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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Activity, selectivity and stability of Ni and bimetallic Ni-Pt supported on zeolite Y catalysts for hydrogenation of acetophenone and its substituted derivatives
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Activity, selectivity and stability of Ni and bimetallic Ni-Pt supported on zeolite Y catalysts for hydrogenation of acetophenone and its substituted derivatives

机译:沸石Y催化剂上Ni和双金属Ni-Pt负载苯乙酮及其取代衍生物的活性,选择性和稳定性

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摘要

The hydrogenatin of acetophenone, p-hydroxy acetophenone (p-HAP)and p-isobutyl acetophenone was studied using Ni and bimetallic Ni-Pt supported on Zeolite Y catalysts.A 10% Ni-supported-on zeolite Y catalyst showed the optimum activity when compared to other Ni-supported catalysts. The activity of this catalyst decreased very rapidly on recycle;however, the bimetallic Ni-Pt-supported-on-zeolite Y catalyst was highly stable and showed constant activity on recycle. The addition of Pt catalyses the reduction of Ni~(2+) to Ni~0, as characterised by X-ray photoelectron spectroscopy (XPS) and other techniques.For the Ni-Pt bimetallic catalyst, the hydrogen adsorption was found to be higher than that for monometallic catalysts;the adsorbed hydrogen reacts with the activated acetopgenone complex to facilitate the catalytic process.The FTIR analysis of adsorbed acetophenone on the catalyst samples indicated that, in both monometallic and bimetallic catlysts supported on zeolite Y,the C=O bond of acetophenone is highly activated due to the strong interactions with the acidic sites present on the zeolite. Zeolite interactons with intermediate products and solvent moieties also influenced the selectivity behaviour.A trace amount of a base like NaOH acts as a promoter in improving the selectivity towards alcohol. A plausible reaction mechanism has been proposed for the hydrogenationof acetophenone and its derivatives using monometallic as well as bimetallic catalysts.
机译:用Ni和负载在沸石Y催化剂上的双金属Ni-Pt研究了苯乙酮,对羟基苯乙酮(p-HAP)和对异丁基苯乙酮的氢化丁。10%Ni负载的沸石Y催化剂表现出最佳的活性。与其他镍负载催化剂相比。该催化剂的活性在再循环时非常迅速地降低;但是,双金属Ni-Pt负载沸石Y催化剂是高度稳定的,并且在再循环中显示出恒定的活性。通过X射线光电子能谱(XPS)和其他技术的表征,添加Pt可以催化Ni〜(2+)还原为Ni〜0.Ni-Pt双金属催化剂的氢吸附率更高FTIR分析表明,在负载在沸石Y上的单金属和双金属催化剂中,C = O键都比单金属催化剂的吸附氢与活化的乙酰庚酮配合物反应,从而促进了催化过程。由于与存在于沸石上的酸性位点之间的强相互作用,苯乙酮被高度活化。沸石与中间产物和溶剂部分的相互作用也影响了选择性行为。痕量的碱(如NaOH)起促进剂的作用,提高了对醇的选择性。已经提出了使用单金属和双金属催化剂对苯乙酮及其衍生物进行氢化的合理的反应机理。

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