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Advanced Oxidation Processes with Tube-type wet Electrostatic Precipitators

机译:具有管式湿静电除尘器的先进氧化方法

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The electrostatic precipitator (ESP) is commonly used for the removal of particulate matter in offgas purification in process industries and other applications. During operation, the discharge electrode produces ozone [1, 2] which is considered as hazardous pollutant in off‐gas treatment. This project has a focus on the investigation of ozone generation under specific operational conditions of wet electrostatic precipitators for applications in wastewater treatment and off‐gas purification. Focus of this project was to determine the degradation rate of different organic constituents like acetone, isopropanol, phenol and EDTA in the rinsing water flux of a tube‐type wet ESP. Objective was optimisation of the current/voltage characteristic, air flow rate and water circulation rate for efficient degradation of constituents. The results reveal that degradation efficiency of constituents in aqueous effluents by corona discharge is enhanced due to ozone formation with increasing operation voltage for fixed air flow rate. When water circulation rate is optimised nearly complete absorption of generated ozone and degradation of constituents is observed. Complete degradation of acetone, iso‐propanol as well as decomposition of phenol and EDTA in water was achieved. Toc depletion and pH variation are very comparable with the results obtained by UV irradiation of ozonated effluents. The experimental results of investigating degradation of specified constituents confirm that with minor adjustments wet electrostatic precipitators work as very efficient oxidation reactors for advanced oxidation processes. Wet ESPs can well be applied for gas purification (including precipitation of particulate as well as gaseous matter), or water purification as well as simultaneous air and water purification.
机译:静电除尘器(ESP)通常用于在工艺行业和其他应用中的废气净化中除去颗粒物质。在操作期间,放电电极产生臭氧[1,2],其被认为是废气处理中的危险污染物。该项目专注于在湿静电除尘器的特定运行条件下对湿静电除尘器的特定操作,以进行废水处理和废气净化。该项目的重点是确定不同有机成分的降解率,如丙酮,异丙醇,苯酚和EDTA在管式湿镜头的漂洗水通量中。目的是优化电流/电压特性,空气流速和水循环速率,以便有效地降解成分。结果表明,由于臭氧形成,增强了通过电晕放电的含水流出物中的成分的降解效率。当优化水循环速率时,几乎完全吸收产生的臭氧和成分的降解。实现了丙酮,异丙醇的完全降解,苯酚和EDTA在水中的分解。 TOC耗尽和pH变异与通过UV照射臭氧含量的结果获得的结果非常比较。研究指定成分的降解的实验结果证实,随着微小调节湿静电除尘器,作为高效氧化过程的非常有效的氧化反应器。湿效应均可用于气体纯化(包括颗粒和气体物质的沉淀),或水净化以及同时空气和水净化。

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