Investigation of the effect of time on polypyrrole adsorbent membrane for nickel metal removal

نویسندگان

  • Seyedeh Mahkameh Sharifi Ghadikolaei M.Sc. in Chemical Engineering, Separation Processes, Babol Noshirvani University of Technology نویسنده

کلمات کلیدی:

Interfacial Polymerization, Polypyrrole, Adsorbent Membrane, Nickel

چکیده

One of the common methods for removing heavy metals from aqueous solutions is the use of membranes. In this study, a sorbent (polypyrrole) was used to enhance the efficiency of a polyether sulfone membrane in removing nickel metal ions from water. It is worth mentioning that the synthesis method of the polyether sulfone membrane was carried out through surface polymerization. This study was conducted under neutral pH conditions and ambient temperature, with various contact times from zero to 180 minutes to investigate the percentage of nickel adsorption in a batch system. The chemical structure of the membrane was characterized using the water contact angle (WCA) test, and the surface morphology was examined using a field emission scanning electron microscope (FESEM). The results indicate that polypyrrole formed on the pure membrane and has the ability to remove nickel ions from the aqueous solution. In this study, it was observed that the adsorption percentage initially increased with the contact time and then reached equilibrium.

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بیوگرافی نویسنده

  • Seyedeh Mahkameh Sharifi Ghadikolaei، M.Sc. in Chemical Engineering, Separation Processes, Babol Noshirvani University of Technology

      

مراجع

[1] S. Malato, P. Fernández-Ibáñez, M. I. Maldonado, J. Blanco, and W. Gernjak, "Decontamination and disinfection of water by solar photocatalysis: recent overview and trends," Catalysis today, vol. 147, no. 1, pp. 1-59, 2009.

[2] M. N. Chong, B. Jin, C. W. Chow, and C. Saint, "Recent developments in photocatalytic water treatment technology: a review," Water research, vol. 44, no. 10, pp. 2997-3027, 2010.

[3] Li, Xianfeng, Pieter Vandezande, and Ivo FJ Vankelecom. "Polypyrrole modified solvent resistant nanofiltration membranes." Journal of Membrane Science 320.1-2 (2008): 143-150.

[4] Carolin, C.F., Kumar, P.S., Saravanan, A., Joshiba, G.J. and Naushad, M.; "Efficient techniques for the removal of toxic heavy metals from aquatic environment: A review", Journal of Environmental Chemical Engineering, pp.2782-2799, 2017.

[5] Darabi, Rezvaneh Ramezani, Majid Peyravi, and Mohsen Jahanshahi. "Forward osmosis process membranes incorporated with functionalized P. ZnO nanoparticles for organic fouling control." Korean Journal of Chemical Engineering 38 (2021): 843-851.

[6] Teng, Xiangguo, et al. "Polypyrrole thin film composite membrane prepared via interfacial polymerization with high selectivity for vanadium redox flow battery." Reactive and Functional Polymers 157 (2020): 104777.

[7] Amiri, Afsaneh, Mohsen Ghorbani, and Mansoor Jahangiri. "A novel chitosan/polyrhodanine nanocomposite: preparation, characterisation and application for Ni (II) ions removal from aqueous solution." Journal of Experimental Nanoscience 10.18 (2015): 1374-1386.

[8] Sun, Ping, et al. "Efficient adsorption of Cu (II), Pb (II) and Ni (II) from waste water by PANI@ APTS-magnetic attapulgite composites." Applied Clay Science 209 (2021): 106151.

[9] Tirtom, Vedia Nüket, et al. "Comparative adsorption of Ni (II) and Cd (II) ions on epichlorohydrin crosslinked chitosan–clay composite beads in aqueous solution." Chemical Engineering Journal 197 (2012): 379-386.

چاپ شده

2025-02-18

ارجاع به مقاله

Investigation of the effect of time on polypyrrole adsorbent membrane for nickel metal removal. (2025). پایگاه مقالات مرکز همایشهای مهندسی توسعه, 2(7). https://pubs.bcnf.ir/index.php/Articles/article/view/364

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