References

  1. W. Li, X. Li, K. Zeng, Aerobic biodegradation kinetics of tannic acid in activated sludge system, Biochem. Eng. J., 14 (2009) 142–148.
  2. R. Kumar, M. Barakat, E.M. Soliman, Removal of tannic acid from aqueous solution by magnetic carbohydrate natural polymer, J. Ind. Eng. Chem., 20 (2014) 2992–2997.
  3. J. Wang, A. Li, L. Xu, Y. Zhou, Adsorption of tannic and gallic acids on a new polymeric adsorbent and the effect of Cu(II) on their removal, J. Hazard. Mater., 169 (2009) 794–800.
  4. M. Gholami, S. Nazari, M. Farzadkia, G. Majidi, S.A. Matboo, Assessment of nanopolyamidoamine-G7 dendrimer antibacterial effect in aqueous solution, Tehran Univ. Med. J., 74 (2016) 159–167.
  5. E. De Nicola, S. Meriç, M. Gallo, M. Iaccarino, C. Della Rocca, G. Lofrano, T. Russo, G. Pagano, Vegetable and synthetic tannins induce hormesis/toxicity in sea urchin early development and in algal growth, Environ. Pollut., 146 (2007) 46–54.
  6. M. Gholami, S. Nazari, M. Farzadkia, S.M. Mohseni, S.A. Matboo, F.A. Dourbash, M. Hasannejad, Nano polyamidoamine-G7 dendrimer synthesis and assessment the antibacterial effect in vitro, Tehran Univ. Med. J., 74 (2016) 25–35.
  7. M. Adabi, R. Saber, R. Faridi-Majidi, F. Faridbod, Performance of electrodes synthesized with polyacrylonitrile-based carbon nanofibers for application in electrochemical sensors and biosensors, Mater. Sci. Eng., C, 48 (2015) 673–678.
  8. Ç. Sarıcı-Özdemir, Y. Önal, Equilibrium, kinetic and thermodynamic adsorptions of the environmental pollutant tannic acid onto activated carbon, Desalination, 251 (2010) 146–152.
  9. A.R. Rahmani, H.R. Ghafari, M.T. Samadi, M. Zarabi, Synthesis of zero valent iron nanoparticles (nZVI) and its efficiency in arsenic removal from aqueous solutions, Water Wastewater, 1 (2011) 35–41.
  10. P.K. Holt, G.W. Barton, M. Wark, C.A. Mitchell, A quantitative comparison between chemical dosing and electrocoagulation, Colloids Surf., A, 211 (2002) 233–248.
  11. L.J.J. Janssen, L. Koene, The role of electrochemistry and electrochemical technology in environmental protection, Chem. Eng. J., 85 (2002) 137–146.
  12. M. Pirsaheb, E. Azizi, A. Almasi, M. Soltanian, T. Khosravi, M. Ghayebzadeh, K. Sharafi, Evaluating the efficiency of electrochemical process in removing COD and NH4-N from landfill leachate, Desal. Water Treat., 57 (2016) 6644–6651.
  13. M. Heidari, M. Vosoughi, H. Sadeghi, A. Dargahi, S.A. Mokhtari, Degradation of diazinon from aqueous solutions by electro- Fenton process: effect of operating parameters, intermediate identification, degradation pathway, and optimization using response surface methodology (RSM), Sep. Sci. Technol., 56 (2020) 2287–2299.
  14. Keerthi, V. Vinduja, N. Balasubramanian, Removal of heavy metals by hybrid electrocoagulation and microfiltration processes, Environ. Technol., 34 (2013) 2897–2902.
  15. M. Saleem, M. Chakrabarti, D.B. Hasan, Electrochemical removal of nitrite in simulated aquaculture wastewater, Afr. J. Biotechnol., 10 (2011) 16566–16576.
  16. W.W. Eckenfelder, L.K. Cecil, Applications of New Concepts of Physical–Chemical Wastewater Treatment, Vol. 1, Vanderbilt University, Nashville, Tennessee, Elsevier, Amsterdam, September 18–22, 1972.
  17. N. Balasubramanian, T. Kojima, C. Srinivasakannan, Arsenic removal through electrocoagulation: kinetic and statistical modelling, Chem. Eng. J., 155 (2009) 76–82.
  18. N.A. Fayad, T. Yehya, F. Audonnet, Ch. Vial, Preliminary purification of volatile fatty acids in a digestate from acidogenic fermentation by electrocoagulation, Sep. Purif. Technol., 184 (2017) 220–230.
