催化作用
制氢
材料科学
蒸汽重整
挤出胀大
甲烷
原材料
氢
化学工程
工艺工程
化学
复合材料
有机化学
塑料挤出
工程类
作者
Ali M. Alkadhem,Fernanda Tavares,Natalia Realpe,Gontzal Lezcano,Arief Yudhanto,Mohammad Subah,Vasco Manaças,Jacek K. Osiński,Gilles Lubineau,Pedro Castaño
出处
期刊:Fuel
[Elsevier BV]
日期:2023-05-26
卷期号:349: 128717-128717
被引量:8
标识
DOI:10.1016/j.fuel.2023.128717
摘要
Reforming processes are the backbone of hydrogen production routes, given the flexibility of their feedstock, such as methane, carbon dioxide, ammonia, waste plastics, or biomass. Heat transfer is a drawback at the industrial scale, reducing efficiency. We incorporate SiC in the technical composite, extrudate catalyst and develop a holistic approach to optimize and understand the effect of each constituent and its mixtures. We apply Ni-Ce as an active phase, bentonite or kaolin as a binder, alumina as a filler, and carborundum as the heat-transport carrier. We characterize the extrudate catalysts using various techniques, including crushing strength and thermal conductivity. We test the samples in the steam reforming of a model molecule, calculate the kinetics and deactivation, perform a multivariate analysis, and model an industrial reformer. The results lead to optimal catalyst formulations, demonstrating the authentic influence of individual and combined constituent at multiple scales: reaction, deactivation, properties, and reactor performance.
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