Decision tree for estimating groundwater contaminant through proxies considering seasonality and soil saturation

Author:

Dauji SahaORCID,Keesari TirumaleshORCID

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Pollution,General Environmental Science,General Medicine

Reference63 articles.

1. APHA. (1998). Standard methods for the examination of water and wastewater (19th ed.). American Public Health Association

2. Behera S. C. (2013). Groundwater resources and development potentials of Muktsar district, Punjab. Government of India, Ministry of Water Resources, River Development & Ganga Rejuvenation, Central Ground Water Board. https://cgwb.gov.in/district_profile/punjab/muktsar.pdf

3. Bresciani, E., Cranswick, R. H., Banks, E. W., Batlle-Aguilar, J., Cook, P. G., & Batelaan, O. (2018). Using hydraulic head, chloride and electrical conductivity data to distinguish between mountain-front and mountain-block recharge to basin aquifers. Hydrology and Earth System Sciences, 22, 1629–1648. https://doi.org/10.5194/hess-22-1629-2018

4. BIS. (2000). IS: 456 – 2000 (Reaffirmed 2005): Plain and Reinforced Concrete – Code of Practice. Bureau of Indian Standards, New Delhi, India

5. Carol, E., Eduardo, K., & Josep M,-P. (2009). Hydrochemical and isotopical evidence of groundwater salinization processes on the coastal plains of Samboromon Bay, Argentina. Journal of Hydrology, 365, 35–345

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