Acceso abierto

The use of Archaea in the Bioaugmentation of Activated Sludge as a Method for the Biological Removal of Nitrogen Compounds


Cite

[1] You J., Das A., Dolan E.M., Hu Z., Ammonia-oxidizing Archaea involved in nitrogen removal, Water Res. 43, (7), 1801, 2009.10.1016/j.watres.2009.01.016Search in Google Scholar

[2] Wakeham S.G., Lewis C.M., Hopmans E.C., Schouten S., Sinninghe Damsté J.S., Archaea mediate anaerobic oxidation of methane in deep euxinic waters of the Black Sea, Geochimica et Cosmochimica Acta. 67, (7), 1359, 2003.10.1016/S0016-7037(02)01220-6Search in Google Scholar

[3] Francis C.A., Beman J.M., Kuypers M.M., New processes and players in the nitrogen cycle: the microbial ecology of anaerobic and archaeal ammonia oxidation, International Society for Microbial Ecology Journal (ISMEJ), 1, (1), 19, 2007.10.1038/ismej.2007.818043610Search in Google Scholar

[4] Sumino T., Isaka K., Ikuta H., Saiki Y., Yokota T., Nitrogen removal from wastewater using simultaneous nitrate reduction and anaerobic ammonium oxidation in single reactor, J. Biosci. Bioeng. 102, (4), 346, 2006.10.1263/jbb.102.34617116583Search in Google Scholar

[5] Ishikawa K., Mino K., Nakamura T., New function and application of the cysteine synthase from Archaea, Biochemical Engineering Journal, 48, 315, 2010.10.1016/j.bej.2009.10.015Search in Google Scholar

[6] Hallam S.J., Putnam N., Preston C.M., Detter J.C., Rokhsar D., Richardson P.M., Delong E.F., Reverse methanogenesis: testing the hypothesis with environmental genomics, Science, 305, (5689), 1457, 2004.Search in Google Scholar

[7] Hallam S.J., Girguis P.R., Preston C.M., Richardson P.M., Delong E.F., Identification of methyl coenzyme M reductase A (mcrA) genes associated with methane-oxidizing Archaea, Appl. Environ. Microbiol. 69, 5483, 2003.10.1128/AEM.69.9.5483-5491.200319496612957937Search in Google Scholar

[8] Shima S., Thauer R.K., Methyl-coenzyme M reductase and the anaerobic oxidation of methane in methanotrophic Archaea, Curr. Opin. Microbiol. 8, (6), 643, 2005.10.1016/j.mib.2005.10.00216242993Search in Google Scholar

[9] Cui Y.W., Ding J.R., Ji S.Y. Peng Y.Z., Start-up of halophilic nitrogen removal via nitrite from hypersaline wastewater by estuarine sediments in sequencing batch reactor, Int. J. Environ. Sci. Technol. 11, (2), 281, 2014.10.1007/s13762-013-0190-7Search in Google Scholar

[10] Park H.D., Wells G.F., Bae H., Criddle C.S., Francis C.A., Occurrence of ammoniaoxidizing archaea in wastewater treatment plant bioreactors, Appl. Environ. Microbiol. 72, (8), 5643, 2006.10.1128/AEM.00402-06153870916885322Search in Google Scholar

[11] Gray N.D., Miskin I.P., Kornilova O., Curtis T.P., Head I.M., Occurrence and activity of Archaea in aerated activated sludge wastewater treatment plants, Environ. Microbiol. 4, (3), 158, 2002.10.1046/j.1462-2920.2002.00280.x12000316Search in Google Scholar

[12] Anielak A.M., Polus M., Kinetics of the sewage treatment involvin an archaea-enriched system SBR, Przemysł Chemiczny, 94/9, 1485–1487, 2015.Search in Google Scholar

[13] Anielak A.M., Żaba T., Polus M., Beńko P., Bochnia T., Łuszczek B., The effectiveness of muncipal sewage treatment with archaea in sequence biological reactors and Bardenpho systems, Przemysł Chemiczny. 95/2, 314–319, 2016.10.15199/62.2016.2.26Search in Google Scholar

[14] Limpiyakorn T., Sonthiphand P., Rongsayamanont C., Polprasert C., Abundance of amoA genes of ammonia-oxidizing archaea and bacteria in activated sludge of full-scale wastewater treatment plants, Bioresour Technol. 102, (4), 3694, 2011.10.1016/j.biortech.2010.11.08521185720Search in Google Scholar

[15] Oishi R., Hirooka K., Otawa K., Tada C., Nakai Y., Ammonia-oxidizing Archaea in laboratory-scale activated sludge systems for wastewater of low- or high-ammonium concentration, Anim Sci J. 83, (7), 571, 2012.10.1111/j.1740-0929.2011.00995.x22776796Search in Google Scholar

[16] Fredriksson N.J., Hermansson M., Wilén B.M., Diversity and dynamics of Archaea in an activated sludge wastewater treatment plant, BMC Microbiol. 12, (140), 2012, doi: 10.1186/1471-2180-12-140.10.1186/1471-2180-12-140360793222784022Search in Google Scholar

[17] Francis C.A., Roberts K.J., Beman J.M., Santoro A.E., Oakley B.B., Ubiquity and diversity of ammonia-oxidizing Archaea in water columns and sediments of the ocean, Proc. Natl. Acad. Sci. USA, 102, (41), 14683, 2005.10.1073/pnas.0506625102125357816186488Search in Google Scholar

[18] Rotthauwe J.H., Witzel K.P., Liesack W., The ammonia monooxygenase structural gene amoA as a functional marker: molecular fine-scale analysis of natural ammonia-oxidizing populations, Appl. Environ. Microbiol. 63, (12), 4704, 1997.10.1128/aem.63.12.4704-4712.19971687939406389Search in Google Scholar

[19] Delong E.F., Archaea in coastal marine environments, Proc. Natl. Acad. Sci. USA, 89, (12), 5685, 1992.10.1073/pnas.89.12.5685493571608980Search in Google Scholar

[20] Grosskopf R., Janssen P.H., Liesack W., Diversity and structure of the methanogenic community in anoxic rice paddy soil microcosms as examined by cultivation and direct 16S rRNA gene sequence retrieval, Appl. Environ. Microbiol. 64, (3), 960, 1998.10.1128/AEM.64.3.960-969.19981063529501436Search in Google Scholar

[21] Chiang Y.C., Yang C.Y., Li C., Ho Y.C., Lin C.K., Tsen H.Y., Identification of Bacillus spp., Escherichia coli, Salmonella spp., Staphylococcus spp. and Vibrio spp. with 16S ribosomal DNA-based oligonucleotide array hybridization, Int. J. Food Microbiol. 107, (2), 131, 2006.10.1016/j.ijfoodmicro.2005.04.02816386323Search in Google Scholar

[22] Van Niftrik L.A., Fuerst J.A., Sinninghe Damsté J.S., Kuenen J.G., Jetten M.S.M., Strous, M., The anammoxosome: An intracytoplasmic compartment in anammox bacteria, FEMS Microbiol. Lett. 233, 1, 2004.10.1016/j.femsle.2004.01.03515098543Search in Google Scholar

[23] Wang L., Zheng P., Chen T., Chen J., Xing Y., Ji Q., Zhang M., Zhang J., Performance of autotrophic nitrogen removal in the granular sludge bed reactor, Bioresour. Technol. 123, 78, 2012.10.1016/j.biortech.2012.07.11222940302Search in Google Scholar