Unity Embracing Diversity for a Stronger Society
Educational Unity Embracing Diversity for a Stronger SocietyEducational Unity Embracing Diversity for a Stronger Society
Educational Unity Embracing Diversity for a Stronger Society
ijtsrd
 
DeepMask Transforming Face Mask Identification for Better Pandemic Control in...
DeepMask Transforming Face Mask Identification for Better Pandemic Control in...DeepMask Transforming Face Mask Identification for Better Pandemic Control in...
DeepMask Transforming Face Mask Identification for Better Pandemic Control in...
ijtsrd
 

More from ijtsrd (20)

‘Six Sigma Technique’ A Journey Through its Implementation
‘Six Sigma Technique’ A Journey Through its Implementation‘Six Sigma Technique’ A Journey Through its Implementation
‘Six Sigma Technique’ A Journey Through its Implementation
 
Edge Computing in Space Enhancing Data Processing and Communication for Space...
Edge Computing in Space Enhancing Data Processing and Communication for Space...Edge Computing in Space Enhancing Data Processing and Communication for Space...
Edge Computing in Space Enhancing Data Processing and Communication for Space...
 
Dynamics of Communal Politics in 21st Century India Challenges and Prospects
Dynamics of Communal Politics in 21st Century India Challenges and ProspectsDynamics of Communal Politics in 21st Century India Challenges and Prospects
Dynamics of Communal Politics in 21st Century India Challenges and Prospects
 
Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...
Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...
Assess Perspective and Knowledge of Healthcare Providers Towards Elehealth in...
 
The Impact of Digital Media on the Decentralization of Power and the Erosion ...
The Impact of Digital Media on the Decentralization of Power and the Erosion ...The Impact of Digital Media on the Decentralization of Power and the Erosion ...
The Impact of Digital Media on the Decentralization of Power and the Erosion ...
 
Online Voices, Offline Impact Ambedkars Ideals and Socio Political Inclusion ...
Online Voices, Offline Impact Ambedkars Ideals and Socio Political Inclusion ...Online Voices, Offline Impact Ambedkars Ideals and Socio Political Inclusion ...
Online Voices, Offline Impact Ambedkars Ideals and Socio Political Inclusion ...
 
Problems and Challenges of Agro Entreprenurship A Study
Problems and Challenges of Agro Entreprenurship A StudyProblems and Challenges of Agro Entreprenurship A Study
Problems and Challenges of Agro Entreprenurship A Study
 
Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...
Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...
Comparative Analysis of Total Corporate Disclosure of Selected IT Companies o...
 
The Impact of Educational Background and Professional Training on Human Right...
The Impact of Educational Background and Professional Training on Human Right...The Impact of Educational Background and Professional Training on Human Right...
The Impact of Educational Background and Professional Training on Human Right...
 
A Study on the Effective Teaching Learning Process in English Curriculum at t...
A Study on the Effective Teaching Learning Process in English Curriculum at t...A Study on the Effective Teaching Learning Process in English Curriculum at t...
A Study on the Effective Teaching Learning Process in English Curriculum at t...
 
The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...
The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...
The Role of Mentoring and Its Influence on the Effectiveness of the Teaching ...
 
Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...
Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...
Design Simulation and Hardware Construction of an Arduino Microcontroller Bas...
 
Sustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. Sadiku
Sustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. SadikuSustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. Sadiku
Sustainable Energy by Paul A. Adekunte | Matthew N. O. Sadiku | Janet O. Sadiku
 
Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...
Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...
Concepts for Sudan Survey Act Implementations Executive Regulations and Stand...
 
Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...
Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...
Towards the Implementation of the Sudan Interpolated Geoid Model Khartoum Sta...
 
Activating Geospatial Information for Sudans Sustainable Investment Map
Activating Geospatial Information for Sudans Sustainable Investment MapActivating Geospatial Information for Sudans Sustainable Investment Map
Activating Geospatial Information for Sudans Sustainable Investment Map
 
Educational Unity Embracing Diversity for a Stronger Society
Educational Unity Embracing Diversity for a Stronger SocietyEducational Unity Embracing Diversity for a Stronger Society
Educational Unity Embracing Diversity for a Stronger Society
 
Integration of Indian Indigenous Knowledge System in Management Prospects and...
Integration of Indian Indigenous Knowledge System in Management Prospects and...Integration of Indian Indigenous Knowledge System in Management Prospects and...
Integration of Indian Indigenous Knowledge System in Management Prospects and...
 
