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Production of gasoline range hydrocarbons from catalytic cracking of linoleic acid over various acidic zeolite catalysts

机译:从各种酸性沸石催化剂中催化裂解的汽油范围烃生产

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Employment of edible oils as alternative green fuel for vehicles had raised debates on the sustainability of food supply especially in the third-world countries. The non-edible oil obtained from the abundantly available rubber seeds could mitigate this issue and at the same time reduce the environmental impact. Therefore, this paper investigates the catalytic cracking reaction of a model compound named linoleic acid that is enormously present in the rubber seed oil. Batch-scale experiments were conducted using 8.8?mL Inconel batch reactor having a cyclic horizontal swing span of 2?cm with a frequency of 60?cycles per minute at 450?°C under atmospheric condition for 90?min. The performance of HZSM-5, HBeta, HFerrierite, HMordenite and HY catalysts was tested for their efficiency in favouring gasoline range hydrocarbons. The compounds present in the organic liquid product were then analysed using GC-MS and classified based on PIONA which stands for paraffin, isoparaffin, olefin, naphthenes and aromatics respectively. The results obtained show that HZSM-5 catalyst favoured gasoline range hydrocarbons that were rich in aromatics compounds and promoted the production of desired isoparaffin. It also gave a higher cracking activity; however, large gaseous as by-products were produced at the same time.
机译:作为车辆的替代绿色燃料,食用油的就业已经提出了关于粮食供应​​可持续性的辩论,特别是在第三世界国家。从丰富的橡胶种子中获得的不可食用油可以减轻这个问题,同时降低环境影响。因此,本文研究了名为亚油酸的模型化合物的催化裂化反应,其含有橡胶籽油中的巨大存在。使用8.8μl的批量反应器进行分批实验,其循环水平摆动频率为2Ω·cm,频率为60≤0.℃,在大气条件下每分钟循环为90Ω·min。测试HZSM-5,HBETA,HFERRIRITERITE,HMORDENITE和HY催化剂的性能,以效率优化汽油系列烃。然后使用GC-MS分析有机液体产物中的化合物,并基于PIONA分别分别代表石蜡,异戊烷,烯烃,环烷烃和芳烃。得到的结果表明,HZSM-5催化剂有利于富含芳烃化合物的汽油系列烃并促进所需的异戊烷的产生。它还产生了更高的开裂活动;然而,与副产物的大气态同时生产。

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