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Xylose-Enriched Ethanol Fermentation Stillage from Sweet Sorghum for Xylitol and Astaxanthin Production

机译:甜高粱中富含木糖的乙醇发酵釜馏物用于生产木糖醇和虾青素

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Developing integrated biorefineries requires the generation of high-value co-products produced alongside cellulosic ethanol. Most industrial yeast strains produce ethanol at high titers, but the small profit margins for generating ethanol require that additional high-value chemicals be generated to improve revenue. The aim of this research was to boost xylose utilization and conversion to high-value co-products that can be generated in an integrated biorefinery. Pretreated sweet sorghum bagasse (SSB) was hydrolyzed in sweet sorghum juice (SSJ) followed by ethanol fermentation. Ethanol was removed from the fermentation broth by evaporation to generate a stillage media enriched in xylose. Candida mogii NRRL Y-17032 could easily grow in non-detoxified stillage media, but a high xylitol yield of 0.55 g xylitol/g xylose consumed was achieved after recovered cells were resuspended in synthetic media containing supplemented xylose. Phaffia rhodozyma ATCC 74219 could be cultivated in non-detoxified stillage media, but astaxanthin generation was increased 4-fold (from 17.5 to 71.7 mg/L) in detoxified media. Future processing strategies to boost product output should focus on a two-step process where the stillage media is used as the growth stage, and a synthetic media for the production stage utilizing xylose generated from SSB through selective hemicellulase enzymes.
机译:发展综合生物精炼厂需要与纤维素乙醇一起生产高价值的副产品。大多数工业酵母菌株都以高滴度生产乙醇,但是生产乙醇的利润微薄,这就要求产生更多的高价值化学品来提高收入。这项研究的目的是促进木糖的利用和转化为可在综合生物精炼厂中产生的高价值副产品。将预处理的甜高粱蔗渣(SSB)在甜高粱汁(SSJ)中水解,然后进行乙醇发酵。通过蒸发从发酵液中除去乙醇,以产生富含木糖的釜馏培养基。 Modii Candida mogii NRRL Y-17032可以在未排毒的釜馏培养基中轻松生长,但是将回收的细胞重新悬浮在含有补充木糖的合成培养基中后,木糖醇的产量高达0.55 g木糖醇/ g木糖。可以在非解毒的釜馏培养基中培养红发菌ATCC 74219,但在解毒的培养基中虾青素的生成量增加了4倍(从17.5到71.7 mg / L)。未来增加产品产量的加工策略应集中在两步过程中,其中将釜馏培养基用作生长阶段,而在生产阶段则采用合成培养基,利用从SSB通过选择性半纤维素酶产生的木糖。

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