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    关中盆地潜水水质演化特征分析

    Analysis ofhydrochemical evolution characteristics of phreatic water in the Guanzhong Basin

    • 摘要: 关中盆地地下水资源在维持区域经济发展及生态环境平衡方面具有不可替代的作用。本次研究选取关中盆地2011、2015、2018、2021年共420组潜水水质数据,运用熵权-TOPSIS地下水质量综合评价、地下水综合污染评价、Gibbs图、离子相关分析、箱线图分析等方法,研究关中盆地地下水质演化特征及影响因素。研究结果表明,2011-2021年间关中盆地潜水各离子浓度随时间呈降低趋势。潜水质量以良好级为主,占比31.5%;2011、2015、2018、2021年相对贴近度C平均值分别为0.088、0.083、0.054、0.053,呈现逐年减小趋势;关中盆地潜水以未污染和轻度污染为主,2011-2021年间综合污染指数平均值分别为6.01、4.25、3.69、3.57;污染程度呈减弱趋势。盆地潜水中Na+、Cl-、HCO3-、Ca2+、Mg2+及SO42-,主要来源于岩盐、碳酸盐、硅酸盐及石膏溶解;局部出现较高浓度的Cl-、SO42-、F-、Fe、Mn、NO3-N等,可能还与城市化进程、畜禽养殖业发展、农田过量施肥等活动有关。2011-2021年,关中盆地潜水水质整体呈现出不断优化的演化趋势。研究结果为关中盆地地下水资源合理优化配置及生态环境高质量保护提供科学依据。

       

      Abstract: Groundwater resources in Guanzhong Basin play an irreplaceable role in maintaining regional economic development and ecological environment balance. This study analyzed 420 of phreatic water samples from 2011, 2015, 2018 and 2021 in Guanzhong Basin. Multiple analytical methods were applied, including entropy weight-TOPSIS for comprehensive groundwater quality assessment, integrated pollution evaluation, Gibbs model, ion correlation, to study the hydrochemical evolution characteristics and influencing factors of groundwater. The results show that from 2011 to 2021, the ion concentrations of phreatic water display a decreasing trend with time. The phreatic water quality in Guanzhong Basin is mainly Class II, accounting for 31.5%. In 2011, 2015, 2018 and 2021, the average closeness coefficient C was 0.088, 0.083, 0.054 and 0.053, respectively, showing a decreasing trend year by year. The phreatic water in Guanzhong Basin was dominantly unpolluted and slightly polluted. The average value of comprehensive pollution index from 2011 to 2021 is 6.01, 4.25, 3.69 and 3.57, respectively. In the basin, Na+, Cl-, HCO3-, Ca2+, Mg2+ and SO42- are mainly derived from the dissolution of halite, carbonate, silicate and gypsum. High concentrations of Cl-、SO42-、F-、Fe、Mn、NO3-N, may also be related to human activities such as intensive urbanization, livestock farming expansion, and excessive agricultural fertilization. From 2011 to 2021, the phreatic water quality of Guanzhong Basin exhibited a continuous improvement trend. These results provide a scientific basis for rational allocation and optimization of groundwater resources and high-quality protection of ecological environment in the Guanzhong Basin.

       

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