期刊文献+

C/N比对嗜酸细菌X-29产氢能力及其酶活性的影响 被引量:23

Hydrogen Production and Enzyme Activity of Acidophilic Strain X-29 at Different C/N Ratio
在线阅读 下载PDF
导出
摘要 C/N比影响细菌的物质和能量代谢,为了提高产氢细菌的产氢效能,通过间歇产氢实验和酶活性分析方法,分析了在不同C/N比下嗜酸产氢细菌X-29的产氢能力以及氢化酶和乙醇脱氢酶的活性表达情况.研究结果表明,C/N比对产氢细菌的代谢及其相关酶的表达有显著的影响.虽然在不同C/N比下单位生物量的液相末端发酵产物差异不大,但是产氢能力存在显著的差异,当C/N比为14时产氢细菌X-29具有最大累积产氢量2 210.9mL/g.在不同C/N比下氢化酶的表达活性不同,氢化酶活性随着发酵的进行达到高峰后迅速降低,氢化酶的表达周期较短.乙醇脱氢酶活性随着代谢进程逐渐升高后而趋于平稳,不同C/N比时表达活性差异较小,表达周期较长.在C/N比为14时,氢化酶和乙醇脱氢酶的活性最高,分别为2.8μmol.(min.mg)-1和33.2μmol.(min.mg)-1. Some fermentative bacteria can produce hydrogen by utilizing carbohydrate and other kinds of organic compounds as substrates. Hydrogen production was also determined by both the limiting of growth and related enzyme activity in energy metabolism. Carbon and nitrogen are needed for the growth and metabolism of microorganisms. In addition, the carbon/nitrogen (C/N) ratio can influence the material metabolized and the energy produced. In order to improve the hydrogen production efficiency of the bacteria, we analyzed the effect of different C/N ratios on hydrogen production and the related enzyme activities in the acidophilic strain X-29 using batch test. The results indicate that the differences in the metabolism level and enzyme activity are obvious at different C/N ratios. Although the difference in liquid fermentative products produced per unit of biomass is not obvious, hydrogen production is enhanced at a specifically determined ratio. At a C/N ratio of 14 the accumulative hydrogen yield of strain X- 29 reaches the maximum, 2 210.9mL/g. At different C/N ratios, the expression of hydrogenase activity vary; the activity of hydrogenase decrease quickly after reaching a maximum along with the fermentation process, but the time of expression is short. The activity of alcohol dehydrogenase (ADH) tend to stabilize after reaching a peak along with the fermentation process, the difference in expression activity is little, and the expression period is long at different C/N ratios. At a C/N ratio of 14 hydrogenase and ADH reach the maximum 2.8μmol·(min·mg)^-1 and 33.2μmol·(min·mg)^-1, respectively. It is shown that the C/N ratio has an important effect on enhancing hydrogen production and enzyme activity.
出处 《环境科学》 EI CAS CSCD 北大核心 2006年第4期810-814,共5页 Environmental Science
基金 国家重点基础研究发展规划(973)项目(G2000026402) 国家杰出青年科学基金项目(50125823) 国家自然科学基金项目(30470054) 黑龙江省自然科学基金攻关课题(GZ03C314)
关键词 C/N比 产氢细菌 氢化酶 乙醇脱氢酶 酶活性 C/N ratio hydrogen producing bacteria hydrogenase alcohol dehydrogenase enzyme activity
  • 相关文献

参考文献18

  • 1Hansel A,Lindblad P.Towards optimization of cyanobacteria as biotechnologically relevant producers of molecular hydrogen,a clean and renewable energy source[J].Appl.Microbiol.Biotechnol.,1998,50:153~ 160.
  • 2Das D,Veziroglu T N.Hydrogen production by biological process:a survey of literature[J].Int.J.Hydrogen Energy,2001,26:13~28.
  • 3Momirlan M,Veziroglu T N.Current status of hydrogen energy[J].Renewable and Sustainable Energy Reviews,2002,6:41~179.
  • 4王艳辉,吴迪镛,迟建.氢能及制氢的应用技术现状及发展趋势[J].化工进展,2001,20(1):6-8. 被引量:76
  • 5李建政,任南琪.生物制氢技术的研究与发展[J].能源工程,2001,21(2):18-20. 被引量:35
  • 6Hallenbech P C,Benemann J R.Biological hydrogen production; fundamentals and limiting process[J].Int.J.Hydrogen Energy,2000,27:1185~1193.
  • 7Hawkes R,Dionsdale D L,Hawkes I,et al.Sustainable fermentative hydrogen production:challenges for process optimization[J].Int.J.Hydrogen Energy,2002,27:1339~1347.
  • 8Levin D B,Pitt L,Love M.Biohydrogen production:prospect and limitations to practical application[J].Int.J.Hydrogen Energy,2004,29:173~ 185.
  • 9李云政,蔡博伟,朱鹤孙,陈福泉.影响塑料生物降解速度因素的研究[J].塑料,1999,28(1):42-47. 被引量:10
  • 10毛连山,宋向阳,勇强,姚春才,余世袁.碳氮比对里氏木霉合成木聚糖酶的影响[J].林产化学与工业,2002,22(3):41-44. 被引量:11

二级参考文献42

  • 1刘文鹏,王新林.我国开展燃料电池研究开发设想[J].电站系统工程,1995,11(2):3-6. 被引量:2
  • 2李乃朝,衣宝廉.国外燃料电池研究发展现状[J].电化学,1996,2(2):128-135. 被引量:16
  • 3杨惠娣.-[J].现代塑料加工应用,1993,5(2):37-37.
  • 4赵一章.产甲烷细菌及研究方法[M].成都:成都科技大学出版社,1997..
  • 5席德力.清洁生产[M].重庆:重庆大学出版社,1995.136-137.
  • 6中国工业气体工业协会氢气专业委员会秘书处.中国工业气体工业协会氢气专业委员会成立大会暨2000年年会论文集[M].,2000,4.60-64.
  • 7辛世崇.-[J].化工环保,1991,11(3):162-162.
  • 8北京师范大学生物系微生物教研组.《怎样观察与培养微生物》[M].北京师范大学出版社,1982..
  • 9洪枫.里氏木霉合成木聚糖酶及制备功能性低聚木糖的研究[M].南京:南京林业大学,1998.50-60.
  • 10陈晓蕾.产氢发酵细菌顶级群落研究[M].哈尔滨:哈尔滨建筑大学,1998..

共引文献194

同被引文献342

引证文献23

二级引证文献119

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部