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The thermo-chemical potential liquid chemical looping gasification with bismuth oxide

机译:氧化铋的热化学势液态化学循环气化

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The thermodynamic potential of a chemical looping gasification with liquid bismuth oxide for the production of syngas was assessed using thermo-chemical analysis. In the proposed process, the feedstock is partially oxidised by the molten bismuth in the gasification reactor and then oxidised with air in the air reactor. The motivation for this process is its potential to avoid both the technical challenges associated with the use of solid oxygen carriers in conventional chemical looping gasification systems (e.g. agglomeration and sintering of solid-state oxygen carrier) and the challenge of dilution of syngas with nitrogen that occurs in conventional air gasification systems. This revealed thermochemical potential to achieve a higher quality of syngas for a given amount of steam than has been reported previously for other gasification systems at a moderate temperature of 850 degrees C. Plausible approaches to address the research challenges that need to be overcome to implement the method are also identified, justifying further development of the technology. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用热化学分析评估了使用液态氧化铋进行化学循环气化生产合成气的热力学潜力。在提出的方法中,原料在气化反应器中被熔融铋部分氧化,然后在空气反应器中被空气氧化。此过程的动机是它有可能避免与在常规化学回路气化系统中使用固体氧载体相关的技术挑战(例如固态氧载体的团聚和烧结),以及避免合成气被氮气稀释的挑战。发生在常规的空气气化系统中。这揭示了在给定的蒸汽量下,比以前在850℃的中等温度下对其他气化系统所报告的,合成化学气具有更高质量的热化学潜力。可行的方法来应对研究挑战,以实现这一目标。还确定了方法,证明了该技术的进一步发展。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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