References
- D.W. Juma, H. Wang, F. Li, Impacts of population growth and
economic development on water quality of a lake: case study of
Lake Victoria Kenya water, Environ. Sci. Pollut. Res., 21 (2014)
5737–5746.
- J. Kostan, B. Sjöblom, F. Maixner, G. Mlynek, P.G. Furtmüller,
C. Obinger, M. Wagner, H. Daims, K. Djinović-Carugo,
Structural and functional characterisation of the chlorite dismutase
from the nitrite-oxidizing bacterium Candidatus
Nitrospira defluvii: identification of a catalytically important
amino acid residue, J. Struct. Biol., 172 (2010) 331–342.
- S. Tabraiz, S. Nasreen, L.A. Qureshi, M. Zeeshan, I. Ahmad,
S. Ahmed, Z. Hassan, Sewage land disposal and unpaved
drains: threat to groundwater quality, Desal. Wat. Treat., 57
(2016) 20464–20469.
- J. Soddell, R. Seviour, Microbiology of foaming in activated
sludge plants, J. Appl. Bacteriol., 69 (1990) 145–176.
- J. Soddell, R. Seviour, Microbiology of foaming in activated
sludge plants, J. Appl. Microbiol., 69 (1990) 145–176.
- S.C. Reed, Nitrogen removal in wastewater stabilization ponds,
J. Water Pollut. Control Fed., 57 (1985) 39–45.
- I. Metcalf, Eddy, Wastewater Engineering Treatment and Reuse,
McGraw Hill, New York, 2003.
- S.-H. Bhang, E.-T. Lim, G.-T. Jeong, J.-H. Park, S.-H. Park,
S.-J. Kim, D.-H. Park, Application of advanced treatment
process for nitrogen compounds removal of industrial wastewater,
KSBB J., 23 (2008) 541–545.
- A. Akhbari, A. Zinatizadeh, P. Mohammadi, M. Irandoust,
Y. Mansouri, Process modeling and analysis of biological
nutrients removal in an integrated RBC-AS system using
response surface methodology, Chem. Eng. J., 168 (2011) 269–279.
- X.-J. Wang, S.-Q. Xia, L. Chen, J.-F. Zhao, N. Renault,
J.-M. Chovelon, Nutrients removal from municipal wastewater
by chemical precipitation in a moving bed biofilm reactor,
Process Biochem., 41 (2006) 824–828.
- Z. Zhang, J. Zhou, J. Wang, H. Guo, J. Tong, Integration of
nitrification and denitrifying dephosphatation in airlift loop
sequencing batch biofilm reactor, Process Biochem., 41 (2006)
599–608.
- S. Xia, J. Li, R. Wang, Nitrogen removal performance and
microbial community structure dynamics response to carbon
nitrogen ratio in a compact suspended carrier biofilm reactor,
Ecol. Eng., 32 (2008) 256–262.
- R.J. Seviour, T. Mino, M. Onuki, The microbiology of biological
phosphorus removal in activated sludge systems, FEMS
Microbiol. Rev., 27 (2003) 99–127.
- R.H. Kadlec, S. Wallace, Treatment Wetlands, CRC Press, Boca
Raton, FL 2008 .
- J. Prosser, Autotrophic nitrification in bacteria, Adv. Microb.
Physiol., 30 (1990) 125–181.
- S. Jeyanayagam, True confessions of the biological nutrient
removal process, Florida Wat. Res. J., 1 (2005) 37–46.
- H.-s. Kim, J.W. Gellner, J.P. Boltz, R.G. Freudenberg, C.K.
Gunsch, A.J. Schuler, Effects of integrated fixed film activated
sludge media on activated sludge settling in biological nutrient
removal systems, Water Res., 44 (2010) 1553–1561.
- M. Rodgers, X.-M. Zhan, B. Gallagher, A pilot plant study
using a vertically moving biofilm process to treat municipal
wastewater, Bioresour. Technol., 89 (2003) 139–143.
- V.A.M. dos Santos, J. Tramper, R.H. Wijffels, Integrated nitrogen
removal in compact systems by immobilized microorganisms: new-generation
bioreactors, Biotechnol. Annu. Rev., 4 (1998) 323–394.
- B. Grote, S.T. Teacher, Biological Nutrient Removal (BNR)
Technology in New and Upgraded WWTPS, The 35th Annual
Qld Water Industry Operations Workshop Community Sports
Centre, CQ University, Rockhampton, 2010.
- S. Abu-Alhail, X.W. Lu, Experimental investigation and
modeling of innovative five-tank anaerobic-anoxic/oxic process,
Appl. Math. Modell., 38 (2014) 278–290.
- M. Tian, F. Zhao, X. Shen, K. Chu, J. Wang, S. Chen, Y. Guo,
H. Liu, The first metagenome of activated sludge from
full-scale anaerobic/anoxic/oxic (A2O) nitrogen and phosphorus
removal reactor using Illumina sequencing, J. Environ. Sci., 35
(2015) 181–190.
- L. Feng, Y. Chen, X. Zheng, Enhancement of waste activated
sludge protein conversion and volatile fatty acids accumulation
during waste activated sludge anaerobic fermentation by
carbohydrate substrate addition: the effect of pH, Environ. Sci.
Technol., 43 (2009) 4373–4380.
- H. Zhang, X. Wang, J. Xiao, F. Yang, J. Zhang, Enhanced
biological nutrient removal using MUCT–MBR system, Bioresour.
