Instituto Nacional del Carbón, CSIC, Apartado 73, 33080 Oviedo, Spain.
Bioresour Technol. 2010 May;101(9):3230-5. doi: 10.1016/j.biortech.2009.12.035. Epub 2010 Jan 12.
Four coals of different rank were gasified, using a steam/oxygen mixture as gasifying agent, at atmospheric and elevated pressure in a fixed bed reactor fitted with a solids feeding system in continuous mode. Independently of coal rank, an increase in gasification pressure led to a decrease in H(2) + CO production and carbon conversion. Gasification of the different rank coals revealed that the higher the carbon content and reactivity, the greater the hydrogen production. Co-gasification experiments of binary (coal-biomass) and ternary blends (coal-petcoke-biomass) were conducted at high pressure to study possible synergetic effects. Interactions between the blend components were found to modify the gas production. An improvement in hydrogen production and cold gas efficiency was achieved when the coal was gasified with biomass.
四种不同等级的煤在固定床反应器中使用蒸汽/氧气混合物作为气化剂,在常压和加压条件下进行气化,配备固体进料系统,以连续模式运行。与煤的等级无关,气化压力的增加导致 H(2) + CO 产量和碳转化率降低。不同等级的煤的气化表明,碳含量和反应性越高,产氢量越大。在高压下进行了二元(煤-生物质)和三元混合物(煤-石油焦-生物质)的共气化实验,以研究可能的协同效应。发现混合物成分之间的相互作用会改变气体的产生。当煤与生物质一起气化时,氢气产量和冷煤气效率得到提高。