References
- K.Y.J. Choi, B.A. Dempsey, In-line coagulation with lowpressure
membrane filtration, Water Res., 38 (2004) 4271–4281.
- M.A. Yukselen, J. Gregory, The reversibility of breakage, Int.
J. Mineral. Process., 73 (2004) 9.
- D. Bouyer, C. Coufort, A. Line, Z. Do-Quang, Experimental
analysis of floc size distributions in a 1-L jar under different
hydrodynamics and physicochemical conditions, J. Colloid
Interface Sci., 292 (2005) 413–428.
- M. Elazzouzi, K. Haboubi, M.S. Elyoubi, Electrocoagulation
flocculation as a low-cost process for pollutants removal from
urban wastewater, Chem. Eng. Res. Des., 117 (2017) 614–626.
- M.G. Rasteiro, I. Pinheiro, H. Ahmadloo, D. Hunkeler,
F.A.P. Garcia, P. Ferreira, C. Wandrey, Correlation between
flocculation and adsorption of cationic polyacrylamides on
precipitated calcium carbonate, Chem. Eng. Res. Des., 95 (2015)
298–306.
- I.C. Tse, K. Swetland, M.L. Weber-Shirk, L.W. Lion, Fluid
shear influences on the performance of hydraulic flocculation
systems, Water Res., 45 (2011) 5412–5418.
- K. Samaras, A. Zouboulis, T. Karapantsios, M. Kostoglou,
A CFD-based simulation study of a large scale flocculation tank
for potable water treatment, Chem. Eng. J., 162 (2010) 208–216.
- F. Trivellato, On the efficiency of turbulent mixing in rotating
stirrers, Chem. Eng. Process., 50 (2011) 799–809.
- D.C. Hopkins, J.J. Ducoste, Characterizing flocculation under
heterogeneous turbulence, J. Colloid Interface Sci., 264 (2003)
184–194.
- P. Jarvis, B. Jefferson, J. Gregory, S.A. Parsons, A review of floc
strength and breakage, Water Res., 39 (2005) 3121–3137.
- Y. Watanabe, Flocculation and me, Water Res., 114 (2017) 88–103.
- W.Z. Yu, J. Gregory, L. Campos, G.B. Li, The role of mixing
conditions on floc growth, breakage and re-growth, Chem. Eng.
J., 171 (2011) 425–430.
- C. Selomulya, R. Amal, G. Bushell, T.D. Waite, Evidence of
shear rate dependence on restructuring and breakup of latex
aggregates, J. Colloid Interface Sci., 236 (2001) 67–77.
- J. Bridgeman, B. Jefferson, S.A. Parsons, The development and
application of CFD models for water treatment flocculators,
Adv. Eng. Software, 41 (2010) 99–109.
- C. Garneau, S. Duchesne, A. St-Hilaire, Comparison of modelling
approaches to estimate trapping efficiency of sedimentation
basins on peatlands used for peat extraction, Ecol. Eng.,
133 (2019) 60–68.
- D.A. Deglon, C.J. Meyer, CFD modelling of stirred tanks:
numerical considerations, Miner. Eng., 19 (2006) 1059–1068.
- X. Feng, J.C. Cheng, X.Y. Li, C. Yang, Z.S. Mao, Numerical
simulation of turbulent flow in a baffled stirred tank with an
explicit algebraic stress model, Chem. Eng. Sci., 69 (2012) 30–44.
- K.H. Javed, T. Mahmud, J.M. Zhu, Numerical simulation
of turbulent batch mixing in a vessel agitated by a Rushton
turbine, Chem. Eng. Process., 45 (2006) 99–112.
- M.H. Vakili, M.N. Esfahany, CFD analysis of turbulence in a
baffled stirred tank, a three-compartment model, Chem. Eng.
Sci., 64 (2009) 351–362.
- H.W. Gao, M.K. Stenstrom, Turbulence and interphase mass
diffusion assumptions on the performance of secondary settling
tanks, Water Environ. Res., 91 (2019) 101–110.
- W.P. He, L.P. Xue, B. Gorczyca, J. Nan, Z. Shi, Experimental
and CFD studies of floc growth dependence on baffle width
in square stirred-tank reactors for flocculation, Sep. Purif.
Technol., 190 (2018) 228–242.
- H.W. Gao, M.K. Stenstrom, Generalizing the effects of the
baffling structures on the buoyancy-induced turbulence in
secondary settling tanks with eleven different geometries using
CFD models, Chem. Eng. Res. Des., 143 (2019) 215–225.
- M. Jahoda, M. Mostek, A. Kukukova, V. Machon, CFD modelling
of liquid homogenization in stirred tanks with one and two
impellers using large eddy simulation, Chem. Eng. Res. Des.,
85 (2007) 616–625.
- J. Gregory, Monitoring particle aggregation processes, Adv.
Colloid Interface Sci., 147–148 (2009) 109–123.
- W.P. He, L.P. Xue, B. Gorczyca, J. Nan, Z. Shi, Comparative
analysis on flocculation performance in unbaffled square stirred
tanks with different height-to-width ratios: experimental and
CFD investigations, Chem. Eng. Res. Des., 132 (2018) 518–535.