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Toluene oxidation by non-thermal plasma combined with palladium catalysts

机译:非热等离子体结合钯催化剂进行甲苯氧化

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The oxidation of toluene in air was investigated using a dielectric barrier discharge (DBD) combined with a Pd/Al2O3 catalyst. When using only plasma, rather low selectivity towards CO2 was obtained: 32-35%. By filling the DBD reactor with Pd/Al2O3 catalyst the CO2 selectivity was significantly enhanced (80-90%), however, a large amount of toluene was desorbed from the catalyst when the discharge was operated. By filling a quarter of the discharge gap with catalyst and placing the rest of the catalyst downstream of the plasma reactor, an important increase of CO2 selectivity (~75%) and a 15% increase in toluene conversion were achieved as compared to the results with plasma alone. The catalyst exhibited a very good stability in this reaction.
机译:使用介电势垒放电(DBD)与Pd / Al2O3催化剂组合研究了空气中甲苯的氧化。仅使用血浆时,对二氧化碳的选择性较低:32-35%。通过用Pd / Al2O3催化剂填充DBD反应器,可以显着提高CO2选择性(80-90%),但是,当进行放电操作时,大量甲苯会从催化剂中解吸。通过与催化剂相比,通过用催化剂填充排放间隙的四分之一并将其余的催化剂放置在等离子体反应器的下游,可以实现CO2选择性的重要提高(〜75%)和甲苯转化率提高15%。仅血浆。催化剂在该反应中显示出非常好的稳定性。

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