Émissions d’oxyde nitreux lors du traitement de l’azote des eaux usées de l’agglomération parisienne : état actuel et prévisions
Gaëlle Tallec
SIAAP / DRD,
82, Av. Kléber,
92700 Colombes,
France.
et UMR Sisyphe 7619,
Fonctionnement des Hydrosystèmes,
Université P. et M. Curie-CNRS,
Boite 105,
Tour 56,
Étage 4,
4 place Jussieu,
75005 Paris,
France.
Olivier Rousselot
SIAAP / DRD,
82, Av. Kléber,
92700 Colombes,
France.
Josette Garnier
UMR Sisyphe 7619,
Fonctionnement des Hydrosystèmes,
Université P. et M. Curie-CNRS,
Boite 105,
Tour 56,
Étage 4,
4 place Jussieu,
75005 Paris,
France.
Michel Gousailles
SIAAP / DRD,
82, Av. Kléber,
92700 Colombes,
France.
Références bibliographiques
ANDERSON IC., M. POTH, J. HOMSTEAD et D. BURDIGE (1993). A comparison of NO and N2O production by the autotrophic nitrifier Nitrosomonas europea and the heterotrophic nitrifier Alcaligenes faecalis. Appl. Environ. Microbiol., 59, 3525‑3533.
BAUMANN B., M. SNOZZI, A.J.B. ZEHNDER et J.R. VAN DER MEER (1996). Dynamics of denitrification activity of Paracoccus denitrificans in continuous culture during aerobic-anaerobic changes. J. Bacteriol., 178, 4367‑4374.
BILLEN G., J. GARNIER, A. FICHT et C. CUN (2001). Modeling the response of water quality in the Seine River Estuary to human activity in its watershed over the last 50 years. Estuaries, 24, 977-993. DOI:10.2307/1353011
BLIEFERT C. et R. PERRAUD (2001). Les oxydes d’azote. Dans : Chimie de l’environnement, air, eau, sol, déchets. DE BOECK (Éditeurs), Paris, pp. 177-188.
BOCK. E., E. SCHMIDT, R. STÜVEN et D. ZART (1995). Nitrogen loss caused by denitrifying Nitrosomonas cells using ammonium or hydrogen as electron donors and nitrite as electron acceptor. Arch. Microbiol., 163, 16-20.
BONIN P., M. GILEWIEZ et J.C. BERTRAND (1989). Effect of oxygen on each step of denitrification on Pseudomonas nautica strain 617. Can. J. Microbiol., 35, 1061-1064. DOI:10.1139/m89-177
BRETTAR I. et M.G. HÖLFE (1993). Nitrous oxide producing heterotrophic bacteria from water column of the central Baltic: abundance and molecular identification. Mar. Ecol. Prog. Ser., 94, 253-265. DOI:10.3354/meps094253
BRION N., G. BILLEN, L. GUEZENNEC et A. FICHT (2000). Distribution of nitrifying activity in the Seine River (France) from Paris to the estuary. Estuaries, 23, 669‑682. DOI:10.2307/1352893
CAVIGELLI M.A. et G.P. ROBERTSON (2001). Role of denitrifier diversity in rates of nitrous oxide consumption in a terrestrial ecosystem. Soil Biol. Biochem., 33, 297‑310. DOI:10.1016/S0038-0717(00)00141-3
CÉBRON A., T. BERTHE et J. GARNIER (2003). Nitrification and nitrifying bacteria in the lower Seine River and estuary. Appl. Environ. Microbiol., 69, 7091-7100. DOI:10.1128/AEM.69.12.7091-7100.2003
CÉBRON A., J. GARNIER et G. BILLEN (2005). Nitrous oxide production and nitrification kinetics by bacteria communities naturally present in river water (the lower Seine, France). Aquat. Microb. Ecol., 41, 25-38. DOI:10.3354/ame041025
CITEPA (CENTRE INTERPROFESSIONNEL TECHNIQUE D’ÉTUDES DE LA POLLUTION ATMOSPHÉRIQUE) (2003). Émissions dans l’air en France métropole. Comparaisons des émissions de la France et d’autres pays. www.citepa.org/France-autres/comparaisons.pdf, consulté le 15 février 2003.
CUGIER PH., G. BILLEN, J.F. GUILLAUD, J. GARNIER et A. MÉNESGUEN (2005). Modeling the eutrophication of the Seine Bight (France) under historical. present and future riverine nutrient loading. J. Hydrol., 304, 381-396. DOI:10.1016/j.jhydrol.2004.07.049
GARNIER J., B. LEPORCQ, N. SANCHEZ et X. PHILIPPON (1999). Biogeochemical mass balances (C. N. P. Si) in the three large reservoirs of the seine basin (France). Biogeochem., 47, 119-146. DOI:10.1007/BF00994919
GARNIER J., G. BILLEN, N. SANCHEZ et B. LEPORCQ (2000). Ecological functioning of the Marne reservoir (upper Seine basin, France). Regul. Rivers Res. Manage., 16, 51-71. DOI:10.1002/(SICI)1099-1646(200001/02)16:1<51::AID-RRR571>3.0.CO;2-I
GARNIER J., P. SERVAIS, G. BILLEN, M. AKOPIAN et N. BRION (2001). Lower Seine river and estuary (France): carbon and oxygen budgets during low flow. Estuaries, 24, 964-976. DOI:10.2307/1353010
GARNIER J., A. CÉBRON, G. TALLEC, G. BILLEN, M. SEBILO et A. MARTINEZ (2006). Nitrous oxide emission in the Seine River estuary (France): comparison with upstream sector of the Seine basin. Biogeochem., 77, 305‑326. DOI:10.1007/s10533-005-0544-4
GARNIER J., A. CÉBRON et G. BILLEN (sous presse). Modeling nitrogen transformations in the lower Seine river and estuary (France): impact of wastewater release on oxygenation and N2O emission. Hydrobiol.
