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ZERO VALENT IRON AND CLAY MIXTURES FOR REMOVAL OF TRICHLOROETHYLENE, CHROMIUM(Ⅵ), AND NITRATE

机译:零价铁和粘土混合物,用于去除三氯乙烯,铬(Ⅵ)和硝酸盐

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A series of batch experiments on free swell, hydraulic conductivity, and contaminant removal efficiency was performed for the combination of bentonite and zero valent iron (ZVI), in order to identify the optimal mixing ratio between bentonite and ZVI. The swell volume of the bentonite-ZVI mixtures did not change with increasing ZVI, and the hydraulic conductivity decreased as the ZVI increased. The reduction rates and removal efficiencies of trichloroethylene (TCE), Chromium(Ⅵ), and nitrate increased as ZVI content increased, while there was no practical difference in removal efficiencies between 30% and 100% of ZVI weight contents. Therefore, 30% of the ZVI content was used as the optimal amount in this research since the physical properties, such as swell volume and hydraulic conductivity, as well as the contaminant sorption and reduction were the most efficient. From Raman spectrophotometer analysis, peaks of magnetite, maghemite, and hematite were observed on the surfaces of the bentonites that had been used for the mixtures. Since iron oxides are strong adsorbers of contaminants and magnetites can facilitate the electron transfer of irons, these formations are beneficial for the long-term performance of the iron metals.
机译:对膨润土和零价铁(ZVI)的组合进行了一系列关于自由溶胀,水力传导率和污染物去除效率的分批实验,以确定膨润土和ZVI之间的最佳混合比例。膨润土-ZVI混合物的溶胀量不随ZVI的增加而变化,而水力传导率随ZVI的增加而降低。随着ZVI含量的增加,三氯乙烯(TCE),铬(Ⅵ)和硝酸盐的还原率和去除效率增加,而ZVI重量含量的30%和100%之间的去除效率没有实际差异。因此,本研究中ZVI含量的30%被用作最佳用量,因为物理特性(例如膨胀体积和水力传导率)以及污染物的吸附和还原是最有效的。通过拉曼分光光度计分析,在已用于混合物的膨润土表面上观察到磁铁矿,磁赤铁矿和赤铁矿的峰。由于氧化铁是污染物的强吸附剂,并且磁铁矿可以促进铁的电子转移,因此这些形成对铁金属的长期性能有利。

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