Tytuł artykułu
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Warianty tytułu
The modern and innovative technologies of swimming pool water treatment Part IV
Języki publikacji
Abstrakty
W artykule (cz. 1 w RI 1–2, cz. 2 w RI 3, cz. 3 w RI 4/2013) przedstawiono i porównano współczesne i innowacyjne systemy oczyszczania wody basenowej oparte na procesach filtracji i dezynfekcji, w skład których wchodzą nowoczesne urządzenia, w tym kontrolno-pomiarowe.
The modern and innovative swimming pool water treatment systems based on filtration and disinfection processes, which include modern appliances, also monitoring devices was presented and compared (part I – RI 1–2, part II – RI 3, part III – RI 4/2013).
Wydawca
Czasopismo
Rocznik
Tom
Strony
36--39
Opis fizyczny
Bibliogr. 47 poz.
Twórcy
autor
- Politechnika Śląska w Gliwicach, Instytut Inżynierii Wody i Ścieków
Bibliografia
- 1. Anipsitakis G.P., Tufano T.P., Dionysiou D.D., Chemical and microbial decontamination of pool water using activated potassium peroxymonosulfate, „Water Research” No. 42/2008.
- 2. Barbot E., Moulin P., Swimming pool water treatment by ultrafiltration-adsorption process, „Journal of Membrane Science” No. 314/2008.
- 3. Bernard A. et al., Lung hyperpermeability and asthma prevalence in schoolchildren: unexpected associations with the attendance at indoor chlorinated swimming pools, „Occupational and Environmental Medicine” No. 60/2003.
- 4. Borgmann-Strahsen R., Comparative assessment of different biocides in swimming pool water, „International Biodeterioration and Biodegradation” No. 51/2003.
- 5. Cassan D. et al., Effects of medium-pressure UV lamps radiation on water quality in a chlorinated indoor swimming pool, „Chemosphere” No. 62/2006.
- 6. Chiang W.C. et al., Silver-palladium surfaces inhibit biofilm formation, „Applied and Environmental Microbiology” No. 75/2009.
- 7. Choi O. et al., Interactions of nanosilver with Escherichia coli cells in planktonic and biofilm cultures, „Water Research” No. 44/2010.
- 8. Deborde M., Gunten U., Reactions of Chlorine with inorganic and organic compounds during water treatment – Kinetic and mechanisms: critical review, „Water Research” No. 42/2008.
- 9. Eichelsdörfer D., Jandik J., Verminderung der Chlorformbildung durch Ozon am Beispiel der Schwimmbeckenaufbereitung, International Ozon-Symposium, Berlin 1985.
- 10. Falletta E. et al., Clusters of poly(acrylates) and silver nanoparticles: structure and applications for antimicrobial fabrics, „Journal of Physical Chemistry: Part C” No. 112/2008.
- 11. Florentin A., Hautemaniere A., Hartemann P., Health effects of disinfection by-products in chlorinated swimming pools, „International Journal of Hygiene and Environmental Health” No. 214/2011.
- 12. Freuze I., Brosillon S., Laplanche A., Tozza D., Cavard J., Effect of chlorination on the formation of odorous disinfection by-products, „Water Research” No. 39/2005.
- 13. Gert Holm Kristensen et al., Full scale test of UV based water treatment technologies at Gladsaxe Sport Centre – with and without advanced oxidation mechanisms, Swimming Pool and Spa International Conference, London 2009.
- 14. Glauner T. et al., Elimination of swimming pool water disinfection by-products with advanced oxidation process (AOPs), „CLEAN: Soil, Air, Water” Vol. 33/2005.
- 15. Goma A. et al., Benefits of carbon dioxide as pH reducer in chlorinated indoor swimming pools, „Chemosphere” No. 80/2010.
- 16. Hekap K., Jaeho S., Soohyung L., Formation of disinfection by-products in chlorinated swimming pool water, „Chemosphere” No. 46/2002.
- 17. Jin Lee et al., Production of various disinfection byproducts in indoor swimming pool waters treated with different disinfection methods, „International Journal of Hygiene and Environmental Health” No. 213/2010.
- 18. Judd S.J., Bullock G., The fate of chlorine and organic materials in swimming pools, „Chemosphere” No. 51/2003.
- 19. Kaydos-Daniels S.C. et al., Health effects associated with indoor swimming pools: A suspected toxic chloramines exposure, „Public Health (Journal of The Royal Institute of Public Health)” No. 122/2008.
- 20. Lee J., Ha K-T., Zoh K-D., Characteristics of trihalomethane (THM) production and associated health risk assessment in swimming pool waters treated with different disinfection methods, „Science of The Total Environment” No. 407/2009.
