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Original Articles

Optimization of the Medium and Process Parameters for Ethanol Production from Kitchen Garbage by Zymomonas Mobilis

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Pages 480-490 | Published online: 04 Dec 2008

REFERENCES

  • Anthony , J.C. 1984 . Malt beverages and malt brewing materials: Gas chromatographic determination of ethanol in beer . Journal of the Association of Official Analytical Chemists , 67 : 192 – 193 .
  • Apar , D.K. and Özbek , B. 2004 . α-Amylase inactivation during corn starch hydrolysis process . Process Biochem. , 39 : 1877 – 1892 .
  • Bandaru , V.V.R. , Somalanka , S.R. and Mendu , D.R. 2006 . Optimization of fermentation conditions for the production of ethanol from sago starch by co-immobilized amyloglucosidase and cells of Z. mobillis using response surface methodology . Enz. Microbiol. Technol. , 38 : 209 – 214 .
  • Cazetta , M.L. , Celligoi , M.A.P.C. and Buzato , J.B. 2007 . Fermentation of molasses by Zymomonas mobilis: Effect of temperature and sugar concentration on ethanol production . Bioresour. Technol. , 98 : 2824 – 2828 .
  • Demain , A.L. , Somkuti , G.A. , Hunyrtp-Cavera , J.C. and Rossmoore , H.W. 1989 . In Novel microbial products for medicines and agriculture , 25 – 32 . Amsterdam : Elsevier Science Publishers .
  • Han , S.K. and Shin , H. S. 2004 . Biohydrogen production by anaerobic fermentation of food waste . International Journal of Hydrogen Energy , 29 : 569 – 577 .
  • Jones , A. M. and Ingledew , W. M. 1994a . Fuel alcohol production: Assessment of selected commercial proteases for very high gravity wheat mash fermentation . Enzyme Microbiol. Technol , 16 : 683 – 687 .
  • Jones , A.M. and Ingledew , W.M. 1994b . Fuel alcohol production: Appraisal of nitrogenous yeast foods for very high gravity wheat mash fermentation . Process Biochem , 29 : 483 – 488 .
  • Kádár , Z. , Szengyel , Z. and Réczey , K. 2004 . Simultaneous saccharification and fermentation (SSF) of industrial wastes for the production of ethanol . Ind. Crops Prod. , 20 : 103 – 110 .
  • Kim , S. and Dale , B.E. 2004 . Global potential bioethanol production from wasted crops and crop residues . Biomass Bioenergy. , 26 : 361 – 375 .
  • Klingspohn , U. , Bader , J. , Kruse , B. , Kishore , P.V. , Schügerl , K.H. , Kracke-Helm , H. and Likidis , Z. 1993 . Utilization of potato pulp from potato starch processing . Process Biochem. , 28 : 91 – 98 .
  • Krishnan , M.S. , Taylor , F. , Davison , B.H. and Nghiem , N.P. 2000 . Economic analysis of fuel ethanol production from corn starch using fluidized-bed bioreactors . Bioresour. Technol. , 75 : 99 – 105 .
  • Lee , E.C. and Huang , C.T. 2000 . Modeling of ethanol fermentation using Zymomonas mobilis ATCC 10988 grown on the media containing glucose and fructose . Biochem. Eng. J. , 4 : 217 – 227 .
  • Lee , K.J. , Skotnicki , M.L. and Tribe , D.E. 1981 . The effect of temperature on the kinetics of ethanol production by strains of Zymomonas mobilis . Biotechnol. Lett. , 3 : 291 – 296 .
  • Martin , C. , Galbe , M. , Wahlbom , C.F. , Hahn-Hagerdal , B. and Jonsson , L. F. 2002 . Ethanol production from enzymatic hydrolysates of sugarcane bagasse using recombinant xylose-utilizing S. cerevisiae . Enzyme Microb. Technol. , 31 : 274 – 282 .
  • Miller , G.L. 1959 . Use of DNS reagent for determination of reducing sugars . Anal Chem. , 31 : 426 – 428 .
  • Naveena , B.J. , Altaf , Md. , Bhadriah , K. and Reddy , G. 2005 . Selection of medium components by Plackett-Burman design for production of L(+) lactic acid by Lactobacillus amylophilus GV6 in SSF using wheat bran . Bioresour. Technol , 96 : 485 – 490 .
  • Öhgren , K. , Galbe , M. and Zacchi , G. 2005 . Optimization of steam pretreatment of SO2-impregnated corn stover for fuel ethanol production . Appl Biochem. Biotech. , 121–124 : 1055 – 1067 .
  • Othumpangat , S. , Nagin , C. and Sidappa , C.B. 1999 . Optimization and interaction of media components in ethanol production using Zymomonas mobilis by response surface methodology . J. Biosci. Bioeng. , 88 : 334 – 338 .
