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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Exploiting new biorefinery models using non-conventional yeasts and their implications for sustainability
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Exploiting new biorefinery models using non-conventional yeasts and their implications for sustainability

机译:利用非常规酵母利用新的生物遗产模型及其对可持续性的影响

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摘要

Feasible bioprocessing of lignocellulosic biomass requires the use of microbial strains with tolerance to inhibitor compounds and osmotic pressure, able to provide high product yield and productivity. In this sense, this study evaluated the potential of two non-conventional yeasts, Hansenula polymorpha CBS 4732 and Debaryomyces hansenii CBS 767, for use on biomass conversion in a biorefinery perspective. The ability of the strains to con sume pentose and hexose sugars, to resist the toxic compounds present in hydrolysates, as well as to produce sugar alcohols and ethanol, was investigated. H. polymorpha showed highlighted resistance to toxic compounds and relevant ability to consume xylose and produce xylitol and ethanol under these conditions, at 37 degrees C. D. hansenii was a great producer of arabitol from glucose. The implications for sustainability due to the use of these yeasts in biorefineries was discussed. These results open up new perspectives for the development of the biorefinery sector.
机译:可行的木质纤维素生物量的生物处理需要使用微生物菌株对抑制剂化合物和渗透压的耐受性,能够提供高产物产量和生产率。从这个意义上讲,该研究评估了两种非常规酵母,Hansenula多晶型CBS 4732和Debaryomyces Hansenii CBS 767的潜力,用于在生物术语的角度下使用生物量转化。研究了菌株的能力,用于抗血糖和己糖糖,以抵抗水解产物中存在的有毒化合物,以及产生糖醇和乙醇。 H多晶型表明,在这些条件下,突出了致力于毒性化合物的抗性和在这些条件下消耗木糖和乙醇和乙醇的相关能力,在37摄氏度下是来自葡萄糖的一个伟大的阿拉伯醇生产者。讨论了在生物杂种中使用这些酵母的可持续性的影响。这些结果开辟了生物遗产部门的发展的新观点。

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