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A Computational Platform for Simulation, Design and Analysis of a Poly(Lactic) Acid Production Process From Different Lignocellulosic Raw Materials

机译:不同木质纤维素原料的仿真,设计和分析仿真,设计和分析的计算平台

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A computational platform for the simulation, design and analysis of the Polylactic (PLA) acid production process using different lignocellulosic raw materials has been developed. The computational platform considers three main reactive-separation processes: 1) the bio-conversion process, where an hydrolysis-saccharification-culture process to produce the inoculated hydrolysate is coupled with a fermentation-separation process producing the broth with crude lactic acid; 2) the purification process, where a sequence of conventional and reactive distillation columns to perform the esterification and hydrolysis reactions, respectively, are used to produce a polymer grade lactic acid; and 3) the polymerization process, where a ring-opening polymerization reaction scheme to produce high molecular weight PLA is carried out. The platform was constructed on the Aspen Plus Environment. The implementation of the platform in a systematic manner allowed the evaluation of various mono and disaccharide materials to produce PLA. The results show that with a higher concentration of glucose the molecular weight of the PLA produced increased. However, the operation of the purification section, that is, the reactive distillation columns should be carried out carefully in order to obtain a purified lactic acid near to 88% mass fraction.
机译:用于使用不同的木质纤维原料的聚乳酸(PLA)酸生产过程的模拟,设计和分析的计算平台已经研制成功。计算平台考虑三个主要的反应性分离过程:1)生物转化过程,其中,以产生接种的水解产物的水解 - 糖化培养过程再加上发酵分离工艺生产具有粗乳酸发酵液; 2)纯化过程,在那里常规的和反应性蒸馏塔的顺序来执行酯化和水解反应,分别用于生产聚合级乳酸;和3)在聚合过程中,其中,开环聚合反应方案来生产高分子量PLA进行。该平台构建在Aspen Plus的环境。该平台以系统化的方式实现各种允许单糖和双糖物质的评估生产PLA。结果表明,与葡萄糖的浓度更高的PLA的分子量出品增加。然而,纯化段,也就是在操作中,反应蒸馏塔应仔细,以便获得接近88%的质量分数纯化的乳酸进行。

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