![]() |
|
Connected As: <Anonymous> Contact: srcosmos@aegean.gr |
Zafiriadis I, Kapagiannidis AG, Aivasidis A:
"Monitoring of microbial storage products and the efficiency of an activated sludge plant performing anoxic phosphorus removal under different operational conditions",
In CEST2009: A-1577-1585, (Sep 2009)
References included in article: 21 records found.
| Order of appearence | Full citation | SRCosmos Link |
| 1 | Ahn J, Daidou T, Tsuneda S, Hirata A, (2002). “Transformation of phosphorus and relevant intracellular compounds by a phosphorus-accumulating enrichment culture in the presence of both the electron acceptor and electron donor” BIOTECHNOLOGY AND BIOENGINEERING vol. 79(1), pp. 83-93 | |
| 2 | APHA, AWWA, WPCF, (1998). “Standard methods for the examination of water and wastewater”. In: Eaton, A.D., Clesceri, L.S., Greenberg, A.E. (Eds.), Standard Methods for the Examination of Water and Wastewater. Port City Press, Baltimore | |
| 3 | Carvalho G, Lemos PC, Oehmen A, Reis MA, (2007). “Denitrifying phosphorus removal: Linking the process performance with the microbial community structure”, Water Research, 41, (19), 43983 - 4396 | |
| 4 | Comeau Y, Hall KJ, Hancock REW, Oldham WK, (1986). “Biochemical model for enhanced biological phosphorus removal” Water Research; vol. 20(12), pp. 1511–1521 | |
| 5 | Crocetti GR, Hugenholtz P, Bond PL, Schuler A, Keller J, Jenkins D, Blackall LL, (2000). “Identification of polyphosphate-accumulating organisms and design of 16S rRNAdirected probes for their detection and quantitation” Applied Environmental Microbiology, Vol 66 (3), 1175–1182 | |
| 6 | De-Haas DW, Wentzel MC, Ekama GA, (2000). “The use of simultaneous chemical precipitation in modified activated sludge systems exhibiting biological excess phosphate removal. Part 2: Method development for fractionation of phosphate compounds in activated sludge” Water SA, vol. 26 (3), pp. 453-466 | |
| 7 | Ferree MA, Shannon RD, (2001). “Evaluation of a second derivative uv/visible spectroscopy technique for nitrate and total nitrogen analysis of wastewater samples”. Water Research. vol.: 35, pp. 327-332 | |
| 8 | Jenkins D, Richard MG, Daigger GT, (1993) “Manual on the Causes and Control of Activated Sludge Bulking and Foaming”, second edition. Lewis Publishers, Boca Raton, FL | |
| 9 | Kuba T, Smolders G, Van-Loosdrecht MCM, Heijnen JJ, (1993) “Biological phosphorus removal from wastewater by anaerobic–anoxic sequencing batch reactor”. Water Science Technology, vol. 27 (5-6), pp. 241–252. | |
| 10 | Kuba T, Van-Loosdrecht MCM, Brandse FA, Heijnen JJ, (1997). “Occurrence of denitrifying phosphorus removing bacteria in modified UCT type wastewater treatment plants” Water Research, vol. 31(4), pp. 777–86. | |
| 11 | Matsuo Y, (1994). “Effect of the anaerobic solids retention time on enhanced biological phosphorus removal” Water Science and Technology, vol. 30(6), pp. 193-202 | |
| 12 | Mino T, Van-Loosdrecht MCM, Heijnen JJ, (1998). “Microbiology and biochemistry of the enhanced biological phosphate removal process.” Water Research, vol. 32, pp. 3193- 3207 | |
| 13 | Oehmen A, Lemos PC, Carvalho G, Yuan Z, Keller J, Blackall LL, Reis MAM, (2007). “Advances in enhanced biological phosphorus removal: From micro to macro scale” Water Research, vol. 41(11), pp. 2271-2300 | |
| 14 | Pernthaler J, Glockner FO, Schonhuber W, Amann R, (2001). “Fluorescence in situ hybridization”. In J. Paul (ed.), Methods in Microbiology: Marine Microbiology, vol.30. Academic Press Ltd, London | |
| 15 | Riis V, Mai W, (1988) “Gas chromatographic determination of poly-β-hydroxybutyric acid in microbial biomass after hydrochloric acid propanolysis.” Journal of Chromatography, vol. 445, pp. 285-298 | |
| 16 | Serafim LS, Lemos PC, Levantesi C, Tandoi Santos V.H. and Reis M.A.M., (2002). “Methods for detection and visualization of intracellular polymers stored by polyphosphate-accumulating microorganisms” Journal of Microbiological Methods, vol. 51, pp. 1– 18 | |
| 17 | Seviour RJ, Mino T, Onuki M, (2003). “The microbiology of biological phosphorus removal in activated sludge systems.” FEMS Microbiology Reviews, vol. 27, pp. 99–127 | |
| 18 | Smolders GJF, van der Meij J., van-Loosdrecht M.C.M and Heijnen J.J., (1994). “Stoichiometric model of the aerobic metabolism of the biological phosphorus removal process” Biotechnology and. Bioengineering, vol. 44, pp. 837-848 | |
| 19 | Smolders GJF, Van-Der-meij J, Van-Loosdrecht MCM, Heijnen JJ, (1995). “A structured metabolic model for anaerobic and aerobic stoichiometry and kinetics of the biological phosphorus removal process” Biotechnology and. Bioengineering, vol. 47, pp. 277-287 | |
| 20 | Vlekke GJFM, Comeau Y, Oldham WK, (1988). “Biological phosphorus removal from wastewater with oxygen and nitrate in sequencing batch reactor.” Environmental Technology Letters, vol. 9, pp. 791–6 | |
| 21 | Wentzel MC, Lotter LH, Loewenthal RE, Marais GVR, (1986). “Metabolic behavior of Acinetobacter spp. in enhanced biological phosphorus removal—a biochemical model.” Water SA, vol. 12(4), pp. 209–24 |