Technol., 100 (2009) 1048–1054.
- R. Sorm, J. Wanner, R. Saltarelli, G. Bortone, A. Tilche,
Verification of anoxic phosphate uptake as the main biochemical
mechanism of the “DEPHANOX” process, Water Sci. Technol.,
35 (1997) 87–94.
- G. Carvalho, P.C. Lemos, A. Oehmen, M.A. Reis, Denitrifying
phosphorus removal: linking the process performance with
the microbial community structure, Water Res., 41 (2007)
4383–4396.
- N. Alasino, M.C. Mussati, N.J. Scenna, P. Aguirre, Wastewater
treatment plant synthesis and design: combined biological
nitrogen and phosphorus removal, Ind. Eng. Chem. Res.,
49 (2010) 8601–8612.
- T. Kuba, M. Van Loosdrecht, J. Heijnen, Phosphorus and
nitrogen removal with minimal COD requirement by integration
of denitrifying dephosphatation and nitrification in a
two-sludge system, Water Res., 30 (1996) 1702–1710.
- T. Kuba, A. Wachtmeister, M. Van Loosdrecht, J. Heijnen, Effect
of nitrate on phosphorus release in biological phosphorus
removal systems, Water Sci. Technol., 30 (1994) 263–269.
- M.F.R. Zuthi, W. Guo, H. Ngo, L. Nghiem, F. Hai, Enhanced
biological phosphorus removal and its modeling for the
activated sludge and membrane bioreactor processes, Bioresour.
Technol., 139 (2013) 363–374.
- X. Zhou, Y. Li, Y. Zhao, Removal characteristics of organics
and nitrogen in a novel four-stage biofilm integrated system
for enhanced treatment of coking wastewater under different
HRTs, RSC Adv., 4 (2014) 15620–15629.
- E. Metcalf, H.P. Eddy, G. Tchobanoglous, Wastewater
Engineering: Treatment, Disposal and Reuse, McGraw-Hill,
New York, 1991.
- J.H. Clark, E.M. Moseng, T. Asano, Performance of a rotating
biological contactor under varying wastewater flow, J. Water
Pollut. Control Fed., 50 (1978) 896–911.
- C. Paffoni, M. Gousailles, F. Rogalla, P. Gilles, Aerated biofilters
for nitrification and effluent polishing, Water Sci. Technol.,
22 (1990) 181–189.
- B. Rusten, L.J. Hem, H. Ødegaard, Nitrification of municipal
wastewater in moving-bed biofilm reactors, Water Environ.
Res., 67 (1995) 75–86.
- P. Harremoës, Criteria for nitrification in fixed film reactors,
Water Sci. Technol., 14 (1982) 167–187.
- C.W. Randall, D. Sen, Full-scale evaluation of an integrated
fixed-film activated sludge (IFAS) process for enhanced
nitrogen removal, Water Sci. Technol., 33 (1996) 155–162.
- J. Chung, W. Bae, Y.-W. Lee, B.E. Rittmann, Shortcut biological
nitrogen removal in hybrid biofilm/suspended growth reactors,
Process Biochem., 42 (2007) 320–328.
- S. Abualhail, R.N. Mohammed, L. Xiwu, Integrated real-time
control strategy in multi-tank A 2 O process for biological
nutrient removal treating real domestic wastewater, Arabian J.
Chem., 10 (2013) 1041–1054.
- T.M. Lai, H.V. Dang, D.D. Nguyen, S. Yim, J. Hur, Wastewater
treatment using a modified A2O process based on fiber polypropylene
media, J. Environ. Sci. Health., Part A, 46 (2011)
1068–1074.
- S.A. Leick, J.G.B.D. Oliveira, K.A. Tavares, D.D. Lopes, A.C.
Barana, Effect of aeration and recirculation in the removal of
nitrogen and chemical oxygen demand from sanitary sewage in
a structured bed reactor, Eng. Agríc., 37 (2017) 1236–1243.
- C. Ratanatamskul, J. Katasomboon, Effect of sludge recirculation
pattern on biological nutrient removal by a prototype IT/
BF-MBR (inclined tube/biofilm-membrane bioreactor)
and microbial population characteristics, Int. Biodeterior.
Biodegrad., 124 (2017) 26–35.
- J. Yin, P. Zhang, F. Li, G. Li, B. Hai, Simultaneous biological
nitrogen and phosphorus removal with a sequencing batch
reactor–biofilm system, Int. Biodeterior. Biodegrad., 103 (2015)
221–226.
- U. Welander, T. Henrysson, T. Welander, Biological nitrogen
removal from municipal landfill leachate in a pilot scale
suspended carrier biofilm process, Water Res., 32 (1998)
1564–1570.
- U. Van Dongen, M.S. Jetten, M. Van Loosdrecht, The
SHARON®-Anammox® process for treatment of ammonium
rich wastewater, Water Sci. Technol., 44 (2001) 153–160.
- A. Patel, J. Zhu, G. Nakhla, Simultaneous carbon, nitrogen
and phosphorous removal from municipal wastewater in a
circulating fluidized bed bioreactor, Chemosphere, 65 (2006)
1103–1112.
- T. Sriwiriyarat, C.W. Randall, Evaluation of integrated fixed
film activated sludge wastewater treatment processes at high
mean cells residence time and low temperatures, J. Environ.
Eng., 131 (2005) 1550–1556.