Abma, W. R., Schultz C. E., Mulder J. W., van der Star W. R., Strous M.,. Tokutomi T and van Loosdrecht M. C., 2007. Full-scale granular sludge Anammox process. Water Science and Technology 55 (8-9), 27-33.
Arrigo, K.R., 2005. Marine microorganisms and global nutrient cycles. Nature 437, 349–355.
Astrid, A. van de Graaf, Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen, 1996. Autotrophic growth of anaerobic ammonium-oxidizing micro-organisms in a fluidized bed reactor. Microbiol. 142, 2187-2196.
Chamchoi, N., S. Nitisoravut, J.E. Schmidt,2008 Inactivation of ANAMMOX communities under concurrent operation of anaerobic ammonium oxidation (ANAMMOX) and denitrification, Bioresour. Technol. 99 (9),3331–3336.
Christian Fux, Marc Boehler, Philipp Huber, Irene Brunner, Hansruedi Siegrist., 2002. Biological treatment of ammonium-rich wastewater by partial nitritation and subsequent anaerobic ammonium oxidation (Anammox) in a pilot plant. Journal of Biotechnology 99(3), 295-306.
Dalsgaard, T., Bo Thamdrup, Donald E. Canfield., 2005. Anaerobic ammonium oxidation (anammox) in the marine environment. Res Microbiol 156, 457–464.
Dapena-Mora, A., I. Fernández, J.L. Campos, A. Mosquera-Corral, R. Méndez, M.S.M. Jetten, 2007. Evaluation of activity and inhibition effects on Anammox process by batch tests based on the nitrogen gas production, Enzyme Microb. Technol. 40 (4), 859–865.
Didem Güven, Ana Dapena, Boran Kartal, Markus C. Schmid, Bart Maas, Katinka van de Pas-Schoonen, Seval Sozen, Ramon Mendez, Huub J. M. Op den Camp, Mike S. M. Jetten, Marc Strous, and Ingo Schmidt., 2005. Propionate Oxidation by and Methanol Inhibition of Anaerobic Ammonium-Oxidizing Bacteria. Appl. Environ. Microbiol. 71, 1066-1071.
Dosta, J., I. Fernández, J.R. Vázquez-Padín, A. Mosquera-Corral, J.L. Campos, J. Mata-Álvarez, R. Méndez., 2008. Short- and long-term effects of temperature on the Anammox process, J. Hazard. Mater. 154 (1–3), 688–693.
Egli, K., U. Fanger, P.J.J. Alvarez, H. Siegrist, J.R. van der Meer, A.J.B. Zehnder., 2001. Enrichment and characterization of an Anammox bacterium from a rotating biological contactor treating ammonium-rich leachate, Arch. Microbiol. 175 (3),198–207.
Fernández, I., J. Dosta, C. Fajardo, J.L. Campos, A. Mosquera-Corral, R. Méndez, 2012. Short- and long-term effects of ammonium and nitrite on the Anammox process, J. Environ. Manage. 95, 170–174.
Fux, C., 2003. Biological nitrogen elimination of ammonium-rich sludge digester liquids, PhD Thesis, ETH-Zurich, Switzerland.
Green, M.B., Haberl, R. (Eds.), Constructed wetlands for wastewater treatment
Güven, D., A. Dapena, B. Kartal, M.C. Schmid, B. Maas, K. van de Pas-Schoonen, S. Sozen, R. Mendez, H.J.M. Op den Camp, M.S.M. Jetten, M. Strous, and I. Schmidt., 2005. Propionate oxidation by and methanol inhibition of anaerobic ammoniumoxidizing bacteria, Applied and Environmental Microbiology 71 (2), 1066–1071.
Hellinga, C., A.A.J.C. Schellen, J.W. Mulder, M.C.M. van Loosdrecht, J.J. Heijnen.,1998. The SHARON process: An innovative method for nitrogen removal from ammonium-rich waste water. Water Science and Technology 37(9), 135-142.
Huihui Chen, Sitong Liu, Fenglin Yang, Yuan Xue, Tao Wang., 2009. The development of simultaneous partial nitrification, ANAMMOX and denitrification (SNAD) process in a single reactor for nitrogen removal. Bioresource Technology 100, 1548–1554.
Hwang, S., K. Jang, H. Jang, J. Song, W. Bae, 2006. Factors afftcting nitrous oxide production: a comparison of biological nitrogen removal processes with partial and complete nitrification. Biodegradation 17, 19–29.
Isaka, K., T. Sumino, S. Tsuneda., 2007. High nitrogen removal performance at moderately low temperature utilizing anaerobic ammonium oxidation reactions, J. Biosci. Bioeng. 103 (5), 486–490.
Isaka, K. Y. Date, Y. Kimura, T. Sumino, S. Tsuneda, 2008. Nitrogen removal performance using anaerobic ammonium oxidation at low temperatures, FEMS Microbiol. Lett. 282 (1), 32–38.
Itokawa, H., K. Hanaki, T. Matsuo, 2001. Nitrous oxide production in high-loading biological nitrogen removal process under low COD/N ratio condition. Water Res 35(3), 657-64.
Jan Vymazal, 2007. Removal of nutrients in various types of constructed wetlands. Science of the Total Environment 380, 48-65.
Jaroszynski, L.W., N. Cicek, R. Sparling, J.A. Oleszkiewicz., 2011. Importance of the operating pH in maintaining the stability of anoxic ammonium oxidation (Anammox) activity in moving bed biofilm reactors, Bioresour. Technol. 102 (14), 7051–7056.
Jetten, M. S. M., S. Logemann, G. Muyzer, L. A. Robertson, S. deVries, M. C. M. vanLoosdrecht and J. G. Kuenen,1997. Novel principles in the microbial conversion of nitrogen compounds. Antonie Van Leeuwenhoek International. Journal of General and Molecular Microbiology 71(1-2), 75-93.
Jetten, M. S. M., M. Wagner, J. Fuerst, M. van Loosdrecht,G. Kuenen, and M. Strous, 2001. Microbiology and application of the anaerobic ammonium oxidation (‘anammox’) process. Current Opinion in Biotechnology 12(3), 283-288.
Jetten, M.S.M., O. Sliekers, M. Kuypers, T. Dalsgaard, L. van Niftrik, I. Cirpus, K. van de Pas-Schoonen, G. Lavik, B. Thamdrup, D. Le Paslier et al., 2003. Anaerobic ammonium oxidation by marine and freshwater planctomycete-like bacteria. Applied Microbiology and Biotechnology 63(2), 107-114.
Kadlec, R. H., Knight, R. L.,1996. Treatment Wetlands. Lewis Publishers, Michigan.
Kalyuzhnyia, S., M. Gladchenkoa, A. Mulderb, Bram Versprillec., 2006. DEAMOX—New biological nitrogen removal process based on anaerobic ammonia oxidation coupled to sulphide-driven conversion of nitrate into nitrite. Water Res. 40, 3637– 3645.
Kartal, B., J. Rattray, L.A. van Niftrik, J. van de Vossenberg, M.C. Schmid, R.I. Webb, et al., 2007. Candidatus ‘Anammoxoglobus propionicus’ a new propionate oxidizing species of anaerobic ammonium oxidizing bacteria. Syst. Appl. Microbiol. 30, 39–49.
Kartal, B., M. Koleva, R. Arsov, W. van der Star, M.S.M. Jetten, M. Strous., 2006. Adaptation of a freshwater Anammox population to high salinity wastewater. J. Biotechnology 126 (4), 546–553.
