PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Rola elektrochemii w ochronie środowiska

Identyfikatory
Warianty tytułu
EN
Electrochemistry in environmental protection
Języki publikacji
PL
Abstrakty
EN
For decades electrochemical technology has contributed successfully to environmental protection. Electroanalytical techniques have been frequently used in monitoring the changes of environment. In industry, electrochemical technologies can provide higher purity in technological processes and they can also limit a degradation of the environment in comparison to the common chemical methods. Electrochemistry has been also very useful in developing and in the production of new energy sources. A lot of attention has been paid to studies of environmentally friendly hydrogen fuel cells. The electrochemical techniques of waste degradation can be divided into two main categories: (i) techniques based on the faradaic processes of oxidation or reduction of contamination, and (ii) electrokinetic methods based on the transport of ions or charged particles in the electric field. The electrode processes result in the formation of deposits on the electrode surface or the decomposition of large organic molecules to the low molecular weight, easily biodegradable molecules or CO2. The electrokinetic techniques include electrocoagulation, electroosmosis, electrodialysis, and electroflotation. These techniques are widely used in removing contaminants from soil. This paper is focused on selected topics related to the environmentally friendly application of electrochemistry.
Rocznik
Strony
671--702
Opis fizyczny
Bibliogr. 132 poz.
Twórcy
autor
autor
  • Instytut Chemii, Uniwersytet w Białymstoku, ul. Hurtowa 1, 15-399 Białystok
Bibliografia
  • [1] J. O'M. Bockris, A.K.N. Reddy, Modern Electrochemistry, Plenum Press, New York, London, 1970; 2nd ed. V. 1 - 1998, V. 2 - 2000.
  • [2] J. O'M. Bockris, Z. Nagy, Electrochemistry for Ecologists, Plenum Press, New York, London, 1972.
  • [3] J. O'M. Bockris, Electrochemisty for Cleaner Environments, Plenum Press, New York, London , 1972.
  • [4] J. O'M. Bockris, S.U.M. Khan, Surface Electrochemistry, Plenum Press, New York, London, 1993.
  • [5] G.C. Cushnie, Electroplating Wastewater Pollution Technology, Noyes Publ., New Jersey USA, 1985.
  • [6] D. Pletcher, F.C. Walsh, Industrial Electrochemistry, Blackie 1993.
  • [7] K. Rejeshwar, J. Ibanez, Environmental Electrochemistry, Academic Press, San Diego, 1997.
  • [8] C.A.C.Sequeira (Ed,) Environmentatal Oriented Electrochemistry, Acad. Press, Elsevier, Amsterdam 1994.
  • [9] K. Jüttner, U. Galla, H. Schmieder, Electrochim. Acta, 2000, 45, 2575.
  • [10] L. J. J. Janssen, L. Koene, Chem. Eng. J., 2002, 85, 137.
  • [11] G. Chen, Sep. Pur. Technol., 2004, 38, 11.
  • [12] G.W. Crabtree, M.S. Dresselhaus, M.V. Buchanan, Postêpy fizyki, 2005, 56, 168.
  • [13] M. Momirlan, T.N. Veziroglu, Int. J. Hydr. Energy, 2004, 30, 795.
  • [14] K. Scot, Electrochemical Processes for Clean Technology, Royal Society of Chemistry, Cambridge 1995.
  • [15] Y.I. Kim, S. Salim, M.J. Hug, T,E. Mallouk, J. Am. Chem. Soc., 1991, 113, 9561.
  • [16] N. Asakura, T. Hiraishi, T. Kamachi, I. Okura, J. Mol. Catal. A, 2001, 172, 1
  • [17] S. Salyi, M. Kritikos, B. Akermark, L. Sun, Chem. Eur. J., 2003, 9, 557.
  • [18] T. Renouard, R.A. Fallahpour, M.K. Nazeeruddin, R. Humphry, S.I. Gorelsky, A.B.P. Lever, M. Gratzel, Inorg. Chem., 2002, 41, 367.
  • [19] T. Maruyama, T. Yamamoto, J. Phys. Chem. B, 1997, 101, 3806.
  • [20] A.J. Bard, Ber. Bunsenges. Phys. Chem., 1988, 92, 1187.
  • [21] A.J. Nozik, Nature, 1975, 257, 383.
  • [22] K.L. Hardee, A.L. Bard, J. Electrochem. Soc., 1976, 123, 1024.
  • [23] K. Jackowska, H.T. Tien, Solar Cells, 1988, 23, 147.
  • [24] K.S. Chandra Babu, R.N. Pandey, O.N. Srivastava, Int. J. Hydrogen Energy, 1995, 20, 771.
  • [25] S. Takabayashi, R. Nakamura, Y. Nakato, J. Photochem. Photobiol. A, 2004, 166, 107.
