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活性炭纤维电化学氧化对水溶液中痕量有毒金属离子竞争和非竞争吸附的影响。

Effect of electrochemical oxidation of activated carbon fiber on competitive and noncompetitive sorption of trace toxic metal ions from aqueous solution.

作者信息

Harry I D, Saha B, Cumming I W

机构信息

Advanced Separation Technologies Group, Department of Chemical Engineering, Loughborough University, Loughborough, LE11 3TU, Leicestershire, United Kingdom.

出版信息

J Colloid Interface Sci. 2006 Dec 1;304(1):9-20. doi: 10.1016/j.jcis.2006.08.012. Epub 2006 Oct 2.

Abstract

A viscose-rayon-based activated carbon cloth (ACC) was electrochemically oxidized to enhance its cation sorption capacity for comparison with as-received ACC. The ACCs were characterized by sodium capacity measurement, pH titration, zeta potential measurement, elemental analysis, Brunauer-Emmet-Teller surface area, and pore size distribution. Batch sorption experiments showed that electrochemically oxidized ACC (EO) is more effective for the removal of lead and copper ions compared to unoxidized ACC (UO) for both competitive and noncompetitive sorption. For electrochemically oxidized fibers the copper and lead sorption capacities of ACC increased 17 and 4 times, respectively, for noncompetitive sorption and 8.8 and 8.6 times, respectively, for competitive sorption. However, reduction in the sorption capacities for both metals was observed for the competitive sorption. The sorption of lead and copper onto EO was by ion exchange, while that onto UO was likely to be due to surface complex formation. The affinity order of the two metal ions sorbed by UO and EO is Pb(2+)>Cu(2+). The effect of pH on sorption isotherms indicated that metal uptake increased with an increase in solution pH.

摘要

将一种粘胶基活性炭布(ACC)进行电化学氧化,以提高其阳离子吸附能力,以便与原样ACC进行比较。通过钠容量测量、pH滴定、zeta电位测量、元素分析、布鲁诺尔-埃米特-泰勒表面积和孔径分布对ACC进行了表征。批量吸附实验表明,对于竞争性和非竞争性吸附,与未氧化的ACC(UO)相比,电化学氧化的ACC(EO)对铅和铜离子的去除更有效。对于电化学氧化纤维,ACC对铜和铅的吸附容量在非竞争性吸附中分别增加了17倍和4倍,在竞争性吸附中分别增加了8.8倍和8.6倍。然而,在竞争性吸附中观察到两种金属的吸附容量均降低。铅和铜在EO上的吸附是通过离子交换,而在UO上的吸附可能是由于表面络合物的形成。UO和EO吸附的两种金属离子的亲和顺序为Pb(2+)>Cu(2+)。pH对吸附等温线的影响表明,金属的吸收量随溶液pH的升高而增加。

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