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Sustainable hydrogen production via reforming of ethylene glycol using a novel spouted bed reactor

机译:使用新型喷射床反应器通过乙二醇重整来可持续制氢

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Hydrogen produced from renewable energy sources is of great interest as an alternative to fossil fuels and as a means for clean power generation via fuel cells.The aqueous fraction of bio-oil can be effectively reformed to hydrogen rich streams in the presence of active catalytic materials.In this paper we present the experimental work carried out in a novel spouted bed reactor for the reforming of bio-oil.The use of a specially designed injection nozzle in combination with the particular hydrodynamic characteristics of the spouted bed resulted in efficient processing of the organic feed.The known problem of coking was notably avoided regardless of the loading material of the reactor.The effect of reaction temperature and steam to carbon ratio in the feed was investigated in the presence of various catalytic and non-catalytic particles.Runs were conducted with ethylene glycol as a representative model compound of the aqueous phase of bio-oil.Olivine,when associated with nickel,proved to be a very suitable catalytic material for the process combining high activity in reforming,anti-coking characteristics combined with exceptional mechanical strength.
机译:用可再生能源产生的氢作为化石燃料的替代品以及通过燃料电池进行清洁发电的手段引起了人们的极大兴趣。在存在活性催化材料的情况下,生物油的含水部分可以有效地重整为富氢流本文介绍了在新型喷射床反应器中用于生物油重整的实验工作。结合喷嘴床的特殊流体力学特性,使用专门设计的喷嘴可以有效地处理生物油。不论反应器的负载材料如何,均可以避免已知的焦化问题。在存在各种催化和非催化颗粒的情况下,研究了进料中反应温度和蒸汽碳比的影响。以乙二醇为代表的生物油水相模型化合物。橄榄石与镍结合时,经证明具有良好的耐高温性能是一种非常适合该工艺的催化材料,具有重整活性高,抗焦化特性和出色的机械强度。

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