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Advanced oxidation of aromatic VOCs using a pilot system with electron beam-catalyst coupling

机译:使用带有电子束-催化剂偶联的先导系统对芳族VOC进行高级氧化

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摘要

The decomposition of volatile organic compounds (VOCs) using a pilot system of electron beam (EB)-catalyst coupling was investigated. Two aromatic VOCs, toluene (1800 ppmC) and o-xylene (1500 ppmC), were irradiated with a dose range of 0-10 kGy at room temperature. The removal efficiencies for toluene and o-xylene were 92.4% and 94.5%, respectively, under a 10 kGy absorbed dose condition, which were higher than the results of 45.7% and 52.3% when EB-only was used, respectively. The CO2 selectivity approached 100% for both toluene and o-xylene using the EB-catalyst coupling system, while the concentrations of O3 formed were 0.02 ppm (toluene) and 0.003 ppm (o-xylene) at 10 kGy. The aerosol concentration was also measured as 43.2 μg/m~3 (toluene) and 53.4 μg/m~3 (o-xylene) at 10 kGy absorbed dose.
机译:研究了使用电子束(EB)-催化剂偶联的先导系统分解挥发性有机化合物(VOC)的方法。在室温下,以0-10 kGy的剂量范围辐照甲苯(1800 ppmC)和邻二甲苯(1500 ppmC)这两种芳香族VOC。在吸收剂量为10 kGy的条件下,甲苯和邻二甲苯的去除效率分别为92.4%和94.5%,高于仅使用EB时的去除率分别为45.7%和52.3%。使用EB催化剂偶联系统,甲苯和邻二甲苯的CO2选择性均接近100%,而在10 kGy时形成的O3浓度为0.02 ppm(甲苯)和0.003 ppm(邻二甲苯)。在吸收剂量为10 kGy时,气溶胶浓度也分别为43.2μg/ m〜3(甲苯)和53.4μg/ m〜3(邻二甲苯)。

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