首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Semi-hydrolysate of paper pulp without pretreatment enables a consolidated fermentation system with in situ product recovery for the production of butanol
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Semi-hydrolysate of paper pulp without pretreatment enables a consolidated fermentation system with in situ product recovery for the production of butanol

机译:没有预处理的纸浆的半水解产物使综合发酵系统具有原位产物回收用于生产丁醇

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摘要

Utilization of lignocellulosic biomasses for biobutanol fermentation usually requires costly processes of pretreatment and enzymatic hydrolysis. In this study, paper pulp (93.2% glucan) was used as a starting biomass material to produce biobutanol. We conducted enzymatic semi-hydrolysis of paper pulp without pretreatment and with low enzyme loading, which produced high concentrations of cellobiose (13.9 g L-1) and glucose (21.3 g L-1). In addition, efficient fermentation of the semi-hydrolysate was achieved similar to that with the use of commercial sugars without inhibitors. Finally, we designed a novel non-isothermal simultaneous saccharification and fermentation with in situ butanol recovery, which was composed of a repeated semi-hydrolysis process and successive butanol-extractive fermentation process under the respective optimal conditions. The consolidated system improved butanol production, butanol yields, and butanol productivities and enabled repeated use of medium when compared with other integrated hydrolysis and fermentation processes.
机译:用于生物丁醇发酵的木质纤维素生物质的利用通常需要昂贵的预处理和酶水解过程。在该研究中,将纸浆(93.2%葡聚糖)用作起始生物质材料以产生生物脱盐。我们对纸浆进行酶半水解而无需预处理,并且具有低酶负载,其产生高浓度的纤维二糖(13.9g L-1)和葡萄糖(21.3g L-1)。此外,通过使用没有抑制剂的商业糖,实现了半水解产物的高效发酵。最后,我们设计了一种新的非等温同时糖化和发酵,其原位丁醇回收,其由在各自的最佳条件下由重复的半水解过程和连续的丁醇提取发酵过程组成。与其他一体化水解和发酵过程相比,综合体系改善了丁醇产量,丁醇产量和丁醇产量,并使其反复使用培养基。

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