References
- A.Y. Bagastyo, J. Keller, Y. Poussade, D.J. Batstone, Characterisation
and removal of recalcitrants in reverse osmosis concentrates
from water reclamation plants, Water Res., 45 (2011)
2415–2427.
- T.Y. Cath, A.E. Childress, M. Elimelech, Forward osmosis:
principles, applications, and recent developments, J. Membr.
Sci., 281 (2006) 70–87.
- D. Xiao, C.Y. Tang, J. Zhang, W.C. Lay, R. Wang, A.G. Fane,
Modeling salt accumulation in osmotic membrane bioreactors:
implications for FO membrane selection and system operation,
J. Membr. Sci., 366 (2011) 314–324.
- C. Fritzmann, J. Löwenberg, T. Wintgens, T. Melin, State-of-the-art of reverse osmosis desalination, Desalination, 216
(2007) 1–76.
- O. Buros, The ABCs of desalting, International Desalination
Association Topsfield, MA, 2000.
- J.H. Al-Rifai, C.L. Gabelish, A.I. Schäfer, Occurrence of pharmaceutically
active and non-steroidal estrogenic compounds
in three different wastewater recycling schemes in Australia,
Chemosphere, 69 (2007) 803–815.
- E. Pehlivanoglu-Mantas, D.L. Sedlak, Wastewater-derived dissolved
organic nitrogen: analytical methods, characterization,
and effects—a review, Crit. Rev. Env. Sci. Technol., 36 (2006)
261–285.
- C. Bellona, J.E. Drewes, P. Xu, G. Amy, Factors affecting the
rejection of organic solutes during NF/RO treatment—a literature
review, Water Res., 38 (2004) 2795–2809.
- D. Bronk, J. See, P. Bradley, L. Killberg, DON as a source of
bioavailable nitrogen for phytoplankton, Biogeosci. Discuss., 4
(2007) 283–296.
- L. Xin, H. Hong-ying, G. Ke, S. Ying-xue, Effects of different
nitrogen and phosphorus concentrations on the growth, nutrient
uptake, and lipid accumulation of a freshwater microalga
Scenedesmus sp, Bioresour. Technol., 101 (2010) 5494–5500.
- A. Subramani, J.G. Jacangelo, Treatment technologies for
reverse osmosis concentrate volume minimization: a review,
Sep. Purif. Technol., 122 (2014) 472–489.
- S. Pradhan, L. Fan, F.A. Roddick, Removing organic and nitrogen
content from a highly saline municipal wastewater reverse
osmosis concentrate by UV/H2O2–BAC treatment, Chemosphere,
136 (2015) 198–203.
- S.H. Joo, Advanced treatment of reverse osmosis concentrate
by integrated activated carbon and iron-activated persulfate
oxidation, Water Air Soil Pollution, 225 (2014) 2076.
- G. Pérez, A. Fernández-Alba, A. Urtiaga, I. Ortiz, Electro-oxidation
of reverse osmosis concentrates generated in tertiary
water treatment, Water Res., 44 (2010) 2763–2772.
- S. Vendramel, A. Justo, O. González, C. Sans, S. Esplugas,
Reverse osmosis concentrate treatment by chemical oxidation
and moving bed biofilm processes, Water Sci. Technol., 68
(2013) 2421–2426.
- H. Kim, O.J. Hao, pH and oxidation–reduction potential control
strategy for optimization of nitrogen removal in an alternating
aerobic–anoxic system, Water Environ. Res., 73 (2001)
95–102.
- Y. Sakai, T. Miama, F. Takahashi, Simultaneous removal of
organic and nitrogen compounds in intermittently aerated
activated sludge process using magnetic separation, Water
Res., 31 (1997) 2113–2116.
- A. Klapwijk, H. Brouwer, E. Vrolijk, K. Kujawa, Control of
intermittently aerated nitrogen removal plants by detection
endpoints of nitrification and denitrification using respirometry
only, Water Res., 32 (1998) 1700–1703.
- J. Charpentier, G. Martin, New approach to oxygen requirement
for low-load activated sludge, Water Res., 30 (1996) 2347–2356.
- F. Sun, B. Sun, J. Hu, Y. He, W. Wu, Organics and nitrogen
removal from textile auxiliaries wastewater with A2O-MBR in
a pilot-scale, J. Hazard. Mater., 286 (2015) 416–424.
- W.-T. Zhao, X. Huang, D.-J. Lee, X.-H. Wang, Y.-X. Shen, Use
of submerged anaerobic–anoxic–oxic membrane bioreactor to
treat highly toxic coke wastewater with complete sludge retention,
J. Membr. Sci., 330 (2009) 57–64.
- W.-T. Zhao, Y.-X. Shen, K. Xiao, X. Huang, Fouling characteristics
in a membrane bioreactor coupled with anaerobic–
anoxic–oxic process for coke wastewater treatment, Bioresour.
Technol., 101 (2010) 3876–3883.
- D.-H. Kim, S. Park, C.M. Park, Removal of total dissolved solids
from reverse osmosis concentrates produced in a municipal
wastewater reclamation plant by biosorption using aerobic
granular sludge, J. Hazard. Mater., under review (2018).
- A.P.H. Association, Water Environment Federation (1992)
Standard methods for the examination of water and wastewater,
in, Washington, DC, 1996.
- E. Vainio, A. Moilanen, T. Koivula, D. Bamford, J. Hantula,
Comparison of partial 16S rRNA gene sequences obtained
from activated sludge bacteria, Appl. Microbiol. Biotechnol.,
48 (1997) 73–79.
