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首页> 外文期刊>Journal of sustainable bioenergy systems >Microwave-Assisted Alkaline Pretreatment and Microwave Assisted Enzymatic Saccharification of Oil Palm Empty Fruit Bunch Fiber for Enhanced Fermentable Sugar Yield
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Microwave-Assisted Alkaline Pretreatment and Microwave Assisted Enzymatic Saccharification of Oil Palm Empty Fruit Bunch Fiber for Enhanced Fermentable Sugar Yield

机译:微波辅助碱预处理和油棕空果束纤维的微波辅助酶促糖化工艺提高可发酵糖产量

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Lignocellulosic materials are promising alternative feedstocks for bioethanol production. However, the recalcitrant nature of lignocellulosic biomass necessitates an efficient pretreatment pretreatment step to improve the yield of fermentable sugars and maximizing the enzymatic hydrolysis efficiency. Microwave pretreatment may be a good alternative as it can reduce the pretreatment time and improve the enzymatic activity during hydrolysis. The overall goal of this paper is to expand the current state of knowledge on microwave-based pretreatment of lignocellulosic biomass and microwave assisted enzymatic reaction or Microwave Irradiation-Enzyme Coupling Catalysis (MIECC). In the present study, a comparison of microwave assisted alkali pretreatment was tried using Oil Palm empty fruit bunch. The microwave assisted alkali pretreatment of EFB using NaOH, significantly improved the enzymatic saccharification of EFB by removing more lignin and hemicellulose and increasing its accessibility to hydrolytic enzymes. The results showed that the optimum pretreatment condition was 3% (w/v) NaOH at 180 W for 12 minutes with the optimum component loss of lignin and holocellulose of about 74% and 24.5% respectively. The subsequent enzymatic saccharification of EFB pretreated by microwave assisted NaOH (3% w/v); resulted in 411 mg of reducing sugar per gram EFB at cellulose enzyme dosage of 20 FPU. The overall enhancement by the microwave treatment during the microwave assisted alkali pretreatment and microwave assisted enzymatic hydrolysis was 5.8 fold. The present study has highlighted the importance of well controlled microwave assisted enzymatic reaction to enhance the overall reaction rate of the process.
机译:木质纤维素材料是有前途的生物乙醇生产原料。然而,木质纤维素生物质的顽强特性需要有效的预处理预处理步骤,以提高可发酵糖的产率并最大程度地提高酶水解效率。微波预处理可能是一个很好的选择,因为它可以减少预处理时间并提高水解过程中的酶活性。本文的总体目标是扩大对木质纤维素生物质的微波预处理和微波辅助酶促反应或微波辐射-酶偶联催化(MIECC)的知识。在本研究中,尝试了使用油棕空果束进行微波辅助碱预处理的比较。微波辅助使用NaOH对EFB进行碱预处理,通过去除更多的木质素和半纤维素并增加其对水解酶的可及性,显着改善了EFB的酶促糖化作用。结果表明,最佳预处理条件为180 W下3%(w / v)NaOH,持续12分钟,木质素和全纤维素的最佳成分损失分别约为74%和24.5%。随后用微波辅助NaOH(3%w / v)预处理的EFB酶促糖化;在20 FPU的纤维素酶剂量下,每克EFB产生411毫克还原糖。在微波辅助的碱预处理和微波辅助的酶促水解过程中通过微波处理的总体增强为5.8倍。本研究强调了控制良好的微波辅助酶促反应以提高整个过程反应速度的重要性。

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