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首页> 外文期刊>Bioprocess and Biosystems Engineering >Alkaline-sulfite pretreatment and use of surfactants during enzymatic hydrolysis to enhance ethanol production from sugarcane bagasse
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Alkaline-sulfite pretreatment and use of surfactants during enzymatic hydrolysis to enhance ethanol production from sugarcane bagasse

机译:碱式亚硫酸盐预处理和酶水解过程中使用表面活性剂以提高甘蔗渣中乙醇的产量

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Sugarcane bagasse is a by-product from the sugar and ethanol industry which contains approximately 70 % of its dry mass composed by polysaccharides. To convert these polysaccharides into fuel ethanol it is necessary a pretreatment step to increase the enzymatic digestibility of the recalcitrant raw material. In this work, sugarcane bagasse was pretreated by an alkaline-sulfite chemithermomechanical process for increasing its enzymatic digestibility. Na2SO3 and NaOH ratios were fixed at 2: 1, and three increasing chemical loads, varying from 4 to 8 % m/m Na2SO3, were used to prepare the pretreated materials. The increase in the alkaline-sulfite load decreased the lignin content in the pretreated material up to 35.5 % at the highest chemical load. The pretreated samples presented enhanced glucose yields during enzymatic hydrolysis as a function of the pretreatment severity. The maximum glucose yield (64 %) was observed for the samples pretreated with the highest chemical load. The use of 2.5 g l(-1) Tween 20 in the hydrolysis step further increased the glucose yield to 75 %. Semi-simultaneous hydrolysis and fermentation of the pretreated materials indicated that the ethanol yield was also enhanced as a function of the pretreatment severity. The maximum ethanol yield was 56 +/- 2 % for the sample pretreated with the highest chemical load. For the sample pretreated with the lowest chemical load (2 % m/m NaOH and 4 % m/m Na2SO3), adding Tween 20 during the hydrolysis process increased the ethanol yield from 25 +/- 3 to 39.5 +/- 1 %.
机译:甘蔗渣是糖和乙醇工业的副产品,其干质量约占多糖的70%。为了将这些多糖转化为燃料乙醇,必须进行预处理步骤以增加顽固性原料的酶消化率。在这项工作中,甘蔗渣用碱性亚硫酸盐化学机械过程进行了预处理,以提高其酶消化率。 Na2SO3和NaOH之比固定为2:1,并使用三种不断增加的化学负载(从4%到8%m / m Na2SO3)来制备预处理的材料。在最高化学负荷下,碱式亚硫酸盐负荷的增加将预处理材料中的木质素含量降低至35.5%。预处理后的样品在酶促水解过程中表现出较高的葡萄糖产量,这是预处理强度的函数。对于以最高化学负荷预处理的样品,观察到最大葡萄糖产率(64%)。在水解步骤中使用2.5 g l(-1)Tween 20可以进一步将葡萄糖产率提高到75%。预处理材料的半同时水解和发酵表明,乙醇产量也随预处理强度的增加而提高。对于化学负载最高的预处理样品,最大乙醇产率为56 +/- 2%。对于以最低化学负载(2%m / m NaOH和4%m / m Na2SO3)进行预处理的样品,在水解过程中添加Tween 20可将乙醇产率从25 +/- 3提高到39.5 +/- 1%。

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