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Hydrogeochemistry and Quality Assessment of Groundwater Based on Fuzzy Analytical Hierarchy Process: A Case Study From Sulin Coal-Mining District in Northern Anhui, China

机译:基于模糊分析等级过程的地下水的水文地球化学与质量评估 - 以南安北安煤矿煤矿区为例

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摘要

Sulin coal-mining district is characterized by rich coal resources, and its shallow groundwater (SG) and mid-layer groundwater (MG) are the main freshwater source for drinking, agriculture, and industrial purpose. However, frequent mining activities had damaged groundwater systems. Therefore, it is necessary to understand the hydrogeochemical characteristics and determine the status of groundwater quality. To achieve a higher degree of accuracy in water quality assessment, this paper proposed a fuzzy analytical hierarchy process (AHP) which combined the fuzzy analysis model and AHP model. The results showed that Na+ and HCO3- were the dominant cation and anion in both SG and MG, respectively. In addition, TDS, SO42-, Cl-, Mn, Na+, and NO3- of SG and TDS, SO42-, Cl-, Mn, Na+ and F- of MG were higher than the grade III limits of Chinese groundwater standards. Analysis with molar ratios of major ions suggested that the geochemical composition of SG and MG were mainly determined by the dissolution of silicates. The fuzzy AHP evaluation results indicated that the samples of SG and MG within the III-type water accounted for 90.64% and 94.44%, respectively, and their water quality was good, which were consistent with the actual natural conditions of the study area.
机译:苏林煤矿区的特点是煤炭资源丰富,其浅地下水(SG)和中层地下水(MG)是饮酒,农业和工业目的的主要淡水源。然而,经常采矿活动受到地下水系统损坏。因此,有必要了解水文地质化学特征,并确定地下水质量的地位。为了在水质评估中实现更高程度的准确性,本文提出了一种模糊分析层次处理(AHP),其组合模糊分析模型和AHP模型。结果表明,Na +和HCO3分别是SG和MG中的主要阳离子和阴离子。此外,SG和TDS的TDS,SO42-,CL-,Mn,Na +和NO 3-,SO42-,Cl-,Mn,Na +和F-镁的镁+和F-的均高于中国地下水标准的第三级限制。具有主要离子的摩尔比的分析表明,Sg和Mg的地球化学组成主要由硅酸盐溶解来决定。模糊AHP评估结果表明,III型水中的SG和MG样品分别占90.64%和94.44%,水质良好,其与研究区域的实际自然条件一致。

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