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Experimental study on application of high temperature reactor excess heat in the process of coal and biomass co-gasification to hydrogen-rich gas

机译:煤与生物质共气化富氢气过程中高温反应器余热应用的实验研究

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The paper presents the results of the experimental study on the simulated application of HTR (High Temperature Reactor) excess heat in the process of allothermal co-gasification of coal and biomass. The laboratory scale installation with a fixed bed gasifier and auxiliary gasification agents pre-heating system, simulating the utilization of the HTR excess heat, were applied in the study. Steam and oxygen were the gasification media employed, and the process was focused on hydrogen-rich gas production. The results of the co-gasification of fuel blends of various biomass content at 800 degrees C and in various system configurations proved that the application of the simulated HTR excess heat in pre-heating of the gasification agents leads to the increase in the gaseous product yield. Furthermore, the HCA (Hierarchical Clustering Analysis) employed in the experimental data analysis revealed that the gasification of fuel blends of 20 and 40%w/w of biomass content results in higher volumes of the total gas, hydrogen, carbon monoxide and carbon dioxide than gasification of fuel blends of higher biomass content. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了HTR(高温反应器)过剩热量在煤和生物质的变热共气化过程中模拟应用的实验研究结果。研究中使用了实验室规模的设备,该设备带有固定床气化炉和辅助气化剂预热系统,模拟了HTR余热的利用。蒸汽和氧气是所用的气化介质,该过程集中在富氢气体的生产上。在800摄氏度和各种系统配置下对各种生物质含量的燃料混合物进行共气化的结果证明,模拟的HTR余热在气化剂预热中的应用导致气态产物产量的增加。此外,在实验数据分析中采用的HCA(分层聚类分析)显示,生物质含量为20和40%w / w的燃料混合物的气化导致总气体,氢气,一氧化碳和二氧化碳的体积比高生物质含量的燃料混合物的气化。 (C)2015 Elsevier Ltd.保留所有权利。

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