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邻苯二甲酸氢钾辅助的SiO/Zr对粗棕榈油加氢裂化催化活性的增强作用

Enhancement of Catalytic Activity on Crude Palm Oil Hydrocracking over SiO/Zr Assisted with Potassium Hydrogen Phthalate.

作者信息

Hasanudin Hasanudin, Asri Wan Ryan, Mara Ady, Al Muttaqii Muhammad, Maryana Roni, Rinaldi Nino, Sagadevan Suresh, Zhang Qiuyun, Fanani Zainal, Hadiah Fitri

机构信息

Department of Chemistry, Faculty of Mathematics and Natural Science, Universitas Sriwijaya, Jl. Raya Palembang-Prabumulih Km. 32, Indralaya, Sumatra Selatan 30662, Indonesia.

Biofuel Research Group, Faculty of Mathematics and Natural Science, Universitas Sriwijaya, Jl. Raya Palembang-Prabumulih Km. 32, Indralaya, Sumatra Selatan 30662, Indonesia.

出版信息

ACS Omega. 2023 Jun 1;8(23):20858-20868. doi: 10.1021/acsomega.3c01569. eCollection 2023 Jun 13.

Abstract

In this study, the catalytic activity of bifunctional SiO/Zr catalysts prepared by template and chelate methods using potassium hydrogen phthalate (KHF) for crude palm oil (CPO) hydrocracking to biofuels was investigated. The parent catalyst was successfully prepared by the sol-gel method, followed by the impregnation of zirconium using ZrOCl·8HO as a precursor. The morphological, structural, and textural properties of the catalysts were examined using several techniques, including electron microscopy energy-dispersive X-ray with mapping, transmission electron microscopy, X-ray diffraction, particle size analyzer (PSA), N adsorption-desorption, Fourier transform infrared-pyridine, and total and surface acidity analysis using the gravimetric method. The results showed that the physicochemical properties of SiO/Zr were affected by different preparation methods. The template method assisted by KHF (SiO/Zr-KHF2 and SiO-KHF catalysts) provides a porous structure and high catalyst acidity. The catalyst prepared by the chelate method assisted by KHF (SiO/Zr-KHF1) exhibited excellent Zr dispersion toward the SiO surface. The modification remarkably enhanced the catalytic activity of the parent catalyst in the order SiO/Zr-KHF2 > SiO/Zr-KHF1 > SiO/Zr > SiO-KHF > SiO, with sufficient CPO conversion. The modified catalysts also suppressed coke formation and resulted in a high liquid yield. The catalyst features of SiO/Zr-KHF1 promoted high-selectivity biofuel toward biogasoline, whereas SiO/Zr-KHF2 led to an increase in the selectivity toward biojet. Reusability studies showed that the prepared catalysts were adequately stable over three consecutive runs for CPO conversion. Overall, SiO/Zr prepared by the template method assisted by KHF was chosen as the most prominent catalyst for CPO hydrocracking.

摘要

在本研究中,对使用邻苯二甲酸钾(KHF)通过模板法和螯合法制备的双功能SiO/Zr催化剂用于粗棕榈油(CPO)加氢裂化制生物燃料的催化活性进行了研究。通过溶胶-凝胶法成功制备了母体催化剂,随后以ZrOCl·8H₂O为前驱体浸渍锆。使用多种技术对催化剂的形态、结构和织构性质进行了研究,包括带有能谱分析的电子显微镜、透射电子显微镜、X射线衍射、粒度分析仪(PSA)、N₂吸附-脱附、傅里叶变换红外-吡啶以及采用重量法进行的总酸度和表面酸度分析。结果表明,SiO/Zr的物理化学性质受不同制备方法的影响。由KHF辅助的模板法(SiO/Zr-KHF₂和SiO-KHF催化剂)提供了多孔结构和高催化剂酸度。由KHF辅助的螯合法制备的催化剂(SiO/Zr-KHF₁)在SiO表面表现出优异的Zr分散性。这种改性显著提高了母体催化剂的催化活性,顺序为SiO/Zr-KHF₂>SiO/Zr-KHF₁>SiO/Zr>SiO-KHF>SiO,CPO转化率充足。改性催化剂还抑制了焦炭的形成,并导致高液体产率。SiO/Zr-KHF₁的催化剂特性促进了对生物汽油的高选择性生物燃料生成,而SiO/Zr-KHF₂则导致对生物喷气燃料的选择性增加。可重复使用性研究表明,所制备的催化剂在连续三次CPO转化运行中具有足够的稳定性。总体而言,由KHF辅助的模板法制备的SiO/Zr被选为CPO加氢裂化最突出的催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa68/10268286/a1267aa53a98/ao3c01569_0002.jpg

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