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Effects of Iron on Hydrogen-producing Capacity, Hydrogenase and NADH-fd Reductase Activities of a Fermentative Hydrogen-producing Bacterial Strain B49
作者姓名:王相晶  Ren Nanqi  Xiang Wensheng
作者单位:Life Science
基金项目:SupportedbytheHighTechnologyResearchandDevelopmentProgrammeofChinaand 973FundamentalScienceProgramofChina
摘    要:0 IntroductionHydrogenisaclean ,effectiveandrenewableener gy ,andisanultimatereplacementforfossilhydrocarbonfuelsinthefuture .Biohydrogenproductionfromwasteisattractiveduetoenergyrecoveryandenvironmentalcleanupatthesametime .Biohydrogengenerationbypho to andnon photosyntheticbacteriahasbeenstudiedex tensively1 4 ] .Ingeneral ,thesemicroorganismscontainFe Sproteins .Forexample ,inhydrogen producingClostridiumcellulolyticumtherearehydrogenase ,NADH fdreductase ,fd NADP+reductase ,fd NAD+…

关 键 词:氢化酶  还原酶  生物活性  发酵工艺  细菌  NADH-fd  能源  清洁燃料  生物燃料

Effects of Iron on Hydrogen-producing Capacity,Hydrogenase and NADH-fd Reductase Activities of a Fermentative Hydrogen-producing Bacterial Strain B49
Abstract:Iron plays an important role in hydrogen production, cell growth, hydrogenase and NADH-fd reductase activities of hydrogen-producing bacterial strain B49 (AF481148 in EMBL). At the end of fermentation from 10 g/L glucose, for the culture containing 10 mg/L FeSO4*7H2O the cell growth in terms of optical density (OD) at 600nm was 1.13, the ratio of ethanol amount (mg/L) to acetate amount (mg/L) was 1.55, and the accumulated hydrogen volume was 1816.3 ml H2/L culture; whereas for the culture of 80 mg/L FeSO4*7H2O OD600nm was increased to 1.34, the accumulated hydrogen volume was increased to 2360.5 ml H2/L culture, and the ratio of ethanol amount (mg/L) to acetate amount (mg/L) decreased to 1.31. Moreover, the iron addition to the medium at different fermentation time could affect hydrogen-producing ability. However, the later the addition time of FeSO4*7H2O was postponed, the less the effect on hydrogen evolution was. In the course of fermentation, the specific activities of hydrogenase and NADH-fd reductase of hydrogen-producing bacterial strain B49 decreased with the consumption of iron.
Keywords:hydrogen-producing bacterial strain B49  iron  hydrogenase  NADH-fd reductase
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