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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 04 Issue: 09 | Sep -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 261
ASSESSMENT OF WATER QUALITY INDEX FOR THE HOLALKERE AREA,
CHITRADURGA DISTRICT, KARNATAKA, IN SOUTH INDIA.
Dhanashree Nerlikara, U.Imran Bashab, M.Rajasekharc,U.Sureshd
aAsst.Professor, Department of Civil Engineering, Sri Venkateswara College of Engineering,
Bangalore, Karnataka, India.
b Research Scholar, Department of Geology, Sri Venkateswara University, Tirupathi, A.P, India.
cResearch Scholar, Department of Geology, Yogi Vemana University, Kadapa, A.P, India.
d Asst. Professor, Department of Geology, Sri Venkateswara University, Tirupathi, A.P, India.
---------------------------------------------------------------------***---------------------------------------------------------------------
Abstract - The present study was intended to calculate
water quality index (WQI) of Holakere area, Chitradurga,
district, Karnataka. In order to ascertain to the quality of
water for the public consumption, irrigation , agriculture, in
the present study area sixteen water sampleswerecollected
and analyzed the different physico-chemical characters like
PH, Total dissolved solids, Hardness, Fluoride, Iron, Nitrite,
Chlorides, Calcium and Magnesium, Sulphates. Most of the
components were in permissible limits. Based on the
analyzed values calculated the water quality indexforthe all
samples. The water quality index lies between 21.90 to
63.73. Major of the samples fall excellent to good category.
Key words: Ground water samples, physico-chemical
analysis, water quality index,
1. INTRODUCTION
Water is an essential commodity with an un paralleledvalue
after air and plays significant role in the biosphere (in
animals and plants kingdoms),atmosphere (air) and
lithosphere (rock units).It represents a unique feature in
every settlement for drinking, sanitation, washing, fishing,
recreation and industrial uses (Nagarajuandveeraswamy et
al.,2017). The WQI was first developed by Horton in the
early 1970s, is basically a mathematical meansofcalculating
a single value from multiple test results. The index result
represents the level of water quality in aim study area, such
as Bore wells, ponds or stream. After Horton a number of
workers all over the world developed WQI basedonratingof
different water quality parameters.Basicallya WQIattempts
to provide a mechanism for presenting a cumulatively
derived, numerical expression defining a certain level of
water quality (Miller et al., 1986).
2. Study area
In the present study area lies between the14°3'1.65"N and
longitude 76°10'52.58"E values and it is faced a deficit of
rain fall last three years with a 668mm and the major rivers
drained generally gently sloping from South-West to East
and the majority of the area occupied by the peninsular
gneissic complex like granite, gneisses and the schist and
water bearing formation occurred in weathered formations
and structural geological disturbancelikefaultsonly.Ground
water occurs underwater-tableconditionandsemi-confined
condition. Ground water exploration reveals that aquifers
were encountered between 25 mbgl to 169 mbgl. In
Holalkere taluk bore wells were drilled from a minimum
depth of 123.66 mbgl to a maximum of 200mbgl. Depth of
weathered zone ranges from 11.5 to 30.3 mbgl. Yield ranges
from 0.04 to 6.3 lps. The major portion of the study area
were occupied deep & shallow black soil, mixed red & black
soil, red loamy & sandy soil(CGWB).
Fig 1: Location Map of the Study Area
3. Materials and Methods
The water samples from the water bodies were collected at
an interval of 30 days and analyzed, for 16 samples physico
chemical parameters by following the established
procedures. PH, Electrical conductivity, Total dissolved
solids, Bicarbonate, Chloride, Sulphate,Calcium,Magnesium,
Iron, Nitrate, Alkalinity and Total hardness.Theresultswere
evaluated and compared with world health organization
(WHO), Indian council of medical research and Bureau of
Indian standard (BIS) water quality standards.
In this study, for the calculation of water quality index,
eleven important parameter were chosen, the WQI hasbeen
calculated by using the standards of drinking water quality
recommended by the world health organization, bureau of
Indian standards and Indian council for medical research.
