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Boosting methanol production via plasma catalytic CO2 hydrogenation over a MnOx/ZrO2 catalyst

机译:Boosting methanol production via plasma catalytic CO2 hydrogenation over a MnOx/ZrO2 catalyst

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摘要

Hydrogenation of carbon dioxide (CO2) to methanol is considered as a potential approach to simultaneously mitigate global warming and energy crisis issues. As an effective and economic oxide, MnOx is widely used as a promoter in catalytic CO2 hydrogenation, but it is rarely directly used as a catalyst in this reaction due to its poor activity. Herein, boosted methanol production over a MnOx/ZrO2 catalyst was carried out via plasma-assisted catalytic CO2 hydrogenation at ambient temperature and pressure. A space–time-yield value of methanol of 4.5 mgMeOH gcat−1 h−1 and a synergy factor of 87 were achieved with a stable performance over five cycles and 36 h. The in situ diffuse reflectance infrared Fourier transform spectroscopy and gas-phase FTIR spectra results indicate that the key intermediates over the MnOx/ZrO2 catalyst shifted from (bi)carbonates species to HCOO and CH3O species in the plasma-assisted process. The methanol formation route was thus established. The beneficial effect of the plasma was the generation of excited species (such as , CO2+, and H), which could be effectively hydrogenated to HCOO and then further to CH3O by the favorable catalytic effect of MnOx. This study proposed a new strategy for catalyst design and methanol synthesis at ambient temperature and pressure.
机译:甲醇加氢的二氧化碳(CO2)被认为是一个潜在的方法吗同时减轻全球变暖和能源危机问题。氧化物、MnOx被广泛用作启动子二氧化碳催化加氢,但却很少在这个反应由于直接用作催化剂可怜的活动。在MnOx /氧化锆催化剂进行生产通过plasma-assisted催化二氧化碳在正常温度和加氢压力。4.5 mgMeOH gcat−1 h 87−1和一个协同作用的因素实现了一个性能稳定在5周期和36 h。原位漫反射率傅里叶变换红外光谱和结果表明,气相红外光谱光谱MnOx /锆催化剂的关键中间体从(bi)转移HCOO和碳酸盐物种plasma-assisted CH3O物种的过程。甲醇形成路线因此成立。等离子体是有益的影响代兴奋物种(如CO2 +,和H),它可以有效的氢化HCOO然后进一步CH3O有利MnOx的催化效果。新战略设计和甲醇催化剂合成在环境温度和压力。

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