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Reaction Route Selection for Cellulose Hydrogenolysis into C2/C3 Glycols by ZnO-Modified Ni-W/β-zeolite Catalysts

机译:ZnO修饰的Ni-W /β-沸石催化剂催化纤维素加氢水解成C2 / C3乙二醇的反应路线选择

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摘要

A β-zeolite-supported nickel and tungsten catalyst (Ni-W/β) was employed to generate C2/C3 glycols (ethylene and propylene glycols) in a satisfactory yield from cellulose. After optimizing the acidity of the support, the Ni-W synergy and the co-catalyst, the yield of C2/C3 glycols reached 70.1% (C %), with propylene glycol accounting for 51.1% of the product. This performance was attributed to the effective control of the major reaction steps, namely, hydrolysis, isomerization, retro-aldol condensation and hydrogenation, by the tailored Ni-W-ZnO/β catalyst. The characterization and reaction results indicated that the cellulose hydrolysis step was promoted by the appropriate acidic sites of the β-zeolite, and the reaction routes to C2/C3 glycols were influenced by the mass loading of Ni-W through the synergy of nickel and tungsten oxide, in which Ni is effective in the hydrogenation while W facilitates bond cleavage via a retro-aldol condensation (C6 to C2/C3). Moreover, with the leaching of metal during four cycles of reuse, the catalytic performance was also influenced by the synergy of Ni and W. In addition, the isomerization of glucose to fructose was promoted by ZnO and afforded a high yield of propylene glycol.
机译:使用β沸石负载的镍和钨催化剂(Ni-W /β)从纤维素中以令人满意的产率生成C2 / C3二醇(乙二醇和丙二醇)。优化载体的酸度,Ni-W协同作用和助催化剂后,C2 / C3二醇的收率达到70.1%(C%),其中丙二醇占产品的51.1%。该性能归因于通过定制的Ni-W-ZnO /β催化剂有效控制了主要反应步骤,即水解,异构化,逆醛醇缩合和氢化。表征和反应结果表明,β-沸石的合适酸性位点促进了纤维素的水解步骤,镍和钨的协同作用影响了镍-钨的质量负载,从而影响了向C2 / C3二醇的反应路线。氧化物,其中Ni在氢化中有效,而W则通过逆醛醇缩合(C6至C2 / C3)促进键裂解。此外,随着金属在四个重复使用周期中的浸出,催化性能还受到Ni和W协同作用的影响。此外,ZnO促进了葡萄糖向果糖的异构化,丙二醇的收率很高。

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