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首页> 外文期刊>ACS Omega >Enhanced Biobutanol Production in Folic Acid-Induced Medium by Using Clostridium acetobutylicum NRRL B-527
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Enhanced Biobutanol Production in Folic Acid-Induced Medium by Using Clostridium acetobutylicum NRRL B-527

机译:丙酮丁醇梭菌NRRL B-527在叶酸诱导的培养基中提高生物丁醇的生产

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摘要

The conventional acetone–butanol–ethanol fermentation process suffers from several key hurdles viz. low solvent titer, insufficient yield and productivity, and solvent intolerance which largely affect butanol commercialization. To counteract these issues, the effect of stimulator, namely, folic acid was investigated in the present study to improve butanol titer. Folic acid is involved in biosynthesis of a diverse range of cellular components, which subsequently alter the amino acid balance. Therefore, different concentrations of folic acid were screened, and 10 mg/L supplementation resulted in a maximum butanol production of 10.78 ± 0.09 g/L with total solvents of 18.91 ± 0.21 g/L. Folic acid addition at different time intervals was also optimized to get additional improvements in final butanol concentration. Overall, folic acid supplementation resulted in two-fold increase in butanol concentration and thus could be considered as a promising strategy to enhance solvent titers.
机译:常规丙酮-丁醇-乙醇发酵工艺存在几个主要障碍。溶剂滴度低,收率和生产率不足以及不耐溶剂性,在​​很大程度上影响丁醇的商业化。为了解决这些问题,在本研究中研究了刺激剂叶酸的作用,以提高丁醇滴度。叶酸参与多种细胞成分的生物合成,随后改变了氨基酸的平衡。因此,筛选了不同浓度的叶酸,补充10 mg / L导致最大丁醇产量为10.78±0.09 g / L,总溶剂为18.91±0.21 g / L。还优化了在不同时间间隔的叶酸添加量,以进一步提高最终丁醇浓度。总的来说,叶酸的补充导致丁醇浓度增加了两倍,因此可以认为是提高溶剂滴度的有前途的策略。

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