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Improving Saccharification of Oil Palm Shell by Acetic Acid Pretreatment for Biofuel Production

机译:通过醋酸预处理改善油棕壳的糖化生物燃料生产

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Lignocellulosic biomass is utilized as raw materials for biofuel and electricity production in different ways. The major bottleneck of biofuel production from lignocellulosic biomass is the saccharification to produce small molecules of sugars that subsequently converted to value added compounds. Pretreatment is performed before saccharification to enhance conversion rate. In this study, acetic acid was selected to pretreat oil palm shell to enhance the production of reducing sugars in enzymatic saccharification reaction. To obtain the maximum sugars, Response Surface Methodology (RSM) with Box-Behnken design was applied in the pretreatment. Three variable factors, including reaction time, reaction temperature and acetic acid concentration were varied with three levels. The generated model has high correlation coefficient (R~2) at 0.9725 indicating the high confident level. Based on the model, the maximum reducing sugars at 40.408 mg/g-biomass could be obtained at optimum condition (107.30 °C reaction temperature, 30 min reaction time and 8.24% acid concentration). The results of this study suggested the benefit of using acetic acid for improvement of saccharification of lignocellulosic biomass to biofuel.
机译:木质纤维素生物量用作不同方式的生物燃料和电力生产的原料。从木质纤维素生物量产生的生物燃料生产的主要瓶颈是生产随后转化为增值化合物的小分子的糖化。在糖化之前进行预处理以提高转换率。在该研究中,选择乙酸预涂油棕榈壳,以增强酶糖化反应中还原糖的生产。为了获得具有Box-Behnken设计的最大糖,响应表面方法(RSM)在预处理中应用。三种可变因子,包括反应时间,反应温度和乙酸浓度,三种水平变化。生成的模型在0.9725处具有高相关系数(R〜2),表示高自信水平。基于该模型,可以在最佳条件下获得40.408mg / g生物量的最大还原糖(107.30℃反应温度,30分钟反应时间和8.24%酸浓度)。本研究的结果表明使用醋酸来改善木质纤维素生物质糖化为生物燃料的糖果。

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