Keisuke Hanaki, Chalermraj Wantawin and Shinichiro Ohgaki., 1990.Nitrification at low levels of dissolved oxygen with and without organic loading in a suspended-growth reactor. Water Res. 24,297-302.
Körner, H., Zumft WG., 1989. Expression of denitrification enzymes in response to the dissolved oxygen level and respiratory substrate in continuous culture of Pseudomonas stutzeri. Appl Environ Microbiol. 55(7), 1670-6.
Kuai, L., and W. Verstraete, 1998. Ammonium removal by the oxygen-limited autotrophic nitrification-denitrification system. Applied and Environmental Microbiology 64(11), 4500-4506.
Kuypers, M. M. M., A. O. Sliekers, G. Lavik, M. Schmid, B. B. Jørgensen, J. G. Kuenen, J. S. Sinninghe Damste, M. Strous and M. S. M. Jetten., 2003. Anaerobic ammonium oxidation by anammox bacteria in the black sea.Nature 422, 608.
Lackner, S., C. Lindenblatt, H. Horn., 2012. ‘Swinging ORP’ as operation strategy for stable reject water treatment by nitritation–Anammox in sequencing batch reactors, Chem. Eng. J. 180, 190–196.
Liao Dexiang, LI Xiaoming, YANG Qi, ZENG Guangming, GUO Liang, YUE Xiu., 2008. Effect of inorganic carbon on anaerobic ammonium oxidation enriched in sequencing batch reactor, J. Environ. Sci 20 (8), 940–944.
Lindsay MR, Webb RI, Strous M, Jetten MS, Butler MK, Forde RJ, Fuerst JA., 2001. Cell compartmentalisation in planctomycetes: novel types of structural organisation for the bacterial cell. Arch Mi crobiol 175(6),413-29.
Ling Wang, Tian Li, 2011. Anaerobic ammonium oxidation in constructed wetlands with bio-contact oxidation as pretreatment. Ecological Engineering 37, 1225–1230.
Mark Poth and Dennis D. Focht, 1985. 15N Kinetic Analysis of N2O Production byNitrosomonas europaea: an Examination of Nitrifier Denitrification. Appl Environ Microbiol. 49(5), 1134–1141.
Morris Michael C., 1999. The effects of substrate particle size, depth and vegetation on ammonia removal in a vertical flow constructed wetland. In: J. Vymazal (Ed.) Nutrient Cycling and Retention in Natural and Constructed Wetlands. Backhuys Publishers, Leiden, The Netherlands, 31-40.
Mulder, A., A. A. Van de graaf, L. A. Robertson and J. G. Kuenen., 1995. Anaerobic ammonium oxidation discovered in a denitrifying fluidized-bed reactor. Fems Microbiology Ecology 16(3), 177-183.
Platzer, C., 2000. Development of Reed Bed System - a Europea Perspective. In Proceeding of 7th international conference on wetland system for water pollution control.11-16 Nov. Floria.
Quan, Z.X., S.K. Rhee, J.E. Zuo, Y. Yang, J.W. Bae, J.R. Park, et al. 2008. Diversity of ammonium-oxidizing bacteria in a granular sludge anaerobic ammonium-oxidizing (anammox) reactor. Environ Microbiol 10, 3130–3139.
Ren-Cun Jin, Guang-Feng Yang, Jin-Jin Yu, Ping Zheng., 2012. The inhibition of the Anammox process: A review. Chemical Engineering Journal 197, 67–79.
Ritchie GA, Nicholas DJ., 1972. Identification of the sources of nitrous oxide produced by oxidative and reductive processes in Nitrosomonas europaea. Biochem J 126(5), 1181-91.
Rittmann, B. E., Perry L. McCarty., 2001. Environmental Biotechnology: Principles and Applications.
Schmid, M., K. Walsh, R. Webb, W.I.C. Rijpstra, K. van de Pas-Schoonen, , M.J. Verbruggen, et al. 2003. Candidatus ‘Scalindua brodae’, sp. nov., Candidatus ‘Scalindua wagneri’, sp. nov., two new species of anaerobic ammonium oxidizing bacteria. Syst Appl Microbiol 26, 529–538.
Schmid, M., U. Twachtmann, M. Klein, M.Strous, S. Juretschko, M. Jetten, et al., 2000. Molecular evidence for genus level diversity of bacteria capable of catalyzing anaerobic ammonium oxidation. Syst Appl Microbiol 23, 93–106.
Schmidt, I, Bock E., 1997. Anaerobic ammonia oxidation with nitrogen dioxide by Nitrosomonas eutropha. Arch Microbiol 167(2-3),106-11.
Show SP, Fredine CG. 1956. Wetlands of the United States: Their Extent, and Their Value for Waterfowl and Other Wildlife. Circular 39, U.S. Fish and Wildlife Service, U.S. Department of Interior, Washington, D.C., 67.
Sitong, Liu, Fenglin Yang, Zheng Gong, Zhencheng Su.,2008. Assessment of the positive effect of salinity on the nitrogen removal performance and microbial composition during the start-up of CANON process. Applied Microbiology and Biotechnology 80(2), 339-348.
Sliekers, A.O., N. Derwort, J.L.Campos Gomez, M. Strous, J.G. Kuenena, M.S.M. Jetten, 2002. Completely autotrophic nitrogen removal over nitrite in one single reactor. Water Research 36(10), 2475-2482.
Strous, M., E. van Gerven, J. G. Kuenen and M. Jetten, 1997. Effects of aerobic and microaerobic conditions on anaerobic ammonium-oxidizing (Anammox) sludge. Applied and Environmental Microbiology 63(6), 2446-2448.
Strous, M., J. G. Kuenen and M. S. M. Jetten,1999. Key physiology of anaerobic ammonium oxidation. Applied and Environmental Microbiology 65(7), 3248-3250.
Strous, M., J. J. Heijnen, J. G. Kuenen and M. S. M. Jetten, 1998. The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms. Applied Microbiology and Biotechnology 50(5), 589-596.
Tang, C.J., P. Zheng, L. Zhang, J.W. Chen, Q. Mahmood, X.G. Chen, B.L. Hu, C.H. Wang, Y. Yu., 2010. Enrichment features of Anammox consortia from methanogenic granules loaded with high organic and methanol contents. Chemosphere 79 (6), 613–619.
Tchobanoglous, G., 1993. Constructed wetlands and aquatic plant systems: research, design, operational, and monitoring issues. In: G. A. Moshiri. (Ed.) Constructed wetlands for water quality improvement. Lewis Publishers, Boca Raton, 23-34.
Third, K. A., J. Paxman, M. Schmid, M. Strous, M. S. M. Jetten and R. Cord-Ruwisch, 2005. Enrichment of Anammox from activated sludge and its application in the CANON process. Microbial Ecology 49(2), 236-244.
Third, K. A., Sliekers A. O., Kuenen J. G. and Jetten M. S.,2001. The CANON system (completely autotrophic nitrogen-removal over nitrite) under ammonium limitation: Interaction and competition between three groups of bacteria. Systematic and Applied Microbiology 24(4), 588-596.
Tsushima, I., Tomonori Kindaichi, Satoshi Okabe, 2007. Quantification of anaerobic ammonium-oxidizing bacteria in enrichment cultures by real-time PCR. Water srsearch 41, 785–794.
Van de Graaf, A. A., A. Mulder, H. Slijkhuis, L. A. Robertson and J. G. Kuenen, 1990. anoxic ammonium oxidation. In: Proc. 5th European Congress on Biotechnology 1, 388-391.
Van de Graaf, A.A., Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen, 1997. Metabolic pathway of anaerobic ammonium oxidation on the basis of 15N studies in a fluidized bed reactor. Microbiology 143, 2415-2421.
