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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Hydrogen production and performance of nickel based catalysts synthesized using supercritical fluids for the gasification of biomass
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Hydrogen production and performance of nickel based catalysts synthesized using supercritical fluids for the gasification of biomass

机译:超临界流体合成气化生物质镍基催化剂的产氢性能

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摘要

A method for synthesizing carbon nanotube/fiber and aluminosilicate supported Ni catalysts using supercritical methanol is suggested. This one-pot synthesis method allows the metal precursor (nickel acetylacetonate) to reduce directly onto the surface of the carbon structure without the pretreatment of surface functional groups. The synthesized catalysts are confirmed to be active in the gasification of biomass in supercritical water—specifically for the production of hydrogen-rich gases. Although the synthesized catalysts can produce similar hydrogen yields (~8 mmol H2/g biomass) compared to two commercially available aluminosilicate supported Ni catalysts, the gas product ratio for producing hydrogen over methane for the synthesized catalysts was 3.5 mol H2/mol CH4 compared to 1.3 mol H2/ mol CH4 for the commercial catalysts under the same conditions.
机译:提出了使用超临界甲醇合成碳纳米管/纤维和铝硅酸盐负载的镍催化剂的方法。这种一锅法合成方法可以使金属前体(乙酰丙酮镍)直接还原到碳结构的表面上,而无需对表面官能团进行预处理。证实合成的催化剂在超临界水中的生物质气化中具有活性-特别是用于生产富氢气体。尽管与两种市售的硅铝酸盐负载的Ni催化剂相比,合成的催化剂可产生相似的氢气产率(〜8 mmol H2 / g生物量),但与之相比,用于合成催化剂的甲烷生成氢气的产气比为3.5 mol H2 / mol CH4对于商用催化剂,在相同条件下为1.3 mol H2 / mol CH4。

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