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By
Ghassan hadi
Assessment of Water Quality of Himayat
Sagar Lake
Hyderabad,
Telangana State, India, Using
Physico-Chemical Parameters.
Introduction
.
The storage capacity of the lake is about 4
TMC.
an artificial lake about 20 km from Hyderabad
e lake catchment area about 1346 sq km
Himayat Sagar and Osman Sagar lakes provided continuous
The water supply to the twin cities of Hyderabad and
Secunderabad until recently.
*saving the city from floods
*The road atop the lake is popular for a
The grassy area adjoining the lake is an ideal place
for picnic and recreation spot.
What is the purposes of thisWhat is the purposes of this
studystudy.
* Himayat Sagar is one of important source of
drinking water
*increasing water pollution day by day required
continuously monitoring and assessment to the all
parameters of water and what type of treatment
should adopted if the parameters not within
acceptable levels
Scope and Objectives
1- assess the quality of water collected from this lake
2-Analysis of pollution status of the Lake
3-Studying the long-term effects on the ecosystem.
4- Conducting the status and monitoring of
wetland resources by studying their Physico
-Chemical parameters.
Fig.1: LOCATION MAP OF THE STUDY AREA
MethodologyMethodology
1- field work (collecting samples)
2- Lab work (analysis
the samples
3- Comparison of Physico-Chemical
Analysis Data
with
IS 10500:2012
BIS?
4-discusion the results &giving
suggestions
 PH
 EC
 TDS
 Calcium(Ca2+
)
 Nitrates(NO3
-
)
 Chlorides(Cl-
)
 Fluorides
 Magnesium
 Carbonates (CO3)
 Bicarbonates (HCO3)
 Sodium Na
 Potassium
 Sulphates
 Total Hardness
 Total alkalinity
Parameters
Results
S.N
o pH EC
TD
S
T
H
CO3
2-
HCO
3
-
TA
NO3
2-
SO4
2
-
Ca2
+
Mg2
+
Na
+
K+
F-
Cl
1 8.1
40
0 256 70 9 128 120 16 29 16 7 17 3
0.
5 18
2 8.1
80
0 512 75 6 153 135 4 29 18 7 17 3
0.
5 39
3 7.9
80
0 512 75 9 122 115 5 29 18 7 16 3
0.
6 32
4 8.1
80
0 512 75 6 159 140 7 25 16 9 15 3
0.
5 50
5 8.0
90
0 576 70 6 171 150 5 27 18 6 14 3
0.
5 14
6 8.0
60
0 384 25 6 146 130 3 27 24 9 15 3
0.
5 32
7 7.9
70
0 448 80 6 159 130 4 67 26 4 19 3
0.
5 25
Table 1: Various Physico- Chemical Parameters of Himayath
Sagar Lake
8 7.9
70
0 448 70 6 122 110 4 23 20 5 13 3 0.5 28
9 7.9
60
0 384 65 0 171 140 4 27 20 4 15 3 0.5 32
10 7.9
30
0 192 55 6 116 105 4 22 16 4 14 3 0.5 36
11 7.8
50
0 320
15
5 6 201 175 17 36 20 26 32 3 0.5 43
12 7.8
80
0 512
15
5 15 403 362 16 45 40 13 60 3 1.7 57
13 7.9
70
0 448
14
5 15 238 220 13 51 14 27 52 1 2.2 75
S.N
o pH EC
TD
S TH
CO3
2-
HCO
3
-
TA
NO3
2- SO4
2-
Ca2+
Mg
2+
Na+
K+
F-
Cl-
Table 2: Comparison of Physico-Chemical Analysis Data with IS 10500:2012
 
        % of samples
exceeding
acceptable limitWater
Parameters
Minimum Maximu
m
Average IS 10500 :
2012
PH 7.8 8.1 7.9 6.5-8.5 0
EC 300 900 661.5 Not
Mentioned
 
TDS 192 576 423.4 500 38
Total Hardness 25 155 85.8 200 0
CO3 0 15 7.4 Not
Mentioned
 
