References

  1. S. Hussain, J. Awad, B. Sarkar, C.W.K. Chow, J.M. Duan, J. van Leeuwen, Coagulation of dissolved organic matter in surface water by novel titanium (III) chloride: mechanistic surface chemical and spectroscopic characterisation, Sep. Purif. Technol., 213 (2019) 213–223.
  2. W.X. Qi, H. Zhang, R.P. Liu, H.J. Liu, J.H. Qu, Effects of different secondary biological treatment processes followed by flocculation and sand-filtration on subsequent DBPs control from sewage treatment plants, Sep. Purif. Technol., 211 (2019) 81–89.
  3. C. Chen, T.F. Ma, Y.N. Shang, B.Y. Gao, B. Jin, H.B. Dan, Q. Li, Q.Y. Yue, Y.W. Li, Y. Wang, X. Xu, In-situ pyrolysis of Enteromorpha as carbocatalyst for catalytic removal of organic contaminants: considering the intrinsic N/Fe in Enteromorpha and non-radical reaction, Appl. Catal., B, 250 (2019) 382–395.
  4. M.-H. Lee, Y.S. Ok, J. Hur, Dynamic variations in dissolved organic matter and the precursors of disinfection by-products leached from biochars: leaching experiments simulating intermittent rain events, Environ. Pollut., 242 (2018) 1912–1920.
  5. M. Gonsior, L.C. Powers, E. Williams, A. Place, F. Chen, A. Ruf, N. Hertkorn, P. Schmitt-Kopplin, The chemodiversity of algal dissolved organic matter from lysed Microcystis aeruginosa cells and its ability to form disinfection by-products during chlorination, Water Res., 155 (2019) 300–309.
  6. T.R. Young, W.T. Li, A. Guo, G.V. Korshin, M.C. Dodd, Characterization of disinfection byproduct formation and associated changes to dissolved organic matter during solar photolysis of free available chlorine, Water Res., 146 (2018) 318–327.
  7. X.M. Tang, H. Zheng, H.K. Teng, Y.J. Sun, J.S. Guo, W.Y. Xie, Q.Q. Yang, W. Chen, Chemical coagulation process for the removal of heavy metals from water: a review, Desal. Wat. Treat., 57 (2016) 1733–1748.
  8. X. Tang, H. Zheng, B. Gao, C. Zhao, B. Liu, W. Chen, J. Guo, Interactions of specific extracellular organic matter and polyaluminum chloride and their roles in the algae-polluted water treatment, J. Hazard. Mater., 332 (2017) 1–9.
  9. H. Du, Z. Yang, Z. Tian, M. Huang, W. Yang, L. Zhang, A. Li, Enhanced removal of trace antibiotics from turbid water in the coexistence of natural organic matters using phenylalanine-modified chitosan flocculants: effect of flocculants’ molecular architectures, Chem. Eng. J., 333 (2018) 310–319.
  10. R. Yang, H. Li, M. Huang, H. Yang, A. Li, A review on chitosanbased flocculants and their applications in water treatment, Water Res., 95 (2016) 59–89.
  11. J. Song, S. Zhang, K. Wang, Y. Wang, Synthesis of million molecular weight polyacrylamide with droplet flow microreactors, J. Taiwan Inst. Chem. Eng., 98 (2019) 78–84.
  12. S. Hong, Y. Yuan, Q.R. Yang, P. Zhu, H.L. Lian, Versatile acid base sustainable solvent for fast extraction of various molecular weight chitin from lobster shell, Carbohydr. Polym., 201 (2018) 211–217.
  13. N.A. Abdelwahab, N.S. Ammar, H.S. Ibrahim, Graft copolymerization of cellulose acetate for removal and recovery of lead ions from wastewater, Int. J. Biol. Macromol., 79 (2015) 913–922.
  14. W. Chen, H. Zheng, Q. Guan, H. Teng, C. Zhao, C. Zhao, Fabricating a flocculant with controllable cationic microblock structure: characterization and sludge conditioning behavior evaluation, Ind. Eng. Chem. Res., 55 (2016) 2892–2902.
  15. J. Ma, K. Fu, J. Shi, Y. Sun, X. Zhang, L. Ding, Ultraviolet-assisted synthesis of polyacrylamide-grafted chitosan nanoparticles and flocculation performance, Carbohydr. Polym., 151 (2016) 565–575.
  16. Z. Wang, W. Huang, G. Yang, Y. Liu, S. Liu, Preparation of cellulose-base amphoteric flocculant and its application in the treatment of wastewater, Carbohydr. Polym., 215 (2019) 179–188.
  17. J. Ma, J. Shi, H. Ding, G. Zhu, K. Fu, X. Fu, Synthesis of cationic polyacrylamide by low-pressure UV initiation for turbidity water flocculation, Chem. Eng. J., 312 (2017) 20–29.
  18. X. Tang, H. Zheng, H. Teng, C. Zhao, Y. Wang, W. Xie, W. Chen, C. Yang, An alternative method for preparation of polyaluminum chloride coagulant using fresh aluminum hydroxide gels: characterization and coagulation performance, Chem. Eng. Res. Des., 104 (2015) 208–217.
  19. S. Zhang, H. Zheng, X. Tang, Y. Sun, Y. Wu, X. Zheng, Q. Sun, Evaluation a self-assembled anionic polyacrylamide flocculant for the treatment of hematite wastewater: role of microblock structure, J. Taiwan Inst. Chem. Eng., 95 (2019) 11–20.
  20. X. Tang, H. Zheng, Y. Wang, W. Chen, J. Guo, Y. Zhou, X. Li, Effect of fresh aluminum hydroxide gels on algae removal from micro-polluted water by polyaluminum chloride coagulant, J. Taiwan Inst. Chem. Eng., 63 (2016) 195–201.