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Optimization study on acid hydrolysis of hardwood-derived hemicellulosic extract for alcohol fermentation using response surface methodology

机译:响应面法优化硬木半纤维素提取物酸水解酒精发酵的研究

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In this study, the extraction conditions of hemicelluloses from mixed hardwoods have been tested. In particular, 3% total titrated alkaline (TTA) green liquor (GL) was used to dissolve certain hemicelluloses and lignin in a manner similar to black liquor extraction, but the pH was maintained at near-neutral conditions, so that oligosaccharides were not completely degraded into iso-saccharinic acids. The effects of temperature, time, and acid concentration on the fermentable sugar yields for the extract during secondary hydrolysis were investigated. Chips of mixed northern hardwoods were cooked in a rocking digester at 160 degrees C for 110 min in the GL at a concentration of 3% Na2O-equivalent salts on dry wood. The mass of wood extracted into the GL extract was approximately 11.4% of the debarked wood mass, which resulted in a dilute solution of oligomeric hemicellulosic sugars. Dilute sulfuric acid hydrolysis was performed under the following conditions: 100 degrees C-130 degrees C, 2%-4% H2SO4, and 20-120 min residence time. The maximum fermentable sugar concentration of xylose, mannose, and galactose (XyMaGa) obtained from the hydrolyzed extract was 5.5 g l(-1), representing 91.7% of the maximum possible yield. A factorial design was used to study the effects of temperature and acid concentration on the maximum quantity of XyMaGa oligomers obtained in the extract during secondary hydrolysis. The maximum potential yield of XyMaGa reached 5.34 g l(-1) at 130 degrees C, 3.27% H2SO4, and 50.2 min residence time.
机译:在这项研究中,已经测试了从混合硬木中提取半纤维素的条件。特别是,总滴定度为3%的碱性(TTA)绿液(GL)用于溶解某些半纤维素和木质素的方式类似于黑液提取,但pH值保持在接近中性的条件下,因此寡糖不能完全溶解降解为异糖精酸。研究了温度,时间和酸浓度对二次水解过程中提取物可发酵糖产量的影响。将混合了北方硬木的木片在GL GL上的摇摆式蒸煮器中于160摄氏度下烹饪110分钟,其浓度为干木上3%Na2O当量的盐。提取到GL提取物中的木材质量约为去皮木材质量的11.4%,这导致了低聚半纤维素糖的稀溶液。在以下条件下进行稀硫酸水解:100摄氏度至130摄氏度,2%-4%的硫酸和20-120分钟的停留时间。从水解提取物中得到的木糖,甘露糖和半乳糖(XyMaGa)的最大可发酵糖浓度为5.5 g l(-1),占最大可能产量的91.7%。析因设计用于研究温度和酸浓度对二次水解过程中提取物中获得的XyMaGa低聚物最大量的影响。 XyMaGa的最大潜在产量在130摄氏度,3.27%H2SO4和50.2分钟停留时间下达到5.34 g l(-1)。

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