Van de Graaf, A.A., Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen., 1996. Autotrophic growth of anaerobic ammonium-oxidizing micro-organisms in a fluidized bed reactor. Microbiology 142 (8), 2187–2196.
Van Hulle, S.W.H., H.J.P. Vandeweyer, B.D. Meesschaert, P.A. Vanrolleghem, P. Dejans, A. Dumoulin, 2010. Engineering aspects and practical application of autotrophic nitrogen removal from nitrogen rich streams, Chem. Eng. J. 162 (1), 1–20.
Volker Luederitz, Elke Eckert, Martina Lange-Weber, Andreas Lange, Richard M. Gersberg, 2001. Nutrient removal efficiency and resource economics of vertical flow and horizontal flow constructed wetlands. Ecological Engineering 18, 157–171.
Vymazal, J., Brix, H., Cooper, P.F., Haberl, R., Perfler, R., Laber, J., 1998. Removal mechanisms and types of constructed wetlands. In: Vymazal, J., Brix, H., Cooper, P.F.,
Wang Jianlong, Kang Jing., 2005. The characteristics of anaerobic ammonium oxidation (ANAMMOX) by granular sludge from an EGSB reactor. Process Biochem. 40, 1973–1978.
Wang, C. C., P. H. Lee, M. Kumar, Y. T. Huang, S. W. Sung and J. G. Lin., 2010. Simultaneous partial nitrification, anaerobic ammonium oxidation and denitrification (SNAD) in a full-scale landfill-leachate treatment plant. Journal of Hazardous Materials175(1-3), 622-628.
Wang, J., Kang, J., 2005. The characteristics of anaerobic ammonium oxidation (ANAMMOX) by granular sludge from an EGSB reactor. Process Biochem. 40, 1973–1978.
Watson, J.T., Reed, S.C., Kadlec, R.H., Knight, R.L., Whitehouse, S.E. 1989. “Performance expectations and loading rates for constructed wetlands.” In: Hammer, D.A. (Ed.), Constructed wetlands for wastewater treatment.municipal, industrial and agricultural. Lewis Publishers, Chelsea, 319-358.
Wendong Tao, Jing Wang, 2009. Effects of vegetation, limestone and aeration on nitritation, anammox and denitrification in wetland treatment systems. ecological engineering 3 5, 836–842.
Wett, B., 2007. Development and implementation of a robust deammonification process. Water Science and Technology 56(7), 81-88.
Winkler, M.K.H., R. Kleerebezem, M.C.M. van Loosdrecht., 2012. Integration of anammox into the aerobic granular sludge process for main stream wastewater treatment at ambient temperatures. Water research 46, 136-144.
Wouter, R.L. van der Star, Wiebe R. Abma, Dennis Blommers, Jan-Willem Mulder, Takaaki Tokutomi, Marc Strous, Cristian Picioreanu,and Mark C.M. van Loosdrecht, 2007. Startup of reactors for anoxic ammonium oxidation: experiences from the first full-scale anammox reactor in Rotterdam. Water Research 41, 4149 – 4163.
Wrage,N., G.L. Velthof, M.L. van Beusichem, O. Oenema, 2001. Role of nitrifier denitrification in the production of nitrous oxide. Soil Biol. Biochem. 33,1723-1732.
Zeqin Dong, Tieheng Sun, 2007. A potential new process for improving nitrogen removal in constructed wetlands—Promoting coexistence of partial-nitrification and ANAMMOX. Ecologicalengineering 31, 69–78.
Zheng Gong, Fenglin Yang, Sitong Liu, Han Bao, Shaowei Hu, Kenji Furukawa, 2007. Feasibility of a membrane-aerated biofilm reactor to achieve single-stage autotrophic nitrogen removal based on Anammox. Chemosphere 69, 776–784.
于立平,1997,濕地公源規劃策略之研究-以高雄縣鳥松濕地公園為例,國立中山大學海洋環境及工程學系,碩士論文。江純安,紅樹林於鹹水型人工濕地對污染物去除效率之研究,國立臺灣大學環境工程學研究所,碩士論文。吳振斌,2011,水生植物與水體生態修復,科學出版社。
吳振斌,成水平,賀鋒,梁威,周巧紅,徐棟,2008,複合垂直流人工濕地,科學出版社。
吳祚樟,2007,固定化細胞進行部分硝化與厭氧氨氧化程序之可行性評估,國立臺灣大學環境工程學研究所,碩士論文。林志高(2011.11),新穎厭氧氨氧化技術發展及應用,發表於「2011年科學工業園區廠務技術研討會」。
Abma, W. R., Schultz C. E., Mulder J. W., van der Star W. R., Strous M.,. Tokutomi T and van Loosdrecht M. C., 2007. Full-scale granular sludge Anammox process. Water Science and Technology 55 (8-9), 27-33.
Arrigo, K.R., 2005. Marine microorganisms and global nutrient cycles. Nature 437, 349–355.
Astrid, A. van de Graaf, Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen, 1996. Autotrophic growth of anaerobic ammonium-oxidizing micro-organisms in a fluidized bed reactor. Microbiol. 142, 2187-2196.
Chamchoi, N., S. Nitisoravut, J.E. Schmidt,2008 Inactivation of ANAMMOX communities under concurrent operation of anaerobic ammonium oxidation (ANAMMOX) and denitrification, Bioresour. Technol. 99 (9),3331–3336.
Christian Fux, Marc Boehler, Philipp Huber, Irene Brunner, Hansruedi Siegrist., 2002. Biological treatment of ammonium-rich wastewater by partial nitritation and subsequent anaerobic ammonium oxidation (Anammox) in a pilot plant. Journal of Biotechnology 99(3), 295-306.
Dalsgaard, T., Bo Thamdrup, Donald E. Canfield., 2005. Anaerobic ammonium oxidation (anammox) in the marine environment. Res Microbiol 156, 457–464.
Dapena-Mora, A., I. Fernández, J.L. Campos, A. Mosquera-Corral, R. Méndez, M.S.M. Jetten, 2007. Evaluation of activity and inhibition effects on Anammox process by batch tests based on the nitrogen gas production, Enzyme Microb. Technol. 40 (4), 859–865.
Didem Güven, Ana Dapena, Boran Kartal, Markus C. Schmid, Bart Maas, Katinka van de Pas-Schoonen, Seval Sozen, Ramon Mendez, Huub J. M. Op den Camp, Mike S. M. Jetten, Marc Strous, and Ingo Schmidt., 2005. Propionate Oxidation by and Methanol Inhibition of Anaerobic Ammonium-Oxidizing Bacteria. Appl. Environ. Microbiol. 71, 1066-1071.
Dosta, J., I. Fernández, J.R. Vázquez-Padín, A. Mosquera-Corral, J.L. Campos, J. Mata-Álvarez, R. Méndez., 2008. Short- and long-term effects of temperature on the Anammox process, J. Hazard. Mater. 154 (1–3), 688–693.
Egli, K., U. Fanger, P.J.J. Alvarez, H. Siegrist, J.R. van der Meer, A.J.B. Zehnder., 2001. Enrichment and characterization of an Anammox bacterium from a rotating biological contactor treating ammonium-rich leachate, Arch. Microbiol. 175 (3),198–207.
Fernández, I., J. Dosta, C. Fajardo, J.L. Campos, A. Mosquera-Corral, R. Méndez, 2012. Short- and long-term effects of ammonium and nitrite on the Anammox process, J. Environ. Manage. 95, 170–174.
