References
- M. Yang, P. Sun, R. Wang, J. Han, J.Q. Wang, Y.Q. Song, J. Cai,
X. Tang, Simulation and optimization of ammonia removal
at low temperature for a double channel oxidation ditch
based on fully coupled activated sludge model (FCASM): a
full-scale study, Bioresour. Technol., 143 (2013) 538–548.
- M. Komorowska-Kaufman, H. Majcherek, E. Klaczyński, Factors
affecting the biological nitrogen removal from wastewater,
Process Biochem., 41 (2006) 1015–1021.
- X. Tan, T. Li, Z. Qi, Performance of operation of sequencing
bath reactor system for low temperature sewage treatment,
J. Tongji Univ. Nat. Sci., 36 (2008) 1094–1100.
- S. Uemura, H. Harada, Treatment of sewage by a UASB reactor
under moderate to low temperature conditions, Bioresour.
Technol., 72 (2000) 275–282.
- L. Larrea, A. Larrea, E. Ayesa, J.C. Rodrigo, M.D. Lopez-Carrasco, J.A. Cortacans, Development and verification
of design and operation criteria for the step feed process
with nitrogen removal, Water Sci. Technol., 43 (2001) 261–268.
- Y.F. Lin, S.R. Jing, Characterization of denitrification and
nitrification in a step-feed alternating anoxic-oxic sequencing
batch reactor, Water Environ. Res., 73 (2001) 526–533.
- L. Lu, S. Zhang, H. Li, Z.D. Wang, J.J. Li, Z.J. Zhang, J. Zhu,
A reformed SBR technology integrated with two-step feeding
and low-intensity aeration for swine wastewater treatment,
Environ. Technol., 30 (2009) 251–260.
- H.-W. Sun, C.-Z. Chen, C.-F. Wu, H.-N. Zhao, X. Yu,
X.-H. Fang, Influence of operating modes for the alternating
anoxic/oxic process on biological nitrogen removal and
extracellular polymeric substances of activated sludge,
Environ. Sci., 39 (2018) 256–262.
- Y.W. Lee, Y.J. Kim, N.I. Chang, J.G. Lee, B.H. Lee, Development
of sequencing batch reactor with step feed and recycle, Water
Sci. Technol., 55 (2007) 477–484.
- J.W. Chung, W.K. Bae, Y.-W. Lee, B.E. Rittmann, Shortcut
biological nitrogen removal in hybrid biofilm/suspended
growth reactors, Process Biochem., 42 (2007) 320–328.
- W.-S. Chang, H.-T. Tran, D.-H. Park, R.-H. Zhang, D.-H. Ahn,
Ammonium nitrogen removal characteristics of zeolite media
in a biological aerated filter (BAF) for the treatment of textile
wastewater, J. Ind. Eng. Chem., 15 (2009) 524–528.
- D. Bian, D. Zhou, M.X. Huo, Q.K. Ren, X. Tian, L.G. Wan,
S.Y. Zhu, S.S. Ai, Improving oxygen dissolution and
distribution in a bioreactor with enhanced simultaneous COD
and nitrogen removal by simply introducing micro-pressure
and swirl, Appl. Microbiol. Biotechnol., 99 (2015) 8741–8749.
- D. Bian, Z.B. Nie, F. Wang, S.S. Ai, L. Zhang, Effect of hydraulic
retention time on pollutant removal and sludge characteristics
of multi-level A/O coupled biofilm reactor at low temperature,
Desal. Water Treat., 162 (2019) 176–185.
- K. Fish, A.M. Osborn, J.B. Boxall, Biofilm structures (EPS and
bacterial communities) in drinking water distribution systems
are conditioned by hydraulics and influence discolouration,
Sci. Total Environ., 593–594 (2017) 571–580.
- T. Vincenzo, R. Marco, T. Ettore, D.F. Giovanni, U. Giordano,
R. Massimo, C.R. Elena, Assessment of biological kinetics
in a conventional municipal wwtp by means of the oxygen
uptake rate method, Sustainability, 6 (2014) 1833–1847.
- J. Arévalo, L.M. Ruiz, J. Pérez, M.A. Gómez, Effect of
temperature on membrane bioreactor performance working
with high hydraulic and sludge retention time, Biochem.
Eng. J., 88 (2014) 42–49.
- F. Wang, J. Li, D. Bian, W. Bian, L. Zhang, Z. Nie, Treatment
of domestic wastewater in step-feeding anoxic/oxic activated
sludge–biofilm system at low temperature: performance,
removal characteristics, and community, Desal. Water Treat.,
120 (2018) 150–157.
- M.I. Baloch, J.C. Akunna, M. Kierans, P.J. Collier, Structural
analysis of anaerobic granules in a phase separated reactor
by electron microscopy, Bioresour. Technol., 99 (2008) 922–929.
- J. Meinhold, C.D.M. Filipe, G.T. Daigger, S. Isaacs,
Characterization of the denitrifying fraction of phosphate
accumulating organisms in biological phosphate removal,
Water Sci. Technol., 39 (1999) 31–42.
