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Ethanol steam reforming over bimetallic coated ceramic foams: Effect of reactor configuration and catalytic support

机译:双金属涂层陶瓷泡沫上的乙醇蒸汽重整:反应器配置和催化载体的影响

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In recent years, hydrogen production from renewable feed-stocks attracts particular attention. Specifically, the steam reforming of biomass-derived bioethanol could provide H-2-rich effluent streams, representing an interesting research field. This study focuses on the development of bimetallic structured catalysts (containing Ni and Pt as active species and supported on ceria and ceria-zirconia) active in Ethanol Steam Reforming (ESR) reaction at low-temperature (300-600 degrees C) and characterized by improved heat transfer properties. ESR reaction was carried out on ceramic foams and, as a comparison, on powders catalysts. In particular, catalytic tests were carried out on two reactor configurations: catalytic powders were tested in both a tubular and annular reactor; in addition, the tubular configuration was also employed for the structured catalysts. Unsatisfactory results were observed for powders in the tubular reactor while the better thermal management of the annular configuration ensured significantly higher conversions. Moreover, the enhanced thermal conductivity of SiC foams catalysts, tested in the tubular reactor, allowed overcoming heat transfer limitations in an easy reactor geometry, resulting in very good performances. The catalytic behaviour of bimetallic CeO2 and CeO2-ZrO2 based catalysts was also compared and the effect of catalytic support on ethanol conversion and H-2 yield at different space velocities (100,000-400,000h(-1)) was investigated. Finally, Pt-Ni/CeO2-ZrO2 catalysts, which displayed a more interesting catalytic activity with respect to CeO2 based samples, were employed for stability tests at 100,000h(-1) and 450 degrees C: products gas distribution was not affected during TOS and total ethanol conversion was recorded for almost 5 h. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:近年来,可再生原料制氢受到特别关注。具体而言,生物质衍生的生物乙醇的蒸汽重整可以提供富含H-2的流出物流,这是一个有趣的研究领域。这项研究的重点是在低温(300-600摄氏度)的乙醇蒸汽重整(ESR)反应中具有活性的双金属结构催化剂(含有Ni和Pt作为活性物质,并以二氧化铈和二氧化铈-氧化锆为载体)的开发,其特点是改善传热性能。 ESR反应在陶瓷泡沫上进行,并且作为比较,在粉末催化剂上进行。特别是,在两种反应器配置上进行了催化测试:在管式和环形反应器中都测试了催化粉末;另外,管状结构也用于结构化催化剂。在管式反应器中观察到粉末的结果不令人满意,而环形结构的更好的热管理确保明显更高的转化率。而且,在管式反应器中测试的增强的SiC泡沫催化剂的导热性允许克服简单的反应器几何形状中的传热限制,从而获得非常好的性能。还比较了双金属CeO2和CeO2-ZrO2基催化剂的催化行为,并研究了在不同空速(100,000-400,000h(-1))下催化载体对乙醇转化率和H-2收率的影响。最后,Pt-Ni / CeO2-ZrO2催化剂相对于基于CeO2的样品表现出更有趣的催化活性,被用于100,000h(-1)和450摄氏度的稳定性测试:TOS过程中产物气体分布不受影响并记录了近5小时的总乙醇转化率。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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