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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Continuous Countercurrent Extraction of Hemicellulose from Pretreated Wood Residues
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Continuous Countercurrent Extraction of Hemicellulose from Pretreated Wood Residues

机译:从预处理的木材残渣中连续逆流提取半纤维素

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Two-stage dilute acid pretreatment followed by enzymatic cellulose hydrolysis is an effective method for obtaining high sugar yields from wood residues such as softwood forest thinnings.In the first-stage hydrolysis step, most of the hemicellulose is solubilized using relatively mild conditions. The soluble hemicellulosic sugars are recovered from the hydrolysate slurry by washing with water. The washed solids are then subjected to more severe hydrolysis conditions to hydrolyze approx 50% of the cellulose to glucose. The remaining cellulose can further be hydrolyzed with cellulase enzyme. Our process simulation indicates that the amount of water used in the hemi- cellulose recovery step has a significant impact on the cost of ethanol produc- tion. It is important to keep water usage as low as possible while maintaining relatively high recovery of soluble sugars. To achieve this objective, a proto- type pilot-scale continuous countercurrent screw extractor was evaluated for the recovery of hemicellulose from pretreated forest thinnings. Using the 274-cm (9-ft) long extractor, solubles recoveries of 98, 91, and 77% were obtained with liquid-to-insoluble solids (L/IS) ratios of 5.6, 3.4, and 2.1, respectively. An empirical equation was developed to predict the perfor- mance of the screw extractor. This equation predicts that soluble sugar recov- ery above 95% can be obtained with an L/IS ratio as low as 3.0.
机译:两阶段的稀酸预处理然后进行酶促纤维素水解是一种有效的方法,可从木材残留物(如针叶林间伐)中获得高糖产量。在第一步水解步骤中,大部分半纤维素是在相对温和的条件下溶解的。通过用水洗涤从水解产物浆液中回收可溶性半纤维素糖。然后将洗涤后的固体置于更严格的水解条件下以将约50%的纤维素水解为葡萄糖。剩余的纤维素可以进一步用纤维素酶水解。我们的过程模拟表明,半纤维素回收步骤中使用的水量对乙醇生产成本有重大影响。重要的是要保持尽可能低的用水量,同时保持较高的可溶性糖回收率。为实现这一目标,对原型中试规模的连续逆流螺旋萃取器进行了评估,以从预处理过的森林间伐中回收半纤维素。使用274厘米(9英尺)长的萃取器,液体与不溶性固体(L / IS)的比率分别为5.6、3.4和2.1,可回收率分别为98%,91%和77%。开发了一个经验方程式来预测螺旋萃取器的性能。该方程式预测,L / IS比低至3.0时,可获得95%以上的可溶性糖回收率。

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