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基于柱型碳纤维电极阳极聚合作用的双酚A电化学去除法

Electrochemical removal of bisphenol A based on the anodic polymerization using a column type carbon fiber electrode.

作者信息

Kuramitz Hideki, Matsushita Minako, Tanaka Shunitz

机构信息

Division of Material Science, Graduate School of Environmental Earth Science, Hokkaido University, Sapporo, Hokkaido 060-0810, Japan.

出版信息

Water Res. 2004 May;38(9):2330-7. doi: 10.1016/j.watres.2004.02.023.

Abstract

Electrochemical removal based on the polymerization of organic pollutants on an anode surface was performed on bisphenol A (BPA) and its derivatives, bisphenol S (BPS) and diphenolic acid (DPA). It was confirmed by voltammetric techniques that the electrochemical oxidation of these compounds leads to the formation of a polymeric film on a carbon electrode surface. The electrochemical removals of BPA, BPS and DPA based on the anodic polymerization were attempted in the batch type cell. A carbon fiber (CF) was used as an anode with a very large surface area. The high removal efficiency for BPA, BPS, and DPA was obtained by applying a potential at 0.75-, 1.0-, and 0.8-V, respectively. The removal efficiency for BPA does not decrease in the presence of 10ppm humic acid. The electropolymerized BPA film formed on the CF surface was characterized by FT-IR and UV/vis. The continuous treatment of BPA was achieved by using the flow system with a column type of CF electrode. The applicability of this method for removal of BPA from aqueous solution was tested at several different conditions, i.e., flow rate of solution and concentration of electrolyte and BPA. This system can be applied for removal of a low concentration BPA even from low electrolyte concentrations of aqueous solution.

摘要

基于有机污染物在阳极表面聚合的电化学去除方法应用于双酚A(BPA)及其衍生物双酚S(BPS)和二酚酸(DPA)。伏安技术证实,这些化合物的电化学氧化会导致在碳电极表面形成聚合物膜。基于阳极聚合的BPA、BPS和DPA的电化学去除在间歇式电解槽中进行尝试。使用具有非常大表面积的碳纤维(CF)作为阳极。分别在0.75V、1.0V和0.8V的电位下,BPA、BPS和DPA获得了较高的去除效率。在存在10ppm腐殖酸的情况下,BPA的去除效率不会降低。通过傅里叶变换红外光谱(FT-IR)和紫外可见光谱(UV/vis)对在CF表面形成的电聚合BPA膜进行了表征。使用带有柱型CF电极的流动系统实现了对BPA的连续处理。在几种不同条件下,即溶液流速、电解质浓度和BPA浓度,测试了该方法从水溶液中去除BPA的适用性。该系统甚至可以应用于从低电解质浓度的水溶液中去除低浓度的BPA。

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