HCO3 116 403 176 Not
Mentioned
 
Total
Alkalinity
105 362 156.4 200 15
Sodium 13 60 23 Not
Mentioned
 
Potassium 1 3 3 Not
Mentioned
 
Calcium 14 40 21 75 0
Magnesium 4 27 10 30  
So
All parameters values within the acceptable
limited except three parameters TDS and Total
alkalinity and fluoride
TDS is high in samples No (2 & 3 & 4 & 5 & 12 )
For Total alkalinity is high in samples NO(12 & 13)
Fluoride is high in samples no ( 12 &13)
conclusion
Table 3: Comparison of Physico-Chemical Analysis Data with IS
10500:2012
 
        % of
samples
exceeding
acceptable
limit
Water
Parameters
Minimum Maximu
m
Average IS 10500 :
2012
TDS 192 576 423.4 500 38
Total
Alkalinity
105 362 156.4 200 15
Fluoride 0.5 2.2 0.7 1 15
TDS
is a measure of the amount of material dissolved in water. This
material can include carbonate, bicarbonate, chloride, sulfate,
phosphate, nitrate, calcium, magnesium, sodium, organic ions,
and other ions
Water with high TDS often has a bad taste and/or high water
hardness, and could result in a laxative effect.
Factors Affecting Total Dissolved Solids
Geology and Soil in the Watershed
Urban Runoff
Fertilizer Runoff
Alkalinity is a measure of the
buffering capacity of water,
Measuring alkalinity is important in
determining a stream's ability to
neutralize acidic pollution from
rainfall or wastewater
Factors Affecting Alkalinity
Geology and Soils
Changes in pH
Sewage Outflow
Fluoride
Level in water Effects
0.8–1.2 mg/l Prevention of tooth decay,
strengthening of skeleton
Above 1.5 mg/l Fluorosis: pitting of tooth
enamel and deposits in
bones
Above about 10 mg/l Crippling skeletal fluorosis
Fluoride is a desirable substance: it can
prevent or reduce dental decay and
strengthen bones, thus preventing bone
fractures in older people
We should
Thank you
Total Hardness
In the study area TH ranges from 25-155 mg/lit with an
average of 85.8 mg/lit. All samples are within the acceptable
limit (IS 10500:2012).
Fluoride
In the study area concentration of Fluoride
in the water samples ranges from 0.5-2.2 mg/lit with an
average of 0.7 mg/lit. All samples are within the acceptable
limits (IS 10500:2012).
Thank you
 Assessment of Water Quality of Himayat  Sagar Lake   Hyderabad,  Telangana State, India, Using  Physico-Chemical Parameters

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Assessment of Water Quality of Himayat Sagar Lake Hyderabad, Telangana State, India, Using Physico-Chemical Parameters