  • [26] J.H. Bryce, S.A. Hill, Plant Biochemistry and Molecular Biology, P.J. Lea, R.C. Leegood (ed.), Wiley, Chichester 1999, 1-28.
  • [27] G. Kurisu, H. Zhang, J.L. Smith, W.A. Cramer, Science, 2003, 302, 1009.
  • [28] B.E. Evans, H.M. O'Neill, S.A. Hutchens, B.D. Bruce, E. Greenbaum, Nano Lett., 2004, 4, 1815.
  • [29] N.J. Naumczyk, Elektroutlenianie zanieczyszczeń w zastosowaniu do oczyszczania ścieków garbarskich, rozprawa habilitacyjna, OWPW, Warszawa, 2001.
  • [30] L.A. Kul'skii, P.P. Strokach, V.A. Slipchenko, E.I. Saigak, Water Purification by Electrocoagulation, Kiev, Budivel'nik, 1978.
  • [31] V.A. Matveevich, Elektronnaya Obrabotka Materialov, 2000, 5, 1030114.
  • [32] S.H. Lin, C.F. Peng, Water Res., 1994, 28, 277.
  • [33] S.H. Lin, C.F. Peng, Water Res., 1996, 30, 587.
  • [34] L.J. Gao, Y.F. Cheng, Environ. Pollut. Control, 1992, 14 (5) 10 (in Chinese).
  • [35] X. Chen, G.H. Chen, P.L. Yue, Sep. Purif. Technol., 2000, 19, 65.
  • [36] G. Chen, X. Chen, P.L. Yue, J. Environ. Eng., 2000, 126, 858.
  • [37] R.R. Renk, Ener. Prog., 1988, 8, 205.
  • [38] S.H. Lin, C.S. Lin, Desalination, 1998, 120, 185.
  • [39] G.V. Sleptsov, A.I. Gladkii, E.Y. Sokol, S.P. Novikova, Elektronnaya Obrabotka Materialov, 1987, 6, 69.
  • [40] U.B. Ogutveren, S. Koparal, J. Environ. Sci. Health A, 1997, 32, 2057.
  • [41] T. Ya. Pazenko, T.I. Khalturina, A.F. Kolova, I.S. Rubailo, J. Appl. USSR, 1985, 58, 2383.
  • [42] J. Szynkarczuk, J. Kan, T.A.T. Hassan, J.C. Donini, Clays, Clay Miner., 1994, 42, 667.
  • [43] N.S. Abuzaid, Z. Al-Hamouz, A.A. Bukhari, M.H. Essa, Water Air Soil Pollut., 1999, 109, 429.
  • [44] U.B. Ogutveren, S. Koparal, J. Environ. Stud., 1992, 42, 41.
  • [45] G. Cibora, C. Radovan, I. Vlaicu, L. Pitulice, Electrochim. Acta, 2000, 46, 297.
  • [46] F.E. Elmore, Br. Patent, 1905, 13, 578.
  • [47] E. Nenno, V.I. Zelentsov, G.V. Mel'nichuk, A.M. Romanov, T.Ya. Datsko, T.M. Radzilevich, Elektronnaya Obrabotka Matrialov, 1998, 6, 77.
  • [48] W. Chen, N.J. Horan, Environ. Technol., 1998, 19, 173.
  • [49] C.J. Huang, J.C. Liu, Water Res., 1999, 33, 3403.
  • [50] P. Lafrance, D. Grasso, Environ. Sci. Technol., 1995, 29, 1346.
  • [51] N.T. Manjunath, I. Mehrotra, R.P. Mathur, Water Res., 2000, 34, 1930.
  • [52] R.L. Vaughan, B.E. Reed, G.W. Roark, D.A. Masciola, Environ. Eng. Sci., 2000, 17, 267.
  • [53] C.C. Ho, C.Y. Chan, Water Res., 1986, 20, 1523.
  • [54] A.Y. Hosny, Sep. Technol., 1996, 6, 9.
  • [55] V.I. Il'in, O.N. Sedashova, Chem. Petrol. Eng., 1999, 35, 480.
  • [56] M.Y. Ibrahim, S.R. Mostafa, M.F.M. Fahmy, A.I. Hafez, Sep. Sci. Technol., 2001, 36, 3749.
  • [57] L.M. Balmer, A.W. Foulds, Fil. Sep., 1986, 23, 366.
  • [58] I.V. Aleksandrov, O.I. Rodyushkin, K.S. Ibraev, Koks i Khimiya, 1992, 7, 41.
  • [59] L. Alexandrova, T. Nedialkova, I. Nishkov, Int. J. Miner. Process., 1994, 41, 285.
  • [60] C.P.C. Poon, J. Hazard. Mater., 1997, 55, 159.
  • [61] I.A. Zolotukhin, V.A. Vasev, A.L. Lukin, Khimiya i Tekhnologiya Vody, 1983, 5, 252.
