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首页> 外文期刊>Biochemical Engineering Journal >Fermentation kinetics of acid-enzymatic soybean hull hydrolysate in immobilized-cell bioreactors of Saccharomyces cerevisiae, Candida shehatae, Spathaspora arborariae, and their co-cultivations
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Fermentation kinetics of acid-enzymatic soybean hull hydrolysate in immobilized-cell bioreactors of Saccharomyces cerevisiae, Candida shehatae, Spathaspora arborariae, and their co-cultivations

机译:酸酶大豆壳水解产物在酿酒酵母,假丝酵母​​,弓形虫和固定培养细胞生物反应器中的发酵动力学及其共培养

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摘要

We investigated the conversion of hexoses and pentoses liberated from high osmotic pressure soybean hull hydrolysate (SHH) into ethanol by immobilized Saccharomyces cerevisiae, Candida shehatae, and Spathaspora arborariae, or their co-cultivations. Soybean hull was hydrolysed in a two-steps sulphuric acid-enzyme treatment using an enzymatic complex of Penicillium echinulatum S1 M29, resulting in more than 72% of saccharification. In shaker cultivations, the bioconversion of SHH into ethanol showed yields (Y_(p/s)) of 0.43, 0.47, and 0.38, in cultures of S. cerevisiae, C. shehatae, and S. arborariae, respectively. Co-cultures of S. cerevisiae and C shehatae or S. cerevisiae and S. arborariae, produced Y_(P/S) of 0.48 and 0.40, respectively. S. cerevisiae and C. shehatae were immobilized in Ca-alginate and cultivated in bioreactors to analyse the possibility of scaling up this process. Immobilized-cell cultures showed yields of 0.45 and 0.38, respectively. Results suggest the viability of acid-enzymatic saccharification of soybean hulls for second-generation ethanol production by immobilized yeast cells in bioreactors.
机译:我们研究了固定化的酿酒酵母,假丝酵母​​和弓形虫(Spathaspora arborariae)从高渗透压大豆壳水解产物(SHH)释放出来的己糖和戊糖向乙醇的转化。使用青霉菌S1 M29的酶复合物在两步硫酸-酶处理中水解大豆皮,糖化率超过72%。在摇床培养中,SHH到乙醇的生物转化分别在酿酒酵母,Shehatae葡萄球菌和arborariae葡萄球菌培养物中显示出0.43、0.47和0.38的产量(Y_(p / s))。酿酒酵母和Shehatae或酿酒酵母和arborariae的共培养产生的Y_(P / S)分别为0.48和0.40。将酿酒酵母和shehatae固定在海藻酸钙中,并在生物反应器中培养,以分析扩大该过程的可能性。固定细胞培养物的产率分别为0.45和0.38。结果表明,通过生物反应器中固定化酵母细胞的第二代乙醇生产,大豆皮进行酸酶糖化的可行性。

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