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Integrating biomass pyrolysis with waste heat recovery from hot slags via extending the C-loops: Product yields and roles of slags

机译:通过扩展C回路将生物质热解与从热炉渣中回收余热相结合:产品产量和炉渣的作用

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The present study characterized a novel route, biomass pyrolysis using the waste heat in high temperature slags via extending the C-loops in the agricultural sector and metallurgy. The equilibrium yields of valuable syngas and biochar were clarified systemically here, in addition to the polluting gases. The results proved that compared to steel slags (SS), blast furnace slags (BFS) only had a limited influence at low temperatures (700 degrees C). With respect to SS, there was a transition temperature range in which their roles varied remarkably, i.e., an increase of iron oxide content in SS continuously enhanced the CO yield over 700 degrees C, whereas a varying basicity mainly affected the pyrolysis results below 700 degrees C. Regarding the polluting gases, the overall effect of hot slags was quite limited, indicating that no great environmental impacts would be brought in this combined system. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究的特征是通过扩展农业部门和冶金业中的C回路,利用高温炉渣中的废热进行生物质热解的新途径。除了污染气体,这里还系统地阐明了有价值的合成气和生物炭的平衡产量。结果证明,与钢渣(SS)相比,高炉渣(BFS)仅在低温(<700摄氏度)下具有有限的影响。关于SS,存在一个过渡温度范围,在这些温度范围内,它们的作用显着变化,即SS中氧化铁含量的增加在700摄氏度以上持续提高了CO的产率,而碱度变化主要影响700摄氏度以下的热解结果C.关于污染气体,热炉渣的总体影响是相当有限的,这表明该联合系统不会给环境带来重大影响。 (C)2018 Elsevier Ltd.保留所有权利。

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