Fux, C., 2003. Biological nitrogen elimination of ammonium-rich sludge digester liquids, PhD Thesis, ETH-Zurich, Switzerland.
Green, M.B., Haberl, R. (Eds.), Constructed wetlands for wastewater treatment
Güven, D., A. Dapena, B. Kartal, M.C. Schmid, B. Maas, K. van de Pas-Schoonen, S. Sozen, R. Mendez, H.J.M. Op den Camp, M.S.M. Jetten, M. Strous, and I. Schmidt., 2005. Propionate oxidation by and methanol inhibition of anaerobic ammoniumoxidizing bacteria, Applied and Environmental Microbiology 71 (2), 1066–1071.
Hellinga, C., A.A.J.C. Schellen, J.W. Mulder, M.C.M. van Loosdrecht, J.J. Heijnen.,1998. The SHARON process: An innovative method for nitrogen removal from ammonium-rich waste water. Water Science and Technology 37(9), 135-142.
Huihui Chen, Sitong Liu, Fenglin Yang, Yuan Xue, Tao Wang., 2009. The development of simultaneous partial nitrification, ANAMMOX and denitrification (SNAD) process in a single reactor for nitrogen removal. Bioresource Technology 100, 1548–1554.
Hwang, S., K. Jang, H. Jang, J. Song, W. Bae, 2006. Factors afftcting nitrous oxide production: a comparison of biological nitrogen removal processes with partial and complete nitrification. Biodegradation 17, 19–29.
Isaka, K., T. Sumino, S. Tsuneda., 2007. High nitrogen removal performance at moderately low temperature utilizing anaerobic ammonium oxidation reactions, J. Biosci. Bioeng. 103 (5), 486–490.
Isaka, K. Y. Date, Y. Kimura, T. Sumino, S. Tsuneda, 2008. Nitrogen removal performance using anaerobic ammonium oxidation at low temperatures, FEMS Microbiol. Lett. 282 (1), 32–38.
Itokawa, H., K. Hanaki, T. Matsuo, 2001. Nitrous oxide production in high-loading biological nitrogen removal process under low COD/N ratio condition. Water Res 35(3), 657-64.
Jan Vymazal, 2007. Removal of nutrients in various types of constructed wetlands. Science of the Total Environment 380, 48-65.
Jaroszynski, L.W., N. Cicek, R. Sparling, J.A. Oleszkiewicz., 2011. Importance of the operating pH in maintaining the stability of anoxic ammonium oxidation (Anammox) activity in moving bed biofilm reactors, Bioresour. Technol. 102 (14), 7051–7056.
Jetten, M. S. M., S. Logemann, G. Muyzer, L. A. Robertson, S. deVries, M. C. M. vanLoosdrecht and J. G. Kuenen,1997. Novel principles in the microbial conversion of nitrogen compounds. Antonie Van Leeuwenhoek International. Journal of General and Molecular Microbiology 71(1-2), 75-93.
Jetten, M. S. M., M. Wagner, J. Fuerst, M. van Loosdrecht,G. Kuenen, and M. Strous, 2001. Microbiology and application of the anaerobic ammonium oxidation (‘anammox’) process. Current Opinion in Biotechnology 12(3), 283-288.
Jetten, M.S.M., O. Sliekers, M. Kuypers, T. Dalsgaard, L. van Niftrik, I. Cirpus, K. van de Pas-Schoonen, G. Lavik, B. Thamdrup, D. Le Paslier et al., 2003. Anaerobic ammonium oxidation by marine and freshwater planctomycete-like bacteria. Applied Microbiology and Biotechnology 63(2), 107-114.
Kadlec, R. H., Knight, R. L.,1996. Treatment Wetlands. Lewis Publishers, Michigan.
Kalyuzhnyia, S., M. Gladchenkoa, A. Mulderb, Bram Versprillec., 2006. DEAMOX—New biological nitrogen removal process based on anaerobic ammonia oxidation coupled to sulphide-driven conversion of nitrate into nitrite. Water Res. 40, 3637– 3645.
Kartal, B., J. Rattray, L.A. van Niftrik, J. van de Vossenberg, M.C. Schmid, R.I. Webb, et al., 2007. Candidatus ‘Anammoxoglobus propionicus’ a new propionate oxidizing species of anaerobic ammonium oxidizing bacteria. Syst. Appl. Microbiol. 30, 39–49.
Kartal, B., M. Koleva, R. Arsov, W. van der Star, M.S.M. Jetten, M. Strous., 2006. Adaptation of a freshwater Anammox population to high salinity wastewater. J. Biotechnology 126 (4), 546–553.
Keisuke Hanaki, Chalermraj Wantawin and Shinichiro Ohgaki., 1990.Nitrification at low levels of dissolved oxygen with and without organic loading in a suspended-growth reactor. Water Res. 24,297-302.
Körner, H., Zumft WG., 1989. Expression of denitrification enzymes in response to the dissolved oxygen level and respiratory substrate in continuous culture of Pseudomonas stutzeri. Appl Environ Microbiol. 55(7), 1670-6.
Kuai, L., and W. Verstraete, 1998. Ammonium removal by the oxygen-limited autotrophic nitrification-denitrification system. Applied and Environmental Microbiology 64(11), 4500-4506.
Kuypers, M. M. M., A. O. Sliekers, G. Lavik, M. Schmid, B. B. Jørgensen, J. G. Kuenen, J. S. Sinninghe Damste, M. Strous and M. S. M. Jetten., 2003. Anaerobic ammonium oxidation by anammox bacteria in the black sea.Nature 422, 608.
Lackner, S., C. Lindenblatt, H. Horn., 2012. ‘Swinging ORP’ as operation strategy for stable reject water treatment by nitritation–Anammox in sequencing batch reactors, Chem. Eng. J. 180, 190–196.
Liao Dexiang, LI Xiaoming, YANG Qi, ZENG Guangming, GUO Liang, YUE Xiu., 2008. Effect of inorganic carbon on anaerobic ammonium oxidation enriched in sequencing batch reactor, J. Environ. Sci 20 (8), 940–944.
Lindsay MR, Webb RI, Strous M, Jetten MS, Butler MK, Forde RJ, Fuerst JA., 2001. Cell compartmentalisation in planctomycetes: novel types of structural organisation for the bacterial cell. Arch Mi crobiol 175(6),413-29.
Ling Wang, Tian Li, 2011. Anaerobic ammonium oxidation in constructed wetlands with bio-contact oxidation as pretreatment. Ecological Engineering 37, 1225–1230.
Mark Poth and Dennis D. Focht, 1985. 15N Kinetic Analysis of N2O Production byNitrosomonas europaea: an Examination of Nitrifier Denitrification. Appl Environ Microbiol. 49(5), 1134–1141.
Morris Michael C., 1999. The effects of substrate particle size, depth and vegetation on ammonia removal in a vertical flow constructed wetland. In: J. Vymazal (Ed.) Nutrient Cycling and Retention in Natural and Constructed Wetlands. Backhuys Publishers, Leiden, The Netherlands, 31-40.
Mulder, A., A. A. Van de graaf, L. A. Robertson and J. G. Kuenen., 1995. Anaerobic ammonium oxidation discovered in a denitrifying fluidized-bed reactor. Fems Microbiology Ecology 16(3), 177-183.
Platzer, C., 2000. Development of Reed Bed System - a Europea Perspective. In Proceeding of 7th international conference on wetland system for water pollution control.11-16 Nov. Floria.
Quan, Z.X., S.K. Rhee, J.E. Zuo, Y. Yang, J.W. Bae, J.R. Park, et al. 2008. Diversity of ammonium-oxidizing bacteria in a granular sludge anaerobic ammonium-oxidizing (anammox) reactor. Environ Microbiol 10, 3130–3139.
