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Assessment of Natural Deep Eutectic Solvent Pretreatment on Sugar Production from Lignocellulosic Biomass

机译:木质纤维素生物质中天然深层共晶溶剂预处理的评价

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摘要

Before the conversion of lignocellulosic biomass into fuel such as ethanol, the biomass needs to be pretreated and the yield of ethanol is highly dependent on the pretreatment efficiency. This study investigate the performance of deep eutectic solvent (DES) in pretreating sago waste which is a type of starchy biomass. The suitable type of DES in sago waste pretreatment was selected based on three criteria, which is the structural characteristic, the sugar yield during enzymatic hydrolysis and the amount of sugar loss during pretreatment. In this study, three types of DES namely Choline Chloride-Urea (ChCl-Urea), Choline Chloride-Citric acid (ChCl-CA) and Choline Chloride-Glycerol (ChCl-Glycerol) was investigated. The effect of temperature and duration on DES pretreatment was also investigated. All DES reagents were able to disrupt the structure and increase the porosity of sago waste during pretreatment. ChCl-Urea was selected in this study as it shows apparent structural disruption as examined under Scanning Electron Microscope (SEM). The highest glucose yield of 5.2 mg/mL was derived from enzymatic hydrolysis of ChCl-Urea pretreated sago waste. Moreover, reducing sugar loss during ChCl-Urea pretreatment was low, with only 0.8 mg/mL recorded. The most suitable temperature and duration for ChCl-Urea pretreatment is at 110°C and 3 hr. In a nutshell, the application of DES in pretreatment is feasible and other aspects such as the biodegradability and recyclability of DES is worth investigating to improve the economic feasibility of this pretreatment technique.
机译:在将木质纤维素生物质转化为诸如乙醇的燃料之前,需要预处理生物质,乙醇的产率高度依赖于预处理效率。本研究探讨了深度共晶溶剂(DES)在预处理Sago废料中的性能,这是一种淀粉生物质。基于三个标准选择了Sago废物预处理的合适类型的DES,这是结构特征,酶水解过程中的糖产量和预处理期间的糖损失量。在该研究中,研究了三种类型的氯化氯酰脲 - 尿素(CHCl-urea),胆碱氯化物 - 柠檬酸(CHCl-CA)和胆碱 - 氯化胆碱 - 甘油(CHCL-甘油)。还研究了温度和持续时间对DES预处理的影响。所有DES试剂都能够破坏结构并在预处理期间增加Sago废物的孔隙率。在本研究中选择了CHCL-UREA,因为它显示在扫描电子显微镜(SEM)下检查的表观结构破坏。 5.2mg / ml的最高葡萄糖产率来自CHCl-urea预处理的Sago废物的酶水解。此外,在CHCL-尿素预处理期间降低糖损失低,记录了0.8mg / mL。 CHCL-UREA预处理的最合适的温度和持续时间是110℃和3小时。简而言之,DES在预处理中的应用是可行的,其他方面如DES的生物降解性和可回收性等方面是值得调查的,以提高这种预处理技术的经济可行性。

著录项

  • 作者

    Yoon Li Wan; Yuen Jun Mun;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 fra/fre;eng
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