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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Study on the removal of hexavalent chromium from contaminated groundwater using emulsified vegetable oil
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Study on the removal of hexavalent chromium from contaminated groundwater using emulsified vegetable oil

机译:乳化植物油从污染地下水中除去六价铬的研究

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Emulsified vegetable oil (EVO) is an oil -in -water emulsion that could serve as a slowly released electron donor. In this work, column experiments were conducted to elucidate feasibility of EVO for removing hexavalent chromium from groundwater, and to investigate the influences of adding acetate and Mg(OH)(2) as amendment. Results showed that a one-time EVO injection stimulated a depletion of terminal electron acceptors, such as O-2, Fe(III), and released aqueous Fe(II), generating reducing conditions and resulting in a drastic decrease in Cr(VI) concentration. EVO and amended EVO is feasible to remove Cr(VI) from groundwater. EVO added columns (EVO, EVO + acetate, EVO + Mg(OH)(2)) retained and removed Cr(VI) contamination in simulated groundwater for 177, 191 and more than 240 days, respectively. Cr(VI) was completely removed from simulated groundwater and XPS characterization confirmed that it was stably immobilized in sediments as Cr(III) compounds. In addition, the amendment of EVO with acetate and Mg(OH)(2) facilitated EVO performance on Cr(VI) removal by enhancing the bioreduction of Fe(III). Microbial community structure analysis revealed that EVO injection cause decline in microbial community richness and diversity while induced accumulation of microbes related to organic fermentation and iron reduction, showing potential for further Cr(VI) removal. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:乳化植物油(EVO)是一种水包油乳液,可以作为缓慢释放的电子供体。在这项工作中,进行了柱实验,以阐明EVO去除地下水中六价铬的可行性,并研究添加醋酸盐和Mg(OH)(2)作为添加剂的影响。结果表明,一次性EVO注入刺激末端电子受体(如O-2、Fe(III))的耗尽,并释放水溶液Fe(II),产生还原条件,导致Cr(VI)浓度急剧降低。EVO和改良EVO去除地下水中的六价铬是可行的。EVO添加柱(EVO、EVO+醋酸盐、EVO+Mg(OH)(2))分别在177、191和240天内保留和去除模拟地下水中的Cr(VI)污染。Cr(VI)被完全从模拟地下水中去除,XPS表征证实它作为Cr(III)化合物稳定地固定在沉积物中。此外,添加醋酸盐和Mg(OH)(2)的EVO通过增强Fe(III)的生物还原,促进了EVO去除Cr(VI)的性能。微生物群落结构分析表明,EVO注入导致微生物群落丰富度和多样性下降,同时导致与有机发酵和铁还原相关的微生物积累,显示出进一步去除Cr(VI)的潜力。(C) 2017年化学工程师学会。由爱思唯尔B.V.出版。版权所有。

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