DeepMask Transforming Face Mask Identification for Better Pandemic Control in...
DeepMask Transforming Face Mask Identification for Better Pandemic Control in...DeepMask Transforming Face Mask Identification for Better Pandemic Control in...
DeepMask Transforming Face Mask Identification for Better Pandemic Control in...
 
Streamlining Data Collection eCRF Design and Machine Learning
Streamlining Data Collection eCRF Design and Machine LearningStreamlining Data Collection eCRF Design and Machine Learning
Streamlining Data Collection eCRF Design and Machine Learning
 

Recently uploaded

QUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lesson
QUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lessonQUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lesson
QUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lesson
httgc7rh9c
 
Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...
Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...
Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...
EADTU
 

Recently uploaded (20)

Economic Importance Of Fungi In Food Additives
Economic Importance Of Fungi In Food AdditivesEconomic Importance Of Fungi In Food Additives
Economic Importance Of Fungi In Food Additives
 
REMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptxREMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptx
 
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxHMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
 
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
 
Tatlong Kwento ni Lola basyang-1.pdf arts
Tatlong Kwento ni Lola basyang-1.pdf artsTatlong Kwento ni Lola basyang-1.pdf arts
Tatlong Kwento ni Lola basyang-1.pdf arts
 
Interdisciplinary_Insights_Data_Collection_Methods.pptx
Interdisciplinary_Insights_Data_Collection_Methods.pptxInterdisciplinary_Insights_Data_Collection_Methods.pptx
Interdisciplinary_Insights_Data_Collection_Methods.pptx
 
Towards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptxTowards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptx
 
How to Add New Custom Addons Path in Odoo 17
How to Add New Custom Addons Path in Odoo 17How to Add New Custom Addons Path in Odoo 17
How to Add New Custom Addons Path in Odoo 17
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and Modifications
 
FICTIONAL SALESMAN/SALESMAN SNSW 2024.pdf
FICTIONAL SALESMAN/SALESMAN SNSW 2024.pdfFICTIONAL SALESMAN/SALESMAN SNSW 2024.pdf
FICTIONAL SALESMAN/SALESMAN SNSW 2024.pdf
 
Jamworks pilot and AI at Jisc (20/03/2024)
Jamworks pilot and AI at Jisc (20/03/2024)Jamworks pilot and AI at Jisc (20/03/2024)
Jamworks pilot and AI at Jisc (20/03/2024)
 
QUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lesson
QUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lessonQUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lesson
QUATER-1-PE-HEALTH-LC2- this is just a sample of unpacked lesson
 
21st_Century_Skills_Framework_Final_Presentation_2.pptx
21st_Century_Skills_Framework_Final_Presentation_2.pptx21st_Century_Skills_Framework_Final_Presentation_2.pptx
21st_Century_Skills_Framework_Final_Presentation_2.pptx
 
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdf
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdfUnit 3 Emotional Intelligence and Spiritual Intelligence.pdf
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdf
 
Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...
Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...
Transparency, Recognition and the role of eSealing - Ildiko Mazar and Koen No...
 
Introduction to TechSoup’s Digital Marketing Services and Use Cases
Introduction to TechSoup’s Digital Marketing  Services and Use CasesIntroduction to TechSoup’s Digital Marketing  Services and Use Cases
Introduction to TechSoup’s Digital Marketing Services and Use Cases
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptxCOMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
COMMUNICATING NEGATIVE NEWS - APPROACHES .pptx
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024
 

Effect of Oil Extraction Method on the Functional Properties of Biodiesels of Selected Oilseeds

