Application of Multiple Approaches to Investigate the Hydrochemistry Evolution of Groundwater in an Arid Region: Nomhon, Northwestern China

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Water Pub Date : 2018-11-16 DOI:10.3390/W10111667
Nuan Yang, Guangcai Wang, Zheming Shi, Dan Zhao, Wanjun Jiang, Liang Guo, Fu Liao, P. Zhou
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引用次数: 29

Abstract

Groundwater is a critical water resource for human survival and economic development in arid and semi-arid areas. It is crucial to understand the groundwater circulation and hydrochemical evolution for sustainable management and utilization of groundwater resources in those areas. To this end, an investigation of the hydrochemical characteristics of surface water and groundwater was conducted in Nomhon, an arid area located in the Qaidam Basin, northwest China, by using hydrochemical (major and trace elements) and stable isotopes (δD and δ18O) approaches. Stable isotopes and ion ratios were analyzed to determine the recharge sources, hydrochemistry characteristics, and major hydrogeochemical processes. Meanwhile, inverse geochemistry modeling was applied to quantitatively determine the mass transfer of hydrogeochemical processes. The results showed that groundwater in the study area is mainly recharged by atmospheric precipitation in mountainous areas, and the groundwater in the center of basin might originate from ancient water in cold and humid environments. Along the groundwater flow path, the TDS of groundwater increased gradually from fresh to salty (ranging from 462.50 to 19,604.40 mg/L), and the hydrochemical type changed from Cl·HCO3–Na·Mg·Ca to Cl–Na. Groundwater chemical composition and mass balance modeling results indicated that from alluvial fan to lacustrine plain, the main hydrogeochemical processes changed from the dissolution of halite and albite and the precipitation of dolomite and kaolinite to the dissolution of halite and gypsum, precipitation of calcite, redox (SO42− reduction), and cation exchange. This study would be helpful for water resources management in this area and other similar areas.
多种方法在干旱区地下水水化学演化研究中的应用
地下水是干旱和半干旱地区人类生存和经济发展的重要水资源。了解地下水循环和水化学演变对于这些地区地下水资源的可持续管理和利用至关重要。为此,采用水化学(主元素和微量元素)和稳定同位素(δD和δ18O)方法,对柴达木盆地干旱区诺蒙市地表水和地下水的水化学特征进行了研究。分析了稳定同位素和离子比,以确定补给源、水化学特征和主要的水文地球化学过程。同时,应用逆地球化学模型对水文地球化学过程的传质进行了定量测定。研究结果表明,研究区地下水主要由山区大气降水补给,盆地中心地下水可能来源于寒冷潮湿环境中的古水。沿地下水流动路径,地下水TDS由新鲜向含盐逐渐增加(范围为462.50~19604.40 mg/L),水化学类型由Cl·HCO3–Na·mg·Ca变为Cl–Na。地下水化学组成和质量平衡模拟结果表明,从冲积扇到湖相平原,主要的水文地球化学过程从岩盐和钠长石的溶解、白云石和高岭石的沉淀转变为岩盐和石膏的溶解、方解石的沉淀、氧化还原(SO42-还原)和阳离子交换。这项研究将有助于该地区和其他类似地区的水资源管理。
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来源期刊
Water
Water WATER RESOURCES-
CiteScore
5.80
自引率
14.70%
发文量
3491
审稿时长
19.85 days
期刊介绍: Water (ISSN 2073-4441) is an international and cross-disciplinary scholarly journal covering all aspects of water including water science and technology, and the hydrology, ecology and management of water resources. It publishes regular research papers, critical reviews and short communications, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles. Computed data or files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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