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VOC removal by synergic effect of combustion catalyst and ozone

机译:通过燃烧催化剂和臭氧的协同作用去除VOC

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摘要

The synergic effects of the combustion catalyst Ba-CuO-Cr_2O_3/Al_2O_3 and ozone, used as strong oxidant species in the combustion of various VOCs, were studied. The experiments were performed with five different methods by feeding the organics with air (1000 ppmV) before (methods 2 and 4) and after the ozone generator (methods 1, 3 and 5), they entered into the catalytic reactor (methods 1, 2 and 3) or were directly analyzed (methods 4 and 5). The concentration profiles of the organics were compared as a function of the reaction temperature (from 100 to 500℃) for the methods 1, 2 and 3 and as a function of the peak voltage of the ozone generator (2-10 kV), that is the ozone concentration (up to 2000 ppm) for methods 4 and 5. Ozone strongly reacted in the gas phase with aromatic molecules and organics having functional groups. Moreover, a positive ionizing effect produced by the corona discharge in the ozone generator on the destruction of the organics was found too.
机译:研究了燃烧催化剂Ba-CuO-Cr_2O_3 / Al_2O_3与臭氧在各种VOCs燃烧中作为强氧化剂的协同效应。实验是通过五种不同的方法进行的,方法是在方法2和4中向有机物供气(1000 ppmV),然后在臭氧发生器1、3和5方法中将有机物进入催化反应器(方法1和2)。和3)或直接进行分析(方法4和5)。比较了方法1,方法2和方法3中有机物的浓度分布与反应温度(100至500℃)的关系以及臭氧发生器的峰值电压(2-10 kV)的影响,即是方法4和5的臭氧浓度(最高2000 ppm)。臭氧在气相中与芳族分子和具有官能团的有机物强烈反应。此外,还发现由臭氧发生器中的电晕放电产生的对有机物破坏的正电离作用。

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