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A kinetic study of acid catalysed hydrolysis of sugar cane bagasse to levulinic acid

机译:酸催化甘蔗渣水解为乙酰丙酸的动力学研究

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摘要

There is a significant research effort worldwide to identify attractive chemical conversion routes for lig-nocellulosic biomass to organic (bulk-)chemicals. This study has focussed on the acid-catalysed hydrolysis of sugar cane bagasse for the production of levulinic acid (LA), a platform chemical used for the synthesis of a variety of materials for applications such as fuel additives and polymer and resin precursors. The objectives of this study were to develop a broadly applicable kinetic model for the acid-catalysed hydrolysis of sugar cane bagasse to LA and to determine the optimum reaction conditions for its production. Systematic kinetic experiments were carried out by varying the reaction temperature between 150 and 200 °C, and the sulphuric acid concentration between 0.11 and 0.55 M. The highest LA yield was obtained at 150 °C and 0.55 M H2SO4 at 63 mol%, which equates to the production of 194 kg of LA from 1 dry tonne of sugar cane bagasse. The kinetic model developed was in good agreement with the experimental data and also with the previous kinetic models developed for cellulose and sugar cane bagasse. Our kinetic model, though developed for the sugar cane bagasse, can be applied over a wide range of hydrolysis reaction conditions for lignocellulosic biomass. Based on the optimisation study carried out using our kinetic model, an empirical equation is proposed to predict the LA yield at a particular temperature and acid concentration.
机译:全球正在开展大量研究工作,以确定从木质纤维素生物质到有机(本体)化学品的有吸引力的化学转化途径。这项研究集中于酸催化的甘蔗渣的水解,以生产乙酰丙酸(LA),乙酰丙酸是一种平台化学品,可用于合成多种材料,例如燃料添加剂,聚合物和树脂前体。这项研究的目的是开发一种广泛适用的动力学模型,用于酸催化甘蔗渣水解为洛杉矶,并确定其生产的最佳反应条件。通过在150至200°C之间改变反应温度以及在0.11至0.55 M之间的硫酸浓度进行系统动力学实验。在150°C和0.55 M H2SO4的63 mol%处获得最高的LA收率,这相当于从1吨干甘蔗渣中生产194公斤LA。建立的动力学模型与实验数据以及与先前针对纤维素和甘蔗渣开发的动力学模型非常吻合。尽管针对甘蔗渣开发了我们的动力学模型,但其动力学模型可用于木质纤维素生物质的广泛水解反应条件。在使用我们的动力学模型进行的优化研究的基础上,提出了一个经验方程来预测特定温度和酸浓度下的LA收率。

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