References
- I. Chorus, J. Bartram, I. Chorus, J. Bartram, Toxic cyanobacteria
in water: a guide to their public health consequences, monitoring
and management, Limnol. Oceanogr., 45 (2000) 255–258.
- M.R. Teixeira, V. Sousa, M.J. Rosa, Investigating dissolved air
flotation performance with cyanobacterial cells and filaments,
Water Res., 44 (2010) 3337–3344.
- C.W.K. Chow, M. Drikas, J. House, M.D. Burch, R.M.A. Velzeboer,
The impact of conventional water treatment processes on cells
of the cyanobacterium Microcystis aeruginosa, Water Res., 33
(1999) 3253–3262.
- Y.D. Yan, G.J. Jameson, Application of the Jameson Cell
technology for algae and phosphorus removal from maturation
ponds, Int. J. Miner. Process., 73 (2004) 23–28.
- M.R. Teixeira, M.J. Rosa, Comparing dissolved air flotation and
conventional sedimentation to remove cyanobacterial cells of
Microcystis aeruginosa. Part I: The key operating conditions, Sep.
Purif. Technol., 52 (2006) 84–94.
- M.R. Teixeira, M.J. Rosa, Comparing dissolved air flotation and
conventional sedimentation to remove cyanobacterial cells of Microcystis aeruginosa. Part II. The effect of water background
organics, Sep. Purif. Technol., 53 (2007) 126–134.
- R.K. Yap, M. Whittaker, M. Diao, R.M. Stuetz, B. Jefferson,
V. Bulmus, W.L. Peirson, A.V. Nguyen, R.K. Henderson,
Hydrophobically-associating cationic polymers as micro-bubble
surface modifiers in dissolved air flotation for cyanobacteria
cell separation, Water Res., 61 (2014) 253–262.
- S. Garg, L. Wang, P.M. Schenk, Effective harvesting of low
surface-hydrophobicity microalgae by froth flotation, Bioresour.
Technol., 159 (2014) 437–441.
- L.O. Moreti, P.F. Coldebella, F.P. Camacho, B.M. Carvalho,
P.D.S. Ah, G.A. Kirie, M. Matsushita, S.M. Fernandes, L. Nishi,
R. Bergamasco, Removal of Anabaena flos-aquae in water
treatment process using Moringa oleifera and assessment of fatty
acid profile of generated sludge, Environ. Technol., 37 (2015)
1408–1417.
- B. Lakghomi, Y. Lawryshyn, R. Hofmann, A model of particle
removal in a dissolved air flotation tank: importance of stratified
flow and bubble size, Water Res., 68 (2015) 262–272.
- The Water and Wastewater Monitoring and Analysis
Methodology Editorial Committee of the State Environmental
Protection Administration, Methods for Water and Wastewater
Monitoring and Analysis, 5th ed., China Environmental Science
Press, Beijing, China, 2002.
- J.A. Elías-Maxil, F. Rigas, O.D.V. Mt, R.M. Ramírez-Zamora,
Optimization of Fenton’s reagent coupled to Dissolved Air
Flotation to remove cyanobacterial odorous metabolites and
suspended solids from raw surface water, Water Sci. Technol.,
64 (2011) 1668.
- P.A.P.D. Amaral, L.A. Coral, M.E. Nagel-Hassemer, T.J. Belli,
F.R. Lapolli, Association of dissolved air flotation (DAF) with
microfiltration for cyanobacterial removal in water supply,
Desal. Wat. Treat., 51 (2013) 1664–1671.
- X. Zhang, L. Wang, M. Sommerfeld, Q. Hu, Harvesting
microalgal biomass using magnesium coagulation-dissolved
air flotation, Biomass Bioenergy, 93 (2016) 43–49.
- Y. Wang, K. Zhang, M. Yin, H. Wang, R. Jia, W. Song, Notice
of Retraction the Optimum Study of Operation Conditions on
the Dual-Media Flofilter with GAC and Sand, Bioinformatics
and Biomedical Engineering, (iCBBE) 2011 5th International
Conference on, 2011, pp. 1–4.
- Y. Wang, B. Liu, K. Zhang, L.I. Mei, R. Jia, W. Song, L.I. Jun,
Construction and operation characteristics of countercurrentcocurrent
dissolved air flotation, Ciesc. J., 12 (2016) 5252–5258.
- J.L. Lin, L.C. Hua, S.K. Hung, C. Huang, Algal removal from
cyanobacteria-rich waters by preoxidation-assisted coagulation-flotation: effect of algogenic organic matter release on algal
removal and trihalomethane formation, J. Environ. Sci., (China),
63 (2018) 147–155.
- H. Chu, Y. Hong, X. Tan, Y. Zhang, X. Zhou, L. Yang, D. Li,
Extraction procedure optimization and the characteristics of
dissolved extracellular organic matter (dEOM) and bound
extracellular organic matter (bEOM) from Chlorella pyrenoidosa,
Colloid Surface B, 125 (2015) 238–246.
- H. Zhang, Y. Dan, C.D. Adams, H. Shi, Y. Ma, T. Eichholz,
Effect of oxidant demand on the release and degradation of
microcystin-LR from Microcystis aeruginosa during oxidation,
Chemosphere, 181 (2017) 562–568.
- J. Li, R. Li, J. Li, Current research scenario for microcystins
biodegradation - a review on fundamental knowledge,
application prospects and challenges, Sci. Total Environ., 595
(2017) 615.
- I. Jeong, M. Yi, H. Zhao, S. Dockko, Characteristics of DBPs
reduction of AOM by dissolved air flotation, Desal. Water Treat,
54 (2015) 1436–1444.
- N. Lee, G. Amy, J.P. Croué, Low-pressure membrane (MF/UF)
fouling associated with allochthonous versus autochthonous
natural organic matter, Water Res., 40 (2006) 2357–2368.
- A. Riquelme, A. Desbiens, R.D. Villar, M. Maldonado,
Identification of a non-linear dynamic model of the bubble size
distribution in a pilot flotation column, Int. J. Miner. Process.,
145 (2015) 7–16.
- J.D. Plummer, J.K. Edzwald, Effect of ozone on algae as
precursors for trihalomethane and haloacetic acid production,
Environ. Sci. Technol., 35 (2001) 3661–3668.