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A novel and anti-agglomerating Ni@yolk–ZrO₂ structure with sub-10 nm Ni core for high performance steam reforming of methane

机译:新型且抗结块的Ni @ yolk-ZrO 2结构,具有10 nm以下的Ni核,可用于甲烷的高效蒸汽重整

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摘要

Steam reforming of methane is a versatile technology for hydrogen production in oil refinery and fuel cell applications. Using natural gas is a promising method to produce rich-hydrogen gas. Ni@yolk–ZrO₂ catalyst is used to study steam reforming of methane under various GHSVs, steam-to-carbon (S/C) ratio, and its recyclability. The catalyst was characterized using a combination of XRD, TEM, AAS, TPR, TPH, TGA, BET, XPS, and Raman techniques. The catalyst is evaluated on time stream and identify its anti-agglomeration property and coking mechanism. From the characterization of TEM and XPS establish the information of Ni particles mobility in the catalyst, which active metal particle size was controlled under the yolk–shell structure framework. Furthermore, the results from TGA, TPH, and Raman analysis of the used Ni@yolk–ZrO₂ catalyst showed the characteristic of inhibiting formation of highly ordered carbon structure.
机译:甲烷的蒸汽重整是炼油厂和燃料电池应用中制氢的通用技术。使用天然气是生产富氢气体的一种有前途的方法。 Ni @ yolk-ZrO 2催化剂用于研究在各种GHSV下甲烷的蒸汽重整,蒸汽与碳(S / C)的比例及其可回收性。使用XRD,TEM,AAS,TPR,TPH,TGA,BET,XPS和拉曼技术的组合对催化剂进行表征。及时评估催化剂,并确定其抗结块性能和结焦机理。通过TEM和XPS的表征,建立了Ni颗粒在催化剂中迁移率的信息,该活性金属的粒径是在卵黄-壳结构框架内控制的。此外,使用过的Ni @ yolk-ZrO 2催化剂的TGA,TPH和拉曼分析结果显示出抑制形成高度有序的碳结构的特征。

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