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Combining Autoclaving with Mild Alkaline Solution as a Pretreatment Technique to Enhance Glucose Recovery from the Invasive Weed Chloris barbata

机译:结合高压釜与轻度碱性溶液作为预处理技术以增强从入侵杂草金龟草中葡萄糖的回收率

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摘要

Developing an optimum pretreatment condition to enhance glucose recovery assessed the potential of Chloris barbata, which is a common invasive weed in Thailand, as a feedstock for bioethanol production. Chloris barbata was exposed to autoclave-assisted alkaline pretreatment by using different sodium hydroxide (NaOH) concentrations (1% to 4%) and heat intensities (110 °C to 130 °C) that were dissipated from autoclaving. The optimum condition for pretreatment was determined to be 2% NaOH at 110 °C for 60 min. At this condition, maximum hydrolysis efficiency (90.0%) and glucose recovery (30.7%), as compared to those of raw C. barbata (15.15% and 6.20%, respectively), were observed. Evaluation of glucose production from 1000 g of C. barbata based on material balance analysis revealed an estimated yield of 304 g after pretreatment at the optimum condition when compared to that of raw C. barbata (61 g), an increase of five-fold. Structural analysis by the scanning electron microscopy (SEM) and X-ray diffraction (XRD) revealed the disruption of the intact structure of C. barbata and an increase in the cellulose crystallinity index (CrI), respectively. The results from this study demonstrate the efficiency of using C. barbata as a potential feedstock for bioethanol production.
机译:通过开发最佳的预处理条件来提高葡萄糖回收率,评估了巴氏金枪鱼(Chloris barbata)作为生物乙醇生产原料的潜力,该金枪鱼是泰国常见的入侵杂草。通过使用从高压灭菌器消散的不同浓度的氢氧化钠(NaOH)(1%至4%)和热强度(110°C至130°C),将半球形的印度虎尾草暴露于高压釜辅助的碱性预处理中。确定预处理的最佳条件是在110°C下60分钟使用2%NaOH。在此条件下,与未处理的半球形梭状芽胞杆菌(分别为15.1%和6.20%)相比,观察到最大水解效率(90.0%)和葡萄糖回收率(30.7%)。根据材料平衡分析,从1000克半枝绣球藻中产生的葡萄糖进行评估,结果表明,在最佳条件下进行预处理后的估计产量为304克,与生的半枝绣球藻(61克)相比,增加了五倍。通过扫描电子显微镜(SEM)和X射线衍射(XRD)进行的结构分析分别揭示了巴巴氏梭菌完整结构的破坏和纤维素结晶度指数(CrI)的增加。这项研究的结果表明,使用半枝绣球藻作为生物乙醇生产的潜在原料的效率。

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