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Study on the Degradation of VOCs in a Plasma-Catalyst Hybrid Reactor

机译:血浆催化剂杂交反应器中VOCs降解研究

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The performance of a plasma-catalyst hybrid reactor for VOCs removal was studied in this paper. xylene and MnOx were acted as the pollutant and catalyst, respectively. The combinations between reactor and catalyst were conducted in active discharging and post discharging zone, respectively. The parameters investigated included discharge power, discharge gap width, inlet xylene concentration and moisture content in the gas stream. The CO_2 selectivity was determined synchronously. Experimental results indicated that, no matter where the catalyst was located, the plasma-catalyst hybrid technology can effectively destroy xylene molecules. For dry gas stream, high removal efficiency of xylene would accompany with the high power and low inlet concentration, and achieved the best at different discharge gap width in different combining zone. Too much or too little water vapor did not favor xylene destruction. An optimal xylene removal was reached at around 1.6% by volume of humidity content. In addition, the more important result obtained from this work was that, despite the changes of experimental conditions, the higher synergetic effect was always occurred when the catalyst was placed in the post discharging zone. The same conclusion was educed on CO_2 selectivity, and then, benefit the environment.
机译:本文研究了对VOCS去除的血浆催化剂杂交反应器的性能。二甲苯和汞柱分别作为污染物和催化剂作用。反应器和催化剂之间的组合分别在主动排出和后排出区进行。研究的参数包括在气流中的放电功率,放电间隙宽度,入口二甲苯浓度和水分含量。同步确定CO_2选择性。实验结果表明,无论催化剂所在的那么,等离子体催化剂杂化技术都能有效地破坏二甲苯分子。对于干气流,二甲苯的高除去效率将伴随着高功率和低入口浓度,并在不同组合区域的不同放电间隙宽度实现了最佳。水蒸气太多或太少没有偏爱二甲苯破坏。最佳的二甲苯去除以约1.6体积%的湿度含量。此外,从这项工作中获得的更重要的结果是,尽管实验条件的变化,当催化剂置于后排出区中时,总是发生更高的协同效果。在CO_2选择性上引发了相同的结论,然后有利于环境。

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