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首页> 外文期刊>Environmental Science and Pollution Research >Remediation of arsenic-contaminated groundwater using media-injected permeable reactive barriers with a modified montmorillonite: sand tank studies
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Remediation of arsenic-contaminated groundwater using media-injected permeable reactive barriers with a modified montmorillonite: sand tank studies

机译:使用介质改性的蒙脱土注入介质的渗透性反应性屏障修复砷污染的地下水:沙罐研究

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A modified montmorillonite (MMT) was prepared using an acid activation-sodium activation-iron oxide coating method to improve the adsorption capacities of natural MMTs. For MMT, its interlamellar distance increased from 12.29 to 13.36 angstrom , and goethite (alpha-FeOOH) was intercalated into its clay layers. Two novel media-injected permeable reactive barrier (MI-PRB) configurations were proposed for removing arsenic from groundwater. Sand tank experiments were conducted to investigate the performance of the two MI-PRBs: Tank A was filled with quartz sand. Tank B was packed with quartz sand and zero-valent iron (ZVI) in series, and the MMT slurry was respectively injected into them to form reactive zones. The results showed that for tank A, total arsenic (TA) removal of 98.57 % was attained within the first 60 mm and subsequently descended slowly to 88.84 % at the outlet. For tank B, a similar spatial variation trend was observed in the quartz sand layer, and subsequently, TA removal increased to >= 99.80 % in the ZVI layer. TA removal by MMT mainly depended on both surface adsorption and electrostatic adhesion. TA removal by ZVI mainly relied on coagulation/precipitation and adsorption during the iron corrosion. The two MI-PRBs are feasible alternatives for in situ remediation of groundwater with elevated As levels.
机译:采用酸活化-钠活化-氧化铁包覆法制备了改性蒙脱土,以提高天然MMTs的吸附能力。对于MMT,其层间距离从12.29埃增加到13.36埃,针铁矿(α-FeO​​OH)被插入其粘土层中。提出了两种新颖的介质注入渗透性反应屏障(MI-PRB)配置,用于从地下水中去除砷。进行砂罐实验以研究两种MI-PRB的性能:罐A装有石英砂。储罐B装有石英砂和零价铁(ZVI)串联,分别将MMT浆料注入其中以形成反应区。结果表明,对于储罐A,在头60毫米内总砷(TA)去除率为98.57%,随后在出口处缓慢下降至88.84%。对于储罐B,在石英砂层中观察到了类似的空间变化趋势,随后,在ZVI层中TA的去除率增加到> = 99.80%。 MMT去除TA主要取决于表面吸附和静电粘附。 ZVI去除TA主要依赖于铁腐蚀过程中的凝结/沉淀和吸附。这两种MI-PRB是原位修复As水平升高的地下水的可行替代方法。

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