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Evaluation of the processes affecting vertical water chemistry in an alluvial aquifer of Mankyeong Watershed, Korea, using multivariate statistical analyses

机译:使用多元统计分析评估影响韩国Mankyeong流域冲积含水层中垂直水化学过程的过程

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摘要

Vertical variations of redox chemistry and groundwater quality were investigated in an alluvial aquifer beneath an agricultural area, in which deep ground-waters are free of NO_3, Fe, and Mn problems that are frequently encountered during the development of alluvial groundwaters. This study was performed to identify and evaluate vertical chemical processes attenuating these chemical species in the study area. For this study, the processes affecting groundwater chemistry were identified by factor analysis (FA) and the groundwater samples collected from six multilevel samplers were hierarchically classified into three different redox zones by cluster analysis (CA) based on the similarity of geochemical features. FA results indicated three major factors affecting the overall water chemistry: agricultural activities (factor 1), redox reactions (factor 2), and remnant seawater (factor 3). The groundwater quality in the study area was revealed to be controlled by a series of different redox reactions, resulting in different redox zones as a function of depth. It was also revealed that the low Fe and Mn levels in the groundwater of the deeper part are associated with sulfate reduction, which led to precipitation of Fe as iron sulfide and adsorption of Mn on it.
机译:在农业区下方的一个冲积含水层中研​​究了氧化还原化学和地下水质量的垂直变化,该区域的深层地下水不含在冲积地下水开发过程中经常遇到的NO_3,Fe和Mn问题。进行这项研究是为了识别和评估在研究区域内减弱这些化学物种的垂直化学过程。在本研究中,通过因子分析(FA)识别了影响地下水化学的过程,并根据地球化学特征的相似性,通过聚类分析(CA)将从六个多级采样器中收集的地下水样品分为三个不同的氧化还原区域。 FA结果表明影响整个水化学的三个主要因素:农业活动(因素1),氧化还原反应(因素2)和残余海水(因素3)。研究区域的地下水水质受一系列不同的氧化还原反应控制,从而导致不同的氧化还原带随深度变化。还揭示出较深部分的地下水中低的Fe和Mn与硫酸盐还原有关,这导致Fe以硫化铁的形式沉淀和Mn在其上的吸附。

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