Hydrogeochemical Behavior of Shallow Groundwater around Hancheng Mining Area, Guanzhong Basin, China

Author:

Kou Xiaomei12,Zhao Zhengzheng3,Duan Lei3,Sun Yaqiao3

Affiliation:

1. Shaanxi Union Research Center of University and Enterprise for River and Lake Ecosystems Protection and Restoration, Xi’an 710065, China

2. Power China Northwest Engineering Corporation Limited, Xi’an 710065, China

3. School of Water and Environment, Chang’an University, No. 126 Yanta Road, Xi’an 710054, China

Abstract

A total of 18 samples of shallow groundwater around the Hancheng mining area in the Guanzhong Basin were collected from 1–4 May 2018. According to the analysis of hydrochemical data, the Gibbs semi-logarithmic diagram and Piper diagram were used to research the hydrogeochemical behavior of shallow groundwater around the Hancheng mining area in the Guanzhong Basin. The results of the groundwater hydrochemical analyses shown on the Gibbs and Piper plots are as follows: The chemical composition analysis showed that the main cation components were Mg2+, Ca2+, Na+, and K+, the anion components were HCO3−, Cl−, and SO42−. A measure of 89% of the groundwater samples in this area were freshwater, the HCO3− were mainly dolomite, calcite, and gypsum dissolved precipitation resulted. Na+ and Cl− came from the dissolution of halite. Most of the groundwater was of the SO4·Cl-Ca·Mg type, accounting for 61.1%. The main ion chemistry of the shallow groundwater in this area is controlled by rock weathering, and pyrite oxidation is a significant factor affecting the SO42− concentration. These research results will help analyze the formation mechanism of chemical components and provide some basic data for the evolution of mine water in this area in the future.

Funder

Key research and development plan of Shaanxi Province

Publisher

MDPI AG

Reference45 articles.

1. Zoning and management of phreatic water resource conservation impacted by underground coal mining: A case study in arid and semiarid areas;Liu;J. Clean. Prod.,2019

2. Acid mine drainage from coal mining in the United States—An overview;Acharya;J. Hydrol.,2020

3. Environmental, hydrological, and social impacts of coal and nonmetal minerals mining operations;Mardonova;J. Environ. Manag.,2023

4. Coupling of underground coal mining and mine reclamation for farmland protection and sustainable mining;Hu;Resour. Policy,2023

5. Groundwater geochemistry and hydrogeochemical processes in the Lower Ganges-Brahmaputra-Meghna River Basin areas, Bangladesh;Nasher;J. Asian Earth Sci. X,2021

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