期刊文献+

木质纤维素生物转化为乙醇的研究概况 被引量:2

下载PDF
导出
摘要 从纤维素类物质发酵的复杂性和技术瓶颈出发,阐述了有效的发酵微生物、预处理、发酵方式等方面的研究概况。
出处 《湖北农业科学》 北大核心 2006年第4期522-524,共3页 Hubei Agricultural Sciences
基金 江西省自然科学基金(040003)
  • 相关文献

参考文献26

  • 1WYMAN,CHARLES E.Alternative Transportation Fuels from Biomass[J].Proceedings of the Intersociety Energy Conversion Engineering Conference,1994(3):1090-1095.
  • 2邓良伟.纤维素类物质生产燃料酒精研究进展[J].食品与发酵工业,1995,21(5):69-72. 被引量:31
  • 3KIRAN L K,ROBERT J W,ANDY A,et al.Softwood Forest Thinnings as a Biomass Source for Ethanol Production A Feasibility Study for California[J].Biotechnol Prog,2000(16):947-957.
  • 4QUANG A N,MELVIN P T.Dilute Acid/ Metal Salt Hydrolysis of Lingo-cellulosics[P].US 6423145,2002.
  • 5JONATHAN R M.Ethanol Production from Biomass:Technology and Comer-cialization Status[J].Current Opinion in Microbiology,2001 (4):324-329.
  • 6SHEEHAN J,Himmel M.Enzymes,Energy and Environment:A Strategic Perspective on the U S Deparment of Energy Research and Development Activities for Bioethanol[J].Biotechnol.Prog,1999,15:817-827.
  • 7BROWN M A,LEVINE M D,ROMM JPRAH,et al.Engineering-economic Studies of Energy Technologies to Reduce Greenhouse Emissions:Opportunities and Challenges[J].Annu Rev Energy Environ,1998(23):31-39.
  • 8SOUTH C R.,HOGSETT D A L,LYND L R.Modeling Simultaneous Saccharification and Fermentation of Lignocelulose to Ethanol Inbatch and Continuous Reactors[J].Enzyme and Microbial Technology,1995(17):797-803.
  • 9庞晓华.纤维素酶成本大幅降低,生物基乙醇燃料推广将不日而期[J].化工生产与技术,2005,12(1):23-23. 被引量:2
  • 10CHUNG YUN-CHIN,AIAN BAKALINSKY,MICHAEL H et al..Analysis of Biomass Celulose in Simultaneous Saccharification and Fermentation Proeesses[J].Applied Biochemistry and Biotechnology,1997(66):249-262.

二级参考文献17

  • 1吴东儒.糖的生物化学[M].北京:高等教育出版社,1990.156.
  • 2Conway TC, Sewell GW, Osman YA, Ingram LO Cloning and nucleotide sequencing of the alcohol dehydrogeneas Ⅱ gene from Zymomonas mobilis. J. Bacteriol. 1987,169: 2591-2597.
  • 3Klein CJL, Olsson L, Nielsen J Glucose control in Saccharomyces cerevisiae: the role of MIG1 in metabolic functions. Microbiology 1998, 144: 13-24.
  • 4Boles E, Heinisch J, Zimmermann FK Different signals control the activation of glycolysis in the yeast Saccharomyces cerevisiae. Yeast 1993, 9: 761-770.
  • 5Buchert J, Niemella K Oxydative detoxification of woodderived inhibitors by Gluconobacter axydans. Biotechnology 1991,18: 103-116.
  • 6Clark TA, Mackie KL Fermentation inhibitors in wood hydrolysates derived from the softwood Pinus radiata. J Chem Technol Biotechnol 1984, 52: 741-755.
  • 7Irgram LO, Aldrich HC, Borges ACC,Causey TB, Martinez A, Morales F,Saleh A, Underwood SA, Yomano LP,York SW, Zaldivar J, Zhou S Enteric bacterial catalysts for fuel ethanol production. Biotechnol Prog 1999, 15: 855-866.
  • 8Wiselogel A, Tyson J, Johnsson D Biormss feedstock resources and composition. In:Wyman CE (ed) Handbook on bioethanol:production and utilization. Taylor and Francis, Washington, DC, 1996: 105-118.
  • 9Brogja, KS. Admeu WS. Himmel ME Hemicelluloses: diversity and applications. In: Wyman EC Handbook on bioethanol: production and utilization.Taylor and Francis, Washington, DC,1996: 119-142.
  • 10Brown MA, Levine MD, Romm JPRAH,Koomey JG Engineering - economic studies of energy technologies to reduce greenhouse emissions: opportunities and challenges.Annu Rev Energy Environ 1998, 23:31-39.

共引文献98

同被引文献22

  • 1栗薇,吴正舜.木屑纤维素酶水解条件的试验研究[J].可再生能源,2007,25(2):41-43. 被引量:15
  • 2王璞,田沈,王丹,张兰波,杨秀山.高耐毒性酿酒酵母的紫外诱变选育[J].可再生能源,2007,25(3):31-33. 被引量:3
  • 3VARGA E, SCHMIDT S A, RECZEY K, et al. Pretreatent of com stover using wet oxidation to enhance enzymatic digestibility [J]. Applied Biochemistry and Biotechnology, 2003,104(1 ) :37-50.
  • 4MOSIER N. Features of promising technologies for pretreatment of lignocellulosic hiomass [J] . Bioresource Technology, 2005,96 ( 6 ) : 673 -686.
  • 5SUN Y, CHENG J. Dilute acid pretreatment of rye straw and bermudagrass for ethanol production [J]. Bioresource Technology ,2005,96(14) : 1599-1606.
  • 6KARIMIA K, KHERADMANDINIAA S, TAHERZADEH M J. Conversion of rice straw to sugars by dilute-acid hydrolysis [J]. Biomass and Bioenergy 2006,30:247-253.
  • 7LIU Z L, SLININGER P J, GORSICH S W. Enhanced biotransformation of furfural and hydroxymethylfurfural by newly developed ethanologenic yeast strains [ J ]. Applied Biochemistry and Biotechnology, 2005,28 ( 6 ) :451-460.
  • 8HEER D , SAUER U. Identification of furfural as a key toxin in lignocellulosic hydrolysates and evolution of a tolerant yeast strain [ J ]. Microbial Biotechnology ,2008,1 (6) :497-506.
  • 9WANG Ying, SHI Wen-long, LIU Xiang-yong, et al. Establishment of a xylose metabolic pathway in an industrial strain of Saccharomyces cerevisiae [ J ]. Biotechnology letters, 2004,26 ( 11 ) : 885-890.
  • 10WEI Ping-ying, LI Zi-long, HE Peng, et al. Genome shuffling in the ethanologenic yeast Gartdida krusei to improve acetic acid tolerance [ J ]. B ioteehnology and Applied Biochemistry,2008,49 (2) :113-120.

引证文献2

二级引证文献16

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