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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 
1Ahn 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
 
2APHA, 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 
3Carvalho 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
 
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(1986). “Biochemical model for enhanced biological phosphorus removal” Water Research; vol. 20(12), pp. 1511–1521
 
5Crocetti 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
 
6De-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
 
7Ferree 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
 
8Jenkins 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
 
9Kuba 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.
 
10Kuba 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.
 
11Matsuo Y,
(1994). “Effect of the anaerobic solids retention time on enhanced biological phosphorus removal” Water Science and Technology, vol. 30(6), pp. 193-202
 
12Mino T, Van-Loosdrecht MCM, Heijnen JJ,
(1998). “Microbiology and biochemistry of the enhanced biological phosphate removal process.” Water Research, vol. 32, pp. 3193- 3207
 
13Oehmen 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
 
14Pernthaler 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
 
15Riis 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
 
16Serafim 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
 
17Seviour RJ, Mino T, Onuki M,
(2003). “The microbiology of biological phosphorus removal in activated sludge systems.” FEMS Microbiology Reviews, vol. 27, pp. 99–127
 
18Smolders 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
 
19Smolders 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
 
20Vlekke 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
 
21Wentzel 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