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负载镍的催化裂化废催化剂用于松脂加氢的合成、表征及活性性能

Synthesis, characterization and activity performance of nickel-loaded spent FCC catalyst for pine gum hydrogenation.

作者信息

Chen Xiaopeng, Ren Lu, Yaseen Muhammad, Wang Linlin, Liang Jiezhen, Liang Ruixue, Chen Xiankun, Guo Huiqing

机构信息

Guangxi Key Laboratory of Petrochemical Resources Processing and Process Intensification Technology, School of Chemistry and Chemical Engineering, Guangxi University Nanning 53004 PR China

Institute of Chemical Sciences, University of Peshawar Peshawar 25120 KP Pakistan.

出版信息

RSC Adv. 2019 Feb 25;9(12):6515-6525. doi: 10.1039/c8ra07943a. eCollection 2019 Feb 22.

Abstract

A Ni-based catalyst supported over a spent fluid catalytic cracking (FCC) catalyst was prepared by a wet impregnation method. The catalytic characteristic was investigated in pine gum hydrogenation. Optimum conditions for catalyst preparation were obtained as: 15% Ni loading, 723 K calcination temperature, and 723 K reduction temperature for 2.5 h. The characterization results indicate that the specific surface area of the spent catalyst increased from 65.70 m g to 67.78 m g after calcination. The H-TPR profile of the spent FCC catalyst exhibited two reduction peaks at 1123 °C and 670 °C. The TG curves showed that the second and third steps occur at 440 K and 550 K, respectively, having a total weight loss of 16%. The NiO grains possess rhombus particles on the surface or between the layers of the supported NiO catalyst. After activation in H flow, the metallic Ni loads on the support with no covalent bond between them. The NH-TPD results indicated that the spent FCC catalyst held an obvious distribution of weakly acidic sites, and the acid sites became stronger after loading the catalyst with Ni. The hydrogenation products of pine gum were identified by GC-MS and a reaction mechanism was proposed. This study demonstrated its cost-effectiveness, environment-friendly nature and that the utilization of a spent FCC catalyst can be effectively applied as an alternative approach to pine gum hydrogenation on an industrial level.

摘要

采用湿浸渍法制备了负载在废流化催化裂化(FCC)催化剂上的镍基催化剂。研究了其在松脂加氢反应中的催化特性。得到了催化剂制备的最佳条件为:镍负载量15%,煅烧温度723K,还原温度723K,还原时间2.5h。表征结果表明,废催化剂煅烧后比表面积从65.70m²/g增加到67.78m²/g。废FCC催化剂的H-TPR谱在1123℃和670℃出现两个还原峰。TG曲线表明,第二步和第三步分别在440K和550K发生,总失重16%。负载型NiO催化剂表面或层间的NiO颗粒呈菱形。在氢气流中活化后,金属Ni负载在载体上,二者之间不存在共价键。NH-TPD结果表明,废FCC催化剂具有明显的弱酸性位点分布,负载镍后酸性位点增强。通过GC-MS对松脂加氢产物进行了鉴定,并提出了反应机理。本研究证明了其成本效益、环境友好性,以及废FCC催化剂的利用可有效地作为松脂加氢的一种替代方法应用于工业生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f91/9061128/4759f8f1a15e/c8ra07943a-f1.jpg

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