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Hydrothermal Conversion of Giant Reed to Furfural and Levulinic Acid: Optimization of the Process under Microwave Irradiation and Investigation of Distinctive Agronomic Parameters

机译:巨型芦苇水热转化为糠醛和乙酰丙酸的工艺:微波辐射工艺的优化和独特的农艺参数研究

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摘要

The hydrothermal conversion of giant reed (Arundo donax L.) to furfural (FA) and levulinic acid (LA) was investigated in the presence of dilute hydrochloric acid. FA and LA yields were improved by univariate optimization of the main reaction parameters: concentration of the acid catalyst, solid/liquid ratio of the reaction mixture, hydrolysis temperature, and reaction time. The catalytic performances were investigated adopting the efficient microwave (MW) irradiation, allowing significant energy and time savings. The best FA and LA yields were further confirmed using a traditionally heated autoclave reactor, giving very high results, when compared with the literature. Hydrolysis temperature and time were the main reaction variables to be carefully optimized: FA formation needed milder reaction conditions, while LA more severe ones. The effect of the crop management (e.g., harvest time) on FA/LA production was discussed, revealing that harvest time was not a discriminating parameter for the further optimization of both FA and LA production, due to the very high productivity of the giant reed throughout the year. The promising results demonstrate that giant reed represents a very interesting candidate for a very high contemporary production of FA and LA of up to about 70% and 90% of the theoretical yields, respectively.
机译:在稀盐酸存在下,研究了芦苇(Arundo donax L.)到糠醛(FA)和乙酰丙酸(LA)的水热转化。通过对主要反应参数进行单变量优化来提高FA和LA的收率:酸催化剂的浓度,反应混合物的固/液比,水解温度和反应时间。通过采用有效的微波(MW)辐射研究了催化性能,从而节省了大量能源和时间。与文献相比,使用传统加热的高压釜反应器进一步确定了最佳的FA和LA收率,从而获得了很高的结果。水解温度和时间是需要仔细优化的主要反应变量:FA的形成需要较温和的反应条件,而LA则需要更严格的条件。讨论了作物管理(例如收获时间)对FA / LA产量的影响,揭示了收获时间不是进一步优化FA和LA产量的判别参数,因为巨型芦苇的生产力非常高一年四季。有希望的结果表明,巨大的芦苇代表了非常高的FA和LA当代产量的非常有趣的候选者,分别高达理论产量的约70%和90%。

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