  19. D.J. Naghan, M.D. Motevalli, N. Mirzaei, A. Javid, H.R. Ghaffari, M. Ahmadpour, M. Moradi, K. Sharafi, Efficiency comparison of alum and ferric chloride coagulants in removal of dye and organic material from industrial wastewater - a case study, Bulg. Chem. Commun., 47 (2015) 206–210.
  20. Y. Zhou, X.-H. Xing, Z. Liu, L. Cui, A. Yu, Q. Feng, H. Yang, Enhanced coagulation of ferric chloride aided by tannic acid for phosphorus removal from wastewater, Chemosphere, 72 (2008) 290–298.
  21. B. Hayati, S. Nazari, S.A. Matboo, H. Pasalari, M. Arzanlou, E. Asgari, S.M. Mohseni, Improvement on electrochemical inactivation of Escherichia coli and Clostridium perfringens by assisted alum nanocrystallites approach: parametric and cost evaluation, Desal. Water Treat., 207 (2020) 361–372.
  22. J. Wang, C. Zheng, S. Ding, H. Ma, Y. Ji, Behaviors and mechanisms of tannic acid adsorption on an aminofunctionalized magnetic nanoadsorbent, Desalination, 273 (2011) 285–291.
  23. T. Bohli, A. Ouederni, N. Fiol, I. Villaescusa, Evaluation of an activated carbon from olive stones used as an adsorbent for heavy metal removal from aqueous phases, C.R. Chim., 18 (2015) 88–99.
  24. E. Antunes, M.V. Jacob, G. Brodie, P.A. Schneider, Silver removal from aqueous solution by biochar produced from biosolids via microwave pyrolysis, J. Environ. Manage., 203 (2017) 264–272.
  25. P. Thilagavathy, T. Santhi, Kinetics, isotherms and equilibrium study of Co(II) adsorption from single and binary aqueous solutions by Acacia nilotica leaf carbon, Chin. J. Chem. Eng., 22 (2014) 1193–1198.
  26. A. Monshi, M.R. Foroughi, M.R. Monshi, Modified Scherrer equation to estimate more accurately nano-crystallite size using XRD, World J. Nano Sci. Eng., 2 (2012) 154–160.
  27. H. Mittal, V. Parashar, S.B. Mishra, A.K. Mishra, Fe3O4 MNPs and gum xanthan based hydrogels nanocomposites for the efficient capture of malachite green from aqueous solution, Chem. Eng. J., 255 (2014) 471–482.
  28. T. Sun, C.-h. Sun, G.-l. Zhu, X.-j. Miao, C.-c. Wu, S.-b. Lv, W.-j. Li, Preparation and coagulation performance of polyferric-aluminum-silicate-sulfate from fly ash, Desalination, 268 (2011) 270–275.
  29. O. Liuzhang, L. Chengping, S. Xiandong, Z. Meiqin, Z. Min, Fabrication and microstructure of in situ Al2O3 decomposed from Al2(SO4)3-reinforced aluminum matrix composites, Mater. Lett., 57 (2003) 1712–1715.
  30. L.Y. Wang, D.S. Tong, L.Z. Zhao, F.G. Liu, N. An, W.H. Yu, C.H. Zhou, Utilization of alum sludge for producing aluminum hydroxide and layered double hydroxide, Ceram. Int., 40 (2014) 15503–15514.
  31. Y. Yang, Y. Zhao, P. Kearney, Influence of ageing on the structure and phosphate adsorption capacity of dewatered alum sludge, Chem. Eng. J., 145 (2008) 276–284.
  32. Z.L. Yang, B.Y. Gao, Q.Y. Yue, Y. Wang, Effect of pH on the coagulation performance of Al-based coagulants and residual aluminum speciation during the treatment of humic acid–kaolin synthetic water, J. Hazard. Mater., 178 (2010) 596–603.
  33. Z. Yang, B. Gao, Q. Yue, Coagulation performance and residual aluminum speciation of Al2(SO4)3 and polyaluminum chloride (PAC) in Yellow River water treatment, Chem. Eng. J., 165 (2010) 122–132.
  34. A. Safa Özcan, A. Özcan, Adsorption of acid dyes from aqueous solutions onto acid-activated bentonite, J. Colloid Interface Sci., 276 (2004) 39–46.
  35. J. Wang, S. Zheng, J. Liu, Z. Xu, Tannic acid adsorption on amino-functionalized magnetic mesoporous silica, Chem. Eng. J., 165 (2010) 10–16.
