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Photobiological Hydrogen Production from Synthesis Gas: Carbon Sources, K_La and Kinetics Evaluation

机译:合成气产生的光生物氢:碳源,K_La和动力学评估

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摘要

Photo-evolution of hydrogen from synthesis gas using Rhodospirillum rubrum was studied in batch fermentation. Culture of R. rubrum was initially grown on malate, also with various initial concentrations of acetate and synthesis gas. The synthesis gas was a mixture of H_2, CO and CO_2. It was found that the doubling time of bacterium on 2.5 g/l of malate, and 2.5 g/l and 6 g/l of acetate were 8.4, 31.8, and 68.6 h, respectively. The growth of R. rubrum was not significant at high concentration of acetate. The cell density of microbe was 0.3 g/l on 2.5 g/l malate for incubation period of 5 days. The cell concentrations of 1.4 and 0.41 g/l were obtained in 2.5 and 6 g/l of acetate, respectively for duration of 5 days. Inhibition of substrate was clearly observed on cell yield and hydrogen production with high concentration of acetate. Maximum hydrogen production (1.8 mmol/l) was obtained when R. rubrum was grown on 2.5 g/l of acetate. Effect of agitation rate was carried out and it was found that more hydrogen production (1.8 mmol) was achieved at 250 rpm. Mass transfer and kinetic studies were performed on 2.5 g/l of acetate. Maximum specific growth rate (μ_m) and Monod constant (K_p) were obtained at 9.8 h~(-1) and 0.14 atm, respectively. No substrate inhibition occurred at CO concentration of 0.56 atm.
机译:在间歇发酵中,研究了使用红螺旋藻从合成气中光解氢的过程。鲁氏红螺菌的培养物最初在苹果酸上生长,也具有各种初始浓度的乙酸盐和合成气。合成气是H_2,CO和CO_2的混合物。发现细菌在2.5g / l苹果酸,2.5g / l和6g / l乙酸盐上的加倍时间分别为8.4、31.8和68.6h。在高浓度乙酸盐下,R。rubrum的生长不明显。在5天的孵育期中,在2.5g / l苹果酸上微生物的细胞密度为0.3g / l。在5天的持续时间内,分别在2.5和6g / l乙酸盐中获得1.4和0.41g / l的细胞浓度。在高浓度乙酸盐下,可以清楚地观察到底物对细胞产量和产氢的抑制作用。当在2.5 g / l的乙酸盐上生长红球菌时,可获得最大的产氢量(1.8 mmol / l)。进行了搅拌速度的影响,发现在250 rpm时可获得更多的氢气产生(1.8 mmol)。在2.5 g / l乙酸盐上进行了传质和动力学研究。分别在9.8 h〜(-1)和0.14 atm处获得最大比生长率(μ_m)和Monod常数(K_p)。在0.56 atm的CO浓度下未发生底物抑制。

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