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航空发动机技术进步和产品发展的基础
量子计算机——现状与未来
核酸药物递送与疾病防治
AIR学术沙龙第16期 | 可信机器学习: 机器学习鲁棒性、隐私性、泛化性、及其内在关联
报告题目:
Biological Processes for Hydrogen Production
 报告人:
Tai Hyun Park (School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, Korea
报告时间:
2005-10-24 15:00
报告地点:
工物馆348教室 (Room 348, Engineering Physics Bldg)
主办单位:
清华大学化工系生物化工研究所
  简介:

In this seminar, biological processes for the production of hydrogen will be reviewed, and research work in my laboratory for the production of bio-hydrogen will be presented.

 

A new fermentative hydrogen-producing bacterium was isolated from a landfill, and it was identified as Enterobacter asburiae strain using a genomic DNA hybridization method. Environmental factors and metabolic flux influencing the hydrogen production were investigated, including pH, initial glucose and nitrogen concentrations, and different kinds of carbon sources. The major hydrogen production pathway of this strain is considered to be a formate pathway. In this pathway hydrogen is produced from formate by formate hydrogen lyase (FHL). This strain produced bio-hydrogen mostly in the stationary phase, in which formate concentration was high. Optimum pH for the hydrogen production was pH 7.0, at which hydrogen production/unit volume and overall volumetric hydrogen production rate were 2615 ml/l and 154 ml H2/l/hr, respectively, at 25 g glucose/l. The maximum volumetric hydrogen production rate was estimated to be 417 ml H2/l/hr at 15 g glucose/l. Enterobacter asburiae SNU-1 was able to utilize various carbon sources such as monosaccharides, disaccharides, polysaccharide, and alcohols for the productionof hydrogen. Bacto peptone and yeast extract were favorable nitrogen sources. The concentration of nitrogen source also affected the hydrogen production.

 

 

 

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