The weighted arithmetic index methodhasbeenusedfor the
calculation of WQI of the water body. Further quality rating
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 04 Issue: 09 | Sep -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 262
or sub index was calculated using the following expression
(Yogendra et al., 2007).
qn=100[Vn-Vio]/[Sn-Vio]
(Let there be n water quality parameterandqualityrating or
sub index ( qn ) corresponding to nthparameteris a number
reflecting the relative value of this parameter in the polluted
water with respective its standard permissible value.)
qn = Quality rating to the nth water quality parameter
Vn=Estimated value of thenthparameterata givensampling
station
Sn= Standard acceptable value of the nth parameter
Vio = Ideal value of nth parameter in potable water (i.e.,0 for
all other parameter except the parameter pH and dissolved
oxygen(7.0 and 14.6 mg/l respectively)
Unit weight was calculated by a value inverselyproportional
to the recommended standard valueSnofthecorresponding
parameter
Wn =K/Sn
Wn= unit weight for the nth parameters
Sn= standard value of the nth parameter
K=constant for proportionality
the overall water quality index wax calculated by
aggregating the quality rating with the unit weight linearly.
WQI=∑qn Wn/∑Wn
Table-1 status of water quality based on water quality
index (WQI)
WQI range Status
< 50 Excellent
50-100 Good
100-200 Poor
200-300 Very poor
>300 Unfit for drinking
Table -2 Drinking water standards recommending agencies
and unit weights (all values except pH and electrical
conductivity are in mg/l.
S.No Parameter ICMR
Standrd(Sn)
Unit
Weight(Wn)
1 pH 8.5 0.141
2 Total Hardness 600 0.002
3 Sulphate 250 0.005
4 Flouoride 1 1.200
5 Chloride 250 0.005
6 Total Dissolved
Solids
500 0.002
7 Calcium 75 0.016
8 Magnesium 50 0.024
9 Iron 0.03 0.006
10 Nitrate 45 0.012
11 Alkalinity 100 0.012
Table -3 Physico chemical analysis and of different
constituents of water samples
S
.
n
o
PH
Ha
rd
ne
ss
Su
lp
ha
te
Flu
ori
de
Ch
lo
ri
de
Td
s
Ca
lci
u
m
M
ag
ne
si
u
m
Iro
n
Ni
tr
at
e
Alk
alin
ity
1 8.1 60 35
0.4
3 30
29
0 70 20
0.0
4 9
17
8
2 7.7 90
10
8
0.4
3 84
70
0 68 30
0.0
4 20
17
6
3 7.6 92 84
0.2
7
11
2
82
0 64 32
0.0
1 25
22
6
4 7.5
21
0 46
0.3
6 55
82
0 80 70
0.0
1 15
51
0
5 7.5
20
2 46
0.3
7 56
52
0 40 80
0.0
7 14
19
6
6 7.3
20
0 45
0.0
9 80
48
0 63 79
0.0
8 14
21
0
7 7.4
11
8 63
0.1
6
12
5
76
0 65 69
0.0
3 30
24
2
8 7.6
27
6 63
0.5
1 83
68
0 62 89
0.0
1 21
17
6
9 7.9
26
6 63
0.5
8 19
19
0 72 82
0.0
4 6 54
1
0 7.6
27
8 22
0.5
2 84
69
0 70 89
0.0
1 20
17
4
1
1 7.6
27
8 48
0.5
2 52 52 92
27
6
0.0
4 20 82
1
2 8.1
39
4
10
9
0.1
8
12
5
68
0 40
11
2
0.0
3 29
23
6
1
3 7.7
38
2
10
9
0.1
4 44
34
0 46
12
0
0.1
1 15
11
2
1
4 7.3
38
2
10
9
0.3
9
11
4
85
0 49
12
9
0.0
1 27
23
4
1
5 8.1
20
0 84
0.1
2 33
22
0 52
13
0
0.0
8 8 80
1
6 7.5
20
0 84
0.3
8
10
3
47
0 60
12
0
0.0
7 23
12
4
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 04 Issue: 09 | Sep -2017 www.irjet.net p-ISSN: 2395-0072
© 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 263
Table 4 Water Quality Index
S.No WQI=∑qn
Wn/∑Wn
Status
1 49.10613877 Excellent
2 49.36212915 Excellent
3 36.25540587 Excellent
4 47.48953233 Excellent
5 45.3274906 Excellent
6 21.90867498 Excellent
7 28.16174929 Excellent
8 57.90867498 Excellent
9 62.61254433 Good
10 58.80676891 Good
11 63.73747306 Good
12 31.82280637 Excellent
13 26.91304537 Excellent
14 49.26238862 Excellent
15 25.66189028 Excellent
16 47.37116102 Excellent
3. RESULT:
The WQI for16 samples ranges from 21.90 to
63.73.Almost ninety nine percent of the samples fall in
excellent and the remaining fall in good category, As per the
ICMR limit for drinking water all water fall in permissible
limit. The high value of WQI at these stations has been found
to be mainly from the higher values of total dissolved solids,
calcium, hardness, fluorides, bicarbonate, chloride and
manganese in the groundwater
REFERENCES
1.Miller,W.W.Joung,etal.,1986.Identificationofwaterqualitydif
ferencesinNevadathroughindexapplication.J.EnvironQuality
15, 265-272.
