首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Development of a yeast strain for xylitol production without hydrolysate detoxification as part of the integration of co-product generation within the lignocellulosic ethanol process
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Development of a yeast strain for xylitol production without hydrolysate detoxification as part of the integration of co-product generation within the lignocellulosic ethanol process

机译:在不进行水解产物解毒的情况下开发用于生产木糖醇的酵母菌株,作为木质纤维素工艺中副产物生成整合的一部分

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The present study verified an applicable technology of xylitol bioconversion as part of the integration of co-product generation within second-generation bioethanol processes. A newly isolated yeast strain, Candida tropicalis JH030, was shown to have a capacity for xylitol production from hemicellulosic hydrolysate without detoxification. The yeast gives a promising xylitol yield of 0.71 gpgs~(-1) from non-detoxified rice straw hydrolysate that had been prepared by the dilute acid pretreatment under severe conditions. The yeast's capacity was also found to be practicable with various other raw materials, such as sugarcane bagasse, silvergrass, napiergrass and pineapple peel. The lack of a need to hydrolysate detoxification enhances the potential of this newly isolated yeast for xylitol production and this, in turn, has the capacity to improve economics of lignocellulosic ethanol production.
机译:本研究验证了木糖醇生物转化的适用技术,作为第二代生物乙醇工艺中副产物生成整合的一部分。一种新分离的酵母菌株热带假丝酵母JH030被证明具有从半纤维素水解产物生产木糖醇的能力,而无需解毒。酵母在严苛条件下通过稀酸预处理制得的非解毒稻草水解物的木糖醇产量有望达到0.71 gpgs〜(-1)。还发现,酵母的容量对于其他各种原料也是可行的,例如甘蔗渣,银草,萘草和菠萝皮。对水解解毒的需求的缺乏增强了这种新分离的酵母用于木糖醇生产的潜力,这进而具有改善木质纤维素乙醇生产的经济性的能力。

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