  • 1. International Journal of Trend in Scientific Research and Development (IJTSRD) Volume 3 Issue 6, October 2019 Available Online: www.ijtsrd.com e-ISSN: 2456 – 6470 @ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 393 Effect of Oil Extraction Method on the Functional Properties of Biodiesels of Selected Oilseeds Gbashi M. Samuel, Yanshio T. Emmauel, Kingsley N. Nwankwo Department of Mechanical Engineering, University of Agriculture, Makurdi, Benue, Nigeria ABSTRACT Owing to the rise in demand for petroleum and environmental concerns, the search for alternative fuels has gained prominence. This study examined the effect of the method of extraction of the base oilonthefunctional propertiesof biodiesel produced from Jatropha, Yellow oleander and Castor oilseeds. The study revealed that the method of extraction had significant effect on the properties of the oil extracted and hence the biodiesel produced from the oil. Hydrogenation during oven heating after solvent extraction affected the unsaturation of the base oils and the biodiesels produced from them. The kinematic viscosities of the biodiesel samples obtained from the oil samples extracted by solvent extraction were generally higher than those obtained from the oil samples extracted by mechanical extraction. The flash and fire points of the biodiesel samples obtained from the oil samples extracted by solvent extraction were higher than that obtained from the oil samples extracted by mechanical extraction. The pour points of the biodiesels produced from the oils extracted by mechanical extraction were lower than those produced from the oils extracted by solvent extraction. KEYWORDS: Mechanical Extraction, Solvent Extraction, Jathropha, Yellow oleander, Castor, Oilseed, ChemophysicalProperties, Transesterification, Biodiesel Symbols: J: Jatropha, Y: Yellow Oleander, C: Castor, ME: Mechanical Extraction, SE: Solvent Extraction How to cite this paper: Gbashi M. Samuel | Yanshio T. Emmauel | Kingsley N. Nwankwo "EffectofOil ExtractionMethod on the Functional Properties of Biodiesels of Selected Oilseeds" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456- 6470, Volume-3 | Issue-6, October 2019, pp.393-397, URL: https://www.ijtsrd.com/papers/ijtsrd25 252.pdf Copyright © 2019 by author(s) and International Journal ofTrendinScientific Research and Development Journal. This is an Open Access article distributed under the terms of the Creative CommonsAttribution License (CC BY 4.0) (http://creativecommons.org/licenses/by /4.0) 1. INTRODUCTION In recent years, the use of biodiesels as alternative fuels as opposed to conventional diesel has been extensively investigated with the goal of ensuring energy security and reducing the environmental impacts of emission [1]. Biodiesel is mono-alkyl esters of fatty acids derived from vegetable oils or animal fats, produced by the transesterification of vegetable oils or animal fats with an alcohol [2]. It is a clear amber-yellow liquid obtained from vegetable oils, animal fats or grease. It’s non-flammability, biodegradability, non-toxicityandnon-explosivenessmakes it more environmentally friendly compared to petroleum diesel [3]. Emil et al. [4] noted that the cost of feedstock account for a large percent of the directbiodieselproduction costs; current trend is towards the use of inedible vegetable oils for biodiesel production. Jatropha (Jatropha curcas) is a non-edible oil bearing shrub. It grows under (sub) tropical conditions and can withstand conditions of severe drought and low soil fertility. Oil yield from Jatropha depends on climate, soil, rainfall and treatment duringsowingandharvesting[5].Yellowoleander (Thevetia peruviana)isa non-edibleoil-bearinganddrought- evergreen tropical shrub that belongs to the Apocynaceae family. It thrives well in all the climatic and vegetation belts of Nigeria. The plant starts flowering after one and a half year from plantation and there after bloomsthricea year [6]. Castor (Ricinus communis) is a specie of flowering plant in the spurge family (Euphorbiaceae) mostly native to the tropics. Castor is a hardy crop, easy to establish on the field, resistant to drought, tolerates different types of soil even marginal soil and yields 350 – 900 kg oil per hectare. Castor is an important oilseed crop with great utilitarian value in industry, pharmaceutical and agricultural sectors [7]. Two techniques are commonly employed in extracting oil from oilseeds, these are: mechanical and solvent extraction. Mechanical extraction is the mostconventional methodofoil extraction. It involves the application of pressure to already pre-treated oil-bearing products. It employs the use of devices like screw and hydraulic presses as a means of applying the pressure. The seeds