2. Yogendra et al., 2007. Determination of water quality
index and suitability of an urban water body in
shimogatown,karnataka.
3.APHA.1995,AMPHA.Standardmethodsfortheexamination
of water and waste water,19th edition,american public
health association, washington Dc.
4. BIS 1993.Analysis of water and waste water, Bureau of
Indian standard, New Delhi.
5. Nagaraju and veeraswamy, 2017 Assessement of ground
water quality in Gudur area of Andhra pradesh volume by
FEB 26-NO.5/2017 PAGES 3597-3606.
6. BIS, 2012. Indian Standard drinking water specifications
IS: 10500, Bureau of Indian Standards, New Delhi.
7. Manual on water supply and treatment (second edition),
C.P.H.E.E.O., Ministry of Works and Housing, New Delhi,
(1976).
BIOGRAPHIES
Dhanashree Nerlikar
Asst.Professor, Department
of Civil Engineering,
Sri Venkateswara College
of Engineering, Bangalore,
Karnataka, India.
U.Imran Basha
Research Scholar,
Department of Geology, Sri
Venkateswara University,
Tirupathi, A.P, India.
M.Rajasekhar
Research Scholar,
Department of Geology,
Yogi Vemana University,
Kadapa, A.P, India.
U.Suresh
Asst.Professor, Department
of Geology, Sri
Venkateswara University,
Tirupathi, A.P, India.

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  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 04 Issue: 09 | Sep -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 261 ASSESSMENT OF WATER QUALITY INDEX FOR THE HOLALKERE AREA, CHITRADURGA DISTRICT, KARNATAKA, IN SOUTH INDIA. Dhanashree Nerlikara, U.Imran Bashab, M.Rajasekharc,U.Sureshd aAsst.Professor, Department of Civil Engineering, Sri Venkateswara College of Engineering, Bangalore, Karnataka, India. b Research Scholar, Department of Geology, Sri Venkateswara University, Tirupathi, A.P, India. cResearch Scholar, Department of Geology, Yogi Vemana University, Kadapa, A.P, India. d Asst. Professor, Department of Geology, Sri Venkateswara University, Tirupathi, A.P, India. ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - The present study was intended to calculate water quality index (WQI) of Holakere area, Chitradurga, district, Karnataka. In order to ascertain to the quality of water for the public consumption, irrigation , agriculture, in the present study area sixteen water sampleswerecollected and analyzed the different physico-chemical characters like PH, Total dissolved solids, Hardness, Fluoride, Iron, Nitrite, Chlorides, Calcium and Magnesium, Sulphates. Most of the components were in permissible limits. Based on the analyzed values calculated the water quality indexforthe all samples. The water quality index lies between 21.90 to 63.73. Major of the samples fall excellent to good category. Key words: Ground water samples, physico-chemical analysis, water quality index, 1. INTRODUCTION Water is an essential commodity with an un paralleledvalue after air and plays significant role in the biosphere (in animals and plants kingdoms),atmosphere (air) and lithosphere (rock units).It represents a unique feature in every settlement for drinking, sanitation, washing, fishing, recreation and industrial uses (Nagarajuandveeraswamy et al.,2017). The WQI was first developed by Horton in the early 1970s, is basically a mathematical meansofcalculating a single value from multiple test results. The index result represents the level of water quality in aim study area, such as Bore wells, ponds or stream. After Horton a number of workers all over the world developed WQI basedonratingof different water quality parameters.Basicallya WQIattempts to provide a mechanism for presenting a cumulatively derived, numerical expression defining a certain level of water quality (Miller et al., 1986). 