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Polimery funkcjonalne jako unikalne materiały stosowane w selektywnej adsorpcji

Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Functional polymers as unique materials applied in selective adsorption
Języki publikacji
PL
Abstrakty
EN
Functional polymers are increasingly being used as materials with a range of unique properties. Due to their structure and relatively high flexibility in a synthetic context, they are becoming highly relevant in a variety of applications. One of the numerous examples of the use of functional polymers is water treatment. Using the adsorption phenomenon, it is possible to remove or reduce the amount of harmful organic compounds and heavy metal ions in the water. This review provides information on both the synthesis methods and characterization of functional polymers in terms of their adsorption properties. Among others, this paper presents the results of research on functional polymers carried out by Professor Schroeder's research group. The research was mainly focused on the selective adsorption of dyes and heavy metal ions, which are significant water pollutants. The overall results show that the adsorption of the synthesized polymer materials is high influenced by parameters such as pH, temperature, contact time of the adsorbent with the adsorbate and the initial adsorbate concentration. In the case of the adsorption phenomenon, the Langmuir or Freundlich isotherm turned out to be the most appropriate model for the tested materials, while in the case of kinetic models, the highest R2 coefficient was usually obtained using the pseudo-second-order equation.
Rocznik
Strony
509--527
Opis fizyczny
Bibliogr. 38 poz., rys., wykr.
Twórcy
autor
  • Student w Zakładzie Chemii Supramolekularnej, Wydział Chemii, Uniwersytet im. Adama Mickiewicza w Poznaniu
  • Zakład Chemii Supramolekularnej, Wydział Chemii, Uniwersytet im. Adama Mickiewicza w Poznaniu
Bibliografia
  • [1] K. Horie, M. Barón, R.B. Fox, J. He, M. Hess i wsp., Pure and Applied Chemistry, 2004, 76(4), 889.
  • [2] K. Wang, K. Amin, Z. An, Z. Cai, H. Chen i wsp., Materials Chemistry Frontiers, 2020, 4(7), 1803.
  • [3] M.-S. Hosseini, I. Amjadi, M. Mohajeri, M. Zubair Iqbal, A. Wu i wsp., Advanced Functional Polymers for Biomedical Applications. 2019, 1.
  • [4] M. Sajid, M.K. Nazal, Ihsanullah, N. Baig, A.M. Osman, Separation and Purification Technology, 2018, 191, 400.
  • [5] H. Saberi, E. Esmaeilnezhad, H.J. Choi, Polymers, 2021, 13(16), 2606.
  • [6] T. Ahsani, Y. Tamsilian, A. Rezaei, Journal of Petroleum Science and Engineering, 2021, 196.
  • [7] S. Muench, A. Wild, C. Friebe, B. Häupler, T. Janoschka i wsp., Chemical Reviews, 2016, 116(16), 9438.
  • [8] Y. Tang, W. Yang, X. Yin, Y. Liu, P. Yin i wsp., Desalination, 2008, 228(1-3), 55.
  • [9] A. Rabajczyk, M. Zielecka, K. Cygańczuk, Ł. Pastuszka, L. Jurecki, Materials, 2021, 14(3), 513.
  • [10] W.A. Braunecker, K. Matyjaszewski, Progress in Polymer Science, 2007, 32(1), 93.
  • [11] M. Kamigaito, T. Ando, M. Sawamoto, Chemical Reviews, 2001, 101(12), 3689.
  • [12] A.B. Lowe, C.L. McCormick, Progress in Polymer Science, 2007, 32(3), 283.
  • [13] J.R. Gregório, A.E. Gerbase, A.N.F. Mendes, P.D. Marcico, A. Rigo, Reactive and Functional Polymers, 2005, 64(2), 83.
  • [14] J.F.R. Van Guyse, D. Bera, R. Hoogenboom, Polymers, 2021, 13(3), 374.
  • [15] M. Kazemi Ashtiani, M. Zandi, P. Shokrollahi, M. Ehsani, H. Baharvand, Polymers for Advanced Technologies, 2018, 29(4), 1227.