are conveyed by a horizontally rotating metal screw into a barrel shaped outer casing with perforated walls. The products are continuously fed to the expeller, which crushes and pressestheoil outasit passes through the machine. The pressure ruptures the oil matrix in the product and oil flows through the perforations in the casing and is collected in a trough underneath [8]. Solvent extraction is the technique of removing one constituent from a solid by means of a liquid solvent. In this process, a chemical solvent such as n-hexane is used to saturate the crushed seed and pull out the oils. After completion of the extraction process the solvent is condensed and reclaimed. The liquid chosen should be a good selective solvent and its viscosity shouldbesufficiently low for it to circulate freely [9]. IJTSRD25252
  • 2. International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470 @ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 394 Biodiesel can be produced from vegetable oil by the process of transesterification. Transesterification is a term used to describe the reaction between alcohols and vegetable oil to yield esters (biodiesel) and glycerol. Base catalyzed transesterification referstotheprocessofreactingvegetable oil with an alcohol in the presence of a base catalyst and is used when the free fatty acid content of the oil is less than 1 %. In handling high free fatty acid content feedstock however, two-step acid-base catalyzed transesterification is often used [10]. Two-step acid-base catalyzed transesterification involves acid-catalyzed esterification followed by base catalyzed transesterification. In acid catalyzed esterification, the oil is reacted with an alcohol in the presence of a strong acid catalyst like sulphuric acid; this converts the free fatty acids to esters, yielding water as a by-product. The next step involves performing a base catalyzed transesterification [11]. This study compares the chemophysical and thermal properties of biodiesel produced from oils gotten from the selected vegetable oil seeds after mechanical extraction with those properties gotten after solvent extraction. 2. METHODOLOGY 2.1. Seeds Source Seeds of Jathropha (Jatropha curcas), Yellow oleander (Thevetia peruviana) and Castor (Ricinus communis) plants were sourced locally. 2.2. Seeds Preparation The seeds were cleaned and dried for several days until constant weights were obtained. 2.3. Oil Extraction Two methods were used for the extraction of oil from the collected oilseedsnamely:solventextractionandmechanical extraction. 2.3.1. Solvent extraction The seeds were dried and ground into powder. The ground seeds were dissolved in ethanol and left for 24 hours. The following day, the mixture was filtered and the chaff discarded. The filtrate, consisting of extracted lipids, dissolved in ethanol was sun-dried for 3 days after which it was dried in an electric oven to ensure the complete evaporation of ethanol and moisture. 2.3.2. Mechanical extraction The dried seeds were cleaned, roasted and fed into a mechanical oil press without removing the husk. The crude oil extracted was refined and made ready for blending and characterization. 2.4. Generation of Samples For each method of extraction, 12 oil samples were generated by blending the oils with each other in different proportions as shown in Table 1. 2.5. Determination of Chemophysical and Thermal Properties of Oil The Chemophysical and Thermal properties of the oil samples were determined using standard ASTM, AOAC and AOCS methods. 2.6. Production of biodiesel The oil samples generatedwereusedto producebiodiesel by two-step acid-base catalyzed transesterification [12]. This method of transesterification was chosen because most of the oil samples contained high free fatty acids. 2.6.1. Acid pre-treatment A solution of concentrated H2SO4 (1 % based on the oil weight) in methanol was mixed with each of the oil samples at 70 % w/w of methanol to oil ratio in a reaction bottle. The mixture was agitated at room temperature on an electrically operated flask shaker for about30minutes.Themixturewas then poured into a separating funnel and allowed to stand till phase separation occurred.The bottomlayerwasdrained for the next step transesterification. 2.6.2. Base catalyzed transesterification In the second step, KOH pellets (1.4 % based on oil weight) were dissolved in methanol.Thesolutionwasmixedwith the oil at a methanol to oil ratio of 24 % w/w. The mixture was agitated on a flask shaker for 1 hr at room temperature, poured into a separating funnel and allowed to stand for 24 hrs. The next day, the bottom layer (containing glycerol, excess methanol and unreacted catalyst) was drained out. The top layer (containing biodiesel and excess methanol) was collected for purification. 