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.1432 工程科学学报,第43卷,第11期 University Press,2011 [14]Greaves D,Boxall J,Mulligan J,et al.Measuring the particle size (孙体昌.固液分离.长沙:中南大学出版社,2011) of a known distribution using the focused beam reflectance [4]Chang Q.Water Treatment Flocculation.Beijing:Chemical measurement technique.Chem Eng Sci,2008,63(22):5410 Industry Press,2003 [15]Selomulya C,Bushell G,Amal R,et al.Aggregate properties in (常青.水处理絮凝学.北京:化学工业出版社,2003) relation to aggregation conditions under various applied shear [5]Tombaz E,Szekeres M.Surface charge heterogeneity of kaolinite environments.IntJ Miner Process,2004,73(2-4):295 in aqueous suspension in comparison with montmorillonite.Appl [16]Serra T,Colomer J,Logan B E.Efficiency of different shear Clay Sci,2006,34(1-4:105 devices on flocculation.Water Res,2008,42(4-5):1113 [6] Jarvis P,Jefferson B.Gregory J.et al.A review of floc strength [17]Oyegbile B,Ay P,Narra S.Flocculation kinetics and and breakage.Water Res,2005,39(14):3121 hydrodynamic interactions in natural and engineered flow systems [7]Gladman B R.Rudman M.Scales P J.The effect of shear on A review.Emviron Eng Res,2016,21(1):1 gravity thickening:Pilot scale modelling.Chem Eng Sci,2010, [18]Bubakova P,Pivokonsky M,Filip P.Effect of shear rate on 65(14):4293 aggregate size and structure in the process of aggregation and at [8]Zhang N Y,Zhou J J,Wang J.A review of experimental study on steady state.Powder Technol,2013,235:540 floc structure of cohesive sediment.J Sediment Res,2016(1):76 [19]Coufort C,Bouyer D,Line A.Flocculation related to local (张乃予,周品品,王捷.泥沙絮团结构的试验研究综述.泥沙研 hydrodynamics in a Taylor-Couette reactor and in a jar.Chem Eng 究,2016(1):76) Sc,2005,60(8-9:2179 [9]Wu A X.Ruan Z E,Burger R,et al.Optimization of flocculation [20]Lu S C,Ding Y Q,Guo J Y.Kinetics of fine particle aggregation and settling parameters of tailings slurry by response surface in turbulence.Adv Colloid Interface Sci,1998,78(3):197 methodology.Miner Eng,2020,156:106488 [21]He J G,Liu J,Yuan Y X,et al.A novel quantitative method for [10]Guo C,He Q,Guo L C,et al.Study on the effects of turbulence on evaluating floc strength under turbulent flow conditions. cohesive sediment flocculation and settling properties.J Sediment Desalination Water Treat,2015,56(7):1975 Re5,2019,44(2):18 (郭超,何青,郭磊城,等.素动对黏性细颗粒泥沙絮凝沉降影响 [22]Bouyer D,Line A,Do-Quang Z.Experimental analysis of floc size 的试验研究.泥沙研究,2019,44(2):18) distribution under different hydrodynamics in a mixing tank. 1]Ye J.A Preliminary Study on Flocculation Kinetics and A1ChEJ,2004,50(92064 Characteristics f Flocs [Dissertation]Guangzhou:South China [23]Spicer P T,Pratsinis S E.Shear-induced flocculation:the evolution University of Technology,2011 of floc structure and the shape of the size distribution at steady (叶健.絮凝动力学及其絮体的特性的初步研究学位论文],广 state.Wat Res,1996.30(5):1049 州:华南理工大学,2011) [24]Wang X C,Tambo N.A study on the morphology and density of [12]Nguyen T,Heath A,Witt P.Population balance-CFD modelling of flocus-I.The fractal structure of floc.Acta Sci Circum,2000. fluid flow,solids distribution and flocculation in thickener 20(3):257 feedwells /Fifth International Conference on CFD in the Process (王晓昌,丹保宪仁絮凝体形态学和密度的探讨一I.从絮凝 Industries.Melbourne,2006 体分形构造谈起.环境科学学报,2000,20(3):257) [13]Owen A T,Nguyen T V,Fawell P D.The effect of flocculant [25]Glaman B R.The Effect of Shear on Dewatering of Flocculated solution transport and addition conditions on feedwell performance Suspensions [Dissertation].Mlebourne:the University of in gravity thickeners.Int J Miner Process,2009,93(2):115 Mlebourne,2005University Press, 2011 ( 孙体昌. 固液分离. 长沙: 中南大学出版社, 2011) Chang  Q. Water Treatment Flocculation.  Beijing:  Chemical Industry Press, 2003 ( 常青. 水处理絮凝学. 