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在铜离子存在下,Fe(II)-Fe(III)体系对四氯化碳的强化修复作用。

Enhanced remediation of carbon tetrachloride by Fe(II)-Fe(III) systems in the presence of copper ions.

作者信息

Maithreepala R A, Doong R A

机构信息

Department of Atomic Science, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

Water Sci Technol. 2004;50(8):161-8.

Abstract

The effect of Cu(II) ion on the dechlorination of carbon tetrachloride (CT) by Fe(II) associated with various iron oxides was investigated. Iron oxides including goethite, hematite, ferrihydrite and magnetite were selected as the model compounds. CT was dechlorinated to chloroform (CF) by 3 mM Fe(II) in iron oxide suspensions at pH 7.2. The dechlorination followed pseudo first-order kinetics and the pseudo first-order rate constants (k(obs)) were 0.048 h(-1), 0.0836 h(-1), 0.0609 h(-1) and 0.0144 h(-1) in goethite-, hematite-, ferrihydrite- and magnetite-amended systems, respectively. Addition of Cu(II) into systems increased the k(obs) for CT dechlorination significantly. A 3- to 120-fold increase in k(obs) relative to the systems without Cu(II) was observed when 0.5 mM Cu(II) was added to the Fe(II)-Fe(III) suspensions. The pH of the system is an important factor controlling the dechlorination rate of CT. The increase in concentrations of Fe(II) and iron oxides also enhanced the dechlorination efficiency and rate of CT. Moreover, a linear relationship between the k(obs) and Cu(II) concentration ranging between 0 and 0.4 mM was observed. Results obtained demonstrate the feasibility of using surface-bound iron species with Cu(III) for the detoxification of chlorinated solvents in the contaminated aquifers.

摘要

研究了Cu(II)离子对与各种铁氧化物结合的Fe(II)脱除四氯化碳(CT)中氯的影响。选用针铁矿、赤铁矿、水铁矿和磁铁矿等铁氧化物作为模型化合物。在pH 7.2的铁氧化物悬浮液中,3 mM Fe(II)可将CT脱氯为氯仿(CF)。脱氯遵循准一级动力学,在针铁矿、赤铁矿、水铁矿和磁铁矿改性体系中,准一级速率常数(k(obs))分别为0.048 h(-1)、0.0836 h(-1)、0.0609 h(-1)和0.0144 h(-1)。向体系中添加Cu(II)显著提高了CT脱氯的k(obs)。当向Fe(II)-Fe(III)悬浮液中添加0.5 mM Cu(II)时,相对于无Cu(II)的体系,k(obs)增加了3至120倍。体系的pH值是控制CT脱氯速率的重要因素。Fe(II)和铁氧化物浓度的增加也提高了CT的脱氯效率和速率。此外,观察到k(obs)与0至0.4 mM之间的Cu(II)浓度呈线性关系。所得结果证明了使用与Cu(III)结合的表面铁物种对受污染含水层中的氯化溶剂进行解毒的可行性。

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