Kinetic Study of Acid Hydrolysis of the Glucose Obtained from Banana Plant

IF 2.8 Q2 ENGINEERING, CHEMICAL ChemEngineering Pub Date : 2023-04-21 DOI:10.3390/chemengineering7020039
Mónica Abril-González, Angélica Vele-Salto, V. Pinos-Vélez
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引用次数: 1

Abstract

The biomass of crops in rotation, such as that generated by the banana plant, is an interesting source of lignocellulose due to its composition and availability. This research aimed to compare the amount of glucose obtained from different parts of the banana plant (leaves, rachis, and pseudostem) by hydrolysis with sulfuric acid at 100 °C. This reaction was analyzed to determine the amount of water and reagents consumed versus the glucose obtained. The optimal time and acid concentration were studied between 0–30 min and 3–5% v/v, respectively. The best results were obtained with the pseudostem of 13.02 gL−1 of glucose in a reaction time of 20 min and an acid concentration of 5%. In addition, the kinetic study of hydrolysis was carried out. The adjustment to the Saeman model was R2 0.96, which represents a first-order reaction and kinetic constants K1 = 0.5 and K2 = 0.3 min−1. This study has shown that these residues can be used as raw materials to generate value-added products due to their high glucose content.
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香蕉葡萄糖酸水解动力学研究
轮作作物的生物量,如香蕉植物产生的生物量是木质纤维素的一个有趣来源,因为它的成分和可用性。本研究旨在比较在100°C下用硫酸水解从香蕉植物的不同部位(叶、轴和假茎)获得的葡萄糖含量。分析该反应以确定消耗的水和试剂的量与获得的葡萄糖的量。研究了最佳时间和酸浓度分别在0–30分钟和3–5%v/v之间。在反应时间为20min、酸浓度为5%的条件下,用13.02gL−1的葡萄糖假茎获得了最佳结果。此外,还进行了水解动力学研究。对塞曼模型的调整为R2 0.96,表示一级反应,动力学常数K1=0.5,K2=0.3 min−1。这项研究表明,这些残留物由于其葡萄糖含量高,可以用作生产增值产品的原料。
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来源期刊
ChemEngineering
ChemEngineering Engineering-Engineering (all)
CiteScore
4.00
自引率
4.00%
发文量
88
审稿时长
11 weeks
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