首页> 外文期刊>Reaction kinetics,mechanisms and catalysis >Catalytic hydrodenitrogenation of propionitrile over supported nickel phosphide catalysts as a model reaction for the transformation of pyrolysis oil obtained from animal by-products
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Catalytic hydrodenitrogenation of propionitrile over supported nickel phosphide catalysts as a model reaction for the transformation of pyrolysis oil obtained from animal by-products

机译:负载型磷化镍催化剂上丙腈的催化加氢脱氮,作为转化动物副产物热解油的模型反应

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摘要

The catalytic hydroconversion of propionitrile (PN) was studied over supported nickel and nickel phosphide catalysts. PN was used as a model compound of aliphatic nitriles in pyrolysis oil obtained from animal by-products. Silica gel and Laponite were used as supports. The structure and particle size of the supported active phase was characterized by X-ray diffractometry and transmission electron microscopy. Catalytic experiments were carried out using a flow-through tube reactor at temperatures between 200 and 400 A degrees C, total pressure of 30 bar, and H-2/PN molar ratio of 10. High-pressure operando diffuse reflectance infrared Fourier transform spectroscopy experiments were carried out to study the species on the catalyst surface during reaction. The results substantiated that propane-1-imine (PI) is a surface intermediate of propylamine, dipropylamine and tripropylamine formation. The conversion of PN to hydrocarbon and ammonia hardly proceeded below 300 A degrees C but became dominating reaction between 350 and 400 A degrees C. Bronsted acid sites were not required for the reactions. Supported Ni2P catalysts catalyzed hydrogenolysis of C-N bonds only, whereas also the C-C bonds suffered significant cleavage over supported Ni catalyst.
机译:研究了负载型镍和磷化镍催化剂上丙腈(PN)的催化加氢转化。 PN用作从动物副产品获得的热解油中脂肪族腈的模型化合物。硅胶和锂皂石用作载体。负载的活性相的结构和粒度通过X射线衍射和透射电子显微镜表征。使用流通管反应器在200至400 A摄氏度,总压力为30 bar,H-2 / PN摩尔比为10的条件下进行催化实验。高压操作扩散反射红外傅里叶变换光谱实验进行了研究反应过程中催化剂表面的物种。结果证实了丙烷-1-亚胺(PI)是丙胺,二丙胺和三丙胺形成的表面中间体。在低于300 A的温度下,PN难以转化为烃和氨,但在350至400 A的温度下成为主要反应。反应不需要布朗斯台德酸位。负载型Ni2P催化剂仅催化C-N键的氢解,而C-C键也比负载型Ni催化剂显着裂解。

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