  • [62] T.D. Kubritskaya, I.V. Drako, V.N. Sorokina, R.V. Drondina, Surf. Eng. Appl. Electrochem., 2000, 6, 62.
  • [63] O.R. Shendrik, E.E. Andreeva, M.I. Ponomareva, I.B. Ivanenko, Khimiya i Tekhnologiya Vody, 1993, 15, 54.
  • [64] M.N. Rabilizirov, A.M. Gol'man, Khimiya i Tekhnologiya Vody, 1986, 8, 87.
  • [65] V.I. Il'in, V.A. Kolesnikov, Yu.I. Parshina, Glass Ceram., 2002, 59, 242.
  • [66] Y. Fukui, S. Yuu, AIChE J., 1985, 31, 201.
  • [67] V. Srinivasan, M. Subbaiyan, Sep. Sci. Technol., 1989, 24, 145.
  • [68] G. Ramadorai, J.P. Hanten, Removal of molybdenum and heavy metals from effluents by flotation, Minerals and Metallurgical Processing, 1986, 149-154.
  • [69] V.I. Zelentsov, K.A. Kiselev, Elektronnaya Obrabotka Materialov, 1986, 4, 50.
  • [70] V.E. Nenno, V.I. Zelentsov, T.Ya. Datsko, E.E. Dvornikova, T.M. Radzilevich, Elektronnaya Obrabotka Materialov, 1994, 3, 42.
  • [71] C. Llerena, J.C.K. Ho, D.L. Piron, Chem. Eng. Commun., 1996, 155, 217.
  • [72] C. Camilleri, Les Techniques, 1985, 67, 25.
  • [73] V.K. Makarenko, A.Yu. Klimov, Elektronnaya Obrabotka Matrialov, 1982, 4, 89.
  • [74] X. Chen, G. Chen, P.L. Yue, Environ. Sci. Technol., 2002, 36, 778.
  • [75] R.K. Nagarale, G.S. Gohil, V.K. Shahi, Adv. Col. Inter. Sci., 2006, 119, 97.
  • [76] Bipolar membrane and Its Application in Electrodialisys Processes, Stanterh GmbH, Technical Brochure, 1993.
  • [77] J. Wioeniewski, G. Wioeniewska, T. Winnicki, Desalination, 2004, 169, 11.
  • [78] R. Simons, J. Membr. Sci., 1993, 78, 13.
  • [79] D.S. Newman, M.A. Abhulimen, D. Renock, M. Makhratcheva, Energy and Electrochemical Processing for a Cleaner Environment, The Electrochemical Society Inc., Vol. 97-28, Pennington, NJ 1997, 267-274.
  • [80] B. Van der Bruggen, R. Milis, C. Vandecasteele, P. Bielen, E. Van San, K. Huysman, Water Res., 2003, 37, 3867.
  • [81] C. Korzeniowski, J.Z. Ferreira, Energy and Electrochemical Processing for a Cleaner Environment, The Electrochemical Society Inc., Vol. 97-28, Pennington, NJ 1997, 275-285.
  • [82] P.S. Cartwright, Plating and Surface Finishing, 1985, 7, 28.
  • [83] A. Guvenc, B. Karabacakoglu, Desalination, 2005, 172, 7.
  • [84] H. Inoue, M. Kagoshima, M. Yamasaki, Y. Honda, Appl. Radiat. Isotop., 2004, 61, 1189.
  • [85] M. Fidaleo, M. Moresi, J. Food Eng., 2006, 76, 218.
  • [86] J.-F. Poulin, J. Amiot, L. Bazinet, J. Biotech., 2006, 123, 314.
  • [87] G.S. Luo, X.Y. Shan, X. Qi, Y.C. Lu, Sep. Pur. Technol., 2004, 38, 265.
  • [88] Y.-J. Wee, J.-S. Yun, Y.Y. Lee, A.-P. Zeng, H.-W Ryu, J. Bioscien. Bioengin., 2005, 99, 104.
  • [89] J.J. Schoeman, A. Steyn, M. Makgae, Desalination, 2005, 186, 273.
  • [90] B. Pilat, Desalination, 2001, 139, 385.
  • [91] J.M. Veza, B. Penate, F. Castellano, Desalination, 2004, 160, 211.
  • [92] T. Mohammadi, A. Kaviani, Desalination, 2003, 158, 267.
  • [93] V.K. Shahi, B.S. Makwana, S.K. Thampy, R. Rangarajan, Desalination, 2002, 151, 33.
  • [94] T. Mohammadi, A. Kaviani, Desalination, 2003, 178, 267.
  • [95] J. Wioeniewski, A. Ró¿ańska, Desalination, 2006, 191, 210.
  • [96] B.G. Shah, V.K. Shahi, S.K. Thampy, R. Rangarajan, P.K. Ghosh, Desalination, 2005, 172, 257.
