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A Microwave-Assisted Boudouard Reaction: A Highly Effective Reduction of the Greenhouse Gas CO

机译:微波炉辅助Boudouard反应:高效减少温室气体公司

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摘要

The conversion of CO2 into more synthetically flexible CO is an effective and potential method for CO2 remediation, utilization and carbon emission reduction. In this paper, the reaction of carbon-carbon dioxide (the Boudouard reaction) was performed in a microwave fixed bed reactor using semi-coke (SC) as both the microwave absorber and reactant and was systematically compared with that heated in a conventional thermal field. The effects of the heating source, SC particle size, CO2 flow rate and additives on CO2 conversion and CO output were investigated. By microwave heating (MWH), CO2 conversion reached more than 99% while by conventional heating (CH), the maximum conversion of CO2 was approximately 29% at 900 °C. Meanwhile, for the reaction with 5 wt% barium carbonate added as a promoter, the reaction temperature was significantly reduced to 750 °C with an almost quantitative conversion of CO2. Further kinetic calculations showed that the apparent activation energy of the reaction under microwave heating was 46.3 kJ/mol, which was only one-third of that observed under conventional heating. The microwave-assisted Boudouard reaction with catalytic barium carbonate is a promising method for carbon dioxide utilization.
机译:CO2转化为更合成柔性CO是CO2修复,利用率和碳排放减少的有效且潜在的方法。在本文中,使用半焦(SC)在微波防盖反应器中以微波吸收器和反应物进行碳 - 二氧化碳(Boudouard反应)的反应,并与传统热场中加热的系统(系统) 。研究了加热源,SC粒度,CO2流速和添加剂对CO 2转化和CO输出的影响。通过微波加热(MWH),CO 2转化率达到99%,而通过常规加热(CH),CO 2的最大转化率在900℃下约为29%。同时,对于加入5wt%碳酸钡作为启动子的反应,反应温度显着降低至750℃,几乎定量转化CO 2。进一步的动力学计算表明,微波加热下反应的表观活化能量为46.3kJ / mol,仅在常规加热下观察到的三分之一。催化钡碳酸钡的微波辅助Boudouard反应是用于二氧化碳利用的有希望的方法。

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