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首页> 外文期刊>Applied and Environmental Microbiology >Enhanced Production of 2,3-Butanediol by Klebsiella pneumoniae Grown on High Sugar Concentrations in the Presence of Acetic Acid
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Enhanced Production of 2,3-Butanediol by Klebsiella pneumoniae Grown on High Sugar Concentrations in the Presence of Acetic Acid

机译:通过在乙酸存在下,在高糖浓度上增强2,3-丁二醇的生产产生的2,3-丁二醇

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The bioconversion of sugars present in wood hemicellulose to 2,3-butanediol (hereafter referred to as butanediol) by Klebsiella pneumoniae grown on high initial concentrations (up to 10%) of sugars was investigated. Initial fermentation studies with a chemically defined medium suggested that sugar levels in excess of 2% could not be utlized even when a higher inoculum size (5 to 10%) was used. The addition of nutrient supplements, viz., yeast extract, urea, ammonium sulfate, and trace elements resulted in a 10 to 50% increase in butanediol yields, although sugar utilization remained incomplete. The concentration of end products normally found at the termination of fermentation was shown to be noninhibitory to growth and substrate utilization. Acetic acid was inhibitory at concentrations above 1%, although growth and butanediol yield were stimulated in cultures supplemented with lower levels of acetic acid. The efficient utilization of 4% substrate concentrations of d-glucose and d-xylose was achieved, resulting in butanediol yields of 19.6 and 22.0 g/liter, respectively.
机译:研究了在高初始浓度(最多10℃)糖中生长的木质半纤维素至2,3-丁二醇(以下称为丁二醇)的糖的生物转化。具有化学定义培养基的初始发酵研究表明,即使使用更高的接种尺寸(5至10℃),也不能用过量的2℃的糖水平。添加营养素补充剂,ZiZ,酵母提取物,尿素,硫酸铵和痕量元素导致丁二醇产率的增加10至50℃,尽管糖利用仍然不完整。通常在发酵终止时发现的最终产物的浓度显示为不符合生长和衬底利用。乙酸在1℃以上的浓度抑制,尽管在补充有较低乙酸水平的培养物中刺激生长和丁二醇产率。实现了4 +%D-葡萄糖和D-木糖的4 %底物浓度的有效利用率,得到丁二醇产率为19.6和22.0g /升。

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