- Y.B. Kim, J.H. Jeon, S. Choi, J. Shin, Y. Lee, Y.M. Kim, Use of
a filtering process to remove solid waste and antibiotic resistance
genes from effluent of a flow-through fish farm, Sci. Total
Environ., 615 (2018) 289–296.
- N. Denikina, E. Dzyuba, N. Bel’kova, I. Khanaev, S. Feranchuk,
M. Makarov, N. Granin, S. Belikov, The first case of disease of
the sponge Lubomirskia baicalensis: Investigation of its microbiome,
Biology Bull., 43 (2016) 263–270.
- H.J. Kim, M.-J. Kim, T.L. Turner, M.-K. Lee, Pyrosequencing-based analysis of the bacterial community during fermentation
of Alaska pollock sikhae: traditional Korean seafood, J.
Gen. Appl. Microbiol., 60 (2014) 227–233.
- M. Hur, Y. Kim, H.-R. Song, J.M. Kim, Y. Im Choi, H. Yi, Effect
of genetically modified poplars on soil microbial communities
during the phytoremediation of waste mine tailings, Appl.
Environ. Microbiol., 77 (2011) 7611–7619.
- S. Chakravorty, D. Helb, M. Burday, N. Connell, D. Alland, A
detailed analysis of 16S ribosomal RNA gene segments for the
diagnosis of pathogenic bacteria, J. Microbiol. Methods, 69
(2007) 330–339.
- H.J. Kim, M.-J. Kim, T.L. Turner, B.-S. Kim, K.-M. Song, S.H. Yi,
M.-K. Lee, Pyrosequencing analysis of microbiota reveals that
lactic acid bacteria are dominant in Korean flat fish fermented
food, gajami-sikhae, Biosci. Biotechnol. Biochem., 78 (2014)
1611–1618.
- J. Chun, J.-H. Lee, Y. Jung, M. Kim, S. Kim, B.K. Kim, Y.-W. Lim,
EzTaxon: a web-based tool for the identification of prokaryotes
based on 16S ribosomal RNA gene sequences, Int. J. Syst. Evol.
Microbiol., 57 (2007) 2259–2261.
- D. Al-Halbouni, J. Traber, S. Lyko, T. Wintgens, T. Melin, D.
Tacke, A. Janot, W. Dott, J. Hollender, Correlation of EPS content
in activated sludge at different sludge retention times with
membrane fouling phenomena, Water Res., 42 (2008) 1475–1488.
- I.W. Sutherland, Biofilm exopolysaccharides: a strong and
sticky framework, Microbiology, 147 (2001) 3–9.
- Y.-h. Xu, T. Nakajima, A. Ohki, Adsorption and removal of
arsenic(V) from drinking water by aluminum-loaded Shirasu-zeolite, J. Hazard. Mater., 92 (2002) 275–287.
- H. Lu, G. Zhang, T. Wan, Y. Lu, Influences of light and oxygen
conditions on photosynthetic bacteria macromolecule degradation:
Different metabolic pathways, Bioresour. Technol., 102
(2011) 9503–9508.
- X. Xia, Z. Yang, G. Huang, X. Zhang, H. Yu, X. Rong, Nitrification
in natural waters with high suspended-solid content–A
study for the Yellow River, Chemosphere, 57 (2004) 1017–1029.
- R. Knowles, Denitrification, Microbiological Rev., 46 (1982) 43.
- B. Kraft, M. Strous, H.E. Tegetmeyer, Microbial nitrate respiration–genes, enzymes and environmental distribution, J. Biotechnol.,
155 (2011) 104–117.
- C. Gliesche, A. Fesefeldt, P. Hirsch, Hyphomicrobium Stutzer
and Hartleb 1898, 76 AL, 2005.
- X. Jiang, M. Mingchao, L. Jun, L. Anhuai, Z. Zhong, Bacterial
diversity of active sludge in wastewater treatment plant, Earth
Sci. Front., 15 (2008) 163–168.
- A. Loy, C. Schulz, S. Lücker, A. Schöpfer-Wendels, K. Stoecker,
C. Baranyi, A. Lehner, M. Wagner, 16S rRNA gene-based oligonucleotide
microarray for environmental monitoring of the
betaproteobacterial order “Rhodocyclales”, Appl. Environ.
Microbiol., 71 (2005) 1373–1386.
- C. Martineau, F. Mauffrey, R. Villemur, Comparative analysis
of denitrifying activities of Hyphomicrobium nitrativorans,
Hyphomicrobium denitrificans, and Hyphomicrobium zavarzinii,
Appl. Environ. Microbiol., 81 (2015) 5003–5014.
- C. Martineau, C. Villeneuve, F. Mauffrey, R. Villemur,
Hyphomicrobiumnitrativorans sp. nov., isolated from the biofilm
of a methanol-fed denitrification system treating seawater
at the Montreal Biodome, Int. J. Syst. Evol. Microbiol., 63 (2013)
3777–3781.
- C. Martineau, C. Villeneuve, F. Mauffrey, R. Villemur, Complete
genome sequence of Hyphomicrobium nitrativorans strain NL23, a denitrifying bacterium isolated from biofilm of
a methanol-fed denitrification system treating seawater at the
Montreal Biodome, Genome announcements, 2 (2014) e01165–
01113.
- T. Osaka, S. Yoshie, S. Tsuneda, A. Hirata, N. Iwami, Y. Inamori,
Identification of acetate- or methanol-assimilating bacteria
under nitrate-reducing conditions by stable-isotope probing,
Microb. Ecol., 52 (2006) 253–266.
- A. Hanke, J. Berg, T. Hargesheimer, H.E. Tegetmeyer, C.E.
Sharp, M. Strous, Selective pressure of temperature on competition
and cross-feeding within denitrifying and fermentative
microbial communities, Front. Microbiol., 6 (2016) 1461.