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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A comparative account of glucose yields and bioethanol production from separate and simultaneous saccharification and fermentation processes at high solids loading with variable PEG concentration
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A comparative account of glucose yields and bioethanol production from separate and simultaneous saccharification and fermentation processes at high solids loading with variable PEG concentration

机译:具有可变PEG浓度的高固体载荷的单独和同时糖化和发酵过程的葡萄糖产率和生物乙醇生产的比较叙述

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A process strategy to aid in optimal enzymatic hydrolysis through the addition of polyethylene glycol (PEG6000) was tested for separate hydrolysis and fermentation (SHF) and simultaneous saccharification and fermentation (SSF). Pretreated wheat straw at 30% solids (w/w) loading was enzymatically hydrolyzed with 0, 0.5, 1, 1.5, 2 and 2.5% of PEG6000 through SHF and SSF. During SHF, bioethanol concentration of 107.5 g/L (2.5% PEG6000) was achieved. SSF ethanol concentration were about 113 g/L at 1.5% PEG6000 addition. A technoeconomic feasibility showed a return on investment (ROI) of 8.13% using 0.5% PEG6000 for SHF (96 h) and 12.25% ROI for SSF control (72 h). Life cycle assessment for the various scenarios indicated higher environmental gains for best cases of SSF over SHF. The study shows the SSF approach (0% PEG6000; 72 h) facilitates higher process efficiencies; technoeconomic gains and high environmental sustainability for future scale-up and commercial realization.
机译:通过加入聚乙二醇(PEG6000)来获得优化酶水解的过程策略进行单独的水解和发酵(SHF)和同时糖化和发酵(SSF)。 在30%固体(W / W)负载下的预处理麦秸秆通过SHF和SSF酶促用0,0.5,1,1,15,2和2.5%的PEG6000水解。 在SHF期间,实现了107.5g / L(2.5%PEG6000)的生物乙醇浓度。 SSF乙醇浓度为1.5%PEG6000加入约113克/升。 技术经济可行性显示使用0.5%PEG6000的SHF(96小时)和12.25%ROI用于SSF控制(72小时)的0.5%PEG6000的8.13%的投资回报(ROI)。 各种情景的生命周期评估表明SHF最佳SSF案例的环境收益更高。 该研究表明了SSF方法(0%PEG6000; 72小时)促进了更高的过程效率; 技术经济增长和高环境可持续性,以减少扩大和商业实现。

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