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Impact of Support (MCF ZrO2 ZSM-5) on the Efficiency of Ni Catalyst in High-Temperature Conversion of Lignocellulosic Biomass to Hydrogen-Rich Gas

机译:载体(MCFZrO2ZSM-5)对木质纤维素生物质高温转化为富氢气体中镍催化剂效率的影响

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摘要

The main objective of this work was to evaluate an impact of a support on the efficiency of nickel catalysts in the high-temperature conversion of lignocellulosic biomass to hydrogen-rich gas. The most important parameters influencing catalytic performance of the catalysts were identified. The properties of three materials (ZSM-5, ZrO , and MCF (mesostructured cellular foam)) used as a support differing in surface acidity, surface area, pore structure, ability to interact with an active phase, and resistance to coking, have been studied. The results revealed that Ni/MCF, characterized by large pore size and pore volume, low acidity, small NiO crystallites size, and moderate interaction with the active phase, is the most efficient among studied catalysts, while an application of Ni on ZSM-5 support with high-acidity was not beneficial. The results suggest that structure of the support, in particular larger pore size and a better contact between an active phase and reaction intermediates, play an important role in the formation of gaseous products during thermal decomposition of lignocellulosic feedstock. On the other hand, high acidity of the support did not increase the formation of large amounts of hydrogen-rich gaseous products.
机译:这项工作的主要目的是评估在木质纤维素生物质向富氢气体的高温转化中,载体对镍催化剂效率的影响。确定了影响催化剂催化性能的最重要参数。用作载体的三种材料(ZSM-5,ZrO和MCF(介孔结构泡沫))的性能在表面酸度,表面积,孔结构,与活性相相互作用的能力以及抗结焦性方面有所不同研究。结果表明,Ni / MCF具有较大的孔径和孔体积,较低的酸度,较小的NiO晶粒尺寸以及与活性相的适度相互作用,是研究的催化剂中最有效的催化剂,而Ni在ZSM-5上的应用高酸度的支持无益。结果表明,载体的结构,特别是较大的孔径和活性相与反应中间体之间的更好接触,在木质纤维素原料热分解过程中的气态产物形成中起着重要作用。另一方面,载体的高酸度并未增加大量富氢气态产物的形成。

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