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Warianty tytułu
Extracellular biopolymers in activated sludge
Języki publikacji
Abstrakty
Budowa i rodzaje biopolimerów zewnątrzkomórkowych oraz mikroorganizmy je wytwarzające. Czynniki wpływające na syntezę biopolimerów.
Structure and types of extracellular biopolymers and microorganisms that produce them. Factors affecting the synthesis of biopolymers.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
180--183
Opis fizyczny
Bibliogr. 28 poz.
Twórcy
autor
autor
- Politechnika Łódzka, Instytut Technologii Fermentacji i Mikrobiologii, ul. Wólczańska 171/173, 90-924 Łódź, solecka@p.lodz.pl
Bibliografia
- [1] Błaszczyk M.: Mikroorganizmy w ochronie środowiska, PWN, Warszawa, 2007.
- [2] Houghton J.I., Quarmby J.: Biopolymerts in wastewater treatment. Environmental Biotechnology, 2004, 10(3), 259.
- [3] Kunicki-Goldfinger W.: Życie bakterii, PWN, Warszawa, 1988.
- [4] Schlegel H.G.: Mikrobiologia ogólna, PWN, Warszawa, 1996.
- [5] Frolund B.: Extraction of EPS from activated sludge using a cation exchange resin. Water Science and Technology, 1995,30(8), 1749.
- [6] Troyano E., Lee S.P., Rha Ch.K., Sinskey A.J.: Presence of acetate and succinate in the exopolysaccharide produced by Zooglea ramigera 115SLR. Journal of Biochemical Engineering, 1996, 31, 35.
- [7] He N., Li Y., Hen J., Lun S.Y.: Identification of a novel bioflocculant from a newsly isolated Alcaligenes cupidus. Biochemical Engineering Journal, 2002, 11(2-3), 137.
- [8] Nohata Y., Kurane R.: Physical characteristics of the acid biopolymer from Alcaligenes latus B-16. Journal of Fermentation and Bioengineering, 2000, 82(1), 22.
- [9] Azeredo J., Oliveira R., Lazarova V.: A new method for extraction of exopolymers from activated sludges. Water Science and Technology, 1998, 37(4—5), 367.
- [10] Shimada A., Nakata H., Nakamura I.: Acidic exopolysaccaride produced by Enterobacter sp. Journal of Fermentation and Bioengineering, 1998, 84(2), 113.
- [11] Fujita M., Ike M., Tahibana S., Kitada G., Kim S.M., Inoue Z.: Characterization of a bioflocculant produced by Citrobacter sp. TK04 from acetic and propionic acids. Journal of Bioscience and Bioengineering, 2003, 13, 40.
- [12] Wang S.G., Gong W.X., Liu X.W., Tian L., Yue Q.Y., Gao B.Y.: Production of a novel bioflocculant by culture of Klebsiella mobilis using dairy wastewater. Biochemical Engineering Journal, 2007, 36(2), 81.
- [13] Stredansky M., Conti E.: Xanthan production by solid state fermentation. Process Biochemical, 1999, 34(6-7), 581.
- [14] Noghabi A.K., Zahiri H.S., Yoon S.Ch.: The production of a cold-induced extracellular biopolymer by Pseudomonas fluorescens BM07 under various growth conditions and its role in heavy metals adsorption. Process Biochemistry, 2007,42(5), 247.
- [15] Jensen-Spaulding A., Shuler M.L., Lion L.W.: Mobilization of adsorbed copper and lead from naturally aged soil by bacterial extracellular polymers. Hazardous Materials, 2003, 38(5), 2231.
- [16] Lopez E., Ramos L., Sanroman M.A.: Extracellular polysaccharides production by Arthrobacter viscosus. Journal of Biochemical Engineering, 2003, 60(4), 464.
- [17] Clementi F., Mancini M., Moresi M.: Reology of alginate from Azotobacter vinelandii on aqueous dispersion. Water Science and Technology, 1998,36(1), 51.
- [18] Sutherland I.W.: Biosynthesis of microbial exopolysaccharides. Advances in Microbial Physiology, 1992, 23, 79.
- [19] Lindsay D., Brzel V.S., Mostert J.F., von Holy A.: Physiology of dairy-associated Bacillus sp. over a wide pH range. Journal of Biochemical Engineering, 2000, 54(1-2), 49.
- [20] Gandhi H.P., Ray R.M., Patel R.M.: Exopolymer production by Bacillus species. Carbohydr, 1997, 34(4), 323.
- [21] Salehizadeh M., Shojaosadati S.A.: Extracellular biopolymeric flocculants: recent trends and biotechnological importance. Biotechnology Advances, 2001, 19(5), 371.
- [22] Zhang L., Feng X., Zhu N., Chen J.: Role of extracellular protein in the formation and stability of aerobic granules. Enzyme and Microbial Technology, 2007,41(5), 551.
- [23] Buraczewski G.: Biotechnologia osadu czynnego, PWN, Warszawa, 1994.
- [24] Gorner T., de Donato P., Ameil M.H., Montarges-Pelletier E., Lartiges B.S.: Activated sludge exopolymers: separation and identification using size exclussion chromatography and infrared micro-spectroscopy. Water Research, 2003, 37(10), 2388.
- [25] Garnier Ch., Gorner T., Guinot-Thomas P., Chappe P., de Donato P.: Exopolymeric production by bacterial strains isolated from activated sludge of paper industry. Water Research, 2006, 40(16), 3115.
- [26] Mizerski W., Bednarczuk K., Kawalec M.: Słownik bakterii. Wydawnictwo Adamantan, Warszawa, 2008.
- [27] Nielsen P.H., Jahn A., Palmgren R.: Conceptual model for production and composition of exopolymers in biofilms. Water Science and Engineering, 1998, 36(1), 11.
- [28] Flemming H.C.: Sorption sites in biofilms. Water Research, 1996, 32(8), 27.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP4-0001-0156