Ren-Cun Jin, Guang-Feng Yang, Jin-Jin Yu, Ping Zheng., 2012. The inhibition of the Anammox process: A review. Chemical Engineering Journal 197, 67–79.
Ritchie GA, Nicholas DJ., 1972. Identification of the sources of nitrous oxide produced by oxidative and reductive processes in Nitrosomonas europaea. Biochem J 126(5), 1181-91.
Rittmann, B. E., Perry L. McCarty., 2001. Environmental Biotechnology: Principles and Applications.
Schmid, M., K. Walsh, R. Webb, W.I.C. Rijpstra, K. van de Pas-Schoonen, , M.J. Verbruggen, et al. 2003. Candidatus ‘Scalindua brodae’, sp. nov., Candidatus ‘Scalindua wagneri’, sp. nov., two new species of anaerobic ammonium oxidizing bacteria. Syst Appl Microbiol 26, 529–538.
Schmid, M., U. Twachtmann, M. Klein, M.Strous, S. Juretschko, M. Jetten, et al., 2000. Molecular evidence for genus level diversity of bacteria capable of catalyzing anaerobic ammonium oxidation. Syst Appl Microbiol 23, 93–106.
Schmidt, I, Bock E., 1997. Anaerobic ammonia oxidation with nitrogen dioxide by Nitrosomonas eutropha. Arch Microbiol 167(2-3),106-11.
Show SP, Fredine CG. 1956. Wetlands of the United States: Their Extent, and Their Value for Waterfowl and Other Wildlife. Circular 39, U.S. Fish and Wildlife Service, U.S. Department of Interior, Washington, D.C., 67.
Sitong, Liu, Fenglin Yang, Zheng Gong, Zhencheng Su.,2008. Assessment of the positive effect of salinity on the nitrogen removal performance and microbial composition during the start-up of CANON process. Applied Microbiology and Biotechnology 80(2), 339-348.
Sliekers, A.O., N. Derwort, J.L.Campos Gomez, M. Strous, J.G. Kuenena, M.S.M. Jetten, 2002. Completely autotrophic nitrogen removal over nitrite in one single reactor. Water Research 36(10), 2475-2482.
Strous, M., E. van Gerven, J. G. Kuenen and M. Jetten, 1997. Effects of aerobic and microaerobic conditions on anaerobic ammonium-oxidizing (Anammox) sludge. Applied and Environmental Microbiology 63(6), 2446-2448.
Strous, M., J. G. Kuenen and M. S. M. Jetten,1999. Key physiology of anaerobic ammonium oxidation. Applied and Environmental Microbiology 65(7), 3248-3250.
Strous, M., J. J. Heijnen, J. G. Kuenen and M. S. M. Jetten, 1998. The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms. Applied Microbiology and Biotechnology 50(5), 589-596.
Tang, C.J., P. Zheng, L. Zhang, J.W. Chen, Q. Mahmood, X.G. Chen, B.L. Hu, C.H. Wang, Y. Yu., 2010. Enrichment features of Anammox consortia from methanogenic granules loaded with high organic and methanol contents. Chemosphere 79 (6), 613–619.
Tchobanoglous, G., 1993. Constructed wetlands and aquatic plant systems: research, design, operational, and monitoring issues. In: G. A. Moshiri. (Ed.) Constructed wetlands for water quality improvement. Lewis Publishers, Boca Raton, 23-34.
Third, K. A., J. Paxman, M. Schmid, M. Strous, M. S. M. Jetten and R. Cord-Ruwisch, 2005. Enrichment of Anammox from activated sludge and its application in the CANON process. Microbial Ecology 49(2), 236-244.
Third, K. A., Sliekers A. O., Kuenen J. G. and Jetten M. S.,2001. The CANON system (completely autotrophic nitrogen-removal over nitrite) under ammonium limitation: Interaction and competition between three groups of bacteria. Systematic and Applied Microbiology 24(4), 588-596.
Tsushima, I., Tomonori Kindaichi, Satoshi Okabe, 2007. Quantification of anaerobic ammonium-oxidizing bacteria in enrichment cultures by real-time PCR. Water srsearch 41, 785–794.
Van de Graaf, A. A., A. Mulder, H. Slijkhuis, L. A. Robertson and J. G. Kuenen, 1990. anoxic ammonium oxidation. In: Proc. 5th European Congress on Biotechnology 1, 388-391.
Van de Graaf, A.A., Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen, 1997. Metabolic pathway of anaerobic ammonium oxidation on the basis of 15N studies in a fluidized bed reactor. Microbiology 143, 2415-2421.
Van de Graaf, A.A., Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen., 1996. Autotrophic growth of anaerobic ammonium-oxidizing micro-organisms in a fluidized bed reactor. Microbiology 142 (8), 2187–2196.
Van Hulle, S.W.H., H.J.P. Vandeweyer, B.D. Meesschaert, P.A. Vanrolleghem, P. Dejans, A. Dumoulin, 2010. Engineering aspects and practical application of autotrophic nitrogen removal from nitrogen rich streams, Chem. Eng. J. 162 (1), 1–20.
Volker Luederitz, Elke Eckert, Martina Lange-Weber, Andreas Lange, Richard M. Gersberg, 2001. Nutrient removal efficiency and resource economics of vertical flow and horizontal flow constructed wetlands. Ecological Engineering 18, 157–171.
Vymazal, J., Brix, H., Cooper, P.F., Haberl, R., Perfler, R., Laber, J., 1998. Removal mechanisms and types of constructed wetlands. In: Vymazal, J., Brix, H., Cooper, P.F.,
Wang Jianlong, Kang Jing., 2005. The characteristics of anaerobic ammonium oxidation (ANAMMOX) by granular sludge from an EGSB reactor. Process Biochem. 40, 1973–1978.
Wang, C. C., P. H. Lee, M. Kumar, Y. T. Huang, S. W. Sung and J. G. Lin., 2010. Simultaneous partial nitrification, anaerobic ammonium oxidation and denitrification (SNAD) in a full-scale landfill-leachate treatment plant. Journal of Hazardous Materials175(1-3), 622-628.
Wang, J., Kang, J., 2005. The characteristics of anaerobic ammonium oxidation (ANAMMOX) by granular sludge from an EGSB reactor. Process Biochem. 40, 1973–1978.
Watson, J.T., Reed, S.C., Kadlec, R.H., Knight, R.L., Whitehouse, S.E. 1989. “Performance expectations and loading rates for constructed wetlands.” In: Hammer, D.A. (Ed.), Constructed wetlands for wastewater treatment.municipal, industrial and agricultural. Lewis Publishers, Chelsea, 319-358.
Wendong Tao, Jing Wang, 2009. Effects of vegetation, limestone and aeration on nitritation, anammox and denitrification in wetland treatment systems. ecological engineering 3 5, 836–842.
Wett, B., 2007. Development and implementation of a robust deammonification process. Water Science and Technology 56(7), 81-88.
Winkler, M.K.H., R. Kleerebezem, M.C.M. van Loosdrecht., 2012. Integration of anammox into the aerobic granular sludge process for main stream wastewater treatment at ambient temperatures. Water research 46, 136-144.
Wouter, R.L. van der Star, Wiebe R. Abma, Dennis Blommers, Jan-Willem Mulder, Takaaki Tokutomi, Marc Strous, Cristian Picioreanu,and Mark C.M. van Loosdrecht, 2007. Startup of reactors for anoxic ammonium oxidation: experiences from the first full-scale anammox reactor in Rotterdam. Water Research 41, 4149 – 4163.
