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Current Trends in Science and Technology

an Open Access Publication ISSN: 0976-9730 | 0976-9498

Life Science

Mathematical relationship of Primary Productivity with Temperature, pH, Conductivity, Dissolved Oxygen level of Gorishola Reservoir, Nilgiri District, TamilNadu. India

Kavitha. K
1Department of Zoology and Wildlife Biology, Government Arts College, Udhagamandalam 643 002, TamilNadu, India.
J. Ebanasar
Department of Zoology and Wildlife Biology, Government Arts College, Udhagamandalam 643 002, TamilNadu, India.
Online First: January 31, 2018
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Abstract

The present study was carried out to determine the seasonal variation in Primary Productivity of Gorishola Reservoir 11° 24'23"94 N &76°43'19"93 E in Udhagamandalam from Sep 2016 to Sep 2017 and to  derive its relationship with Temperature, pH, Coductivity, Dissolved Oxygen in water. The air temperature varied between 20°C to 34°C, water temperature varied between 14°C to 28°C, pH varied between 7.02 to 8.17, Conductivity varied between 24.1 to 124(mg/1), Dissolved Oxygen varied between 3.06 to 8.16 (mg/l), GPP varied between 44.18 to 390.14 mg C/m3/hr, NPP varied between 31.92 to169.18 mg C/m3/hr and CR varied between 11 to 220.96 mg C/m3/hr. Temperature, pH, Coductivity, Dissolved Oxygen were found to be significantly related to GPP in Quadratic fit, Polynomical fit model, Polynomical fit model, Polynomical fit models respectively like Temperature, pH, Coductivity, Dissolved Oxygen were found to be significantly related to NPP in Quadratic fit, Polynomical fit model, Quadratic fit models respectivetly like Temperature, pH, Coductivity, Dissolved Oxygen were found to be significantly related to CR in Polynomical fit model, Polynomical fit model Polynomical fit models.

Keyword : GorisholaReservoir,Temperature, pH, Coductivity, Dissolved Oxygen and Primary Productivity

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Jan 31, 2018
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Jan 31, 2018
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References

1. APHA(1996). Standard Methods for the Examination of Water and Waste Water. 19th Edition. American Public Health Association. Washington. D.C., U.S.A. 2. Balakrishnan Nair, N., Krishnakumar,K ., Adul Aziz,P.K., Dharmaraj,K.,Arunchalam,M. and 3. Carlos Lopez, 2001.Limological studies o a shallow reservoir in Western Venuzuela (Tule Reservior).Limnological., 31:139-145. 4. Dash S.Patra A.K. and Adhikary S., 2011. Primary Productivity of Kharasrota River (India) j. Ecophysical, OCCUP, 111th, 11:219-225. 5. Davis , C.C.1995.The marine and freshwater plankton.Michigan Atate Unin.,Press.pp:562. 6. De,A.K, 1999. Environmental Chemistry, new Age International (P)Ltd.Pulbishers, New Delhi,p.364. 7. Gibson,R.N.,(1982). Recent studies on the Biology of intertidal fishes, Oceanogr. Mar.iol.Ann.Rev., 20,365-414. 8. Giller,S.,Malmqvist, B.1998.The Biology of Streams and Rivers. Oxford University Press.Oxford.p.296 9. Joshi BD and Bisht RC (1993).Some aspects of physic-chemical characteristics of western Ganga canal ear Jwalapur at Haridwar.Him.J.Env.Zool., 7:76-82. 10. Kang JK, Song Y, Moon JW and Moos HS (2001).Water quality impact of mining in the Wolmyoung area of Korea, and its short term changes. Water, Air and Soil Pollution, 129:349-367. 11. Kumar A, Bisht BS,Talwar A, Chandel D(2010). Physico-chemical and Microbial Analysis of Ground water from Different Regions of Doon Valley. In Jou Appl Env Sci, 5(3):433-440. 12. Mohanty SS, Pramaik D.S., Dash.P, (2014) Primary Productivity of Bay of Bengal at Chandipur in Odisha,India. International Journal of Scientific and Research Pulications, 4(10), 1-6. 13. Meenakhi N, 2014. Ecosystem Dynamics of Katteri Reservoir. Nilgiri District. Tamiladu,Ph.D Thesis. Bharathiyar University , p 162. 14. Sheeja,B. D., 2005. Seasonal Variation in the Limnological characteristics of selected aquatic ecosystem of Kaveri delta.Ph.D Thesis. Bharathidasan University, p 167. 15. Trivedy RK and Goel PK (1986).Chemical and Biological methods for water pollution Studies,Envirnmental Publication,Karad.1986.
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References

1. APHA(1996). Standard Methods for the Examination of Water and Waste Water. 19th Edition. American Public Health Association. Washington. D.C., U.S.A.
2. Balakrishnan Nair, N., Krishnakumar,K ., Adul Aziz,P.K., Dharmaraj,K.,Arunchalam,M. and
3. Carlos Lopez, 2001.Limological studies o a shallow reservoir in Western Venuzuela (Tule Reservior).Limnological., 31:139-145.
4. Dash S.Patra A.K. and Adhikary S., 2011. Primary Productivity of Kharasrota River (India) j. Ecophysical, OCCUP, 111th, 11:219-225.
5. Davis , C.C.1995.The marine and freshwater plankton.Michigan Atate Unin.,Press.pp:562.
6. De,A.K, 1999. Environmental Chemistry, new Age International (P)Ltd.Pulbishers, New Delhi,p.364.
7. Gibson,R.N.,(1982). Recent studies on the Biology of intertidal fishes, Oceanogr. Mar.iol.Ann.Rev., 20,365-414.
8. Giller,S.,Malmqvist, B.1998.The Biology of Streams and Rivers. Oxford University Press.Oxford.p.296
9. Joshi BD and Bisht RC (1993).Some aspects of physic-chemical characteristics of western Ganga canal ear Jwalapur at Haridwar.Him.J.Env.Zool., 7:76-82.
10. Kang JK, Song Y, Moon JW and Moos HS (2001).Water quality impact of mining in the Wolmyoung area of Korea, and its short term changes. Water, Air and Soil Pollution, 129:349-367.
11. Kumar A, Bisht BS,Talwar A, Chandel D(2010). Physico-chemical and Microbial Analysis of Ground water from Different Regions of Doon Valley. In Jou Appl Env Sci, 5(3):433-440.
12. Mohanty SS, Pramaik D.S., Dash.P, (2014) Primary Productivity of Bay of Bengal at Chandipur in Odisha,India. International Journal of Scientific and Research Pulications, 4(10), 1-6.
13. Meenakhi N, 2014. Ecosystem Dynamics of Katteri Reservoir. Nilgiri District. Tamiladu,Ph.D Thesis. Bharathiyar University , p 162.
14. Sheeja,B. D., 2005. Seasonal Variation in the Limnological characteristics of selected aquatic ecosystem of Kaveri delta.Ph.D Thesis. Bharathidasan University, p 167.
15. Trivedy RK and Goel PK (1986).Chemical and Biological methods for water pollution Studies,Envirnmental Publication,Karad.1986.
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