The Demonstration of the Superiority of the Dual Ni-Based Catalytic System for the Adjustment of the H-2/CO Ratio in Syngas for Green Fuel Technologies

CATALYSTS(2020)

引用 4|浏览7
暂无评分
摘要
A novel dual Ni-based catalytic process (DCP) to control the H-2/CO ratio of 2 in the syngas product within one step at temperature <700 degrees C was created and constructed. With the sequence of the catalysts located in the single reactor, the endothermic combined steam and CO(2)reforming of methane (CSCRM) reaction and the exothermic ultra-high-temperature water-gas shift (UHT-WGS) reaction work continuously. During the process, the H-2/CO ratio is raised suddenly at UHT-WGS after the syngas is produced from CSCRM, and CSCRM utilizes the heat released from UHT-WGS. Due to these features, DCP is more compact, enhances energy efficiency, and thus decreases the capital cost compared to reformers connecting with shift reactors. To prove this propose, the DCP tests were done in a fixed-bed reactor under various conditions (temperature = 500, 550, and 600 degrees C; the feed mixture (CH4, CO2, H2O, and N-2) with H2O/(CH4+ CO2) ratio = 0.33, 0.53, and 0.67). According to the highest CH(4)conversion (around 65%) with carbon tolerance, the recommended conditions for producing syngas with the H-2/CO ratio of 2 as a feedstock of Fischer-Tropsch synthesis include the temperature of 600 degrees C and the H2O/(CH4+ CO2) ratio of 0.53.
更多
查看译文
关键词
dual catalytic process,low temperature syngas production,methane reforming,Ni-based catalysts,ultra-high-temperature water-gas shift,Fischer-Tropsch synthesis
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要