用于正十六烷催化加氢裂化和加氢异构化的铂支撑 Co-ZIF 的合成与表征

L. N. Hidayati, F. Aulia, Sebastian Ulido Napitupulu, Gede W. P. Adhyaksa, D. Dahnum
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摘要

沸石咪唑框架(ZIF)因其相对较大的表面积以及尺寸、结构和孔隙率的可调性,有望成为催化剂载体的多孔材料。最近的研究还表明,ZIF 是各种催化氧化还原反应(如苄基芳香烃的氧化)的最佳候选材料。在本研究中,通过改变有机配体:咪唑、苯并咪唑和 1-(3-aminopropyl) 咪唑,然后浸渍铂前驱体,合成了在 Co-ZIF 上支撑的铂催化剂。对催化剂的物理和化学特性进行了表征,如傅立叶变换红外光谱(FTIR)、X 射线衍射(XRD)、扫描电子显微镜(SEM)、布鲁诺-艾美特-泰勒(BET)、温度编程脱附(NH3-TPD 和 CO2-TPD)。在 100 毫升批量反应器中,对制备的催化剂进行了催化加氢裂化和正十六烷加氢异构化评估。GC-MS 分析表明,含有咪唑配体的 Pt/ZIF 催化剂比其他催化剂性能更好。因此,通过改变 Pt/ZIF-imidazole 催化剂的金属负载量、反应时间和温度,对正十六烷的转化进行了优化。结果表明,在 350 ºC 的反应温度下,使用 20 bar H2,反应 4 小时,添加 15 wt% 的铂,成功实现了 90.77% 的转化率,并产生了最高的异构体和烷烃产率,分别为 4.04% 和 35.75%。作者版权所有 © 2024 年,BCREC 出版集团出版。本文采用 CC BY-SA 许可协议 (https://creativecommons.org/licenses/by-sa/4.0) 公开发表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesize and Characterization of Pt-supported Co-ZIF for Catalytic Hydrocracking and Hydroisomerization of n-Hexadecane
Zeolitic Imidazole Frameworks (ZIFs) are prospective porous materials as catalyst support due to their relatively large surface area, and tunability in size, structure, and porosity. Recent studies have also shown that ZIF is the best candidate for various catalytic redox reactions such as the oxidation of benzyl aromatic hydrocarbons. In this study, the synthesized Pt catalyst supported on Co-ZIF was varied by the organic ligands: imidazole, benzimidazole, and 1-(3-aminopropyl) imidazole, then followed by impregnation of Pt precursor. The catalysts were characterized its physical and chemicals properties such as Fourier Transform Infrared (FTIR), X-ray Diffraction (XRD), Scanning Electron Microscope (SEM), and Brunauer Emmet Teller (BET), Temperature-Programmed Desorption (NH3-TPD and CO2-TPD). The prepared catalysts were evaluated for catalytic hydrocracking and hydroisomerization of n-hexadecane in a 100 ml-batch reactor. GC-MS analysis presented that the Pt/ZIF catalyst with imidazole ligands has better performance than others. Hence, the optimization of n-Hexadecane conversion was carried out by the Pt/ZIF-imidazole catalyst varying the amount of metal loading, time and temperature reaction. The results showed that the reaction temperature of 350 ºC using 20 bar H2 for 4 h and the addition of 15 wt% Pt successfully achieved 90.77% conversion and produced the highest yield of isomers and alkanes, 4.04% and 35.75%, respectively. Copyright © 2024 by Authors, Published by BCREC Publishing Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0).
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