首页> 外文期刊>Fresenius Environmental Bulletin >EVALUATION OF PROCESSES CONTROLLING THE ENRICHMENT OF ARSENIC IN GROUNDWATER FROM THE DATONG BASIN, NORTHERN CHINA
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EVALUATION OF PROCESSES CONTROLLING THE ENRICHMENT OF ARSENIC IN GROUNDWATER FROM THE DATONG BASIN, NORTHERN CHINA

机译:中国北方大同盆地地下水中砷富集过程的评价

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摘要

In order to understand the mechanism of As enrichment in groundwater, major trace elements and redox-sensitive components analysis were conducted on ground-water from the Datong Basin in Northern China. Factor analysis study indicates that hydrochemistry of the ground-water is governed by processes including irrigation practice, microbial-driven redox reaction and NO_3- contamination. Saturation indices (SI) calculated using PHREEQC suggest that amorphous Fe oxide/hydroxide and siderite change from slightly undersaturated to oversaturated. Notably, negative correlations were observed between the saturation index of these minerals with As and Fe in high As groundwater. This indicates the replacement of amorphous Fe oxide/hydroxide by Fe carbonate during ferric and SO_4~(2-) reduction, and organic carbon oxidation could be the key process controlling the mobilization of As because of higher adsorption ability of Fe oxide/hydroxide than Fe carbonate, with respect to As. Thus, reductive dissolution of Fe oxides/hydroxide accompanied with bacteria-mediated decomposition of organic matter and reduction of SO_4~(2-) can lead to the enrichment of As in groundwater at Datong. This can be confirmed by the good correlation between As and HS" concentration as well as Eh values.
机译:为了了解砷在地下水中的富集机理,对中国北方大同盆地地下水中的主要微量元素和氧化还原敏感成分进行了分析。因子分析研究表明,地下水的水化学受灌溉实践,微生物驱动的氧化还原反应和NO_3-污染的控制。使用PHREEQC计算的饱和指数(SI)表明,非晶态的Fe / HOH和菱铁矿从略微不足饱和变为过饱和。值得注意的是,在高砷地下水中,这些矿物与砷和铁的饱和指数之间存在负相关关系。这表明在三价铁和SO_4〜(2-)还原过程中用碳酸铁代替了无定形的氧化铁/氢氧化物,而有机碳的氧化可能是控制砷迁移的关键过程,因为氧化铁/氢氧化物的吸附能力高于铁碳酸盐,相对于砷。因此,Fe氧化物/氢氧化物的还原溶解,伴随细菌介导的有机物分解和SO_4〜(2-)的还原,可以导致大同市地下水中As的富集。这可以通过As和HS“浓度以及Eh值之间的良好相关性来确认。

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