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Dechlorination of tetrachloroethylene by palladized iron in the presence of humic acid

机译:腐殖酸存在下用钯铁对四氯乙烯进行脱氯

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The dechlorination of tetrachloroethylene (PCE) by palladized irons in the presence of humic acid was investigated to understand the feasibility of using Pd/Fe for the in situ remediation of contaminated groundwater. Untreated zerovalent iron (ZVI) was amended with Pd(Ⅱ) ions to form palladized irons. X-ray photoelectron spectroscopy showed that Pd(Ⅱ) was completely reduced to metallic Pd on the surface of ZVI. PCE was catalytically dechlorinated via β-elimination to ethane and ethylene by palladized irons. The carbon mass balances were in the range of 78-98%. The dechlorination followed the pseudo first-order rate equation and the normalized surface reaction rate constant (k_(sa)) for PCE dechlorination was 33.47 ± 7.21 L/m~2 h in the absence of humic acid. Humic acid competed the reactive sites on the palladized irons with PCE, and thus lowered the dechlorination efficiency and rate of PCE. After 24 h of equilibrium between humic acid and palladized irons prior to the injection of PCE, however, the efficiency and rate of PCE dechlorination could increase with increasing concentrations of humic acid. Addition of quinones having low redox potentials including AQDS, lawsone and hydroquinone also enhanced the dechlorination efficiency of PCE after 24 h, depicting that humic acids serve as the electron shuttles to effectively transfer electrons and to accelerate the dechlorination efficiency and rate of PCE.
机译:研究了在腐殖酸存在下用钯铁对四氯乙烯(PCE)进行脱氯的方法,以了解使用Pd / Fe原位修复受污染地下水的可行性。将未经处理的零价铁(ZVI)与Pd(Ⅱ)离子一起修饰以形成钯铁。 X射线光电子能谱表明,ZVI表面Pd(Ⅱ)被完全还原为金属Pd。 PCE通过β-消除反应被钯铁催化脱氯为乙烷和乙烯。碳质量平衡在78-98%的范围内。脱氯遵循伪一级速率方程,在没有腐殖酸的情况下,PCE脱氯的归一化表面反应速率常数(k_(sa))为33.47±7.21 L / m〜2 h。腐殖酸与PCE竞争了钯铁上的反应位点,从而降低了PCE的脱氯效率和速率。但是,在注入PCE之前,在腐殖酸和钯化铁之间达到24小时平衡后,PCE脱氯的效率和速率会随着腐殖酸浓度的增加而增加。添加具有低氧化还原电位的醌,包括AQDS,Lawone和对苯二酚,还可以提高24小时后PCE的脱氯效率,这表明腐殖酸充当电子穿梭物,可以有效地转移电子并加快PCE的脱氯效率和速率。

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