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Biohydrogen Production by Antarctic Psychrotolerant Klebsiella sp. ABZ11

机译:南极精神耐受性克雷伯菌属的生物氢生产。 ABZ11

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摘要

Lower temperature biohydrogen production has always been attractive, due to the lower energy requirements. However, the slow metabolic rate of psychrotolerant biohydrogen-producing bacteria is a common problem that affects their biohydrogen yield. This study reports on the improved substrate synthesis and biohydrogen productivity by the psychrotolerant sp. strain ABZ11, isolated from Antarctic seawater sample. The isolate was screened for biohydrogen production at 30°C, under facultative anaerobic condition. The isolate is able to ferment glucose, fructose and sucrose with biohydrogen production rate and yield of 0.8 mol/l/h and 3.8 mol/g, respectively at 10 g/l glucose concentration. It also showed 74% carbohydrate uptake and 95% oxygen uptake ability, and a wide growth temperature range with optimum at 37°C. sp. ABZ11 has a short biohydrogen production lag phase, fast substrate uptake and is able to tolerate the presence of oxygen in the culture medium. Thus, the isolate has a potential to be used for lower temperature biohydrogen production process.
机译:由于较低的能量需求,低温生物氢生产一直很有吸引力。但是,产生精神耐受性生物氢的细菌的代谢速度缓慢是影响其生物氢产量的普遍问题。这项研究报告了精神防腐剂sp。提高底物合成和生物氢生产率。从南极海水样品中分离出的菌株ABZ11。在兼性厌氧条件下,在30℃下筛选分离物的生物氢产生。该分离物能够以10 g / l的葡萄糖浓度发酵生物氢气,其葡萄糖,果糖和蔗糖的发酵速率分别为0.8 mol / l / h和3.8 mol / g。它还显示出74%的碳水化合物吸收和95%的氧气吸收能力,以及宽广的生长温度范围,最佳温度为37°C。 sp。 ABZ11具有短的生物氢产生滞后期,快速的底物吸收并且能够耐受培养基中氧气的存在。因此,分离物具有用于低温生物氢生产过程的潜力。

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