  36. M.M. Salim, N.A.N.N. Malek, Characterization and antibacterial activity of silver exchanged regenerated NaY zeolite from surfactant-modified NaY zeolite, Mater. Sci. Eng., C, 59 (2016) 70–77.
  37. Y. Deng, L. Wang, X. Hu, B. Liu, Z. Wei, S. Yang, C. Sun, Highly efficient removal of tannic acid from aqueous solution by chitosan-coated attapulgite, Chem. Eng. J., 181 (2012) 300–306.
  38. C. Sun, B. Xiong, Y. Pan, H. Cui, Adsorption removal of tannic acid from aqueous solution by polyaniline: analysis of operating parameters and mechanism, J. Colloid Interface Sci., 487 (2017) 175–181.
  39. Y. Ge, Z. Li, Y. Kong, Q. Song, K. Wang, Heavy metal ions retention by bi-functionalized lignin: synthesis, applications, and adsorption mechanisms, J. Ind. Eng. Chem., 20 (2014) 4429–4436.
  40. J. Antony, Design of Experiments for Engineers and Scientists, Elsevier, Amsterdam, 2014.
  41. P. Wang, M. Du, H. Zhu, S. Bao, T. Yang, M. Zou, Structure regulation of silica nanotubes and their adsorption behaviors for heavy metal ions: pH effect, kinetics, isotherms and mechanism, J. Hazard. Mater., 286 (2015) 533–544.
  42. S.S. Tripathy, J.-L. Bersillon, K. Gopal, Removal of fluoride from drinking water by adsorption onto
    alum-impregnated activated alumina, Sep. Purif. Technol., 50 (2006) 310–317.
  43. N. Mohammadi, H. Khani, V.K. Gupta, E. Amereh, S. Agarwal, Adsorption process of methyl orange dye onto mesoporous carbon material–kinetic and thermodynamic studies, J. Colloid Interface Sci., 362 (2011) 457–462.
  44. Y.-F. Zhou, R.J. Haynes, Removal of Pb(II), Cr(III) and Cr(VI) from aqueous solutions using alum-derived water treatment sludge, Water Air Soil Pollut., 215 (2011) 631–643.
  45. S. Poorsadeghi, M. Kassaee, H. Fakhri, M. Mirabedini, Removal of arsenic from water using aluminum nanoparticles synthesized through arc discharge method, Iran. J. Chem. Chem. Eng., 36 (2017) 91–99.
  46. I.H. Chowdhury, A.H. Chowdhury, P. Bose, S. Mandal, M.K. Naskar, Effect of anion type on the synthesis of mesoporous nanostructured MgO, and its excellent adsorption capacity for the removal of toxic heavy metal ions from water, RSC Adv., 6 (2016) 6038–6047.
  47. M. Tony, Zeolite-based adsorbent from alum sludge residue for textile wastewater treatment, Int. J. Environ. Sci. Technol., 17 (2020) 2485–2498.
  48. M.-Y. Chang, R.-S. Juang, Adsorption of tannic acid, humic acid, and dyes from water using the composite of chitosan and activated clay, J. Colloid Interface Sci., 278 (2004) 18–25.
  49. J.-H. An, S. Dultz, Adsorption of tannic acid on chitosanmontmorillonite as a function of pH and surface charge properties, Appl. Clay Sci., 36 (2007) 256–264.
  50. A.A. Lawal, M.A. Hassan, M.A.A. Farid, T.A.T. Yasim-Anuar, M.H. Samsudin, M.Z.M. Yusoff, M.R. Zakaria, M.N. Mokhtar, Y. Shirai, Adsorption mechanism and effectiveness of phenol and tannic acid removal by biochar produced from oil palm frond using steam pyrolysis, Environ. Pollut., 269 (2021) 116–197.
  51. C.-B. Cai, L. Xu, W. Zhong, Y.-Y. Tao, B. Wang, H.-W. Yang, M.-Q. Wen, Studying a gas–solid multi-component adsorption process with near-infrared process analytical technique: experimental setup, chemometrics, adsorption kinetics and mechanism, Chemom. Intell. Lab. Syst., 144 (2015) 80–86.
  52. K. Ahamad, R. Singh, I. Baruah, H. Choudhury, M. Sharma, Equilibrium and kinetics modeling of fluoride adsorption onto activated alumina, alum and brick powder, Groundwater Sustainable Dev., 7 (2018) 452–458.
  53. Y. Xiao, J. Azaiez, J.M. Hill, Erroneous application of pseudo-second-order adsorption kinetics model: ignored assumptions and spurious correlations, Ind. Eng. Chem. Res., 57 (2018) 2705–2709.