Evaluation of Groundwater Quality Utilizing Integrated Physicochemical Parameters and Indexing Approaches

Ali Alsahli
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Abstract

Water is a vital natural component to human existence and also is necessary for many various fields. The research location is in a region prone to water scarcity due to lack of rainfall and poor distribution. The water condition for irrigation practices is a complicated problem that depends on the interactions of numerous aspects of groundwater management considerations under the principles of sustainability. To achieve the evaluation of groundwater quality for agriculture, this study utilized irrigation water quality indices (IWQIs), which include sodium percent (Na %), sodium absorption ratio (SAR), permeability index (PI), and magnesium hazards (MH). For that, 37 groundwater samples were obtained, and conventional analytical approaches were utilized to quantify the physical and chemical features. The physical and chemical features showed that the main ions contents were recorded as sequences: (Na + > Ca 2+ > Mg 2+ ) and (SO 42− > HCO 3− > Cl − ). The geochemical characteristics for the obtained groundwater samples showed Na-K-Cl-SO 4 and Ca-Mg-Cl-SO 4 water facies under effect of precipitation and rock-water interaction factors. The mean values of the IWQIs for Na%, SAR, PI, and MH showed, correspondingly, 63.17, 6.51, 71.94, and 47.82, respectively. Therefore, using physical and chemical properties and multi-indexing approaches to evaluate groundwater quality and its regulating processes is efficient and feasible.
基于综合物化参数和指标法的地下水水质评价
水是人类生存的重要自然成分,也是许多领域所必需的。研究地点位于一个由于降雨不足和分布不佳而容易缺水的地区。灌溉用水条件是一个复杂的问题,它取决于可持续性原则下地下水管理考虑的许多方面的相互作用。为实现对农业用地下水水质的评价,本研究采用灌溉水质指标(IWQIs),包括钠含量(Na %)、钠吸收比(SAR)、渗透指数(PI)和镁危害(MH)。为此,采集了37份地下水样品,并利用常规分析方法对其理化特征进行了定量分析。理化特征表明,其主要离子含量为(Na + > ca2 + > Mg 2+)和(so42−> HCO 3−> Cl−)。地下水地球化学特征受降水和岩水相互作用因素的影响,表现为na - k- cl - so4和ca - mg - cl - so4水相。Na%、SAR、PI和MH的iwqi平均值分别为63.17、6.51、71.94和47.82。因此,利用理化性质和多指标方法评价地下水水质及其调控过程是有效可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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