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首页> 外文期刊>Applied Microbiology and Biotechnology >Biobutanol production from apple pomace: the importance of pretreatment methods on the fermentability of lignocellulosic agro-food wastes
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Biobutanol production from apple pomace: the importance of pretreatment methods on the fermentability of lignocellulosic agro-food wastes

机译:来自苹果渣的生物催化剂生产:预处理方法对木质纤维素农产品废弃物发酵性的重要性

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Apple pomace was studied as a possible raw material for biobutanol production. Five different soft physicochemical pretreatments (autohydrolysis, acids, alkalis, organic solvents and surfactants) were compared in a high-pressure reactor, whose working parameters (temperature, time and reagent concentration) were optimised to maximise the amount of simple sugars released and to minimise inhibitor generation. The pretreated biomass was subsequently subjected to a conventional enzymatic treatment to complete the hydrolysis. A thermal analysis (DSC) of the solid biomass indicated that lignin was mainly degraded during the enzymatic treatment. The hydrolysate obtained with the surfactant polyethylene glycol 6000 (PEG 6000) (1.96% w/w) contained less inhibitors than any other pretreatment, yet providing 42 g/L sugars at relatively mild conditions (100 degrees C, 5 min), and was readily fermented by Clostridium beijerinckii CECT 508 in 96 h (3.55 g/L acetone, 9.11 g/L butanol, 0.26 g/L ethanol; 0.276 gB/gS yield; 91% sugar consumption). Therefore, it is possible to optimise pretreatment conditions of lignocellulosic apple pomace to reduce inhibitor concentrations in the final hydrolysate and perform successful ABE fermentations without the need of a detoxification stage.
机译:苹果渣作为生物灭菌醇生产的可能原料。在高压反应器中比较五种不同的软物理化学预处理(自动水解,酸,碱,有机溶剂和表面活性剂),其工作参数(温度,时间和试剂浓度)被优化,以最大化释放的简单糖量并最小化抑制剂生成。随后对预处理的生物质进行常规酶处理以完成水解。固体生物质的热分析(DSC)表明木质素在酶处理期间主要降解。用表面活性剂聚乙二醇6000(PEG 6000)(1.96%w / w)得到的水解物含有较少的抑制剂,而不是任何其他预处理,但在相对温和的条件下提供42g / l糖(100℃,5分钟),并且是随着96小时的Clostridium Beijerinckii Cect 508次易于发酵(3.55g / L丙酮,9.11g / L丁醇,0.26g / L乙醇; 0.276gb / gs产量; 91%的糖消耗)。因此,可以优化木质纤维素苹果渣的预处理条件,以减少最终水解产物中的抑制剂浓度,并在不需要排毒阶段进行成功的ABE发酵。

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