2. Study area In the present study area lies between the14°3'1.65"N and longitude 76°10'52.58"E values and it is faced a deficit of rain fall last three years with a 668mm and the major rivers drained generally gently sloping from South-West to East and the majority of the area occupied by the peninsular gneissic complex like granite, gneisses and the schist and water bearing formation occurred in weathered formations and structural geological disturbancelikefaultsonly.Ground water occurs underwater-tableconditionandsemi-confined condition. Ground water exploration reveals that aquifers were encountered between 25 mbgl to 169 mbgl. In Holalkere taluk bore wells were drilled from a minimum depth of 123.66 mbgl to a maximum of 200mbgl. Depth of weathered zone ranges from 11.5 to 30.3 mbgl. Yield ranges from 0.04 to 6.3 lps. The major portion of the study area were occupied deep & shallow black soil, mixed red & black soil, red loamy & sandy soil(CGWB). Fig 1: Location Map of the Study Area 3. Materials and Methods The water samples from the water bodies were collected at an interval of 30 days and analyzed, for 16 samples physico chemical parameters by following the established procedures. PH, Electrical conductivity, Total dissolved solids, Bicarbonate, Chloride, Sulphate,Calcium,Magnesium, Iron, Nitrate, Alkalinity and Total hardness.Theresultswere evaluated and compared with world health organization (WHO), Indian council of medical research and Bureau of Indian standard (BIS) water quality standards. In this study, for the calculation of water quality index, eleven important parameter were chosen, the WQI hasbeen calculated by using the standards of drinking water quality recommended by the world health organization, bureau of Indian standards and Indian council for medical research. The weighted arithmetic index methodhasbeenusedfor the calculation of WQI of the water body. Further quality rating
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 04 Issue: 09 | Sep -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 262 or sub index was calculated using the following expression (Yogendra et al., 2007). qn=100[Vn-Vio]/[Sn-Vio] (Let there be n water quality parameterandqualityrating or sub index ( qn ) corresponding to nthparameteris a number reflecting the relative value of this parameter in the polluted water with respective its standard permissible value.) qn = Quality rating to the nth water quality parameter Vn=Estimated value of thenthparameterata givensampling station Sn= Standard acceptable value of the nth parameter Vio = Ideal value of nth parameter in potable water (i.e.,0 for all other parameter except the parameter pH and dissolved oxygen(7.0 and 14.6 mg/l respectively) Unit weight was calculated by a value inverselyproportional to the recommended standard valueSnofthecorresponding parameter Wn =K/Sn Wn= unit weight for the nth parameters Sn= standard value of the nth parameter K=constant for proportionality the overall water quality index wax calculated by aggregating the quality rating with the unit weight linearly. WQI=∑qn Wn/∑Wn Table-1 status of water quality based on water quality index (WQI) WQI range Status < 50 Excellent 50-100 Good 100-200 Poor 200-300 Very poor >300 Unfit for drinking Table -2 Drinking water standards recommending agencies and unit weights (all values except pH and electrical conductivity are in mg/l. S.No Parameter ICMR Standrd(Sn) Unit Weight(Wn) 1 pH 8.5 0.141 2 Total Hardness 600 0.002 