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Biohydrogen production by Rhodobacter capsulatus on acetate at fluctuating temperatures

机译:可变温度下荚膜红细菌在乙酸盐上生产生物氢

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Hydrogen is a clean energy alternative to fossil fuels. Photosynthetic bacteria produce hydrogen from organic compounds under anaerobic, nitrogen-limiting conditions through a light-dependent electron transfer process. In this study, the hydrogen production efficiency of phototrophic bacteria, Rhodobacter capsulatus and its Hup mutant strain (an uptake hydrogenase deleted strain) were tested on different initial acetate concentrations at fluctuating temperatures with indoor and outdoor photobioreactors. Acetate was effectively metabolized and H-2 was produced at a high rate. Increasing the initial acetate concentration resulted in a shift in the utilization kinetics of acetate from first order to second order. The effects of fluctuating temperature and dayight cycles on hydrogen production were also studied in indoor and outdoor conditions using acetate as the carbon source. Temperature fluctuations and dayight cycles significantly decreased hydrogen production. It was found that the Hup mutant strain of R. capsulatus has better hydrogen productivity than the wild type parent in outdoor conditions.
机译:氢是矿物燃料的一种清洁能源替代品。光合细菌在无氧,氮限制的条件下,通过光依赖性电子转移过程,从有机化合物中产生氢。在这项研究中,在室内和室外光生物反应器的波动温度下,在不同的初始乙酸盐浓度下,测试了光养细菌,荚膜红细菌及其Hup突变菌株(一种吸收氢酶缺失的菌株)的产氢效率。乙酸被有效地代谢,并以高速率产生H-2。增加初始乙酸盐浓度导致乙酸盐的利用动力学从一级转移到二级。还使用乙酸盐作为碳源,在室内和室外条件下研究了温度波动和昼夜循环对制氢的影响。温度波动和昼夜循环显着降低了氢气的产生。已经发现,在室外条件下,荚膜罗非鱼的Hup突变株比野生型亲本具有更好的氢生产率。

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