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Effective combination of non-thermal plasma and catalyst for removal of volatile organic compounds and NOx

机译:非热等离子体和催化剂的有效结合,用于去除挥发性有机化合物和NOx

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摘要

A plasma/catalyst hybrid reactor was designed to overcome the limits of plasma and catalyst technologies. A two-plasma/catalyst hybrid system was used to decompose VOCs (toluene) and NOx at temperature lower than 150℃. The single-stage type (Plasma-driven catalyst process) is the system in which catalysts are installed in a non-thermal plasma reactor. And the two-stage type (Plasma-enhanced process) is the system in which a plasma and a catalyst reactor are connected in series. The catalysts prepared in this experiment were Pt/TiO_2 and Pt/Al_2O_3 of powder type and Pd/ZrO_2. Pt/ZrO_2 and Pt/Al_2O_3 which were catalysts of honeycomb type. When a plasma-driven catalyst reactor with Pt/Al_2O_3 decomposed only toluene, it removed just more 20% than the only plasma reactor but the selectivity of CO_2 was remarkably elevated as compared with only the plasma reactor. In case of decomposing VOCs (toluene) and NOx using plasma-enhanced catalyst reactor with Pt/ZrO_2 or Pt/Al_2O_3, the conversion of toluene to CO_2 was nearly 100% and about 80% of NOx was removed.
机译:设计等离子体/催化剂混合反应器以克服等离子体和催化剂技术的限制。在低于150℃的温度下,采用两等离子体/催化剂混合系统分解VOCs(甲苯)和NOx。单级类型(等离子驱动催化剂工艺)是将催化剂安装在非热等离子体反应器中的系统。并且,两阶段型(等离子体增强法)是等离子体和催化剂反应器串联连接的系统。本实验制备的催化剂为粉末型Pt / TiO_2和Pt / Al_2O_3和Pd / ZrO_2。蜂窝型催化剂Pt / ZrO_2和Pt / Al_2O_3。当具有Pt / Al_2O_3的等离子驱动的催化剂反应器仅分解甲苯时,其去除率仅比仅等离子反应器高20%,但与仅等离子反应器相比,CO_2的选择性显着提高。在使用具有Pt / ZrO_2或Pt / Al_2O_3的等离子增强催化剂反应器分解VOCs(甲苯)和NOx的情况下,甲苯向CO_2的转化率接近100%,大约80%的NOx被去除。

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