Wrage,N., G.L. Velthof, M.L. van Beusichem, O. Oenema, 2001. Role of nitrifier denitrification in the production of nitrous oxide. Soil Biol. Biochem. 33,1723-1732.
Zeqin Dong, Tieheng Sun, 2007. A potential new process for improving nitrogen removal in constructed wetlands—Promoting coexistence of partial-nitrification and ANAMMOX. Ecologicalengineering 31, 69–78.
Zheng Gong, Fenglin Yang, Sitong Liu, Han Bao, Shaowei Hu, Kenji Furukawa, 2007. Feasibility of a membrane-aerated biofilm reactor to achieve single-stage autotrophic nitrogen removal based on Anammox. Chemosphere 69, 776–784.
于立平,1997,濕地公源規劃策略之研究-以高雄縣鳥松濕地公園為例,國立中山大學海洋環境及工程學系,碩士論文。江純安,紅樹林於鹹水型人工濕地對污染物去除效率之研究,國立臺灣大學環境工程學研究所,碩士論文。吳振斌,2011,水生植物與水體生態修復,科學出版社。
吳振斌,成水平,賀鋒,梁威,周巧紅,徐棟,2008,複合垂直流人工濕地,科學出版社。
吳祚樟,2007,固定化細胞進行部分硝化與厭氧氨氧化程序之可行性評估,國立臺灣大學環境工程學研究所,碩士論文。林志高(2011.11),新穎厭氧氨氧化技術發展及應用,發表於「2011年科學工業園區廠務技術研討會」。
Abma, W. R., Schultz C. E., Mulder J. W., van der Star W. R., Strous M.,. Tokutomi T and van Loosdrecht M. C., 2007. Full-scale granular sludge Anammox process. Water Science and Technology 55 (8-9), 27-33.
Arrigo, K.R., 2005. Marine microorganisms and global nutrient cycles. Nature 437, 349–355.
Astrid, A. van de Graaf, Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen, 1996. Autotrophic growth of anaerobic ammonium-oxidizing micro-organisms in a fluidized bed reactor. Microbiol. 142, 2187-2196.
Chamchoi, N., S. Nitisoravut, J.E. Schmidt,2008 Inactivation of ANAMMOX communities under concurrent operation of anaerobic ammonium oxidation (ANAMMOX) and denitrification, Bioresour. Technol. 99 (9),3331–3336.
Christian Fux, Marc Boehler, Philipp Huber, Irene Brunner, Hansruedi Siegrist., 2002. Biological treatment of ammonium-rich wastewater by partial nitritation and subsequent anaerobic ammonium oxidation (Anammox) in a pilot plant. Journal of Biotechnology 99(3), 295-306.
Dalsgaard, T., Bo Thamdrup, Donald E. Canfield., 2005. Anaerobic ammonium oxidation (anammox) in the marine environment. Res Microbiol 156, 457–464.
Dapena-Mora, A., I. Fernández, J.L. Campos, A. Mosquera-Corral, R. Méndez, M.S.M. Jetten, 2007. Evaluation of activity and inhibition effects on Anammox process by batch tests based on the nitrogen gas production, Enzyme Microb. Technol. 40 (4), 859–865.
Didem Güven, Ana Dapena, Boran Kartal, Markus C. Schmid, Bart Maas, Katinka van de Pas-Schoonen, Seval Sozen, Ramon Mendez, Huub J. M. Op den Camp, Mike S. M. Jetten, Marc Strous, and Ingo Schmidt., 2005. Propionate Oxidation by and Methanol Inhibition of Anaerobic Ammonium-Oxidizing Bacteria. Appl. Environ. Microbiol. 71, 1066-1071.
Dosta, J., I. Fernández, J.R. Vázquez-Padín, A. Mosquera-Corral, J.L. Campos, J. Mata-Álvarez, R. Méndez., 2008. Short- and long-term effects of temperature on the Anammox process, J. Hazard. Mater. 154 (1–3), 688–693.
Egli, K., U. Fanger, P.J.J. Alvarez, H. Siegrist, J.R. van der Meer, A.J.B. Zehnder., 2001. Enrichment and characterization of an Anammox bacterium from a rotating biological contactor treating ammonium-rich leachate, Arch. Microbiol. 175 (3),198–207.
Fernández, I., J. Dosta, C. Fajardo, J.L. Campos, A. Mosquera-Corral, R. Méndez, 2012. Short- and long-term effects of ammonium and nitrite on the Anammox process, J. Environ. Manage. 95, 170–174.
Fux, C., 2003. Biological nitrogen elimination of ammonium-rich sludge digester liquids, PhD Thesis, ETH-Zurich, Switzerland.
Green, M.B., Haberl, R. (Eds.), Constructed wetlands for wastewater treatment
Güven, D., A. Dapena, B. Kartal, M.C. Schmid, B. Maas, K. van de Pas-Schoonen, S. Sozen, R. Mendez, H.J.M. Op den Camp, M.S.M. Jetten, M. Strous, and I. Schmidt., 2005. Propionate oxidation by and methanol inhibition of anaerobic ammoniumoxidizing bacteria, Applied and Environmental Microbiology 71 (2), 1066–1071.
Hellinga, C., A.A.J.C. Schellen, J.W. Mulder, M.C.M. van Loosdrecht, J.J. Heijnen.,1998. The SHARON process: An innovative method for nitrogen removal from ammonium-rich waste water. Water Science and Technology 37(9), 135-142.
Huihui Chen, Sitong Liu, Fenglin Yang, Yuan Xue, Tao Wang., 2009. The development of simultaneous partial nitrification, ANAMMOX and denitrification (SNAD) process in a single reactor for nitrogen removal. Bioresource Technology 100, 1548–1554.
Hwang, S., K. Jang, H. Jang, J. Song, W. Bae, 2006. Factors afftcting nitrous oxide production: a comparison of biological nitrogen removal processes with partial and complete nitrification. Biodegradation 17, 19–29.
Isaka, K., T. Sumino, S. Tsuneda., 2007. High nitrogen removal performance at moderately low temperature utilizing anaerobic ammonium oxidation reactions, J. Biosci. Bioeng. 103 (5), 486–490.
Isaka, K. Y. Date, Y. Kimura, T. Sumino, S. Tsuneda, 2008. Nitrogen removal performance using anaerobic ammonium oxidation at low temperatures, FEMS Microbiol. Lett. 282 (1), 32–38.
Itokawa, H., K. Hanaki, T. Matsuo, 2001. Nitrous oxide production in high-loading biological nitrogen removal process under low COD/N ratio condition. Water Res 35(3), 657-64.
Jan Vymazal, 2007. Removal of nutrients in various types of constructed wetlands. Science of the Total Environment 380, 48-65.
Jaroszynski, L.W., N. Cicek, R. Sparling, J.A. Oleszkiewicz., 2011. Importance of the operating pH in maintaining the stability of anoxic ammonium oxidation (Anammox) activity in moving bed biofilm reactors, Bioresour. Technol. 102 (14), 7051–7056.
Jetten, M. S. M., S. Logemann, G. Muyzer, L. A. Robertson, S. deVries, M. C. M. vanLoosdrecht and J. G. Kuenen,1997. Novel principles in the microbial conversion of nitrogen compounds. Antonie Van Leeuwenhoek International. Journal of General and Molecular Microbiology 71(1-2), 75-93.
Jetten, M. S. M., M. Wagner, J. Fuerst, M. van Loosdrecht,G. Kuenen, and M. Strous, 2001. Microbiology and application of the anaerobic ammonium oxidation (‘anammox’) process. Current Opinion in Biotechnology 12(3), 283-288.
