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Degradation of 4-Chlorophenol Solution by Synergetic Effect of Dual-frequency Ultrasound with Fenton Reagent 被引量:8
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作者 赵德明 徐新华 +1 位作者 雷乐成 汪大翚 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第2期204-210,共7页
4-Chlorophenol (4-CP) solution was treated by dual-frequency ultrasound inconjunction with Fenton reagent, and obvious improvement in the 4-CP degradation rate was observedin this advanced oxidation process. Experimen... 4-Chlorophenol (4-CP) solution was treated by dual-frequency ultrasound inconjunction with Fenton reagent, and obvious improvement in the 4-CP degradation rate was observedin this advanced oxidation process. Experimental results showed that ultrasonic intensity,saturating gas and pH value affected greatly the 4-CP removal rate. Among four different saturatinggases (Ar, O_2, air and N_2), 4-CP degradation with Ar-saturated solution was the best. However, inthe view of practical wastewater treatment, using oxygen as the saturating gas would be moreeconomical. The addition of Fenton reagent followed the first-order kinetics and increased the 4-CPdegradation rate. The 4-CP removal rate increased by around 126% within 15 min treatment. Thesynergetic effect of dual-frequency ultrasound with Fenton reagent on 4-CP degradation was obviouslyobserved. 展开更多
关键词 dual-frequency ultrasound with Fenton reagent advanced oxidation process synergetic effect
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Mechanism and kinetics of 2-chlorophenol decomposition using coupled ultrasound and electrocatalysis 被引量:2
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作者 WANG JiaDe ZHU RunYe +1 位作者 CHEN Xia CHEN JianMeng 《Science China Chemistry》 SCIE EI CAS 2008年第6期577-585,共9页
A coupled ultrasound/electrocatalysis(US/EC) process was used to enhance the decomposition effi-ciency of organics.The synergetic kinetics and the mechanism of 2-chlorophenol(2-CP) decomposi-tion with coupled US/EC we... A coupled ultrasound/electrocatalysis(US/EC) process was used to enhance the decomposition effi-ciency of organics.The synergetic kinetics and the mechanism of 2-chlorophenol(2-CP) decomposi-tion with coupled US/EC were studied.It was found that in a US/EC process 2-CP is attacked by active radicals(such as hydroxyl radicals) to form 2-chloro-p-benzoquinone,and the latter is oxidized to simple organic acids when the ring is opened.The enhancement factor expressed by the apparent rate constant of 2-CP decomposition with coupled US/EC is 1.324 at a current density of 20 mA·cm-2,an ultrasonic frequency of 20 kHz,an ultrasonic intensity of 0.27 W·cm-2,and a 2-CP initial concentration of 200 mg·L-1,which means that a synergetic effect exists.A model derived from Langmuir adsorption theory of solid surface and reaction kinetics equations can describe exactly the decomposition of 2-CP with coupled US/EC.The numerical values are in good agreement with the experimental data.The model parameters are associated with reaction conditions. 展开更多
关键词 ultrasound/electrocatalysis synergetic oxidation MECHANISM KINETICS 2-CHLOROPHENOL
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基于均相光化学氧化的光电一体化降解对硝基苯酚的研究 被引量:28
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作者 周明华 吴祖成 +2 位作者 祝巨 叶倩 傅锦 《催化学报》 SCIE CAS CSCD 北大核心 2002年第4期376-380,共5页
考察了模型污染物对硝基苯酚在三种均相光化学高级氧化工艺UV/H2 O2 ,UV/Fe3 + 和UV/Fe3 + /H2 O2 同电催化联合工艺下的降解 .对于COD的去除 ,三种光电联合工艺均不同程度地存在协同效应 ,其中以UV/Fe3 + 电催化联合工艺的协同效应最... 考察了模型污染物对硝基苯酚在三种均相光化学高级氧化工艺UV/H2 O2 ,UV/Fe3 + 和UV/Fe3 + /H2 O2 同电催化联合工艺下的降解 .对于COD的去除 ,三种光电联合工艺均不同程度地存在协同效应 ,其中以UV/Fe3 + 电催化联合工艺的协同效应最显著 .分析了形成协同效应的可能机理 .在UV/H2 O2 电催化联合的工艺中 ,主要为电催化副产物氧气及其间接反应产物如过氧化氢作用的结果 .而在UV/Fe3 + 和UV/Fe3 + /H2 O2 同电催化联合的工艺中 ,主要为铁离子的电化学再生 .对硝基苯酚降解的主要产物有苯酚、对苯二酚、对苯醌、4 硝基 1,2 苯二酚、1,2 ,4 苯三酚、5 硝基 1,2 ,3 苯三酚、反丁烯二酸和草酸等 ,并在此基础上提出了降解对硝基苯酚的可能历程 .光电一体化工艺提高了COD的处理效率 ,工艺简单 ,对废水治理具有很好应用前景 . 展开更多
关键词 光电一体化降解 均相光化学氧化 电催化 对硝基苯酚 协同效应 废水处理 光催化
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Ni基Ag-Cu合金电极的制备及其在水杨酸降解过程的应用
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作者 宋秀丽 闫瑞景 +1 位作者 刘宪 芦宝平 《材料保护》 CAS CSCD 2021年第3期100-105,共6页
为给电极的制备及水杨酸的降解提供一定理论依据,采用电沉积法制备了Ni基Ag-Cu合金电极并应用于水杨酸的降解过程。对不同Ag-Cu物质的量比例的Ni基Ag-Cu合金电极的电化学性能进行了考察,探索了在板间距、外加电压、电解时间等试验条件... 为给电极的制备及水杨酸的降解提供一定理论依据,采用电沉积法制备了Ni基Ag-Cu合金电极并应用于水杨酸的降解过程。对不同Ag-Cu物质的量比例的Ni基Ag-Cu合金电极的电化学性能进行了考察,探索了在板间距、外加电压、电解时间等试验条件相同时,不同电解液浓度对水杨酸降解率的影响,比较了电化学氧化降解和声电协同降解效果。结果表明:在温度、电流密度、电极间距、电极材料等试验条件相同,当电沉积液n_(Ag)∶n_(Cu)=8∶2时,Ni基Ag-Cu合金电极表面形貌良好,对水杨酸的降解率最高。Na_(2)SO_(4)作为电解质时最佳电解液浓度为1.064 g/L,此时对水杨酸的电化学氧化降解率为98.01%,而声电协同降解率为99.89%,协同效应下降解完全程度更高。 展开更多
关键词 电沉积法 Ag-Cu合金电极 电化学氧化降解 声电协同降解 水杨酸
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