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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Application of a data reconciliation method to the stoichiometric analysis of fibrobacter succinogenes growth
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Application of a data reconciliation method to the stoichiometric analysis of fibrobacter succinogenes growth

机译:数据对账方法在琥珀酸根瘤菌生长化学计量分析中的应用

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Fibrobacter succinogenes S85, a strictly anaerobic Gram-negative bacterium, was grown in continuous culture in a bioreactor at different dilution rates (0.02 to 0.092 h-1) on a fully synthetic culture medium with glucose as carbon source. Glucose and ammonium sulfate consumption, as well as biomass, succinate, acetate, formate, and carbohydrate production were regularly measured. The relevant biomass elemental compositions were established for each dilution rate. Robustness of the experimental information was checked by C and N mass balances estimation, which were satisfactory. A detailed overall stoichiometry analysis of the process, including all substrates and products of the culture, was proposed. Online and off-line parameters measured during the culture brought a large number of data which were weighted by their respective variance associated to the measured value. The material balance resulted in an overdetermined linear system of equations made of weighted relationships including experimental data, elemental balances (C, H, O, N, S, Na), and an additional constraint. The mass balances involved in stoichiometric equations were solved using data reconciliation and linear algebra methods to take into account error measurements. This methodology allowed to establish the overall stoichiometric equation for each dilution rate studied.
机译:在完全合成的培养基中,以葡萄糖为碳源,以严格的厌氧革兰氏阴性细菌Sfibrobacter succinogenes S85在生物反应器中以不同的稀释率(0.02至0.092 h-1)连续培养。定期测量葡萄糖和硫酸铵的消耗量,以及生物质,琥珀酸盐,乙酸盐,甲酸盐和碳水化合物的产量。针对每个稀释率确定相关的生物质元素组成。通过C和N质量平衡估计检查实验信息的鲁棒性,这是令人满意的。建议对该过程进行详细的总体化学计量分析,包括培养的所有底物和产物。在培养过程中测量的在线和离线参数带来了大量数据,这些数据由它们各自与测量值相关的方差加权。物质平衡导致了由加权关系组成的方程组的超定线性系统,包括实验数据,元素平衡(C,H,O,N,S,Na)以及其他约束条件。使用数据对账和线性代数方法解决了化学计量方程中涉及的质量平衡问题,并考虑了误差测量。这种方法可以为每个研究的稀释率建立总体化学计量方程。

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