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Removal of trichloroethylene from waste gases via the peroxone process

机译:通过过氧化物处理从废气中去除三氯乙烯

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In dealing with chlorinated organic compounds in waste gases, traditional treatment techniques show some severe shortcomings. Thermal oxidation may lead to the formation of dioxins, active carbon adsorption does not degrade the pollutants and biotechnological treatment is difficult since microorganisms do not always possess efficient degradation pathways for these compounds. These drawbacks explain the growing interest of the waste gas treatment sector for Advanced Oxidation Processes (AOPs) which were initially developed as water treatment techniques. AOPs generate highly reactive hydroxyl radicals that efficiently oxidise organic pollutants. In the peroxone process, this is done by a combination of ozone and hydrogen peroxide. In this work, the peroxone process is applied in an oxidative scrubber for the removal of trichloroethylene (TCE). Rapid oxidation of absorbed TCE in the liquid phase enhances TCE absorption. Practically, a gas stream contaminated with TCE is mixed with an ozone loaded gas stream. The mixture is led through a bubble column that is fed with a buffered hydrogen peroxide solution. The effect of different process parameters (flow rates, buffer concentration, pH, hydrogen peroxide/ozone dosage ratio, TCE dosage) on TCE removal was investigated. Depending on the operating conditions, removal efficiencies up to 98% could be attained.
机译:在处理废气中的氯代有机化合物时,传统的处理技术显示出一些严重的缺点。热氧化可能导致二恶英的形成,活性炭吸附不会降解污染物,生物技术处理也很困难,因为微生物并不总是拥有这些化合物的有效降解途径。这些缺点说明了废气处理行业对高级氧化工艺(AOP)的日益增长的兴趣,这种工艺最初是作为水处理技术开发的。 AOP产生高反应性的羟基自由基,可有效氧化有机污染物。在过氧化物处理中,这是通过臭氧和过氧化氢的组合来完成的。在这项工作中,过氧化物处理工艺用于氧化洗涤塔中以去除三氯乙烯(TCE)。液相中吸收的三氯乙烯的快速氧化可增强三氯乙烯的吸收。实际上,将受TCE污染的气流与负载臭氧的气流混合。将该混合物通过鼓泡塔,该鼓泡塔供入缓冲的过氧化氢溶液。研究了不同工艺参数(流速,缓冲液浓度,pH,过氧化氢/臭氧剂量比,TCE剂量)对TCE去除的影响。根据操作条件,去除效率最高可达到98%。

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