화학공학소재연구정보센터
Macromolecular Research, Vol.27, No.10, 982-990, October, 2019
Removal of Cd(II) Ions from Wastewater by Compounding an O-Xanthogenated Chitosan Schiff Base and Fe(III) Ions
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The removal of Cd(II) ions from wastewater via the compound flocculation of O-xanthogenated chitosan Schiff base (XCTS) and Fe(III) ions was studied. The compound flocculant Fe(III)/XCTS was effective in an acid range of pH 3.0?5.0. When the pH was 3.0 and the compound ratio of [Fe(III)]/[XCTS] was 1:12, the compounded system Fe(III)/XCTS had the best effect on the removal of Cd(II) ions; the removal rate of Cd(II) ions was greater than 99.5%, and the Cd(II) ion concentration of the treated wastewater met the 0.1 mg L-1 limit set by the National Integrated Wastewater Discharge Standard of China. Furthermore, while studying the compound flocculation of Fe(III) ions and XCTS, we found that the approach enhanced the growth and structure of the flocs in the progress of removing Cd(II) ions.
  1. Pan J, Plant JA, Voulvoulis N, Oates CJ, Ihlenfeld C, Environ Geochem Health, 32, 1 (2010)
  2. Heidari A, Younesi H, Mehraban Z, Chemm. Eng. J., 153, 70 (2009)
  3. He YJ, Luo LY, Liang SQ, Long MQ, Xu H, J. Colloid Interface Sci., 525, 126 (2018)
  4. IPCS, International programme on chemical safety: Environmental health criteria for methyl bromide (1991).
  5. China national environmental protection bureau, Comprehensive sewage discharge standards (GB 8979) (1996).
  6. Barakat MA, Arabian J. Chem., 4, 361 (2011)
  7. Madala S, Nadavala SK, Vudagandla S, Boddu VM, Abburi K, Arabian J. Chem., 8, 1 (2013)
  8. Ramrakhiani L, Ghosh S, Majumdar S, Appl. Biochem. Biotechnol., 180(1), 41 (2016)
  9. Kim JH, Gu M, Lee DH, Kim JH, Oh YS, Min SH, Kim BS, Lee SY, Nano Lett., 16, 5533 (2016)
  10. Jing XS, Liu FQ, Yang X, Ling PP, Li LJ, Long C, Li AM, J. Hazard. Mater., 167(1-3), 589 (2009)
  11. Chang Q, Wang G, Chem. Eng. Sci., 62(17), 4636 (2007)
  12. Zewail TM, Yousef NS, Alexandria Eng. J., 54, 83 (2015)
  13. Rao KS, Mohapatra M, Anand S, Venkateswarlu P, Sci. Technol., 2, 81 (2010)
  14. Barakat MA, Arabian J. Chem., 4, 361 (2011)
  15. Shahata MM, Arabian J. Chem., 9, 755 (2016)
  16. Rahmi, Lelifajri, Julinawati, Shabrina, Carbohydr. Polym., 170, 226 (2017)
  17. Sangeetha K, Vidhya G, Girija EK, J. Environm. Chem. Eng., 6, 1118 (2018)
  18. Ahmad H, Sharafat MK, Alam MA, Rahman MM, Tauer K, Minami H, Sultana MS, Das BK, Shabnam R, Macromol. Res., 25(7), 671 (2017)
  19. Wang ZZ, Duan HD, Meng X, Zhang YF, Qi HM, Macromol. Res., 24(9), 757 (2016)
  20. Wang G, Chang Q, Han XT, Zhang MY, J. Hazard. Mater., 248-249, 115 (2013)
  21. Chang Q, Zhang M, Wang JX, J. Hazard. Mater., 169(1-3), 621 (2009)
  22. Liu LH, Wu J, Li X, Ling YL, Sep. Purif. Technol., 103, 92 (2013)
  23. Chang Q, Hao XK, Duan LL, J. Hazard. Mater., 159(2-3), 548 (2008)
  24. Bratskaya SY, Pestov AV, Yatluk YG, Avramenko VA, Colloids Surf. A: Physicochem. Eng. Asp., 339, 140 (2009)
  25. Seo SB, Kajiuchi T, Kim DI, Lee SH, Kim HK, Macromol. Res., 10(2), 103 (2002)
  26. Yang K, Wang G, Chen XM, Wang X, Liu FL, Colloids Surf. A: Physicochem. Eng. Asp., 558, 384 (2018)
  27. Wang X, Wang G, Yang K, Chen XM, Technol. Water Treatment, 44, 26 (2018)
  28. Fu FL, Chen RM, Xiong Y, J. Hazard. Mater., 142(1-2), 437 (2007)
  29. Jiang JG, Wang W, Zhao XL, Environm. Sci., 20, 65 (1999)
  30. Xu M, Chang Q, Chen JJ, Water Environm. Res., 82, 790 (2010)
  31. Zheng HL, Sun XP, He Q, Liang K, Zhang P, J. Appl. Polym. Sci., 110(4), 2461 (2008)
  32. Lopez-Maldonado EA, Oropeza-Guzman MT, Jurado-Baizaval JL, Ochoa-Teran A, J. Hazard. Mater., 279, 1 (2014)
  33. Bratskaya SY, Pestov AV, Yatluk YG, Avramenko VA, Colloids Surf. A: Physicochem. Eng. Asp., 339, 140 (2009)
  34. Yang Z, Yuan B, Huang X, Zhou JY, Cai J, Yang H, Li AM, Cheng RS, Water Res., 46, 107 (2012)
  35. Lopez-Maldonado EA, Garcia OGZ, Escobedo KC, Oropeza-Guzman MT, J. Hazard. Mater., 335, 18 (2017)