4.7 Article

Investigation of alkaline hydrogen peroxide pretreatment and Tween 80 to enhance enzymatic hydrolysis of sugarcane bagasse

期刊

BIOTECHNOLOGY FOR BIOFUELS
卷 12, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s13068-019-1454-3

关键词

Sugarcane bagasse; Alkaline hydrogen peroxide pretreatment; Glucose; Tween 80

资金

  1. National Natural Science Foundation of China [21606091]
  2. CAS Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion [Y807k51001]

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BackgroundDue to the intact structure of lignocellulosic biomass, pretreatment was a prerequisite to improve the enzymatic hydrolysis by disrupting the recalcitrant lignocellulose and increasing the accessibility of cellulose to enzyme. In this study, an alkaline hydrogen peroxide (AHP) pretreatment of sugarcane bagasse with various loadings of H2O2 (1.25-6.25wt%) at temperatures of 60-160 degrees C was proposed to degrade hemicellulose/lignin and improve the enzymatic digestibility.ResultsIt was found that increasing H2O2 loadings during pretreatment lead to the enhancement of substrate digestibility, whereas the alkali (only NaOH)-pretreated solid generated higher glucose yield than that pretreated under AHP pretreatment with lower loading of H2O2. This enhancement of enzymatic digestibility was due to the degradation of hemicellulose and lignin. Furthermore, Tween 80 was added to promote enzymatic digestibility, however, the increased yields were different with various substrates and hydrolysis time. The highest glucose yield of 77.6% was obtained after pretreatment at 160 degrees C for 60min with 6.25% H2O2 and the addition of Tween 80, representing 89.1% of glucose in pretreated substrate.ConclusionsThis study demonstrated that the AHP pretreatment could greatly enhance the enzymatic saccharification. The addition of Tween 80 played remarkable performances in promoting the glucose yield during enzymatic hydrolysis by stabilizing and protecting the enzyme activity. This study provided an economical feasible and gradual process for the generation of glucose, which will be subsequently converted to bioethanol and bio-chemicals.

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