Jetten, M.S.M., O. Sliekers, M. Kuypers, T. Dalsgaard, L. van Niftrik, I. Cirpus, K. van de Pas-Schoonen, G. Lavik, B. Thamdrup, D. Le Paslier et al., 2003. Anaerobic ammonium oxidation by marine and freshwater planctomycete-like bacteria. Applied Microbiology and Biotechnology 63(2), 107-114.
Kadlec, R. H., Knight, R. L.,1996. Treatment Wetlands. Lewis Publishers, Michigan.
Kalyuzhnyia, S., M. Gladchenkoa, A. Mulderb, Bram Versprillec., 2006. DEAMOX—New biological nitrogen removal process based on anaerobic ammonia oxidation coupled to sulphide-driven conversion of nitrate into nitrite. Water Res. 40, 3637– 3645.
Kartal, B., J. Rattray, L.A. van Niftrik, J. van de Vossenberg, M.C. Schmid, R.I. Webb, et al., 2007. Candidatus ‘Anammoxoglobus propionicus’ a new propionate oxidizing species of anaerobic ammonium oxidizing bacteria. Syst. Appl. Microbiol. 30, 39–49.
Kartal, B., M. Koleva, R. Arsov, W. van der Star, M.S.M. Jetten, M. Strous., 2006. Adaptation of a freshwater Anammox population to high salinity wastewater. J. Biotechnology 126 (4), 546–553.
Keisuke Hanaki, Chalermraj Wantawin and Shinichiro Ohgaki., 1990.Nitrification at low levels of dissolved oxygen with and without organic loading in a suspended-growth reactor. Water Res. 24,297-302.
Körner, H., Zumft WG., 1989. Expression of denitrification enzymes in response to the dissolved oxygen level and respiratory substrate in continuous culture of Pseudomonas stutzeri. Appl Environ Microbiol. 55(7), 1670-6.
Kuai, L., and W. Verstraete, 1998. Ammonium removal by the oxygen-limited autotrophic nitrification-denitrification system. Applied and Environmental Microbiology 64(11), 4500-4506.
Kuypers, M. M. M., A. O. Sliekers, G. Lavik, M. Schmid, B. B. Jørgensen, J. G. Kuenen, J. S. Sinninghe Damste, M. Strous and M. S. M. Jetten., 2003. Anaerobic ammonium oxidation by anammox bacteria in the black sea.Nature 422, 608.
Lackner, S., C. Lindenblatt, H. Horn., 2012. ‘Swinging ORP’ as operation strategy for stable reject water treatment by nitritation–Anammox in sequencing batch reactors, Chem. Eng. J. 180, 190–196.
Liao Dexiang, LI Xiaoming, YANG Qi, ZENG Guangming, GUO Liang, YUE Xiu., 2008. Effect of inorganic carbon on anaerobic ammonium oxidation enriched in sequencing batch reactor, J. Environ. Sci 20 (8), 940–944.
Lindsay MR, Webb RI, Strous M, Jetten MS, Butler MK, Forde RJ, Fuerst JA., 2001. Cell compartmentalisation in planctomycetes: novel types of structural organisation for the bacterial cell. Arch Mi crobiol 175(6),413-29.
Ling Wang, Tian Li, 2011. Anaerobic ammonium oxidation in constructed wetlands with bio-contact oxidation as pretreatment. Ecological Engineering 37, 1225–1230.
Mark Poth and Dennis D. Focht, 1985. 15N Kinetic Analysis of N2O Production byNitrosomonas europaea: an Examination of Nitrifier Denitrification. Appl Environ Microbiol. 49(5), 1134–1141.
Morris Michael C., 1999. The effects of substrate particle size, depth and vegetation on ammonia removal in a vertical flow constructed wetland. In: J. Vymazal (Ed.) Nutrient Cycling and Retention in Natural and Constructed Wetlands. Backhuys Publishers, Leiden, The Netherlands, 31-40.
Mulder, A., A. A. Van de graaf, L. A. Robertson and J. G. Kuenen., 1995. Anaerobic ammonium oxidation discovered in a denitrifying fluidized-bed reactor. Fems Microbiology Ecology 16(3), 177-183.
Platzer, C., 2000. Development of Reed Bed System - a Europea Perspective. In Proceeding of 7th international conference on wetland system for water pollution control.11-16 Nov. Floria.
Quan, Z.X., S.K. Rhee, J.E. Zuo, Y. Yang, J.W. Bae, J.R. Park, et al. 2008. Diversity of ammonium-oxidizing bacteria in a granular sludge anaerobic ammonium-oxidizing (anammox) reactor. Environ Microbiol 10, 3130–3139.
Ren-Cun Jin, Guang-Feng Yang, Jin-Jin Yu, Ping Zheng., 2012. The inhibition of the Anammox process: A review. Chemical Engineering Journal 197, 67–79.
Ritchie GA, Nicholas DJ., 1972. Identification of the sources of nitrous oxide produced by oxidative and reductive processes in Nitrosomonas europaea. Biochem J 126(5), 1181-91.
Rittmann, B. E., Perry L. McCarty., 2001. Environmental Biotechnology: Principles and Applications.
Schmid, M., K. Walsh, R. Webb, W.I.C. Rijpstra, K. van de Pas-Schoonen, , M.J. Verbruggen, et al. 2003. Candidatus ‘Scalindua brodae’, sp. nov., Candidatus ‘Scalindua wagneri’, sp. nov., two new species of anaerobic ammonium oxidizing bacteria. Syst Appl Microbiol 26, 529–538.
Schmid, M., U. Twachtmann, M. Klein, M.Strous, S. Juretschko, M. Jetten, et al., 2000. Molecular evidence for genus level diversity of bacteria capable of catalyzing anaerobic ammonium oxidation. Syst Appl Microbiol 23, 93–106.
Schmidt, I, Bock E., 1997. Anaerobic ammonia oxidation with nitrogen dioxide by Nitrosomonas eutropha. Arch Microbiol 167(2-3),106-11.
Show SP, Fredine CG. 1956. Wetlands of the United States: Their Extent, and Their Value for Waterfowl and Other Wildlife. Circular 39, U.S. Fish and Wildlife Service, U.S. Department of Interior, Washington, D.C., 67.
Sitong, Liu, Fenglin Yang, Zheng Gong, Zhencheng Su.,2008. Assessment of the positive effect of salinity on the nitrogen removal performance and microbial composition during the start-up of CANON process. Applied Microbiology and Biotechnology 80(2), 339-348.
Sliekers, A.O., N. Derwort, J.L.Campos Gomez, M. Strous, J.G. Kuenena, M.S.M. Jetten, 2002. Completely autotrophic nitrogen removal over nitrite in one single reactor. Water Research 36(10), 2475-2482.
Strous, M., E. van Gerven, J. G. Kuenen and M. Jetten, 1997. Effects of aerobic and microaerobic conditions on anaerobic ammonium-oxidizing (Anammox) sludge. Applied and Environmental Microbiology 63(6), 2446-2448.
Strous, M., J. G. Kuenen and M. S. M. Jetten,1999. Key physiology of anaerobic ammonium oxidation. Applied and Environmental Microbiology 65(7), 3248-3250.
Strous, M., J. J. Heijnen, J. G. Kuenen and M. S. M. Jetten, 1998. The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms. Applied Microbiology and Biotechnology 50(5), 589-596.
