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作 者:初必旺[1] 苗杰[1] 刘永康 赵顺萍 付尹宣[1] 万平玉[1]
机构地区:[1]北京化工大学理学院,北京100029 [2]北京市自来水集团有限责任公司,北京100031
出 处:《北京化工大学学报(自然科学版)》2011年第6期54-58,共5页Journal of Beijing University of Chemical Technology(Natural Science Edition)
摘 要:采用石墨毡阴极在上、钛钌铱网状阳极在下、以60°倾斜角平行放置的电解槽以及紫外光谱分析和荧光光谱分析方法,对电Fenton法氧化降解水溶液中苯甲酸的效果、条件及机理进行了研究。结果表明,通过斜放电极增加石墨毡阴极与氧气泡的接触机会,有利于H2O2的生成,通过适量添加Fe2+并保持水溶液适当的酸性,有利于H2 O2向.OH的原位顺利转化;电Fenton法氧化降解苯甲酸的较佳条件为:pH=3,Fe2+添加量25 mg/L,电解电流密度3 mA/cm2;在用电Fenton法彻底氧化降解苯甲酸的过程中,存在着苯甲酸转化生成对羟基苯甲酸和间羟基苯甲酸的中间步骤。Benzoic acid degradation by the electro-Fenton method has been studied by fluorescence measurements and ultraviolet spectroscopy,in a novel electrolytic cell in which a graphite felt cathode was placed above a titanium-ruthenium/iridium anode,and the electrodes were tilted by 60° with respect to the electrolyzer base.This design favors electro-generation of H2O2 by extending the contact time between oxygen and the cathode,and hydroxyl radicals were generated in situ from H2O2 catalyzed by an appropriate amount of Fe2+ in acid solution.Optimum electro-degradation of benzoic acid was achieved with a current density of 3 mA/cm2,an initial pH of 3,and a ferrous ion concentration of 25 mg/L.It was found that that p-hydroxybenzoic acid and m-hydroxybenzoic acid were generated as intermediate products in the degradation of benzoic acid.
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