Tao L, Zhe Z, Wang D S, et al. Characterization of floc size, strength and structure under various coagulation mechanisms[J]. Powder Technology,2006,168:104-110
Gao B Y,Wang Y, Yue Q Y,et al. The size and coagulation behavior of a novel composite inorganic organic coagulant[J]. Sep Purif Technol,2008,62:544-550
Yang Z,Yuan B,Huang X,et al. Evaluation of the flocculation performance of carboxymethyl chitosan- graft-polyacrylamide, a novel amphoteric chemically bonded composite flocculant[J].Water Research,2012,46:107-114
[12]
Gao B Y,Wang Y,Yue Q Y,et al. Color removal from simulated dye water and actual textile waste water using a composite coagulant prepared by polyferric chloride and polydimethyldially lammonium chloride[J].Sep Purif Technol,2007,54 (2):157-163
Runkana V, Somasundaran P, Kapur P C. Mathematical modeling of polymer-induced flocculation by charge neutralization[J]. Journal of Colloid and Interface Science,2004,270: 347-358
[17]
Yu W Z, Li G B, Xu Y P, et al. Breakage and re-growth of flocs formed by alum and PACl[J].Powder Technology,2009,189: 439-443
[18]
Hunter R J. Zeta Potential in Colloid Science [M]. London: Academic Press,1981: 203-204