3 Sulphate 250 0.005 4 Flouoride 1 1.200 5 Chloride 250 0.005 6 Total Dissolved Solids 500 0.002 7 Calcium 75 0.016 8 Magnesium 50 0.024 9 Iron 0.03 0.006 10 Nitrate 45 0.012 11 Alkalinity 100 0.012 Table -3 Physico chemical analysis and of different constituents of water samples S . n o PH Ha rd ne ss Su lp ha te Flu ori de Ch lo ri de Td s Ca lci u m M ag ne si u m Iro n Ni tr at e Alk alin ity 1 8.1 60 35 0.4 3 30 29 0 70 20 0.0 4 9 17 8 2 7.7 90 10 8 0.4 3 84 70 0 68 30 0.0 4 20 17 6 3 7.6 92 84 0.2 7 11 2 82 0 64 32 0.0 1 25 22 6 4 7.5 21 0 46 0.3 6 55 82 0 80 70 0.0 1 15 51 0 5 7.5 20 2 46 0.3 7 56 52 0 40 80 0.0 7 14 19 6 6 7.3 20 0 45 0.0 9 80 48 0 63 79 0.0 8 14 21 0 7 7.4 11 8 63 0.1 6 12 5 76 0 65 69 0.0 3 30 24 2 8 7.6 27 6 63 0.5 1 83 68 0 62 89 0.0 1 21 17 6 9 7.9 26 6 63 0.5 8 19 19 0 72 82 0.0 4 6 54 1 0 7.6 27 8 22 0.5 2 84 69 0 70 89 0.0 1 20 17 4 1 1 7.6 27 8 48 0.5 2 52 52 92 27 6 0.0 4 20 82 1 2 8.1 39 4 10 9 0.1 8 12 5 68 0 40 11 2 0.0 3 29 23 6 1 3 7.7 38 2 10 9 0.1 4 44 34 0 46 12 0 0.1 1 15 11 2 1 4 7.3 38 2 10 9 0.3 9 11 4 85 0 49 12 9 0.0 1 27 23 4 1 5 8.1 20 0 84 0.1 2 33 22 0 52 13 0 0.0 8 8 80 1 6 7.5 20 0 84 0.3 8 10 3 47 0 60 12 0 0.0 7 23 12 4
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 04 Issue: 09 | Sep -2017 www.irjet.net p-ISSN: 2395-0072 © 2017, IRJET | Impact Factor value: 5.181 | ISO 9001:2008 Certified Journal | Page 263 Table 4 Water Quality Index S.No WQI=∑qn Wn/∑Wn Status 1 49.10613877 Excellent 2 49.36212915 Excellent 3 36.25540587 Excellent 4 47.48953233 Excellent 5 45.3274906 Excellent 6 21.90867498 Excellent 7 28.16174929 Excellent 8 57.90867498 Excellent 9 62.61254433 Good 10 58.80676891 Good 11 63.73747306 Good 12 31.82280637 Excellent 13 26.91304537 Excellent 14 49.26238862 Excellent 15 25.66189028 Excellent 16 47.37116102 Excellent 3. RESULT: The WQI for16 samples ranges from 21.90 to 63.73.Almost ninety nine percent of the samples fall in excellent and the remaining fall in good category, As per the ICMR limit for drinking water all water fall in permissible limit. The high value of WQI at these stations has been found to be mainly from the higher values of total dissolved solids, calcium, hardness, fluorides, bicarbonate, chloride and manganese in the groundwater REFERENCES 1.Miller,W.W.Joung,etal.,1986.Identificationofwaterqualitydif ferencesinNevadathroughindexapplication.J.EnvironQuality 15, 265-272. 2. Yogendra et al., 2007. Determination of water quality index and suitability of an urban water body in shimogatown,karnataka. 3.APHA.1995,AMPHA.Standardmethodsfortheexamination of water and waste water,19th edition,american public health association, washington Dc. 4. BIS 1993.Analysis of water and waste water, Bureau of Indian standard, New Delhi. 5. Nagaraju and veeraswamy, 2017 Assessement of ground water quality in Gudur area of Andhra pradesh volume by FEB 26-NO.5/2017 PAGES 3597-3606. 6. BIS, 2012. Indian Standard drinking water specifications IS: 10500, Bureau of Indian Standards, New Delhi. 7. Manual on water supply and treatment (second edition), C.P.H.E.E.O., Ministry of Works and Housing, New Delhi, (1976). BIOGRAPHIES Dhanashree Nerlikar Asst.Professor, Department of Civil Engineering, Sri Venkateswara College of Engineering, Bangalore, Karnataka, India. U.Imran Basha Research Scholar, Department of Geology, Sri Venkateswara University, Tirupathi, A.P, India. M.Rajasekhar Research Scholar, Department of Geology, Yogi Vemana University, Kadapa, A.P, India. U.Suresh Asst.Professor, Department of Geology, Sri Venkateswara University, Tirupathi, A.P, India.