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Original Articles

Assessment of point and non-point sources of pollution using a chemical mass balance approach

Evaluation de sources de pollutions ponctuelles et diffuses par une approche fondée sur un bilan chimique

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Pages 379-390 | Received 07 Mar 1997, Accepted 23 Sep 1997, Published online: 25 Dec 2009

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C.K. JAIN. (2000) Application of chemical mass balance approach to determine nutrient loading. Hydrological Sciences Journal 45:4, pages 577-588.
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M. K. Sharma, Pradeep Kumar, Kunarika Bhanot & Parul Prajapati. (2021) Assessment of non-point source of pollution using chemical mass balance approach: a case study of River Alaknanda, a tributary of River Ganga, India. Environmental Monitoring and Assessment 193:7.
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Zelalem Abera Angello, Beshah M. Behailu & Jens Tränckner. (2020) Integral Application of Chemical Mass Balance and Watershed Model to Estimate Point and Nonpoint Source Pollutant Loads in Data-Scarce Little Akaki River, Ethiopia. Sustainability 12:17, pages 7084.
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Saurabh Mishra, Amit Kumar, Silpa Yadav & M. K. Singhal. (2017) Assessment of heavy metal contamination in water of Kali River using principle component and cluster analysis, India. Sustainable Water Resources Management 4:3, pages 573-581.
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Dongli She, Li Zhang, Xuemei Gao, Xiaoyuan Yan, Xu Zhao, Wenming Xie, Yi Cheng & Yongqiu Xia. (2017) Limited N removal by denitrification in agricultural drainage ditches in the Taihu Lake region of China. Journal of Soils and Sediments 18:3, pages 1110-1119.
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Wânia Duleba, Andreia C. Teodoro, Jean-Pierre Debenay, Maria Virgínia Alves Martins, Silas Gubitoso, Leonardo Antônio Pregnolato, Laura Misailidis Lerena, Silvio Miranda Prada & José Eduardo Bevilacqua. (2018) Environmental impact of the largest petroleum terminal in SE Brazil: A multiproxy analysis based on sediment geochemistry and living benthic foraminifera. PLOS ONE 13:2, pages e0191446.
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Amita Yadav & Jitendra Pandey. (2017) Contribution of point sources and non-point sources to nutrient and carbon loads and their influence on the trophic status of the Ganga River at Varanasi, India. Environmental Monitoring and Assessment 189:9.
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C. K. Jain, D. C. Singhal & M. K. Sharma. (2007) Estimating nutrient loadings using chemical mass balance approach. Environmental Monitoring and Assessment 134:1-3, pages 385-396.
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Ramakar JhaC. S. OjhaK. K. Bhatia. (2007) Development of Refined BOD and DO Models for Highly Polluted Kali River in India. Journal of Environmental Engineering 133:8, pages 839-852.
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Ramakar Jha, C. S. P. Ojha & K. K. S. Bhatia. (2007) Non‐point source pollution estimation using a modified approach. Hydrological Processes 21:8, pages 1098-1105.
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Young-Sam Yoon, Jae-Jeong Yu, Moon-Soo Kim, Hae-Jin Lee, Jun-Bae Lee & Sang-Yong Yang. (2007) Development of the Estimation Model on Daily Pollutant Loads for the Nakdong River Basin II. Application of the Model. Journal of Environmental Science International 16:3, pages 333-345.
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Ramakar Jha, V. P. Singh, C. S. P. Ojha & K. K. S. Bhatia. (2006) Estimation of Non-Point Source Pollution in a Typical River of India. Estimation of Non-Point Source Pollution in a Typical River of India.
Kyeong-Bo Lee, Jong-Cheon Kim, Jong-Gu Kim, Deog-Bae Lee, Chan-Won Park & Jae-Duk Kim. (2005) Assessment of Pollutant Loads in the Dongjin River. Korean Journal of Environmental Agriculture 24:2, pages 91-97.
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Kyeong-Bo Lee, Jong-Cheon Kim, Jong-Gu Kim, Deog-Bae Lee, Chan-Won Park & Jae-Duk Kim. (2005) Assessment of Pollutant Loads for Water Enhancement in the Mankyeong River. Korean Journal of Environmental Agriculture 24:2, pages 83-90.
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Ramakar Jha, K.K.S. Bhatia & C.S.P. OJHA. 2005. Water Encyclopedia. Water Encyclopedia 657 664 .
. (2004) Assessment of Pollutant Loads for Water Enhancement in the Jeongeupcheon of Dongjin River. Korea Journal of Environmental Agriculture 23:1, pages 41-46.
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Judith C. Chow & John G. Watson. (2002) Review of PM 2.5 and PM 10 Apportionment for Fossil Fuel Combustion and Other Sources by the Chemical Mass Balance Receptor Model . Energy & Fuels 16:2, pages 222-260.
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C.K. Jain & M.K. Sharma. (2001) Distribution of trace metals in the Hindon River system, India. Journal of Hydrology 253:1-4, pages 81-90.
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