References
- R. Henderson, S.A. Parsons, B. Jefferson, The impact of algal
properties and pre-oxidation on solid-liquid separation of
algae, Water Res., 42 (2008) 1827–1845.
- M. Maeng, N.K. Shahi, G.Y. Shin, H.J. Son, D.H. Kwak,
S. Dockko, Formation characteristics of carbonaceous and
nitrogenous disinfection by-products depending on residual
organic compounds by CGS and DAF, Environ. Sci. Pollut. Res.,
(2018) 1–10, doi: 10.1007/s11356-018-2919-9.
- L.C. Hua, J.L. Lin, P.C. Chen, C. Huang, Chemical structures of
extra- and intra-cellular algogenic organic matters as precursors
to the formation of carbonaceous disinfection byproducts,
Chem. Eng. J., 328 (2017) 1022–1030.
- J. Huang, N. Graham, M.R. Templeton, Y. Zhang, C. Collins,
M. Mieuwenhuijsen, A comparison of the role of two bluegreen
algae in THM and HAA formation, Water Res., 43 (2009)
3009–3018.
- L. Li, N. Gao, Y. Deng, J. Yao, K. Zhang, Characterization of
intracellular and extracellular algae organic matters (AOM)
of Microcystis aeuginosa, and formation of AOM-associated
disinfection byproducts and odor and taste compounds, Water
Res., 46 (2012) 1233–1240.
- L.C. Hua, J.L. Lin, M.Y. Syue, C. Huang, P.C. Chen, Optical
properties of algogenic organic matter within the growth period
of Chlorella sp. and predicting their disinfection by-product
formation, Sci. Total Environ., 621 (2017) 1467–1474.
- N. Zhang, C. Liu, F. Qi, B. Xu, The formation of haloacetamides,
as an emerging class of N-DBPs, from chlor(am)ination of
algal organic matter extracted from Microcystis aeruginosa,
Scenedesmus quadricauda and Nitzschia palea, RSC Adv., 7 (2017)
7679–7687.
- I. Kristiana, D. Liew, R.K. Henderson, C.A. Joll, K.L. Linge,
Formation and control of nitrogenous DBPs from Western
Australian source waters: investigating the impacts of high
nitrogen and bromide concentrations, J. Environ. Sci., 58 (2017)
102–115.
- M. Pivokonsky, J. Naceradska, I. Kopecka, M. Baresova,
B. Jefferson, X. Li, R.K. Henderson, The impact of algogenic
organic matter on water treatment plant operation and water
quality: a review, Crit. Rev. Env. Sci. Technol., 46 (2016)
291–335.
- P. Xie, J. Ma, J. Fang, Y. Guan, S. Yue, X. Li, L. Chen, Comparison
of permanganate peroxidation and preozonation on algae
containing water: cell integrity, characteristics, and chlorinated
disinfection by-product formation, Environ. Sci. Technol.,
47 (2013) 14051–14061.
- K.C. Lee, B.C. Gegal, I.H. Choi, W.T. Lee, Formation characteristics
and control of disinfection by products in a drinking
water treatment plant using lake water, J. Korea Soc. Environ.
Eng., 37 (2015) 269–276.
- S.A. Huber, A. Balz, M. Abert, W. Pronk, Characterisation
of aquatic humic and non-humic matter with size-exclusion
chromatography – organic carbon detection – organic nitrogen
detection (LC-OCD-OND), Water Res., 45 (2011) 879–885.
- A. Gonzalez-Torres, A.M. Rich, R.K. Henderson, Evaluation
of biochemical algal floc properties using reflectance Fouriertransform
infrared imaging, Algal Res., 27 (2017) 345–355.
- S.H. So, I.H. Choi, H.C. Kim, S.K. Maeng, Seasonally related
effects on natural organic matter characteristics from source
to tap in Korea, Sci. Total Environ., 592 (2017) 584–592.
- M.R. Teixeira, M.J. Rosa, Comparing dissolved air flotation and
conventional sedimentation to remove cyanobacterial cells of
Microcystis aeruginosa: part 1: the key operating conditions, Sep.
Purif. Technol., 52 (2006) 84–94.
- J.K. Edzwald, Dissolved air flotation and me, Water Res.,
44 (2010) 2077–2106.
- M.R. Teixeira, M.J. Rosa, Comparing dissolved air flotation and
conventional sedimentation to remove cyanobacterial cells of
Microcystis aeruginosa: part 2: the effect of water background
organics, Sep. Purif. Technol., 53 (2007) 126–134.
- I.G. Jeong, M.J. Yi, H. Zhao, S. Dockko, Characteristics of DBPs
reduction of AOM by dissolved air flotation, Desal. Wat. Treat.,
54 (2015) 1436–1444.
- P. Jarvis, P. Buckingham, B. Holden, B. Jefferson, Low energy
ballasted flotation, Water Res., 43 (2009) 3427–3434.
- F. Ometto, C. Pozza, R. Whitton, B. Smyth, A.G. Torres,
R.K. Henderson,
P. Jarvis, B. Jefferson, R. Villa, The impacts of
replacing air bubbles with microspheres for the clarification
of algae from low cell-density culture, Water Res., 53 (2014)
168–179.
- C.S. Reynolds, D.A. Rogers, Seasonal variations in the vertical
distribution and buoyancy of Microcystis aeruginosa Kütz.
emend. Elenkin in Rostherne Mere, England, Hydrobiologia,
48 (1974) 17–23.
- L. Li, Z. Wang, L.C. Rietveld, N. Gao, J. Hu, D. Yin, S. Yu,
Comparison of the effects of extracellular and intracellular
organic matter extracted from Microcystis aeruginosa on ultrafiltration
membrane fouling: dynamics and mechanisms, Environ.
Sci. Technol., 48 (2014) 14549–14557.
- D. Lee, M. Kwon, Y. Ahn, Y. Jung, S.N. Nam, I. Choi, J.W. Kang,
Characteristics of intracellular algogenic organic matter and its
reactivity with hydroxyl radicals, Water Res., 144 (2018) 13–35.
- T. Guo, Y. Yang, R. Liu, X. Li, Enhanced removal of intracellular
organic matters (IOM) from Microcystic aeruginosa by aluminum
coagulation, Sep. Purif. Technol., 189 (2017) 279–287.
- C.M.M. Bougeard, E.M. Goslan, B. Jefferson, S.A. Parsons,
Comparison of the disinfection by-product formation potential
of treated waters exposed to chlorine and monochloramine,
Water Res., 44 (2010) 727–740.
- E.C. Wert, R.L. Rosario-ortiz, Intracellular organic matter from
cyanobacteria as precursor for carbonaceous and nitrogenous
disinfection byproduct, Environ. Sci. Technol., 47 (2013)
6332–6340.
- H.J. Son, C.U. Jeong, I.S. Kang, The relationship between
disinfection by-product formation and characteristics of natural
organic matter in the raw water for drinking water, J. Korean
Soc. Environ. Eng., 26 (2004) 457–466.
- G. Hua, J. Kim, D.A. Reckhow, Disinfection byproduct formation
from lignin precursors, Water Res., 63 (2014) 285–295.
- S.J. Cho, J.I. Peung, K.Y. Jung, D.H. Ahn, M.J. Shim, Evaluation
on trihalomethanes (THMs) formation potential in raw rater,
J. Korea Soc. Environ. Admin., 15 (2009) 7–15.