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Influence of process conditions on syngas production from the thermal processing of waste high density polyethylene

机译:工艺条件对废旧高密度聚乙烯热处理产生合成气的影响

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A range of process conditions, including the type of reactor, the reacting atmosphere and the presence of catalyst, and their influence on the production of syngas, i.e. hydrogen and carbon monoxide, from the thermal processing of waste high density polyethylene (HDPE) has been investigated. Pyrolysis in the presence of nitrogen and in the presence of carbon dioxide, two-stage pyrolysis-steam reforming and carbon dioxide/catalysis process conditions were investigated in relation to gas composition and particularly hydrogen and carbon monoxide yield. The influence of addition of a Ni-Mg-Al catalyst in the second reactor was also investigated. It was found that a two-stage pyrolysis at 500 degrees C, followed by second stage reaction at 800 degrees C resulted in a significant increase in hydrogen production. With the addition of carbon dioxide, the two stage process also increased carbon monoxide yield in addition to hydrogen. Addition of steam into the second stage reactor with the carbon dioxide produced a further increase in hydrogen production. Also, the presence of a Ni-Mg-Al catalyst in the second reactor increased the amount of hydrogen and carbon monoxide produced. (C) 2014 Elsevier B.V. All rights reserved.
机译:已经确定了一系列工艺条件,包括反应器的类型,反应气氛和催化剂的存在,以及它们对废旧高密度聚乙烯(HDPE)热处理产生的合成气(即氢气和一氧化碳)的影响。调查。研究了在氮气和二氧化碳存在下的热解,两步热解-蒸汽重整和二氧化碳/催化工艺条件,与气体组成有关,特别是氢气和一氧化碳的产率。还研究了在第二反应器中添加Ni-Mg-Al催化剂的影响。发现在500℃下的两阶段热解,然后在800℃下的第二阶段反应导致氢气产生的显着增加。随着二氧化碳的加入,除了氢气之外,两步法还增加了一氧化碳的产率。与二氧化碳一起向第二阶段反应器中加入蒸汽产生了氢气产量的进一步增加。而且,第二反应器中Ni-Mg-Al催化剂的存在增加了产生的氢和一氧化碳的量。 (C)2014 Elsevier B.V.保留所有权利。

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