首页> 外文期刊>Journal of nanoscience and nanotechnology >Hydrogen Production by Steam Reforming of Liquefied Natural Gas (LNG) Over Nickel-Phosphorus-Alumina Xerogel Catalyst Prepared by a Carbon-Templating Epoxide-Driven Sol-Gel Method
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Hydrogen Production by Steam Reforming of Liquefied Natural Gas (LNG) Over Nickel-Phosphorus-Alumina Xerogel Catalyst Prepared by a Carbon-Templating Epoxide-Driven Sol-Gel Method

机译:碳增温环氧树脂驱动的溶胶-凝胶法制备的镍-磷-铝干凝胶催化剂上的液化天然气(LNG)的蒸汽重整制氢

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A nickel-phosphorus-alumina xerogel catalyst was prepared by a carbon-templating epoxide-driven sol-gel method (denoted as CNPA catalyst), and it was applied to the hydrogen production by steam reforming of liquefied natural gas (LNG). For comparison, a nickel-phosphorus-alumina xerogel catalyst was also prepared by a similar method in the absence of carbon template (denoted as NPA catalyst). The effect of carbon template addition on the physicochemical properties and catalytic activities of the catalysts in the steam reforming of LNG was investigated. Both CNPA and NPA catalysts showed excellent textural properties with well-developed mesoporous structure. However, CNPA catalyst retained a more reducible nickel aluminate phase than NPA catalyst. XRD analysis of the reduced CNPA and NPA catalysts revealed that nickel sintering on the CNPA catalyst was suppressed compared to that on the NPA catalyst. From H-2-TPD and CH4-TPD measurements of the reduced CNPA and NPA catalysts, it was also revealed that CNPA catalyst with large amount of hydrogen uptake and strong hydrogen-binding sites showed larger amount of methane adsorption than NPA catalyst. In the hydrogen production by steam reforming of LNG, CNPA catalyst with large methane adsorption capacity showed a better catalytic activity than NPA catalyst.
机译:通过碳模板环氧化物驱动的溶胶-凝胶法制备了镍-磷-氧化铝干凝胶催化剂(称为CNPA催化剂),并将其用于通过液化天然气(LNG)的蒸汽重整制氢。为了比较,还通过类似的方法在不存在碳模板的情况下制备了镍-磷-氧化铝干凝胶催化剂(称为NPA催化剂)。研究了碳模板的添加对液化天然气蒸汽重整中催化剂的理化性质和催化活性的影响。 CNPA和NPA催化剂均显示出优异的质构性质以及发达的中孔结构。然而,CNPA催化剂保留了比NPA催化剂更易还原的铝酸镍相。还原的CNPA和NPA催化剂的XRD分析表明,与在NPA催化剂上相比,在CNPA催化剂上的镍烧结受到抑制。从还原的CNPA和NPA催化剂的H-2-TPD和CH4-TPD测量,还发现与NPA催化剂相比,具有大量氢吸收和强氢键合位点的CNPA催化剂对甲烷的吸附量更大。在LNG的蒸汽重整制氢中,具有较大甲烷吸附能力的CNPA催化剂比NPA催化剂具有更好的催化活性。

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