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Improvement of gas chromatographic analysis for organic acids and solvents in acetone-butanol-ethanol fermentation from sweet sorghum juice

机译:甜高粱汁中丙酮-丁醇-乙醇发酵中有机酸和溶剂的气相色谱分析方法的改进

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Modern development for gas chromatographic peak recognition of organic acids and organic solvents in acetone-butanol-ethanol (ABE) fermentation was investigated under different temperature programmes. Either propanol or iso-butanol was used as an internal standard. The results showed that short retention time and fair recognition peak of the compounds were obtained under the following column temperature programme: 10 min at 150°C, 15°C/min to 180°C and 20 min at 180°C. The appearance of the chromatograms showed that iso-butanol allowed higher resolution and satisfactory peak shape for the tested compounds than propanol. Calibration curve between ratios of standard peak area per internal standard peak area and concentrations of the organic acids and organic solvents under these conditions had a good linear correlation with R2?≥ 0.998. When ABE fermentation by?Clostridium beijerinckii?JCM1390 from sweet sorghum juice was carried out in a 2-L fermenter, the highest butanol concentration was 7.56 g/l with the butanol yield of 0.33 g/g sugar utilized.
机译:在不同的温度程序下,研究了丙酮-丁醇-乙醇(ABE)发酵中有机酸和有机溶剂的气相色谱峰识别的现代发展。丙醇或异丁醇均用作内标。结果表明,在以下色谱柱温度程序下,化合物的保留时间短且识别峰合理:在150°C下10分钟,15°C / min至180°C和180°C 20分钟。色谱图显示,与丙醇相比,异丁醇对测试化合物的分离度更高,峰形令人满意。在这些条件下,各内标峰面积的标准峰面积比与有机酸和有机溶剂的浓度之间的校正曲线与R2α≥0.998具有良好的线性相关性。当在2-L发酵罐中用甜高粱汁通过贝氏梭状芽孢杆菌→JCM1390进行ABE发酵时,最高丁醇浓度为7.56g / l,丁醇产率为0.33g / g糖。

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