GOREAU T.J., W. KAPLAN, S. WOFSY, M. McELROY, F. VALOIS et S. WATSON (1980). Production of NO2- and N2O by nitrifying bacteria at reduced concentrations of oxygen. Appl. Environ. Microbiol., 40, 526-532.
GREENBERG E.P. et G.E. BECKER (1977). Nitrous oxide as end product of denitrification by strains of fluorescent Pseudomonas. Can. J. Microbiol., 23, 903-907. DOI:10.1139/m77-133
HANAKI K., C. WANTAWIN et S. OHGAKI (1990). Nitrification at low levels of dissolved oxygen with and without organic loading in a suspended-growth reactor. Water Res., 24, 297-302. DOI:10.1016/0043-1354(90)90004-P
HANAKI K., Z. HONG et T. MATSUO (1992). Production of nitrous oxide gas during denitrification of wastewater. Water Sci. Technol., 26, 1027-1036.
IPCC (INTERGOVERNMENTAL PANEL ON CLIMATE CHANGE)(2000). Special report on emissions scenarios; Univ. Press, Cambridge, 598 p.
ITOKAWA H., K. HANAKI et T. MATSUO (2001). Nitrous oxide production in high-loading biological nitrogen removal process under low COD/N ratio condition. Water Res., 35, 657-664. DOI:10.1016/S0043-1354(00)00309-2
JIANG Q-Q. et L.R. BAKKEN (1999). Nitrous oxide production and methane oxidation by different ammonia-oxidizing bacteria. Appl. Environ. Microbiol.,65, 2679‑2684.
KHALIL K., B. MARY et P. RENAULT (2004). Nitrous oxide production by nitrification and denitrification in soil aggregates as affected by O2 concentration. Soil Biol. Biochem., 36, 687-699. DOI:10.1016/j.soilbio.2004.01.004
KIM J.S., S.J. KIM et B.H. LEE (2004). Effect of Alcaligenes faecalis on nitrous oxide emission and Nitrogen removal in three phase fluidized bed process. J. Environ Sci. Health, 39, 1791‑1804. DOI:10.1081/ESE-120037878
KUAI L. et W. VERSTRAETE (1998). Ammonium removal by the oygen-limited autotrophic nitrification-denitrification system. Appl. Environ. Microbiol., 64, 4500-4506.
LEGAIGNEUR V. (2003). Émissions atmosphériques provenant des stations d’épuration du SIAAP, en particulier les oxydes d’azote et le protoxyde d’azote. Diplôme de recherche technologique. Univ. Paris 7, 178 p.
POTH M. et D. FOCHT (1985). 15N kinetic analysis of N2O production by Nitrosomonas europaea: an examination of nitrifier denitrification. Appl. Environ. Microbiol., 49, 1134-1141.
ROBERTSON L.A., T. DALSGAAR, N.P. REVSBECH et J.G. KUENEN (1995). Confirmation of aerobic denitrification in batch cultures, using gas chromatography and 15N mass spectrometry. FEMS Microbiol. Ecol., 18, 113-120. DOI:10.1111/j.1574-6941.1995.tb00168.x
SHRESTHA N., S. HADANO, T. KAMACHI et I. OKURA (2002). Dinitrogen production from ammoia by Nitrosomonas europaea. Appl. Catal. A Gen., 237, 33-39. DOI:10.1016/S0926-860X(02)00279-X
SÜMER L.Y., A. WEISKE, G. BENCKISER et J.C.G. OTTOW (1995). Influence of environmental conditions on the amount of N2O released from activated sludge in a domestic wastewater treatment plant. Experientia, 51, 419-422. DOI:10.1007/BF01928908
TALLEC G. (2005). Émissions d’oxyde nitreux lors du traitement de l’azote en station d’épuration. Thèse de doctorat, ENPC, ED «Ville et Environnement», Paris, 253 p.
TALLEC. G., J. GARNIER, G. BILLEN et M. GOUSAILLES (2006). Nitrous oxide emissions from secondary activated sludge in nitrifying conditions of urban wastewater treatment plants: effect of oxygenation level. Water Res., 40, 2972-2980.
THÖRN M. et F. SÖRENSEN (1996). Variation of nitrous oxide formation in the denitrification basin in a wastewater treatment plant with nitrogen removal. Water Res., 30, 1543-1547. DOI:10.1016/0043-1354(95)00327-4
| Auteurs : | Gaëlle Tallec, Olivier Rousselot, Josette Garnier et Michel Gousailles |
|---|---|
| Titre : | Émissions d’oxyde nitreux lors du traitement de l’azote des eaux usées de l’agglomération parisienne : état actuel et prévisions |
| Revue : | Revue des sciences de l'eau / Journal of Water Science, Volume 20, numéro 1, 2007, p. 149-161 |
| URI : | http://id.erudit.org/iderudit/015742ar |
| DOI : | 10.7202/015742ar |
Tous droits réservés © Revue des sciences de l'eau, 2007

