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In-situ transesterification of Jatropha curcas L. seeds using homogeneous and heterogeneous basic catalysts

机译:使用均相和非均相碱性催化剂对麻疯树种子进行原位酯交换

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The in-situ or direct transesterification from non-edible Jatropha curcas L. (Jatropha) seeds is a suitable alternative to produce fatty acid methyl esters (FAME) in one-step. The FAME production was investigated in presence of homogeneous (NaOH) or heterogeneous (Na2ZrO3) catalysts. Parameters, such as catalyst concentration (between 1 and 10 wt%), reaction time, temperature and methanol/oil molar ratio were analysed. The maximum heterogeneous direct transesterification of FAME yield was 99.9% using 5 wt% of Na2ZrO3 at 65 degrees C and 8 h. Results showed that no solvent for oil extraction is required. The resulting FAME shows good purity and composition. Moreover, no water is required to purify the FAME. Compositional analysis of FAME indicated that linoleic (C18:2), oleic (C18:1) and palmitic (C16:0) methyl esters were the major components. In addition, the reusability of the catalyst was also investigated. The basic heterogeneous catalyst exhibited stability in the direct transesterification reactions with yields of 72.5% during five cycles. Finally, Green Metrics values were proposed as parameters to evaluate the FAME obtained in one-pot from seeds directly. The heterogeneous direct transesterification process resulted 55% greener as compared to conventional transesterification and 39.4% greener than homogenous direct transesterification. Heterogeneous direct transesterification is a promising alternative for more clean, efficient, scalable and cost-effective FAME production that has the potential to developing new technologies.
机译:非食用麻风树麻风树种子的原位或直接酯交换反应是一步生产脂肪酸甲酯(FAME)的合适选择。在均相(NaOH)或非均相(Na2ZrO3)催化剂存在下研究了FAME的产生。分析了催化剂浓度(1-10重量%),反应时间,温度和甲醇/油摩尔比等参数。使用65 wt%的Na2ZrO3在65°C和8 h时,FAME收率的最大异质直接酯交换率为99.9%。结果表明,不需要用于提取油的溶剂。所得的FAME显示出良好的纯度和组成。而且,不需要水来纯化FAME。 FAME的组成分析表明,主要成分为亚油酸(C18:2),油酸(C18:1)和棕榈酸(C16:0)甲酯。另外,还研究了催化剂的可重复使用性。碱性多相催化剂在直接酯交换反应中表现出稳定性,在五个循环中的收率> 72.5%。最后,提出了Green Metrics值作为参数,用于直接评估一锅中从种子获得的FAME。与常规的酯交换反应相比,异质直接酯交换过程可产生55%的绿色,比均质的直接酯交换反应可产生39.4%的绿色。异质直接酯交换反应是更清洁,高效,可扩展且具有成本效益的FAME生产的有前途的替代方法,具有开发新技术的潜力。

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