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Dilute Sulfuric Acid Pretreatmentof Agricultural and Agro-Industrial Residuesfor Ethanol Production

机译:稀硫酸预处理农业和农业工业残留物的乙醇生产

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The potential of dilute-acid prehydrolysis as a pretreatment method for sugarcane bagasse, rice hulls, peanut shells, and cassava stalks was investigated The prehydrolysis was performed at 122°C during 20, 40, or 60 min using 2% H2SO4 at a solid-to-liquid ratio of 1 : 10, Sugar formation increased with increasing reaction time. Xylose, glucose, arabinose, and galactose were detected in all of the prehydrolysates, whereas mannose was found only in the prehydrolysates of peanut shells and cassava stalks. The hemicelluloses of bagasse were hydrolyzed to a high-extent yielding concentrations of xylose and arabinose of 19.1 and 2.2 g/L, respectively, and a xylan conversion of more than 80% High-glucose concentrations (26-33.5 g/L) were found in the prehydrolysates of rice hulls, probably because of hydrolysis of starch of grain remains in the hulls. Peanut shells and cassava stalks rendered low amounts of sugars on prehydrolysis, indicating that the conditions were not severe enough to hydrolyze the hemicelluloses in these materials quantitatively All prehydrolysates were readily fermentable by Saccharomyces cere-visiae. The dilute-acid prehydrolysis resulted in a 2.7- to 3 7-fold increase of the enzymatic convertibility of bagasse, but was not efficient for improving the enzymatic hydrolysis of peanut shells, cassava stalks, or rice hulls.
机译:作为甘蔗甘蔗的预处理方法,米壳,花生壳和木薯秸秆的预处理方法,在20,40或60分钟期间在20,0%H 2 SO 4下在40,40或60分钟内在122℃下进行预氢化,在固体 - 液体比为1:10,随着反应时间的增加而增加。在所有丙烃酸盐中检测到木糖,葡萄糖,阿拉伯糖和半乳糖,而甘露糖仅在花生壳和木薯秸秆的含前糖果糖中发现。甘蔗渣的半纤维素分别水解成高度的木糖和19.1和2.2g / L的阿拉伯糖的高度,并发现了超过80%的高葡萄糖浓度(26-33.5g / L)的木聚糖转化在稻壳的常甲酸盐中,可能是因为水解谷物的淀粉残留在船体中。花生壳和木薯秸秆在预氢化物质上呈现出少量的糖,表明条件不足以定量地将这些材料中的半纤维素水解,所有常规通过糖酵母依赖于酿酒酵母可通过酿酒酵母致致敏。稀酸预水解导致甘蔗渣的酶促可转化性增加2.7至3 7倍,但对于改善花生壳,木薯秸秆或稻米壳体的酶水解并不有效。

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