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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Catalytic upgrading of renewable levulinic acid to ethyl levulinate biodiesel using dodecatungstophosphoric acid supported on desilicated H-ZSM-5 as catalyst
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Catalytic upgrading of renewable levulinic acid to ethyl levulinate biodiesel using dodecatungstophosphoric acid supported on desilicated H-ZSM-5 as catalyst

机译:以脱硅化的H-ZSM-5负载的十二碳杂磷酸为催化剂,将可再生乙酰丙酸催化改性为乙酰丙酸乙酯生物柴油

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摘要

Levulinic acid (LA) is considered as a renewable platform chemical and can be used for the synthesis of variety of important fuels and chemicals. In particular, its esterification with ethanol produces ethyl levulinate (EL) would be green process, as it can be used as diesel miscible biofuel (DMB), preventing global warming by decreasing atmospheric CO2. This study explores the use of modified H-ZSM-5 by desilication viz.; DH-ZSM-5 and dodecatungstophosphoric acid (DTPA) loaded on DH-ZSM-5 for esterification of LA with ethanol aiming to EL. Different degree of desilication of H-ZSM-5 was performed by using aq. NaOH (0.2-1.5 M) at 338 K for 30 min and then DTPA was loaded on these desilicated H-ZSM-5 (DH-ZSM-5) support. H-ZSM-5, DH-ZSM-5 and DTPA on these DH-ZSM-5 samples were characterized by powder X-ray diffraction (XRD), N2 adsorption-desorption, pyridine chemisorbed IR spectroscopy. Temperature Programmed Ammonia Desorption (TPAD). The increase in conversion of levulinic acid was observed from 28% to 94% with increase of DTPA loading from 0% to 15%. The increased LA conversion may be due to increase in total acidity from 43.14% to 84.31%. The use of DH-ZSM-5 as support for deposition of DTPA may be reported for the first time. The present work also extended to optimize process parameters such as DTPA loading on DH-ZSM-5, catalyst to LA ratio, LA to ethanol molar ratio, speed of agitation, particle size reaction temperature and catalyst reusability. Kinetic study based on pseudo-homogeneous (P-H) model is also presented. The experimental results follow second order kinetics.
机译:左旋丙酸(LA)被认为是一种可再生的平台化学品,可用于合成多种重要的燃料和化学品。特别是,其与乙醇的酯化反应将产生乙酰丙酸乙酯(EL),这将是绿色过程,因为它可用作柴油可混溶的生物燃料(DMB),可通过减少大气中的CO2防止全球变暖。该研究探索了通过脱硅作用使用修饰的H-ZSM-5的方法。 DH-ZSM-5和十二烷基磷酸(DTPA)装载在DH-ZSM-5上,用于用乙醇将LA酯化成LA,从而制得EL。通过使用碳酸氢钠水溶液进行不同程度的H-ZSM-5的脱硅。在338 K的NaOH(0.2-1.5 M)下放置30分钟,然后将DTPA加载到这些脱硅的H-ZSM-5(DH-ZSM-5)载体上。通过粉末X射线衍射(XRD),N2吸附-解吸,吡啶化学吸附IR光谱对这些DH-ZSM-5样品上的H-ZSM-5,DH-ZSM-5和DTPA进行表征。程序升温氨解吸(TPAD)。观察到乙酰丙酸的转化率从28%增加到94%,而DTPA含量从0%增加到15%。 LA转化率提高可能是由于总酸度从43.14%增加到84.31%。可能首次报道使用DH-ZSM-5作为DTPA沉积的载体。目前的工作还扩展到优化工艺参数,例如DHPA-DHSM-5上的DTPA负载,催化剂与LA的比例,LA与乙醇的摩尔比,搅拌速度,粒度反应温度和催化剂可重复使用性。还提出了基于伪均相(P-H)模型的动力学研究。实验结果遵循二阶动力学。

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