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Corn bran bioprocessing: Development of an integrated process for microbial lipids production

机译:玉米麸皮制剂:开发微生物脂质生产的综合过程

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This study investigated the potential of corn bran as a feedstock for microbial lipid production using oleaginous yeast, Trichosporon oleaginosus ATCC20509. Different conditions ( solid loading of biomass, acid loading, and pretreatment duration) were applied to optimize pretreatment processes using the Box-Behnken design. The highest sugar yield of 0.53 g/g was obtained from corn bran hydrolysates at a pretreatment condition of 5% solid loading and 1% acid loading for 30 min. Compared with synthetic media, up to 50% higher lipid accumulations in T. oleaginosus were achieved using corn bran hydrolysates during fermentation. Also, the direct effect of pretreatment condition on the lipid accumulation of T. oleaginosus was investigated using response surface methodology (RSM). Solid loading of biomass during the pretreatment process significantly affected the fermentation process for lipid accumulation of T. oleaginosus. The RSM model can provide useful information to design an integrated bioconversion platform. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究研究了使用烯胺酵母,Trichosporon Oleaginosus ATCC205050的玉米麸的潜力作为微生物脂质生产的原料。应用了不同的条件(生物质,酸负荷和预处理持续时间的固体负载),以优化使用Box-Behnken设计的预处理过程。从玉米麸水解产物在5%固体载荷的预处理条件下获得最高糖产率,并在5%固体载荷和1%酸负载下加载30分钟。与合成培养基相比,在发酵过程中使用玉米麸水解产物实现了高达50%的脂质累积。此外,使用响应表面方法(RSM)研究了预处理条件对T.OleaBinoss脂质积累的直接影响。在预处理过程中的生物质的固体载荷显着影响了T.Oleaginoss的脂质积累的发酵过程。 RSM模型可以提供设计集成的生物增强平台的有用信息。 (c)2017 Elsevier Ltd.保留所有权利。

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