  • 1. By Ghassan hadi Assessment of Water Quality of Himayat Sagar Lake Hyderabad, Telangana State, India, Using Physico-Chemical Parameters.
  • 2. Introduction . The storage capacity of the lake is about 4 TMC. an artificial lake about 20 km from Hyderabad e lake catchment area about 1346 sq km
  • 3. Himayat Sagar and Osman Sagar lakes provided continuous The water supply to the twin cities of Hyderabad and Secunderabad until recently.
  • 4. *saving the city from floods *The road atop the lake is popular for a
  • 5. The grassy area adjoining the lake is an ideal place for picnic and recreation spot.
  • 6. What is the purposes of thisWhat is the purposes of this studystudy. * Himayat Sagar is one of important source of drinking water *increasing water pollution day by day required continuously monitoring and assessment to the all parameters of water and what type of treatment should adopted if the parameters not within acceptable levels
  • 7. Scope and Objectives 1- assess the quality of water collected from this lake 2-Analysis of pollution status of the Lake 3-Studying the long-term effects on the ecosystem. 4- Conducting the status and monitoring of wetland resources by studying their Physico -Chemical parameters.
  • 8. Fig.1: LOCATION MAP OF THE STUDY AREA
  • 10. 2- Lab work (analysis the samples
  • 11. 3- Comparison of Physico-Chemical Analysis Data with IS 10500:2012 BIS? 4-discusion the results &giving suggestions
  • 12.  PH  EC  TDS  Calcium(Ca2+ )  Nitrates(NO3 - )  Chlorides(Cl- )  Fluorides  Magnesium  Carbonates (CO3)  Bicarbonates (HCO3)  Sodium Na  Potassium  Sulphates  Total Hardness  Total alkalinity Parameters
  • 14. S.N o pH EC TD S T H CO3 2- HCO 3 - TA NO3 2- SO4 2 - Ca2 + Mg2 + Na + K+ F- Cl 1 8.1 40 0 256 70 9 128 120 16 29 16 7 17 3 0. 5 18 2 8.1 80 0 512 75 6 153 135 4 29 18 7 17 3 0. 5 39 3 7.9 80 0 512 75 9 122 115 5 29 18 7 16 3 0. 6 32 4 8.1 80 0 512 75 6 159 140 7 25 16 9 15 3 0. 5 50 5 8.0 90 0 576 70 6 171 150 5 27 18 6 14 3 0. 5 14 6 8.0 60 0 384 25 6 146 130 3 27 24 9 15 3 0. 5 32 7 7.9 70 0 448 80 6 159 130 4 67 26 4 19 3 0. 5 25 Table 1: Various Physico- Chemical Parameters of Himayath Sagar Lake
  • 15. 8 7.9 70 0 448 70 6 122 110 4 23 20 5 13 3 0.5 28 9 7.9 60 0 384 65 0 171 140 4 27 20 4 15 3 0.5 32 10 7.9 30 0 192 55 6 116 105 4 22 16 4 14 3 0.5 36 11 7.8 50 0 320 15 5 6 201 175 17 36 20 26 32 3 0.5 43 12 7.8 80 0 512 15 5 15 403 362 16 45 40 13 60 3 1.7 57 13 7.9 70 0 448 14 5 15 238 220 13 51 14 27 52 1 2.2 75 S.N o pH EC TD S TH CO3 2- HCO 3 - TA NO3 2- SO4 2- Ca2+ Mg 2+ Na+ K+ F- Cl-
  • 16. Table 2: Comparison of Physico-Chemical Analysis Data with IS 10500:2012           % of samples exceeding acceptable limitWater Parameters Minimum Maximu m Average IS 10500 : 2012 PH 7.8 8.1 7.9 6.5-8.5 0 EC 300 900 661.5 Not Mentioned   TDS 192 576 423.4 500 38 Total Hardness 25 155 85.8 200 0 CO3 0 15 7.4 Not Mentioned   HCO3 116 403 176 Not Mentioned   Total Alkalinity 105 362 156.4 200 15 Sodium 13 60 23 Not Mentioned   Potassium 1 3 3 Not Mentioned   Calcium 14 40 21 75 0 Magnesium 4 27 10 30  
  • 17. So All parameters values within the acceptable limited except three parameters TDS and Total alkalinity and fluoride TDS is high in samples No (2 & 3 & 4 & 5 & 12 ) For Total alkalinity is high in samples NO(12 & 13) Fluoride is high in samples no ( 12 &13) conclusion
  • 18. Table 3: Comparison of Physico-Chemical Analysis Data with IS 10500:2012           % of samples exceeding acceptable limit Water Parameters Minimum Maximu m Average IS 10500 : 2012 TDS 192 576 423.4 500 38 Total Alkalinity 105 362 156.4 200 15 Fluoride 0.5 2.2 0.7 1 15
  • 19. TDS is a measure of the amount of material dissolved in water. This material can include carbonate, bicarbonate, chloride, sulfate, phosphate, nitrate, calcium, magnesium, sodium, organic ions, and other ions Water with high TDS often has a bad taste and/or high water hardness, and could result in a laxative effect. Factors Affecting Total Dissolved Solids Geology and Soil in the Watershed Urban Runoff Fertilizer Runoff
  • 20. Alkalinity is a measure of the buffering capacity of water, Measuring alkalinity is important in determining a stream's ability to neutralize acidic pollution from rainfall or wastewater Factors Affecting Alkalinity Geology and Soils Changes in pH Sewage Outflow
  • 21. Fluoride Level in water Effects 0.8–1.2 mg/l Prevention of tooth decay, strengthening of skeleton Above 1.5 mg/l Fluorosis: pitting of tooth enamel and deposits in bones Above about 10 mg/l Crippling skeletal fluorosis Fluoride is a desirable substance: it can prevent or reduce dental decay and strengthen bones, thus preventing bone fractures in older people
  • 24. Total Hardness In the study area TH ranges from 25-155 mg/lit with an average of 85.8 mg/lit. All samples are within the acceptable limit (IS 10500:2012). Fluoride In the study area concentration of Fluoride in the water samples ranges from 0.5-2.2 mg/lit with an average of 0.7 mg/lit. All samples are within the acceptable limits (IS 10500:2012).

Editor's Notes

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