2.7. Determination of Chemophysical and Thermal Properties of Biodiesel The chemophysical and thermal properties of the biodiesel samples were determined using standard ASTM, AOAC and AOCS methods. 3. RESULTS/DISCUSSION The result of the percentage biodiesel yield for mechanical and solvent extraction is presented in Table 2. The iodine values of the base oil samples for mechanical and solvent extraction are compared in Figure 1. The viscosities of the biodiesel samples for mechanical and solvent extraction of the base oil are compared in Figure 2. The flash points of the biodiesel samples for mechanical and solvent extraction of the base oil are compared in Figure 3. The fire points of the biodiesel samples for mechanical and solvent extraction of the base oil are compared in Figure 4. The pour points of the biodiesel samples for mechanical and solvent extraction of the base oil are compared in Figure 5. Table1: Blending Proportion Sample No Proportion S1 J100% S2 Y100% S3 C100% S4 J50% + Y50% S5 J50% + C50% S6 Y50% + C50% S7 J70% + Y30% S8 J30%+ Y70% S9 J70% + C30% S10 J30%+ C70% S11 Y70% + C30% S12 Y30%+ C70%
  • 3. International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470 @ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 395 Table2: Percentage Biodiesel Yields - Mechanical and Solvent Extractions Sample Code Percentage Biodiesel Yield (%) ME SE J 68 65 Y 66 50 C 50 50 Figure1: Iodine Values of Oil Samples - Mechanical and Solvent Extractions Figure 2: Viscosity of Biodiesel Samples - Mechanical and Solvent Extractions Figure3: Flash Point of Biodiesel Samples - Mechanical and Solvent Extractions
  • 4. International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470 @ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 396 Figure4: Fire Point of Biodiesel Samples - Mechanical and Solvent Extractions Figure5: Pour Point of Biodiesel Samples - Mechanical and Solvent Extractions From Table 2, the average biodiesel yield from the oil samples obtained by mechanical extraction was 61 % whereas that from the oil samples obtained by solvent extraction was 55 %. Higher yields were obtained from the samples extracted by mechanical extraction because of the lower free fatty acid content of the oil samples which resulted in minimal refining loss during acid pre-treatment [10]. The iodine values of the base oil samples for mechanical and solvent extraction are compared inFigure1.Fromtheresult, it is seen that the iodine values of the base oil samples extracted by solvent extractionarecomparativelylowerthan those of the base oil samples extracted by mechanical extraction. This shows that the oil samples extracted by solvent extraction had lower concentration of unsaturated fatty acids. The lower concentration of unsaturated fatty acids in the oil samples extracted by solvent extraction may be attributed to hydrogenation in the oil samples during the drying process done after solvent extraction. The heating of vegetable oils results in a marginal decrease in their unsaturated fatty acids due to hydrogenation [13], [14] and [15]. After production of biodiesel, it was observed that the concentration of unsaturated fatty acid esters of the biodiesel samples were proportionate to the concentration of unsaturated fatty acids in the base oils. Hence, biodiesel samples obtained from the oil samples extracted by mechanical extraction had a higher concentration of unsaturated fatty acid esters than those obtained from oil samples extracted by solvent extraction. In figure 2, the kinematic viscosities of the biodiesel samples for mechanical and solvent extraction of the base oil are compared. The result shows that the biodiesel samples produced from oil samples extracted by mechanical extraction had lowerviscositiescomparedtothoseproduced from oil samples extracted by solvent extraction. The lower viscosities of the biodiesel samples obtained from the oil samples extracted by mechanical extraction compared to those from the oil samples extracted by solvent extraction may be linked to the higher concentration of unsaturated fatty acid esters in the former. The decrease in kinematic viscosity with increase in unsaturation was observed by Zdzislaw and Anna [16]. Figure 3 compares the flash points of the biodiesel samples obtained from the oil samples extracted by mechanical extraction with those from the oil samples extracted by solvent extraction. Figure4likewisecomparesthefire points of the biodiesel samples obtained from the oil samples extracted by mechanical extraction with those from the oil samples extracted by solvent extraction. The flash and fire points of the biodiesel samplesobtainedfromtheoil samples extracted by solvent extraction were generally higher than
