Numerical modelling of nitrate transport in fractured porous media under non-isothermal conditions
Author:
Publisher
Springer Science and Business Media LLC
Subject
Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine
Link
https://link.springer.com/content/pdf/10.1007/s11356-021-15691-8.pdf
Reference40 articles.
1. Almasri MN (2007) Nitrate contamination of groundwater: a conceptual management framework. Environ Impact Assess Rev 27:220–242
2. Baram S, Couvreur V, Harter T, Read M, Brown PH, Kandelous M, Smart DR, Hopmans (2017) Estimating nitrate leaching to groundwater from orchards: comparing crop nitrogen excess, deep vadose zone data-driven estimates, and HYDRUS modeling. Vadose Zone J 15(11):1–13
3. Berlin M, Kumar GS (2018) Numerical modelling on sorption kinetics of nitrogen species in wastewater applied agricultural field. Appl Water Sci 8:216
4. Berlin M, Suresh Kumar G, Nambi IM (2013) Numerical modelling on fate and transport of nitrate in an unsaturated system under non-isothermal condition. Eur J Environ Civ Eng 17(5):350–373
5. Berlin M, Suresh Kumar G, Nambi IM (2014a) Numerical modeling on the effect of dissolved oxygen on nitrogen transformation and transport in unsaturated porous system. Environ Model Assess 19:283–299
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