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CO2 conversion by thermal plasma with carbon as reducing agent: high CO yield and energy efficiency

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【作者】 刘朋刘雪松沈俊印永祥杨涛黄强Daniel AUERBACHAart W KLEIYN

【Author】 Peng LIU;Xuesong LIU;Jun SHEN;Yongxiang YIN;Tao YANG;Qiang HUANG;Daniel AUERBACH;Aart W KLEIYN;School of Chemical Engineering, Sichuan University;Center of Interface Dynamics for Sustainability, Institute of Materials, China Academy of Engineering Physics;

【通讯作者】 杨涛;Aart W KLEIYN;

【机构】 School of Chemical Engineering, Sichuan UniversityCenter of Interface Dynamics for Sustainability, Institute of Materials, China Academy of Engineering Physics

【摘要】 A key problem in CO2 conversion by thermal plasma is suppressing the inverse reactions,CO?+?O?→?CO2 and CO?+?0.5O2?→?CO2, to simultaneously obtain high CO yield and energy efficiency. This can be done by quickly quenching the decomposed gas or rapidly taking away free oxygen from decomposed gas. In this paper, experiments of CO2 conversion by thermal plasma with carbon as a reducing agent are presented. Carbon quickly devoured free oxygen in thermal plasma decomposed gas, and not only is the inverse reaction completely suppressed, but the discharge energy to form oxygen atoms, oxygen molecular, and thermal energy is also reused.A CO2 conversion rate of 67%–94% and the corresponding electric energy efficiency of about 70% are achieved, both are much higher than that seen so far by other plasma implementations.

【Abstract】 A key problem in CO2 conversion by thermal plasma is suppressing the inverse reactions,CO?+?O?→?CO2 and CO?+?0.5O2?→?CO2, to simultaneously obtain high CO yield and energy efficiency. This can be done by quickly quenching the decomposed gas or rapidly taking away free oxygen from decomposed gas. In this paper, experiments of CO2 conversion by thermal plasma with carbon as a reducing agent are presented. Carbon quickly devoured free oxygen in thermal plasma decomposed gas, and not only is the inverse reaction completely suppressed, but the discharge energy to form oxygen atoms, oxygen molecular, and thermal energy is also reused.A CO2 conversion rate of 67%–94% and the corresponding electric energy efficiency of about 70% are achieved, both are much higher than that seen so far by other plasma implementations.

【基金】 the supports of National Natural Science Foundation of China (Nos. 11775155, 51561135013, 21603202)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2019年01期
  • 【分类号】TQ031
  • 【被引频次】1
  • 【下载频次】50
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