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Microwave-Assisted Oxalic Acid Pretreatment for the Enhancing of Enzyme Hydrolysis in the Production of Xylose and Arabinose from Bagasse

机译:微波辅助草酸预处理,用于增强酶水解中的酶水解和来自甘蔗的制备中的酶水解

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摘要

In this study, highly-efficient hydrolysis of bagasse into xylose and arabinose sugars (C5 sugars) was developed by microwave-assisted oxalic acid pretreatment under mild reaction conditions. The effects of acid and hydrolysis conditions on the C5 sugar yields were discussed. The results showed that oxalic acid performed better than hydrochloric acid and maleic acid, and was a promising alternative to sulfuric acid for xylose production at the same acid concentration. The maximum yields of xylose (95.7%) and arabinose (91.5%) were achieved via the microwave-assisted oxalic acid pretreatment (120 °C, 10 min, 0.4 mol/L, solid–liquid ratio of 1:50 g/mL), indicating that almost all xylan-type hemicelluloses were released from the cell wall and hydrolyzed into C5 sugars. After pretreatment, more than 90% of the cellulose in the residual bagasse was converted to glucose (92.2%) by enzymatic hydrolysis. This approach could realize the highly-efficient hydrolysis of xylan from bagasse into C5 sugars, which would enhance the enzyme hydrolysis of treated bagasse into glucose.
机译:在这项研究中,蔗渣的高效水解成木糖和阿拉伯糖的糖(C5糖)通过温和的反应条件下微波辅助草酸预处理显影。讨论了对C5的糖产率酸和水解条件的影响。结果表明,草酸在相同的酸浓度高于盐酸和马来酸进行更好,并且是一个有希望的替代硫酸木糖生产。木糖(95.7%)和阿拉伯糖(91.5%)的最大产率通过取得的微波辅助草酸预处理(120℃,10分钟,0.4摩尔/ L,1:50克/毫升的固体 - 液体比) ,表明几乎所有的木聚糖的半纤维素型从细胞释放壁和水解成C5糖。预处理后,在残留的渣中的纤维素的90%以上被转化为葡萄糖(92.2%)通过酶水解。这种方法可以实现的木聚糖从蔗渣的高效水解为C5糖,这将提高处理蔗渣的酶水解成葡萄糖。

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