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Microbial inhibitors: formation and effects on acetone-butanol-ethanol fermentation of lignocellulosic biomass

机译:微生物抑制剂:木质纤维素生物质的丙酮-丁醇-乙醇发酵的形成及其影响

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Biobutanol is a promising biofuel due to the close resemblance of its fuel properties to gasoline, and it is produced via acetone-butanol-ethanol (ABE) fermentation using Clostridium species. However, lignin in the crystalline structure of the lignin-cellulose-hemicellulose biomass complex is not readily consumed by the Clostridium; thus, pretreatment is required to degrade this complex. During pretreatment, some fractions of cellulose and hemicellulose are converted into fermentable sugars, which are further converted to ABE. However, a major setback resulting from common pretreatment processes is the formation of sugar and lignin degradation compounds, including weak acids, furan derivatives, and phenolic compounds, which have inhibitory effects on the Clostridium. In addition, butanol concentration above 13 g/L in the fermentation broth is itself toxic to most Clostridium strain(s). This review summarizes the current state-of-the-art knowledge on the formation of microbial inhibitors during the most common lignocellulosic biomass pretreatment processes. Metabolic effects of inhibitors and their impacts on ABE production, as well as potential solutions for reducing inhibitor formation, such as optimizing pretreatment process parameters, using inhibitor tolerant strain(s) with high butanol yield ability, continuously recovering butanol during ABE fermentation, and adopting consolidated bioprocessing, are also discussed.
机译:由于生物丁醇的燃料特性与汽油非常相似,因此它是一种很有前途的生物燃料,它是通过使用梭菌属物种通过丙酮-丁醇-乙醇(ABE)发酵生产的。但是,梭菌不容易消耗木质素-纤维素-半纤维素生物质复合物的晶体结构中的木质素。因此,需要预处理以降解该复合物。在预处理过程中,一部分纤维素和半纤维素被转化为可发酵的糖,然后被进一步转化为ABE。然而,普通预处理方法造成的主要挫折是形成糖和木质素降解化合物,包括弱酸,呋喃衍生物和酚类化合物,它们对梭菌具有抑制作用。另外,发酵液中丁醇浓度高于13 g / L本身对大多数梭菌属菌株有毒。这篇综述总结了当前最常见的木质纤维素生物质预处理过程中微生物抑制剂形成的最新知识。抑制剂的代谢作用及其对ABE产生的影响,以及减少抑制剂形成的潜在解决方案,例如优化预处理工艺参数,使用具有高丁醇生产能力的耐抑制剂菌株,在ABE发酵过程中连续回收丁醇并采用还讨论了整合生物处理。

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