  • [16] G.E. E. Marechal, A. Ledwith, S. Russo, P. Sigwalt, Comprehensive Polymer Science. Vol. 6. Oxford, U.K.: Eds. Pergamon Press. 1.
  • [17] M. Cegłowski, B. Gierczyk, G. Schroeder, Journal of Applied Polymer Science, 2014, 131(18).
  • [18] M. Cegłowski, G. Schroeder, Chemical Engineering Journal, 2015, 263, 402.
  • [19] M. Cegłowski, G. Schroeder, Chemical Engineering Journal, 2015, 259, 885.
  • [20] M. Cegłowski, G. Schroeder, R. Hoogenboom, Chemistry of Materials, 2020, 32(15), 6425.
  • [21] M. Pawlaczyk, G. Schroeder, ACS Applied Polymer Materials, 2021, 3(2), 956.
  • [22] Y. EL-Ghoul, F.M. Alminderej, F.M. Alsubaie, R. Alrasheed, N.H. Almousa, Polymers, 2021, 13(24), 4327.
  • [23] M. Rafatullah, O. Sulaiman, R. Hashim, A. Ahmad, J Hazard Mater, 2010, 177(1-3), 70.
  • [24] M.M. Sabzehmeidani, S. Mahnaee, M. Ghaedi, H. Heidari, V.A.L. Roy, Materials Advances, 2021, 2(2), 598.
  • [25] G. Sriram, A. Bendre, E. Mariappan, T. Altalhi, M. Kigga i wsp., Sustainable Materials and Technologies, 2022, 31.
  • [26] C. Hu, Q. Gao, J. Cai, H. Li, Z. Ren, Journal of Nanoscience and Nanotechnology, 2017, 17(9), 5966.
  • [27] M.B. Wazir, M. Daud, F. Ali, M.A. Al-Harthi, Journal of Molecular Liquids, 2020, 315.
  • [28] C.F. Mok, Y.C. Ching, F. Muhamad, N.A. Abu Osman, N.D. Hai i wsp., Journal of Polymers and the Environment, 2020, 28(3), 775.
  • [29] S. Agarwal, H. Sadegh, M. Monajjemi, A.S. Hamdy, G.A.M. Ali i wsp., Journal of Molecular Liquids, 2016, 218, 191.
  • [30] E. Elizondo, A. Córdoba, S. Sala, N. Ventosa, J. Veciana, The Journal of Supercritical Fluids, 2010, 53(1-3), 108.
  • [31] M. Xiao, J. Chery, M.W. Frey, ACS Applied Nano Materials, 2018, 1(2), 722.
  • [32] B. Hayati, N.M. Mahmoodi, M. Arami, F. Mazaheri, CLEAN - Soil, Air, Water, 2011, 39(7), 673.
  • [33] N.M. Mahmoodi, B. Hayati, M. Arami, F. Mazaheri, Journal of Chemical & Engineering Data, 2010, 55(11), 4660.
  • [34] A. Taghizadeh, M. Taghizadeh, M. Jouyandeh, M.K. Yazdi, P. Zarrintaj i wsp., Journal of Molecular Liquids, 2020, 312, 113447.
  • [35] G.G. Talanova, L. Zhong, R.A. Bartsch, Journal of Applied Polymer Science, 1999, 74(4), 849.
  • [36] R. Sankar, S. Vijayalakshmi, S. Rajagopan, T. Kaliyappan, Journal of Applied Polymer Science, 2010, 117(4), 2146.
  • [37] D. Türkmen, E. Yılmaz, N. Öztürk, S. Akgöl, A. Denizli, Materials Science and Engineering: C, 2009, 29(6), 2072.
  • [38] P. Nutthanara, W. Ngeontae, A. Imyim, T. Kreethadumrongdat, Journal of Applied Polymer Science, 2010, 116(2), 801.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5c0e9235-5e5d-4ae1-b8cc-a9a3fc04da99
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