[阜阳市集中地下水饮用水源水化学特征及成因]。

Q2 Environmental Science
Gui-Fen Su, Gui-Jian Liu, Yue Liu, Shen Lin
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引用次数: 0

摘要

地下水水质受到生活污水开采和工农业活动的影响。地下水是阜阳市重要的饮用水源。为探讨阜阳地区集中式饮用水源的水化学特征及其形成机制,本研究共采集了84套地下水样本。利用Piper三线图、Gibbs图、相关分析、离子比例系数、因子分析等技术,揭示了地下水化学特征、水化学成分机理及控制因素。结果表明,Ca2+- so42 -离子源呈弱相关关系,不能大量共存。地下水中Na+-Cl-、F- B3+、Ca2+-Mg2+、SO42- Cl-、Na+-SO42-离子来源相同,Ca2+- na2 +、Ca2+- hco3 -、Mg2+- hco3 -离子来源不同。结果表明:阜阳市集中地下水水源水体包括中性型、碱性型、高盐度型和水化学型(HCO3-Na)。地下水组分主要受含水层岩石和矿物的淋滤以及阳离子的交替吸附的影响。地下水中的Ca2+和Mg2+主要来源于方解石的溶解。含钠矿物中的Na+在地下水中与Ca2+、Mg2+交换。地下水的离子特征受岩石风化和蒸发的影响。岩石风化作用更为明显,外部因素改变了地下水的离子组成。因此,地下水中Na+浓度增加并积累,而Ca2+和Mg2+浓度降低。因此,水化学特征关系到居民饮用水的健康与安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Hydrochemical Characteristics and Origin of Centralized Groundwater Drinking Water Source in Fuyang City].

Groundwater quality is impacted by the exploitation of residential sewage and industrial and agricultural activities. Groundwater is an important source of drinking water in Fuyang City. In this study, to investigate the hydrochemical characteristics and formation mechanism of the centralized drinking water source in the Fuyang area, a total of 84 sets of groundwater samples were collected. Different techniques, such as the Piper three-line diagram, Gibbs map, correlation analysis, ion proportional coefficient, and factor analysis, were used to reveal the groundwater chemical characteristics, mechanisms of hydrochemical components, and control factors. The findings showed that the ion sources of Ca2+-SO42- were weakly correlated and could not coexist in large quantities. Ion sources of groundwater such as Na+-Cl-, F--B3+, Ca2+-Mg2+, SO42--Cl-, and Na+-SO42- were the same, while the ion sources of Ca2+-Na2+, Ca2+-HCO3-, and Mg2+-HCO3- were different. The results showed that the water body of the concentrated groundwater source in Fuyang City included neutral, alkaline, high salinity, and hydrochemical types (HCO3-Na). The groundwater components are mainly affected by the leaching of aquifer rocks and minerals, and the alternating adsorption of cations. Ca2+ and Mg2+ in groundwater mainly come from the dissolution of calcite. Na+ of sodium-containing minerals exchanged with Ca2+ and Mg2+ in groundwater. The ionic characteristics of groundwater were affected by rock weathering and evaporation. Moreover, rock weathering was more obvious, and external factors changed the ionic composition of groundwater. Thus, the concentration of Na+ increased and accumulated in groundwater, while the concentration of Ca2+ and Mg2+ decreased. Hence, hydrochemical characteristics were related to residents' drinking water health and safety.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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