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International Journal of Frontiers in Engineering Technology, 2023, 5(9); doi: 10.25236/IJFET.2023.050907.

Study of water pollution in river-groundwater systems

Author(s)

Long Chen, Wenwu Zhou, Yang Yu

Corresponding Author:
Long Chen
Affiliation(s)

Tianjin University of Science and Technology, Tianjin, China

Abstract

Groundwater resources and other important resources indispensable for human production and life play a very important role. This paper takes organic pollutants in river-groundwater system as the research object, establishes the model of convection and dispersion through mass conservation and mass transfer equation, and analyzes the adsorption based on Langmuir model and Freundlich model to study the migration and transformation mechanism of organic pollutants in river-groundwater systems, and the effect of biodegradation on the transformation of organic pollutants is also analyzed by Monod model.

Keywords

Mass Conservation, Mass Transfer, Langmuir Model, Freundlich Model, Monod Model

Cite This Paper

Long Chen, Wenwu Zhou, Yang Yu. Study of water pollution in river-groundwater systems. International Journal of Frontiers in Engineering Technology (2023), Vol. 5, Issue 9: 34-41. https://doi.org/10.25236/IJFET.2023.050907.

References

[1] Chen Xi, Chen Xunhong. Numerical simulation and water balance analysis of groundwater in SandHills area [J]. Advances in Water Science, 2004, 15(1): 94-99.

[2] Chen Haorui, Gao Zhanyi, Wang Shaoli, Hu Yaqiong. Modeling on impacts of climate change and human activities variability on the shallow groundwater level using Modflow [J]. Journal of Hydraulic Engineering, 2012, 43(3): 344-353.

[3] Gao Xueping, Wang Zhe, Sun Bowen, Li Zhen, Zhang Tongyu, Feng Yu. Analysis on water balance of river-groundwater system using coupling models. Case study of lower Lihe River in Haihe basin [J]. Journal of Hydroelectric Engineering, 2018, 37(4): 36-48.

[4] Qiu Liping, Wang Hu. Retardation factor of nitrobenzene dual-mode adsorption in Weihe River sediment [J]. Chinese Journal of Environmental Engineering, 2016(2), 2: 761-767.