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首页> 外文期刊>Geochemistry International >Groundwater Selenium Level and its Enrichment Dynamics in Seawater Intrusion Area along the Northern Coastal Zones of Shandong Province, China
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Groundwater Selenium Level and its Enrichment Dynamics in Seawater Intrusion Area along the Northern Coastal Zones of Shandong Province, China

机译:中国山东省北部沿海地区海水入侵区地下水硒水平及其富集动态

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摘要

The variation of groundwater properties caused by seawater intrusion, such as OH-, TDS, SO42-, can potentially affect the groundwater Se levels. But there are no researches detailing the mechanism of groundwater selenium characteristics in seawater intrusion areas along coastal zones. Buzhuang town has been selected for study and groundwater is sampled to discuss the behavior of groundwater selenium with the intrusion of seawater. The groundwater Se levels range from 1.43 to 15.60 mu g/L, with an average of 6.23 mu g/L. All are within the limit of 10 mu g/L except Wanglu village, but the local groundwater Se levels in 8 villages exceed the chronic criterion of 5 mu g/L, and the Se levels in local groundwater are higher than those in the supplied water which has a non-seawater source. The groundwater Se levels have been shown to be elevated by seawater intrusion. The groundwater Se levels are positively correlated with Cl-, TDS, Br-, Na+, Mg2+, SO42-, Ca2+ and Fe and negatively correlated with pH. Ion competition effects and the Na-Mg-sulfate minerals play an important role in the adsorption and desorption for SeO32- and SeO42-, which are the important dynamic species for groundwater selenium enrichment. However, Ca and Fe ions have less contribution to groundwater Se variation because of the lower affinity for SeO32- and SeO42- and lesser content in groundwater of seawater intrusion areas.
机译:海水侵扰引起的地下水性能的变化,如OH-,TDS,SO42-,可能会影响地下水SE水平。但没有研究沿海地区海水入侵区地下水硒特性的机制。 Buzhuang Town已被选中进行学习和地下水进行采样,讨论地下水硒与海水侵入的行为。地下水SE水平为1.43至15.60μg/ L,平均为6.23μg/升。所有内部都在10 mu g / l之外,除了王路村,但8个村庄的当地地下水SE水平超过5 mu g / l的慢性标准,局部地下水中的SE水平高于供应水中的SE水平有一个非海水来源。已经显示地下水SE水平被海水侵入升高。地下水SE水平与Cl-,TDS,BR-,Na +,Mg2 +,SO 42-,Ca2 +和Fe呈正相关,并与pH负相关。离子竞争效应和Na-Mg-硫酸盐矿物在SEO32-和SEO42-的吸附和解吸中起重要作用,这是地下水硒富集的重要动态物种。然而,由于对海水入侵区域的地下水中的SEO32和SEO42和较少含量的亲和力较低,Ca和Fe离子对地下水Se变化具有更小的贡献。

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