- K. Hassan, O. Hamdy, M. Helmy, H. Mostafa, Enhancing treated
wastewater effluent characteristics using hybrid biofilm/
activated sludge process – a case study, Water Sci. Technol.,
81 (2020) 217–227.
- D. Orhon, D. Okutman, Respirometric assessment of residual
organic matter for domestic sewage, Enzyme Microb. Technol.,
32 (2003) 560–566.
- A. Schuchardt, J.A. Libra, C. Sahlmann, J. Handschag,
U. Wiesmann, R. Gnirss, Potential of OUR and OTR measurements
for identification of activated sludge removal processes
in aerated basins, Water Sci. Technol., 52 (2005) 141–149.
- S.E. Keithley, M.J. Kirisits, An improved protocol for extracting
extracellular polymeric substances from granular filter
media, Water Res., 129 (2018) 419–427.
- G.-P. Sheng, H.-Q. Yu, X.-Y. Li, Extracellular polymeric
substances (EPS) of microbial aggregates in biological
wastewater treatment systems: a review, Biotechnol. Adv.,
28 (2010) 882–894.
- G.-P. Sheng, H.-Q. Yu, Characterization of extracellular
polymeric substances of aerobic and anaerobic sludge
using three-dimensional excitation and emission matrix
fluorescence spectroscopy, Water Res., 400 (2006) 1233–1239.
- D. Celmer, J.A. Oleszkiewicz, N. Cicek, Impact of shear force
on the biofilm structure and performance of a membrane
biofilm reactor for tertiary hydrogen-driven denitrification
of municipal wastewater, Water Res., 42 (2008) 3057–3065.
- B. Gao, X. Zhu, C. Xu, Q. Yue, W. Li, J. Wei, Influence of
extracellular polymeric substances on microbial activity and
cell hydrophobicity in biofilms, J. Chem. Technol. Biotechnol.,
83 (2008) 227–232.
- B.-M. Wilén, B. Jin, P. Lant, The influence of key chemical
constituents in activated sludge on surface and flocculating
properties, Water Res., 370 (2003) 2127–2139.
- J.I. Houghton, T. Stephenson, Effect of influent organic
content on digested sludge extracellular polymer content and
dewaterability, Water Res., 360 (2002) 3620–3628.
- D.L. Hu, Z. Zhou, X.L. Shen, H.J. Wei, L.-M. Jiang, Y. Lv,
Effects of alkalinity on membrane bioreactors for reject water
treatment: performance improvement, fouling mitigation and
microbial structures, Bioresour. Technol., 197 (2015) 217–226.
- S.B. Cao, R. Du, B.K. Li, N.Q. Ren, Y.Z. Peng, Highthroughput
profiling of microbial community structures in an
ANAMMOX-UASB reactor treating high-strength wastewater,
Appl. Microbiol. Biotechnol., 100 (2016) 6457–6467.
- S.S. Adav, D.-J. Lee, Extraction of extracellular polymeric
substances from aerobic granule with compact interior
structure, J. Hazard. Mater., 154 (2008) 1120–1126.
- B. Xiao, Y. Liu, M. Luo, T. Yang, X.S. Guo, H. Yi, Evaluation
of the secondary structures of protein in the extracellular
polymeric substances extracted from activated sludge by
different methods, J. Environ. Sci., 80 (2019) 128–136.
- S. Andersson, G. Dalhammar, G.K. Rajarao, Influence of
microbial interactions and EPS/polysaccharide composition on
nutrient removal activity in biofilms formed by strains found
in wastewater treatment systems, Microbiol. Res., 166 (2011)
449–457.
- J.B. Xavier, K.R. Foster, Cooperation and conflict in microbial
biofilms, Proc. Natl. Acad. Sci. U.S.A., 104 (2007) 876–881.
- A. Briones, L. Raskin, Diversity and dynamics of microbial
communities in engineered environments and their
implications for process stability, Curr. Opin. Biotechnol.,
14 (2003) 270–276.
- J.B. Zhang, P.X. Wu, B. Hao, Z. Yu, Heterotrophic nitrification
and aerobic denitrification by the bacterium Pseudomonas
stutzeri YZN-001, Bioresour. Technol., 102 (2011) 9866–9869.
- B. Zhang, J. Zhao, J. Zuo, X. Shi, J. Gong, H. Ren, Realizing stable
operation of anaerobic ammonia oxidation at low temperatures
treating low strength synthetic wastewater, J. Environ. Sci.,
75 (2019) 193–200.
- Y. Liu, J.-H. Jin, H.-C. Liu, Z.-P. Liu, Dokdonella immobilis
sp. nov., isolated from a batch reactor for the treatment of
triphenylmethane dye effluent, Int. J. Syst. Evol. Microbiol.,
63 (2013) 1557–1561.
- B. Fu, X.Y. Liao, R. Liang, L. Ding, K. Xu, H.Q. Ren, COD
removal from expanded granular sludge bed effluent using
a moving bed biofilm reactor and their microbial community
analysis, World J. Microbiol. Biotechnol., 27 (2011) 915–923.