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Steady state characteristics of acclimated hydrogenotrophic methanogens on inorganic substrate in continuous chemostat reactors

机译:连续式恒化器反应器中无机底物上驯化的氢营养型产甲烷菌的稳态特性

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摘要

A Monod model has been used to describe the steady state characteristics of the acclimated mesophilic hydrogenotrophic methanogens in experimental chemostat reactors. The bacteria were fed with mineral salts and specific trace metals and a H2/CO2 supply was used as a single limited substrate. Under steady state conditions, the growth yield (YCH4) reached 11.66 g cells per mmol of H2/CO2 consumed. The daily cells generation average was 5.67 × 1011, 5.25 × 1011, 4.2 × 1011 and 2.1 × 1011 cells/l-culture for the dilutions 0.071/d, 0.083/d, 0.1/d and 0.125/d, respectively. The maximum specific growth rate (μmax) and the Monod half-saturation coefficient (KS) were 0.15/d and 0.82 g/L, respectively. Using these results, the reactor performance was simulated. During the steady state, the simulation predicts the dependence of the H2/CO2 concentration (S) and the cell concentration (X) on the dilution rate. The model fitted the experimental data well and was able to yield a maximum methanogenic activity of 0.24 L CH4/g VSS.d. The dilution rate was estimated to be 0.1/d. At the dilution rate of 0.14/d, the exponential cells washout was achieved.
机译:Monod模型已用于描述实验恒化器反应器中驯化的嗜温氢营养型产甲烷菌的稳态特性。用无机盐和特定的痕量金属喂食细菌,并将H2 / CO2供给用作单个有限的底物。在稳态条件下,每mmol H2 / CO2消耗的生长产量(YCH4)达到11.66 g细胞。稀释度0.071 / d,0.083 / d,0.1 / d和0.125 / d的每日平均细胞生成量分别为5.67×1011、5.25×1011、4.2×1011和2.1×1011细胞/升培养物。最大比增长率(μmax)和莫诺(Monod)半饱和系数(KS)分别为0.15 / d和0.82 g / L。使用这些结果,模拟了反应堆的性能。在稳态期间,模拟预测了H2 / CO2浓度(S)和细胞浓度(X)对稀释率的依赖性。该模型很好地拟合了实验数据,并能够产生最大产甲烷活性为0.24 L CH4 / gVSS.d。稀释率估计为0.1 / d。在0.14 / d的稀释率下,达到指数细胞洗脱。

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