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Modeling for Gellan Gum Production by Sphingomonas paucimobilis ATCC 31461 in a Simplified Medium

机译:在简化培养基中由鞘氨醇单胞菌ATCC 31461生产结冷胶的建模

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摘要

Gellan gum production was carried out by Sphingomonas paucimobilis ATCC 31461 in a simplified medium with a short incubation time, and a kinetic model for understanding, controlling, and optimizing the fermentation process was proposed. The results revealed that glucose was the best carbon source and that the optimal concentration was 30 g liter−1. As for the fermenting parameters, considerably large amounts of gellan gum were yielded by an 8-h-old culture and a 4% inoculum at 200 rpm on a rotary shaker. Under the optimized conditions, the maximum level of gellan gum (14.75 g liter−1) and the highest conversion efficiency (49.17%) were obtained in a 30-liter fermentor in batch fermentation. Logistic and Luedeking-Piret models were confirmed to provide a good description of gellan gum fermentation, which gave some support for the study of gellan gum fermentation kinetics. Additionally, this study is the first demonstration that gellan gum production is largely growth associated by analysis of kinetics in its batch fermentation process. Based on model prediction, higher gellan gum production (17.71 g liter−1) and higher conversion efficiency (57.12%) were obtained in fed-batch fermentation at the same total glucose concentration (30 g liter−1).
机译:短链鞘氨醇单胞菌ATCC 31461在简化的培养基中以较短的孵育时间进行了结冷胶的生产,并提出了用于理解,控制和优化发酵过程的动力学模型。结果表明,葡萄糖是最佳碳源,最佳浓度为30 g升 -1 。至于发酵参数,通过在旋转振荡器上以200rpm的8小时的培养和4%的接种物产生了大量的结冷胶。在优化的条件下,分批发酵的30升发酵罐获得了最高的吉兰糖胶(14.75 g升 -1 )和最高的转化效率(49.17%)。 Logistic和Luedeking-Piret模型被证实可以很好地描述结冷胶发酵,这为结冷胶发酵动力学的研究提供了支持。此外,这项研究是第一个证明结冷胶生产主要与批量发酵过程中的动力学分析有关的增长。根据模型预测,在相同的总葡萄糖浓度(30 g升)下,分批补料发酵可获得更高的结冷胶产量(17.71 g升 -1 )和更高的转化效率(57.12%)。 > −1 )。

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