Tang, C.J., P. Zheng, L. Zhang, J.W. Chen, Q. Mahmood, X.G. Chen, B.L. Hu, C.H. Wang, Y. Yu., 2010. Enrichment features of Anammox consortia from methanogenic granules loaded with high organic and methanol contents. Chemosphere 79 (6), 613–619.
Tchobanoglous, G., 1993. Constructed wetlands and aquatic plant systems: research, design, operational, and monitoring issues. In: G. A. Moshiri. (Ed.) Constructed wetlands for water quality improvement. Lewis Publishers, Boca Raton, 23-34.
Third, K. A., J. Paxman, M. Schmid, M. Strous, M. S. M. Jetten and R. Cord-Ruwisch, 2005. Enrichment of Anammox from activated sludge and its application in the CANON process. Microbial Ecology 49(2), 236-244.
Third, K. A., Sliekers A. O., Kuenen J. G. and Jetten M. S.,2001. The CANON system (completely autotrophic nitrogen-removal over nitrite) under ammonium limitation: Interaction and competition between three groups of bacteria. Systematic and Applied Microbiology 24(4), 588-596.
Tsushima, I., Tomonori Kindaichi, Satoshi Okabe, 2007. Quantification of anaerobic ammonium-oxidizing bacteria in enrichment cultures by real-time PCR. Water srsearch 41, 785–794.
Van de Graaf, A. A., A. Mulder, H. Slijkhuis, L. A. Robertson and J. G. Kuenen, 1990. anoxic ammonium oxidation. In: Proc. 5th European Congress on Biotechnology 1, 388-391.
Van de Graaf, A.A., Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen, 1997. Metabolic pathway of anaerobic ammonium oxidation on the basis of 15N studies in a fluidized bed reactor. Microbiology 143, 2415-2421.
Van de Graaf, A.A., Peter de Bruijn, Lesley A. Robertson, Mike S. M. Jetten and J. Gijs Kuenen., 1996. Autotrophic growth of anaerobic ammonium-oxidizing micro-organisms in a fluidized bed reactor. Microbiology 142 (8), 2187–2196.
Van Hulle, S.W.H., H.J.P. Vandeweyer, B.D. Meesschaert, P.A. Vanrolleghem, P. Dejans, A. Dumoulin, 2010. Engineering aspects and practical application of autotrophic nitrogen removal from nitrogen rich streams, Chem. Eng. J. 162 (1), 1–20.
Volker Luederitz, Elke Eckert, Martina Lange-Weber, Andreas Lange, Richard M. Gersberg, 2001. Nutrient removal efficiency and resource economics of vertical flow and horizontal flow constructed wetlands. Ecological Engineering 18, 157–171.
Vymazal, J., Brix, H., Cooper, P.F., Haberl, R., Perfler, R., Laber, J., 1998. Removal mechanisms and types of constructed wetlands. In: Vymazal, J., Brix, H., Cooper, P.F.,
Wang Jianlong, Kang Jing., 2005. The characteristics of anaerobic ammonium oxidation (ANAMMOX) by granular sludge from an EGSB reactor. Process Biochem. 40, 1973–1978.
Wang, C. C., P. H. Lee, M. Kumar, Y. T. Huang, S. W. Sung and J. G. Lin., 2010. Simultaneous partial nitrification, anaerobic ammonium oxidation and denitrification (SNAD) in a full-scale landfill-leachate treatment plant. Journal of Hazardous Materials175(1-3), 622-628.
Wang, J., Kang, J., 2005. The characteristics of anaerobic ammonium oxidation (ANAMMOX) by granular sludge from an EGSB reactor. Process Biochem. 40, 1973–1978.
Watson, J.T., Reed, S.C., Kadlec, R.H., Knight, R.L., Whitehouse, S.E. 1989. “Performance expectations and loading rates for constructed wetlands.” In: Hammer, D.A. (Ed.), Constructed wetlands for wastewater treatment.municipal, industrial and agricultural. Lewis Publishers, Chelsea, 319-358.
Wendong Tao, Jing Wang, 2009. Effects of vegetation, limestone and aeration on nitritation, anammox and denitrification in wetland treatment systems. ecological engineering 3 5, 836–842.
Wett, B., 2007. Development and implementation of a robust deammonification process. Water Science and Technology 56(7), 81-88.
Winkler, M.K.H., R. Kleerebezem, M.C.M. van Loosdrecht., 2012. Integration of anammox into the aerobic granular sludge process for main stream wastewater treatment at ambient temperatures. Water research 46, 136-144.
Wouter, R.L. van der Star, Wiebe R. Abma, Dennis Blommers, Jan-Willem Mulder, Takaaki Tokutomi, Marc Strous, Cristian Picioreanu,and Mark C.M. van Loosdrecht, 2007. Startup of reactors for anoxic ammonium oxidation: experiences from the first full-scale anammox reactor in Rotterdam. Water Research 41, 4149 – 4163.
Wrage,N., G.L. Velthof, M.L. van Beusichem, O. Oenema, 2001. Role of nitrifier denitrification in the production of nitrous oxide. Soil Biol. Biochem. 33,1723-1732.
Zeqin Dong, Tieheng Sun, 2007. A potential new process for improving nitrogen removal in constructed wetlands—Promoting coexistence of partial-nitrification and ANAMMOX. Ecologicalengineering 31, 69–78.
Zheng Gong, Fenglin Yang, Sitong Liu, Han Bao, Shaowei Hu, Kenji Furukawa, 2007. Feasibility of a membrane-aerated biofilm reactor to achieve single-stage autotrophic nitrogen removal based on Anammox. Chemosphere 69, 776–784.
于立平,1997,濕地公源規劃策略之研究-以高雄縣鳥松濕地公園為例,國立中山大學海洋環境及工程學系,碩士論文。江純安,紅樹林於鹹水型人工濕地對污染物去除效率之研究,國立臺灣大學環境工程學研究所,碩士論文。吳振斌,2011,水生植物與水體生態修復,科學出版社。
吳振斌,成水平,賀鋒,梁威,周巧紅,徐棟,2008,複合垂直流人工濕地,科學出版社。
吳祚樟,2007,固定化細胞進行部分硝化與厭氧氨氧化程序之可行性評估,國立臺灣大學環境工程學研究所,碩士論文。林志高(2011.11),新穎厭氧氨氧化技術發展及應用,發表於「2011年科學工業園區廠務技術研討會」。
邱文彥,2003,海岸管理:理論與實務,國立編譯館審定,五南圖書出版公司印行 (二刷一版)。
邱文雅,章盛傑譯,William J.Mitsch and James G. Gosselink著,1998,
馮宇柔,2008,利用通氣式薄膜生物反應槽與厭氧氨氧化程序進行廢水除氮之研究,國立臺灣大學環境工程學研究所,碩士論文。劉靜靜,邱文彥,1995,濕地與紅樹林,關愛生活雜誌 12:6-8。
蔡若琳,2009,氨氧化細菌的特性及新式生物脫氮技術之探討,國立中山大學生物科學系,碩士論文。蔡凱元,2004,以人工濕地處理垃圾滲出水可行性之研究,國立中山大學海洋環境及工程學系,碩士論文。蔡皓程,2007,垂直流人工濕地氮循環過程研究與操作機制探討,國立中山大學海洋環境與工程學系,碩士論文。盧鴻偉,2008,自然淨化系統永續經營及社區發展相關性之研究-台南縣市設置自然淨化系統之社區為例,嘉南藥理科技大學環境工程與科學系,碩士論文。濕地 Wetlands,地景企業股份有限公司。
鐘佳琪,2010,以垂直流式人工濕地處理含硫酸鹽廢水之研究,國立中山大學海洋環境與工程學系,碩士論文。