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首页> 外文期刊>Biomass Conversion and Biorefinery >Effect of hemicellulose liquid phase on the enzymatic hydrolysis of autohydrolyzed Eucalyptus globulus wood
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Effect of hemicellulose liquid phase on the enzymatic hydrolysis of autohydrolyzed Eucalyptus globulus wood

机译:半纤维素液相对自水解桉木木材酶解的影响

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In this work, Eucalyptus globulus wood was pretreated under non-isothermal autohydrolysis process at 210,220, and 230 ℃, obtaining a pretreated solid with high cellulose content and a hemicellulosic liquid phase (HLP) containing mainly xylose, acetic acid, furfural, xylooligosaccharides, and phenolic compounds. The maximum concentration of xylooligosaccharides (8.97 g/L) and phenolic compounds(2.66 g/L) was obtained at 210 and 230 ℃, respectively. To evaluate the effect of HLP addition on the enzymatic hydrolysis using unwashed pretreated solid as substrate, different proportions of HLP were studied. Also, in order to use the whole slurry on enzymatic hydrolysis, the supplementation of xylanases was evaluated. Glucose concentration of 107.49 g/L (corresponding to 74.65%of conversion) was obtained using pretreated solid at220 ℃ liquid/solid ratio (LSR) of 4 g/g and enzyme solid ratio(ESR) of 25 FPU/g-without the addition of HLP. Thus, it was shown that the unwashed pretreated solids are susceptible to enzymatic hydrolysis contributing to reduce operational cost (water consumption). Additionally, the influence of the inhibitory compounds in the HLP was shown to affect the enzymatic hydrolysis. Results indicated that 82.52 g/L of glucose (59.37 % of conversion) was obtained, using 100 % of HLP at LSR of 4 g/g and ESR of 16 FPU/g at 210 ℃ of pretreated solid. However, a positive effect was shown on the enzymatic hydrolysis when the xylanases were added using100 % of HLP, increasing to 35 and 27 % in the glucose production with respect to whole slurry without addition of xylanases.
机译:在这项工作中,对桉木进行了非等温自动水解,分别在210,220和230℃下进行了预处理,从而获得了具有高纤维素含量和半纤维素液相(HLP)的预处理固体,该半纤维素液相主要包含木糖,乙酸,糠醛,低聚木糖和酚类化合物。分别在210和230℃下得到的木糖寡糖的最大浓度为8.97 g / L,酚类化合物的最大浓度为2.66 g / L。为了评估以未洗涤的预处理固体为底物添加HLP对酶水解的影响,研究了不同比例的HLP。另外,为了将全部浆液用于酶水解,评估了木聚糖酶的补充。在220℃下使用4 g / g的液/固比(LSR)和25 FPU / g的酶固比(ESR)预处理的固体获得的葡萄糖浓度为107.49 g / L(相当于转化率的74.65%)。 HLP。因此,表明未洗涤的预处理固体易于酶水解,有助于降低操作成本(水消耗)。另外,显示了HLP中抑制性化合物的影响会影响酶促水解。结果表明,使用100%的HLP在4 g / g的LSR和16 FPU / g的ESR在210℃的预处理固体下,可获得82.52 g / L的葡萄糖(转化率为59.37%)。然而,当使用100%的HLP添加木聚糖酶时,对酶促水解显示出积极的作用,相对于不添加木聚糖酶的整个浆液而言,其葡萄糖产生增加至35%和27%。

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