  • Oursson , G. and Albrecht , P. 1992 . Hopanoids. 2. Bio-hopanoids: A novel class of bacterial lipids . Acc. Chem. Res. , 25 : 403 – 408 .
  • Plackett , R.L. and Burman , J.P. 1944 . The design of optimum multifactorial experiments . Biometrica. , 33 : 305 – 325 .
  • Ramasamy , A. and Paramasamy , G. 2001 . Production of ethanol from liquefied cassava starch using co-immobilized cells of Zymomonas mobilis and saccharomyces diastaticus . J. Biosci. Bioeng. , 92 : 560 – 564 .
  • Ratnam , B.V.V. , Narasimha , R.M. , Damodara , R.M. , Subba , R.S. and Ayyanna , C. 2003 . Optimization of fermentation conditions for the production of ethanol from sago starch using response methodology . World J. Microbiol. Biotechnol. , 19 : 523 – 526 .
  • Rogers , P. , Joachimsthal , E. and Haggett , K. 1997 . Ethanol from lignocellulosics: Potential for zymomonas-based process . Australasian Biotechnol , 7 : 304 – 309 .
  • Ruanglek , V. , Maneewatthana , D. and Tripetchkul , S. 2006 . Evaluation of thai agro-industrial wastes for bio-ethanol production by Zymomonas mobilis . Process Biochem. , 41 : 1432 – 1437 .
  • Sprenger , G.A. 1996 . Carbohydrate metabolism in Zymomonas mobilis: A catabolic highway with some scenic routes . FMS. Microbiol. Lett. , 145 : 301 – 307 .
  • Tanaka , K. , Hilary , Z.D. and Ishizaki , A. 1999 . Investigation of the utility of pineapple juice and pineapple waste material as low-cost substrate for ethanol fermentation by Zymomonas mobilis . J. Biosci. Bioeng. , 87 : 642 – 646 .
  • Tao , F. , Miao , J.Y. , Shi , G.Y. and Zhang , K.C. 2005 . Ethanol fermentation by an acid-tolerant Zymomonas mobilis under non-sterilized condition . Proc. Biochem. , 40 : 183 – 187 .
  • Thomas , K.C. and Ingledew , W.M. 1990 . Fuel alcohol production: Effects of free amino nitrogen on fermentation of very-high-gravity wheat mashes . Appl. Environ. Microbiol. , 56 : 2046 – 2050 .
  • Verma , G. , Nigam , P. , Singh , D. and Chaudhary , K. 2000 . Bioconversion of starch to ethanol in a single-step process by coculture of amylolytic yeasts and Saccharomyces cerevisiae . Bioresour. Technol. , 72 : 261 – 266 . 21
  • Wang , Q.H. , Ma , H.Z. , Xu , W.L. , Gong , L.J. , Zhang , W.Y. and Zou , D.X. 2008 . Ethanol production from kitchen garbage using response surface methodology . Biochem. Eng. J. , 39 : 604 – 610 .
  • Wang , Q.H. and Ymamabe , K. 2001 . Suppression of growth of putrefactive and food poisoning bacteria by lactic acid fermentation of kitchen waste . Process Biochem. , 37 : 351 – 357 .
  • Wang , X.M. , Wang , Q.H. , Ren , N.Q. and Wang , X.Q. 2005 . Lactic acid production from kitchen waste with a newly characterized strain of . Lactobacillus plantarum. Chem. Biochem. Eng. Q. , 19 : 383 – 389 .
  • Wang , X.X. , Zhang , K.C. , Zhang , L.X. and Xu , R. 2001 . Study on the application of pectinase in ethanol high-gravity-fermentation . Food Ferment. Indus. , 27 ( 3 ) : 44 – 47 .
  • Weegels , P. L , Marseille , J.P. and Hamer , R.J. 1992 . Enzymes as a processing aid in the separation of wheat flour into starch and gluten . Starch/Stiirk. , 2 : 44 – 48 .
  • Wenster-Botz , D. 2000 . Experimental design for fermentation media development: Statistical design or global random search . J. Biosci.Bioeng. , 90 : 473 – 483 .
  • Wright , N. and Alison , M. 1984 . “ Kinetic parameters in stratified squamous epithelia ” . In The biology of epithelial celpopulations , 250 – 286 . Oxford : Claredon .
  • Yang , X.K. 2004 . Effect of fat and protein of corn on the alcohol production . China Brewing , 2 : 39 – 40 .
  • Zhang , B. , Zhang , L.L. , Zhang , S.C. , Shi , H.Z. and Cai , W.M. 2005 . The influence of pH on hydrolysis and acidogenesis of kitchen wastes in two-phase anaerobic digestion . Environ. Technol. , 26 : 329 – 339 .
  • Zhang , Q. , Lu , J. , Hou , L. , Jin , H. and Piao , J.H. 2005 . Application of phytase in alcohol production with corn as raw materials . Liquor-Making Sci.Technol. , 7 : 51 – 52 .

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