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Human Activity and Hydrogeochemical Processes Relating to Groundwater Quality Degradation in the Yuncheng Basin, Northern China

机译:随着地下水盆地地下水盆地地下水质量退化的人类活动和水文的水力学过程

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摘要

Groundwater quality degradation has raised widespread concerns about water supplies and ecological crises in China. In this study, hydrogeochemistry, environmental stable isotopes (delta O-18, delta D), and principal component analysis were conducted together to reveal the mechanism's response to the hydrogeochemical and quality degradation of groundwater in Yuncheng Basin, Northern China, so that reasonable water resource management strategies can be developed. The study reveals that groundwater faces a tremendous risk of quality decrease during the past decade: (1) the hydrochemical facies of groundwater shows that the bicarbonate and chloride type water was replaced with sulfate type water and the occupying area of SO4 center dot Cl-Na, SO4 center dot HCO3-Na type water expanded dramatically in shallow and intermediate-deep aquifers. (2) Major ion chemistry and hydrogen and oxygen isotope compositions indicate that the major hydrogeochemical processes responsible for groundwater quality deterioration include the dissolution of evaporates (i.e., halite, gypsum, and mirabilite), ion exchange, and evaporation process. Additionally, (3) anthropogenic activities (overutilization of fertilizer) have resulted in nitrate contamination, and have thereby led to groundwater quality degradation.
机译:地下水质量退化已经提高了对中国供水和生态危机的普遍担忧。在该研究中,将环境稳定同位素(Delta O-18,Delta D)和主成分分析在一起进行,揭示了该机制对中国北部运城盆地地下水的对水电站和质量退化的作用,使合理的水可以开发资源管理策略。该研究表明,地下水在过去十年中面临的质量巨大风险:(1)地下水的水化学相表明,碳酸氢盐和氯化物型水被硫酸盐型水和SO4中心点CL-NA的占据区域取代,SO4中心点HCO3-NA型水在浅层和中间含水层中急剧扩张。 (2)主要离子化学和氢气和氧同位素组合物表明,负责地下水质量劣化的主要水水力地理过程包括蒸发酸盐(即,盐,石膏和Mirabilite),离子交换和蒸发过程的溶解。另外,(3)人为活性(肥料的过度化)导致硝酸盐污染,从而导致地下水质量降解。

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