北京: 化学工业出版社, 2003) [4] Tombaz E, Szekeres M. Surface charge heterogeneity of kaolinite in  aqueous  suspension  in  comparison  with  montmorillonite. Appl Clay Sci, 2006, 34(1-4): 105 [5] Jarvis  P,  Jefferson  B,  Gregory  J,  et  al.  A  review  of  floc  strength and breakage. Water Res, 2005, 39(14): 312l [6] Gladman  B  R,  Rudman  M,  Scales  P  J.  The  effect  of  shear  on gravity  thickening:  Pilot  scale  modelling. Chem Eng Sci,  2010, 65(14): 4293 [7] Zhang N Y, Zhou J J, Wang J. A review of experimental study on floc structure of cohesive sediment. J Sediment Res, 2016(1): 76 (张乃予, 周晶晶, 王捷. 泥沙絮团结构的试验研究综述. 泥沙研 究, 2016(1):76) [8] Wu A X, Ruan Z E, Bürger R, et al. Optimization of flocculation and  settling  parameters  of  tailings  slurry  by  response  surface methodology. Miner Eng, 2020, 156: 106488 [9] Guo C, He Q, Guo L C, et al. Study on the effects of turbulence on cohesive sediment flocculation and settling properties. J Sediment Res, 2019, 44(2): 18 (郭超, 何青, 郭磊城, 等. 紊动对黏性细颗粒泥沙絮凝沉降影响 的试验研究. 泥沙研究, 2019, 44(2):18) [10] Ye  J. A Preliminary Study on Flocculation Kinetics and Characteristics of Flocs [Dissertation].  Guangzhou:  South  China University of Technology, 2011 ( 叶健. 絮凝动力学及其絮体的特性的初步研究[学位论文]. 广 州: 华南理工大学, 2011) [11] Nguyen T, Heath A, Witt P. Population balance-CFD modelling of fluid  flow,  solids  distribution  and  flocculation  in  thickener feedwells // Fifth International Conference on CFD in the Process Industries. Melbourne, 2006 [12] Owen  A  T,  Nguyen  T  V,  Fawell  P  D.  The  effect  of  flocculant solution transport and addition conditions on feedwell performance in gravity thickeners. Int J Miner Process, 2009, 93(2): 115 [13] Greaves D, Boxall J, Mulligan J, et al. Measuring the particle size of  a  known  distribution  using  the  focused  beam  reflectance measurement technique. Chem Eng Sci, 2008, 63(22): 5410 [14] Selomulya  C,  Bushell  G,  Amal  R,  et  al.  Aggregate  properties  in relation  to  aggregation  conditions  under  various  applied  shear environments. Int J Miner Process, 2004, 73(2-4): 295 [15] Serra  T,  Colomer  J,  Logan  B  E.  Efficiency  of  different  shear devices on flocculation. Water Res, 2008, 42(4-5): 1113 [16] Oyegbile  B,  Ay  P,  Narra  S.  Flocculation  kinetics  and hydrodynamic interactions in natural and engineered flow systems: A review. Environ Eng Res, 2016, 21(1): 1 [17] Bubakova  P,  Pivokonsky  M,  Filip  P.  Effect  of  shear  rate  on aggregate  size  and  structure  in  the  process  of  aggregation  and  at steady state. Powder Technol, 2013, 235: 540 [18] Coufort  C,  Bouyer  D,  Liné  A.  Flocculation  related  to  local hydrodynamics in a Taylor–Couette reactor and in a jar. Chem Eng Sci, 2005, 60(8-9): 2179 [19] Lu S C, Ding Y Q, Guo J Y. Kinetics of fine particle aggregation in turbulence. Adv Colloid Interface Sci, 1998, 78(3): 197 [20] He J G, Liu J, Yuan Y X, et al. A novel quantitative method for evaluating  floc  strength  under  turbulent  flow  conditions. Desalination Water Treat, 2015, 56(7): 1975 [21] Bouyer D, Liné A, Do-Quang Z. Experimental analysis of floc size distribution  under  different  hydrodynamics  in  a  mixing  tank. AIChE J, 2004, 50(9): 2064 [22] Spicer P T, Pratsinis S E. Shear-induced flocculation: the evolution of  floc  structure  and  the  shape  of  the  size  distribution  at  steady state. Wat Res, 1996, 30(5): 1049 [23] Wang X C, Tambo N. A study on the morphology and density of flocus-I.  The  fractal  structure  of  floc. Acta Sci Circum,  2000, 20(3): 257 (王晓昌, 丹保宪仁. 絮凝体形态学和密度的探讨—Ⅰ. 从絮凝 体分形构造谈起. 环境科学学报, 2000, 20(3):257) [24] Glaman  B  R. The Effect of Shear on Dewatering of Flocculated Suspensions [Dissertation].  Mlebourne:  the  University  of Mlebourne, 2005 [25] · 1432 · 工程科学学报,第 43 卷,第 11 期
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