  • 5. International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470 @ IJTSRD | Unique Paper ID – IJTSRD25252 | Volume – 3 | Issue – 6 | September - October 2019 Page 397 those obtained from the oils samples extracted by mechanical extraction. This can be linked to the high viscosities of the biodiesel samples obtained from the oil samples extracted by solvent extraction compared to those obtained from the oil samples extracted by mechanical extraction. Since the biodiesel samples obtained from the oil samples extracted by mechanical extractionhadhigherconcentration unsaturated fatty acid esters, theyhadlowerpour pointsand better flow properties compared to the biodiesel samples obtained from oil samples extracted by solvent extraction [17]. 4. CONCLUSION The study revealed that the method of extraction had significant effect on the properties of the oils extracted and hence the biodiesels produced from the oil. Mechanical extraction of the base oil resulted in oil samples that yielded more biodiesel than solvent extraction. The kinematic viscosities of the biodiesel samples obtained from the oil samples extracted by solvent extraction were generally higher than those obtained fromtheoil samplesextracted by mechanical extraction. The flash and fire points of the biodiesel samples obtainedfromtheoil samplesextractedby solvent extraction were higher than that obtained from the oil samples extracted by mechanical extraction. The pour points of the biodiesel produced from the oils extracted by mechanical extraction were lower than those of the biodiesels produced from the oils extracted by solvent extraction. REFERENCES [1] Refaat, A. A., (2010). Different Techniques for the Production of Biodiesel from Waste Vegetable Oil. International Journal of Environmental Science and Technology, 7 (1): 183-213. [2] Knothe, G. (2006). Analyzing Biodiesel: Standards and other Methods. Journal of Oil Chemistry, 5(3): 823-830. [3] Demirbas A. (2005), “Biodiesel production from vegetable oils via catalytic and non-catalytic supercritical methanol transesterification methods,” Progress in Energy and Combustion Science, 31(5):466- 487. [4] Emil, A., Zahira, Y. and Siti, K. (2009). Characteristic and Composition of Jatropha Curcas Oil Seed from Malaysia and its Potential as Biodiesel Feedstock. European Journal ofScientific Research,29(3):396-403. [5] Romano, S. D. and Sorichetti, P. A. (2011). Dielectric Spectroscopy in Biodiesel Production and Characterization.GreenEnergyandTechnology,3(2):9- 12. [6] Yarkasuwa, C. I., Wilson, D. and Michael, E. (2013). Production of Biodiesel from Yellow Oleander (Thevetia Peruviana) Oil and Its Biodegradability. Journal of the Korean Chemical Society, 57(3): 765 – 777. [7] Salihu, B. Z., Gana, A. K. and Apuyor,B.O.(2014).Castor Oil Plant (Ricinus communis L.): Botany, Ecology and Uses. International Journal of Science and Research, 3(5): 835-856. [8] Ager, P. (2011). The Effects of Processing Methods on Chemo-physical, Rheological and Oxidation Properties of Jathropha (Jathropha curcas) and Calabash (Lageneria vulgaris) Oil Lubricants. Masters thesis. Department of Mechanical Engineering, University of Agriculture, Makurdi, Nigeria. 151pp. [9] Harker, J. H., Backhurst, J. R. Richardson, J.F., (2002). Chemical Engineering 2nd ed., Butterworth Heinemann [10] Bredeli, J. K. (2011). Synthesis of Biodiesel from Triglyceride Oil. 1st Edition, Bangladesh. Bio-Tech Press. 321pp. [11] Pintilie, L., Ileana, P. and Cristiana, H. (2014). Studies on Two-step Acid-baseCatalyzedTransesterificationof Refined Ostrich Oil. JournalofRenewableEnergy, 19(2): 4555-4567. [12] Berchmans, H. J. and Hirata, S. (2008). Biodiesel Production from Crude Jatropha Curcas Seed Oil witha High Content of Free Fatty Acids. Bioresource Technology,99(6):101-176. [13] Alireza, S., Tan, C. P., Hamed, M. and Che Man, Y. B. (2010). Effect of Frying Process on Fatty Acid Composition and Iodine Value of Selected Vegetable Oils and their Blends. International Food Research Journal, 17: 295-302. [14] Adejumo, B. A., Alakowe, A.T and Obi, D. E (2013). Effect of Heat Treatment on the Characteristics and Oil Yield of Moringa Oleifera Seeds. The International Journal of Engineering and Science, 2(1): 232-239. [15] Van de Vort, F., Ismail, A., Sedman, J. and Emo, G. (1994). Monitoring the Oxidation of Three Edible Oils by FTIR Spectroscopy. Journal of American Oil Chemical Society, 71: 243-253. [16] Zdzislaw, Z. E. and Anna, K. (2003). Chemical and Functional Properties of Food Lipids. 3rd Edition, New Jersey, CRC Press. 400pp. [17] Devaraj, A. (2013). The Effect of Biofertilizer Application on Chemical CompositionofOil fromMicro propagated Jatropha Curcas L. Seeds. Journal of Biofuels, 2(4): 567-577.