首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Liquid hydrocarbon fuels from jatropha oil through catalytic cracking technology using A1MCM-41 /ZSM-5 composite catalysts
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Liquid hydrocarbon fuels from jatropha oil through catalytic cracking technology using A1MCM-41 /ZSM-5 composite catalysts

机译:使用A1MCM-41 / ZSM-5复合催化剂通过催化裂化技术从麻疯树油中提取液态烃燃料

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摘要

Biofuels, the hydrocarbons less than C_(18), produced by catalytic cracking of nonedible vegetable oils are the potential source to battle energy demand and pollution. Among the non edible oils, jatropha is the ap. candidate for the production of biofuel. Jatropha oil can be cracked catalytically over solid acid catalysts tc yield liquid fuels with superior characteristics. We present here the hydrothermal syntheses of a microp orous solid acid catalyst (HZSM-5 with Si/Al = 14), mesoporous materials (A1MCM-41) with varying Si/A! ratios (Si/Al = 18,41,72 and 95) and composite catalyst comprising HZSM-5 (as core) and varying coating percentages (5,10 and 20%) of A1MCM-41 (as shell). All the synthesized catalysts were characterized bv using XRD, BET N2 sorption studies, ICP, TPD and SEM techniques. Herein we report the catalytic activities of all the synthesized catalysts towards the cracking of jatropha oil obtained at the optimized conditions of temperature - 400 °C, WHSV - 4.6 h~(-1) and reaction time - 1 h. Of all the mesoporous catalysts witl varying Si/Al ratios, A1MCM-41 (Si/Al = 18) was found to be the most active catalyst as it converted 65% of jatropha oil yielding 39% of bioliquid fuel with 47% and 36% selectivities towards green diesel anc green gasoline respectively. In the core-shell architecture of the composite catalyst, different % coatings of the best active mesoporous material (A1MCM-41, Si/Al = 18) over the best active microporous materia (ZSM-5, Si/Al = 14) were done. A1MCM-41/ZSM-5 (25, 15, 10) showed remarkable performance in the conversion of jatropha oil (99%) yielding 70% of bioliquid fuel with very high selectivity (61%) towards green gasoline.
机译:通过非食用植物油的催化裂化生产的生物燃料(小于C_(18)的碳氢化合物)是与能源需求和污染作斗争的潜在来源。在非食用油中,麻风树是ap。生物燃料生产的候选人。麻风树油可以在固体酸催化剂上催化裂化,从而生产出具有优异特性的液体燃料。我们在这里介绍了一种微孔固体酸催化剂(HZSM-5,Si / Al = 14),具有不同Si / A的介孔材料(A1MCM-41)的水热合成!比率(Si / Al = 18、41、72和95)和复合催化剂,包括HZSM-5(作为核)和变化的涂层百分比(5,10和20%)的A1MCM-41(作为壳)。使用XRD,BET N2吸附研究,ICP,TPD和SEM技术对所有合成的催化剂进行了表征。在此,我们报道了在优化的温度-400°C,WHSV-4.6 h〜(-1)和反应时间-1 h的条件下获得的所有合成催化剂对麻风树油裂解的催化活性。在所有具有不同Si / Al比的介孔催化剂中,A1MCM-41(Si / Al = 18)被发现是活性最高的催化剂,因为它可转化65%的麻风树油,分别产生39%的生物液体燃料,47%和36%的生物液体燃料。分别对绿色柴油和绿色汽油具有选择性。在复合催化剂的核-壳结构中,在最佳活性微孔材料(ZSM-5,Si / Al = 14)上进行了最佳活性中孔材料(A1MCM-41,Si / Al = 18)的不同%涂层。 A1MCM-41 / ZSM-5(25、15、10)在麻疯树油(99%)的转化中表现出卓越的性能,可产生70%的生物液体燃料,对绿色汽油的选择性很高(61%)。

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