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Tuning the Acid/Metal Balance of Carbon Nanofiber-Supported Nickel Catalysts for Hydrolytic Hydrogenation of Cellulose

机译:调节碳纳米纤维负载的镍催化剂对纤维素的水解加氢的酸/金属平衡

摘要

Carbon nanofibers (CNFs) are a class of graphitic support materials with considerable potential for catalytic conversion of biomass. Earlier, we demonstrated the hydrolytic hydrogenation of cellulose over reshaped nickel particles attached at the tip of CNFs. The aim of this follow-up study was to find a relationship between the acid/metal balance of the Ni/CNFs and their performance in the catalytic conversion of cellulose. After oxidation and incipient wetness impregnation with Ni, the Ni/ CNFs were characterized by various analytical methods. To prepare a selective Ni/CNF catalyst, the influences of the nature of oxidation agent, Ni activation, and Ni loading were investigated. Under the applied reaction conditions, the best result, that is, 76% yield in hexitols with 69% sorbitol selectivity at 93% conversion of cellulose, was obtained on a 7.5 wt% Ni/CNF catalyst prepared by chemical vapor deposition of CH4 on a Ni/g- Al2O3 catalyst, followed by oxidation in HNO3 (twice for 1 h at 383 K), incipient wetness impregnation, and reduction at 773 K under H2. This preparation method leads to a properly balanced Ni/CNF catalyst in terms of Ni dispersion and hydrogenation capacity on the one hand, and the number of acidic surface-oxygen groups responsible for the acid-catalyzed hydrolysis on the other.
机译:碳纳米纤维(CNFs)是一类石墨载体材料,具有催化转化生物质的巨大潜力。之前,我们证明了纤维素在CNF尖端附着的重塑镍颗粒上的水解加氢作用。这项后续研究的目的是发现Ni / CNF的酸/金属平衡与其在纤维素催化转化中的性能之间的关系。在用Ni进行氧化和初湿浸渍后,通过各种分析方法对Ni / CNF进行了表征。为了制备选择性Ni / CNF催化剂,研究了氧化剂的性质,Ni活化和Ni负载量的影响。在应用的反应条件下,最好的结果是,在7.5 wt%的Ni / CNF催化剂上,通过在CH4上化学气相沉积制得的7.5wt%Ni / CNF催化剂,得到了己糖醇中的76%收率,在93%的纤维素转化率下山梨糖醇选择性为69%。 Ni / g-Al2O3催化剂,然后在HNO3中氧化(在383 K下两次加热1小时),初湿浸渍,并在H2下在773 K下还原。该制备方法一方面在Ni分散性和氢化能力方面,另一方面在负责酸催化水解的酸性表面氧基团的数目方面,导致适当平衡的Ni / CNF催化剂。

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