Page 579 - เชื้อเพลิงชีวภาพและชีวเคมีภัณฑ์โดยจุลินทรีย์
P. 579

541
 
Abbad-Andaloussi S., Amine J., Gerard P., Petitdemange H. Effect of glucose on glycerol metabolism by Clostridium butyricum DSM 5431. J Appl Microbiol 1998; 84: 515–522.
Albuquerque M.G.E., Martino V., Pollet E., Avérous L., Reis M.A.M. Mixed culture polyhydroxyalkanoate (PHA) production from volatile fatty acid (VFA)-rich streams: Effect of substrate composition and feeding regime on PHA productivity, composition and properties. J Biotechnol 2011; 151: 66–76.
Ali Hassan M., Shirai Y., Kusubayashi N., Ismail Abdul Karim M., Nakanishi K., Hashimoto K. Effect of organic acid profiles during anaerobic treatment of palm oil mill effluent on the production of polyhydroxyalkanoates by Rhodobacter sphaeroides. J Ferment Bioen 1996; 82: 151–156.
Anderson A.J., Dawes E.A. Occurrence metabolism metabolic role and industrial uses of bacterial polyhydroxyalkanoates. Microbiol Mol Biol Rev 1990; 54: 450–472.
Appels L., Baeyens J., Degrève J., Dewil R. Principles and potential of the anaerobic digestion of waste-activated sludge. Prog Energy Combust Sci 2008; 34: 755–781.
Barbirato F., Himmi E.H., Conte T., Bories, A. 1,3-propanediol production by fermentation: An interesting way to valorize glycerin from the ester and ethanol industries. Ind Crops Prod 1998; 7: 281–289.
Bengtsson S., Hallquist J., Werker A., Welander T. Acidogenic fermentation of industrial wastewaters: Effects of chemostat retention time and pH on volatile fatty acids production. Biochem Eng J 2008a; 40: 492–499.
Bengtsson S., Werker A., Christensson M., Welander T. Production of polyhydroxyalkanoates by activated sludge treating a paper mill wastewater. BioresourTechnol 2008b; 99: 509–516.

























































































   577   578   579   580   581