  • [97] J.M. Ortiz, J.A. Sotoca, E. Exposito, F. Gallud, V. Garcia-Garcia, V. Montiel, A. Aldaz, J. Membrane Sci., 2005, 252, 65.
  • [98] Y. Gong, X. Wang, L. Yu, Desalination, 2005, 172, 157.
  • [99] P. Tsiakis, L.G. Papageorgiou, Desalination, 2005, 173, 173.
  • [100] R. Iyer, Particulate Sci. Tech., 2001, 19, 219.
  • [101] M.H.M. Raats, A.J.G. van Diemen, J. Laven, H.N. Stein, Coll. Surf. A, 2002, 210, 231.
  • [102] S. Banerjee, S.E. Law, IEEE Trans. Ind. Appl., 1998, 34, 992.
  • [103] E.A. Cobo J.B. Bessone, Electrochim. Acta, 1998, 43, 713.
  • [104] I. Rodriguez-Torres, G. Valentin, S. Chanel, F. Lapique, Electrochim. Acta, 2000, 46, 279 .
  • [105] L. Doulakas, K. Novy, S. Stucki, Ch. Comninellis, Electrochim. Acta, 2002, 46, 349.
  • [106] L. Szpyrkowicz, S.N. Kaul, E. Molga, M. DeFaveri, Electrochim. Acta, 2000, 46, 381.
  • [107] Bisang, J. Appl. Electrochem, 2000, 30, 399.
  • [108] M. Paidar, I. Rousar, K. Bouzek, J. Appl. Electrochem., 1999, 29, 611.
  • [109] D.C. Johnson J. Feng, L.L. Houk, Electrochim. Acta, 2000, 46, 323.
  • [110] G. Saracco, L. Solarino, R. Aigotti, V. Specchia, M. Maja, Electrochim. Acta, 2000, 46, 373.
  • [111] N.B. Tahar, A. Savall, J. Appl. Electrochem., 1999, 29, 277.
  • [112] A.M. Polcaro, S. Palmas, F. Renoldi M. Mascia, J. Appl. Electrochem., 1999, 29, 147.
  • [113] L.L. Houk, S.K. Johnson, J. Feng, R.S. Houk, D.C. Johnson, J. Appl. Electrochem., 1998, 28, 1167.
  • [114] H. Uchida, S. Katoh, M. Watanabe, Electrochim. Acta, 1998, 43, 2111.
  • [115] C.A. Alvarez-Gallegos, D. Pletcher, Electrochim. Acta., 1999, 44, 2483.
  • [116] R. Amadelli, A. De Battisti, D.V. Girenko, S.V. Kovalyov, A.B. Velichenko, Electrochim. Acta, 2000, 46, 341.
  • [117] F. Bonfatti, A. De Battisti, S. Ferro, G. Lodi, S. Osti, Electrochim. Acta, 2000, 46, 305.
  • [118] S.B. Jonnalagadda, S. Nadupalli, Talanta, 2004. 64, 18.
  • [119] J. Virkutyte, M. Sillnapää, P. Letostenmaa, Sci. Total Env., 2002, 289, 97.
  • [120] A. Giannis E. Gidarakos, J. Hazardous Mat., 2005, B123, 165.
  • [121] W. Kim, S. Kim, K. Kim, J. Hazardous Mat., 2005, B118, 93.
  • [122] J. Thöming, B.K. Kliem, L.M., Ottosen, Sci. Total Env., 2000, 261, 137.
  • [123] B. Kornilovich, N. Mishchuk, K. Abbruzzese, G. Pashinko, R. Klishchenko, Coll. Surf. A, 2005, 265, 114.
  • [124] K.-H. Kim, S.-O. Kim, C.-W. Lee, M.-H. Lee, K.-W. Kim, Separation Sci. Tech., 2003, 38, 2137.
  • [125] G.C.C. Yang, Y. Long, J. Hazardous Mat., 1999, B69, 259.
  • [126] A.B. Ribeiro, J.M. Rodriguez-Maroto, E.P. Mateus, Chemosphere, 2005, 59, 1229.
  • [127] K.R. Reddy, R.E. Saichek, J. Environ. Sci. Healty, 2004, A39, 1189.
  • [128] D. Rahner, G. Ludwig, J. Röhrs, Electrochim. Acta, 2002, 47, 1395.
  • [129] J. Röhrs, G. Ludwig, D. Rahner, Electrochim. Acta, 2002, 47, 1405.
  • [130] J.W. Yu, I. Neretnieks, J. Cont. Hydrol., 1997, 26, 291.
  • [131] Y.I. Kharkats, J. Electroanal. Chem., 1998, 450, 27.
  • [132] Y.I. Kharkats, Rus. J. Electrochem., 1999, 33, 354.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS2-0016-0016
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.