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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Production of renewable aromatics and heterocycles by catalytic pyrolysis of biomass resources using rhenium and tin promoted ZSM-5 zeolite catalysts
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Production of renewable aromatics and heterocycles by catalytic pyrolysis of biomass resources using rhenium and tin promoted ZSM-5 zeolite catalysts

机译:利用铼和锡促进ZSM-5沸石催化剂,通过催化热解的可再生芳烃和杂环的生产

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The purpose of this study is to investigate the effects of rhenium and tin loading (between 0 and 5% by impregnation method) on a ZSM-5 zeolite catalyst as well as the product distribution and aromatic yield under different catalytic conditions. A biomass to catalyst ratio of 5-20 is also considered. Due to its feed characteristics, beechwood was selected as the biomass resource, and the catalytic pyrolysis process was chosen, for it is an economic process. For a better analysis of the product distribution, all product samples were identified using gas chromatography coupled with mass spectrometry. Responses then were analyzed utilizing the full factorial method. The models obtained for high-economic-value produced aromatic and heterocyclic production had R-Sq. of 92.89 and 96.81 %, respectively, indicating the validity of the proposed models. The results clearly show that by changing the parameters, valuable heterocyclic compounds can be synthesized with acceptable yields. According to the study, the highest aromatic selectivity belongs to catalytic loadings of 1.58 % rhenium and 3% tin resulted in selectivity of 51.27 for aromatic compounds. Moreover, the catalytic loading of 3% rhenium and 3% tin resulted in the highest selectivity with a rate of 24.62 for heterocyclic compounds. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本研究的目的是探讨铼和锡载荷(0至5%通过浸渍法)对ZSM-5沸石催化剂的影响,以及在不同催化条件下的产物分布和芳族产率。还考虑了催化剂比为5-20的生物质。由于其进料特性,选择了山毛榉木作为生物质资源,选择催化热解过程,因为它是一种经济过程。为了更好地分析产品分布,使用与质谱法偶联的气相色谱法鉴定所有产品样品。然后利用完整的因子方法分析回应。获得高经济价值产生的芳香和杂环生产的模型具有R-SQ。分别为92.89和96.81%,表明拟议模型的有效性。结果清楚地表明,通过改变参数,可以用可接受的产率合成有价值的杂环化合物。根据该研究,最高芳族选择性属于1.58%铼和3%锡的催化载体,导致芳族化合物的选择性为51.27。此外,3%铼和3%锡的催化负载导致最高的选择性,杂环化合物的速率为24.62。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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