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首页> 外文期刊>Current Environmental Engineering >2,3-Butanediol Production from Biodiesel Derived Glycerol
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2,3-Butanediol Production from Biodiesel Derived Glycerol

机译:来自生物柴油衍生甘油的2,3-丁二醇生产

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Background: Biodiesel is considered as an upcoming alternative to overcome the fossil fuel dependence. Much research has been aimed at conversion of biobased platform molecules into fuels and multiple commodity products. In this regard, biodiesel is of topical interest which is obtained by trans-esterification reaction of renewable triglycerides in which glycerol is a valuable by-product. Conversion of this bioglycerol to value added products such as 2,3-butanediol (2,3-BD) which is a starting material for 1,3-butadiene, by microbial route is of great importance in promoting biodiesel industrialisation on a larger scale. Bioconversions have distinct advantages of sustainability as well as biodegradability with respect to biocatalysts, substrates, intermediates, and most of the times, products and by-products.Methods: This review covers the literature on microorganisms mediated conversion of bioglycerol to 2,3 BD. This has been achieved by various strains of bacteria under aerobic, anaerobic conditions in batch as well as continuous modes of operation.Results: There are few reports on microbial mediated conversion of bioglycerol (C3 diol) to 2,3-BD which is a C4 diol. Although a variety of strains have been reported for this conversion, but Klebsiella sp. gives highest (131.5 g/L) 2,3-BD yield by mutational studies leading to a reduction of by-products.Conclusion: The review illustrates, the three stereoisomeric forms of (2,3-BD) produced by different bacterial strains along with pathway studies and their potent applications in various industries. Combination of strain improvement strategies will eventually lead in viable productivity of 2,3-BD production from biodiesel derived glycerol.
机译:背景:生物柴油被认为是即将替代的替代方案,以克服化石燃料依赖。旨在将Biobased平台分子转化为燃料和多种商品产品的许多研究。在这方面,生物柴油是通过可再生甘油三酯的反式酯化反应而获得的局部兴趣,其中甘油是有价值的副产物。将该生物甘油转化为增值产物,如2,3-丁二醇(2,3-Bd),其是1,3-丁二烯的原料,通过微生物途径在促进更大规模的生物柴油工业化方面具有重要意义。生物胁迫具有可持续性的明显优势以及生物催害症,底物,中间体以及大多数时间,产品和副产品的生物降解性。方法:本综述涵盖了微生物的文献介导的生物甘油转化为2,3bd。这是通过各种细菌在有氧,厌氧条件下的各种菌株以及连续的操作模式来实现。结果:关于生物甘油(C3二醇)的微生物介导转化为2,3-BD的报道很少二醇。虽然据报道了这种转化率的各种菌株,但Klebsiella sp。通过突变研究提供最高(131.5克/升)2,3-BD产量,导致副产品的减少。结论:审查说明,由不同细菌菌株产生的三种立体异构形式(2,3-Bd)随着途径研究及其在各种行业的有效应用。应变改善策略的组合最终将导致来自生物柴油衍生的甘油的2,3-BD生产的可行生产力。

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