Hasanudin Hasanudin, Asri Wan Ryan, Zulaikha Indah Sari, Ayu Cik, Rachmat Addy, Riyanti Fahma, Hadiah Fitri, Zainul Rahadian, Maryana Roni
Department of Chemistry, Faculty of Mathematics and Natural Science, Universitas Sriwijaya Indralaya 30662 Indonesia
Biofuel Research Group, Faculty of Mathematics and Natural Science, Universitas Sriwijaya Indralaya 30662 Indonesia.
RSC Adv. 2022 Aug 9;12(34):21916-21925. doi: 10.1039/d2ra03941a. eCollection 2022 Aug 4.
In this study, bentonite modified by zirconium nitride (ZrN) and zirconium phosphide (ZrP) catalysts was studied in the hydrocracking of crude palm oil to biofuels. The study demonstrated that bentonite was propitiously modified by ZrN and ZrP, as assessed by XRD, FTIR spectroscopy, and SEM-EDX analysis. The acidity of the bentonite catalyst was remarkably enhanced by ZrN and ZrP, and it showed an increased intensity in the Lewis acid and Brønsted acid sites, as presented by pyridine FTIR. In the hydrocracking application, the highest conversion was achieved by bentonite-ZrN at 8 mEq g catalyst loading of 87.93%, whereas bentonite-ZrP at 10 mEq g showed 86.04% conversion, which suggested that there was a strong positive correlation between the catalyst acidity and the conversion under a particular condition. The biofuel distribution fraction showed that both the catalysts produced a high bio-kerosene fraction, followed by bio-gasoline and oil fuel fractions. The reusability study revealed that both the catalysts had sufficient conversion stability of CPO through the hydrocracking reaction up to four consecutive runs with a low decrease in the catalyst activity. Overall, bentonite-ZrN dominantly favored the hydrocracking of CPO than bentonite-ZrP.
在本研究中,对用氮化锆(ZrN)和磷化锆(ZrP)催化剂改性的膨润土进行了粗棕榈油加氢裂化制生物燃料的研究。研究表明,通过X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和扫描电子显微镜-能谱分析(SEM-EDX)评估,ZrN和ZrP对膨润土进行了有利的改性。ZrN和ZrP显著提高了膨润土催化剂的酸度,吡啶FTIR显示其路易斯酸和布朗斯特酸位点的强度增加。在加氢裂化应用中,负载量为8 mEq g的膨润土-ZrN转化率最高,为87.93%,而负载量为10 mEq g的膨润土-ZrP转化率为86.04%,这表明在特定条件下催化剂酸度与转化率之间存在很强的正相关。生物燃料分布分数表明,两种催化剂都产生了高比例的生物煤油,其次是生物汽油和燃油馏分。可重复使用性研究表明,两种催化剂在连续四次加氢裂化反应中对粗棕榈油都具有足够的转化稳定性,催化剂活性降低幅度较小。总体而言,与膨润土-ZrP相比,膨润土-ZrN更有利于粗棕榈油的加氢裂化。