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首页> 外文期刊>Biotechnology Reports >Optimization of enzymatic hydrolysis of cellulosic fraction obtained from stranded driftwood feedstocks for lipid production by Solicoccozyma terricola
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Optimization of enzymatic hydrolysis of cellulosic fraction obtained from stranded driftwood feedstocks for lipid production by Solicoccozyma terricola

机译:从绞链浮木原料中获得的纤维素级分的酶促水解的优化,以用于Solicoccozyma terricola生产脂质

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摘要

Stranded driftwood feedstocks may represent, after pretreatment with steam explosion and enzymatic hydrolysis, a cheap C-source for producing biochemicals and biofuels using oleaginous yeasts. The hydrolysis was optimized using a response surface methodology (RSM). The solid loading (SL) and the dosage of enzyme cocktail (ED) were variated following a central composite design (CCD) aimed at optimizing the conversion of carbohydrates into lipids (YsubL/sub) by the yeast Solicoccozyma terricola DBVPG 5870. A second-order polynomial equation was computed for describing the effect of ED and SL on YsubL/sub. The best combination (ED?=?3.10%; SL?=?22.07%) for releasing the optimal concentration of carbohydrates which gave the highest predicted YsubL/sub (27.32%) was then validated by a new hydrolysis. The resulting value of YsubL/sub (25.26%) was close to the theoretical maximum value. Interestingly, fatty acid profile achieved under the optimized conditions was similar to that reported for palm oil.
机译:经过蒸汽爆破和酶促水解预处理后,浮木原料可能代表了一种廉价的C源,用于使用油性酵母生产生物化学物质和生物燃料。使用响应表面方法(RSM)对水解进行了优化。按照旨在优化酵母Solicoccozyzyter terricola将碳水化合物转化为脂质(Y L )的中央复合设计(CCD),改变固形物含量(SL)和酶混合物(ED)的剂量DBVPG5870。计算了一个二阶多项式方程,用于描述ED和SL对Y L 的影响。然后通过新的水解方法验证释放最佳浓度碳水化合物的最佳组合(ED 2 =?3.10%; SL 2 =?22.07%),从而给出最高的预测Y L (27.32%)。 。 Y L 的结果值(25.26%)接近理论最大值。有趣的是,在优化条件下获得的脂肪酸谱与报道的棕榈油相似。

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