- 21. Massin N., Bohadana A.B., Wild P., Hery M., Toamain J.P., Hubert G., Respiratory symptoms and bronchial responsiveness in lifeguards exposed to nitrogen trichloride in indoor swimming pool, „Occupational and Environmental Medicine” No. 55/1998.
- 22. Michalski R., Mathews B., Occurrence of chlorite, chlorate and bromated in disinfected swimming pool water, „Polish Journal of Environmental Study” Vol. 16, No. 2/2007.
- 23. Ming-Jen Chen et al., Development of a Multi-pathway probabilistic health risk assessment model for swimmers expose to chloroform in indoor swimming pools, „Journal of Hazardous Materials” No. 185/2011.
- 24. Mood E.W., Development and application of high-free residual chlorination in the treatment of swimming pool water, „American Journal Public Health Nations Health” No. 43/1953.
- 25. Morones J.R. et al., The bactericidal effect of silver nanoparticles, „Nanotechnology” No. 16/2005.
- 26. Nawrocki J., Kalkowska J., Ozonation by products and their analysis, „Polish Journal of Environmental Study” No. 4/1995.
- 27. Pal S., Tak Y.K., Song J.M., Does the antibacterial activity of silver nanoparticles depend on the shape of the nanoparticle? A study of the gram-negative bacterium Escherichia coli, „Applied and Environmental Microbiology” No. 73/2007.
- 28. Panacek A. et al., Antifungal activity of silver nanoparticles against Candida spp., „Biomaterials” No. 30/2009.
- 29. Panacek A. et al., Silver colloid nanoparticles: synthesis, characterization, and their antibacterial activity, „Journal of Physical Chemistry: Part B” No. 110/2006.
- 30. Panyakapo M., Soontornchai S., Paopuree P., Cancer risk assessment from exposure to trihalomethanes in tap water and swimming pool water, „Journal of Environmental Sciences” No. 20/2008.
- 31. Peldszus S. et al., Effect of medium-pressure UV irradiation on bromate concentrations in drinking water, a pilot-scale study, „Water Research” No. 38/2004.
- 32. Rai M., Yadav A., Gade A., Silver nanoparticles as a new generation of antimicrobials, „Biotechnology Advances” No. 27/2009.
- 33. Rozporządzenie Ministra Zdrowia z dnia 20 kwietnia 2010 r. zmieniające rozporządzenie w sprawie jakości wody przeznaczonej do spożycia przez ludzi (DzU nr 72/2010, poz. 466).
- 34. Rozporządzenie Ministra Zdrowia z dnia 29 marca 2007 r. w sprawie jakości wody przeznaczonej do spożycia przez ludzi (DzU nr 61/2007, poz. 417).
- 35. Schoefer Y. et al., Health risk of early swimming pool attendance, „International Journal of Hygiene and Environmental Health” No. 211/2008.
- 36. Schutz E. et al., Trichloramine in the air of indoor pools in Bavaria, Swimming Pool and Spa International Conference, London 2009.
- 37. Shrivastava S. et al., Characterization of enhanced antibacterial effects of novel silver nanoparticles, „Nanotechnology” No. 18/2007.
- 38. Silvestry-Rodriguez N. et al., Silver as a residual disinfectant to prevent biofilm formation in water distribution systems, „Applied and Environmental Microbiology” No 74/2008.
- 39. Sotiriou G. A. et al., Nanosilver on nanostructured silica: Antibacterial activity and Ag surface area, „Chemical Engineering Journal” No. 170/2011.
- 40. Sozański M., Chemizm i technologia uzdatniania wody dla basenów kąpielowych, mat. konf. „Zaopatrzenie w wodę miast i wsi”, Poznań 1994.
- 41. Thickett K.M. et al., Occupational asthma caused by chloramines in indoor swimming-pool air, „European Respiratory Journal” No. 19/2002.
- 42. Ustawa z dnia 7 czerwca 2001 r. o zbiorowym zaopatrzeniu w wodę i zbiorowym odprowadzaniu ścieków (DzU nr 72/2001, poz. 747, ze zm.: DzU nr 85/2005, poz. 729).
- 43. Weiss G., Dudko M., mat. XV seminarium „Pływalnie kryte – kierunki rozwoju, problematyka projektowania i eksploatacji”, Gdańsk-Sobieszewo 2012.
- 44. Weng S., Blatchey E.R., Disinfection by-product dynamics in a chlorinated, indoor swimming pool under conditions of heavy use: National swimming competition, „Water Research” No. 45/2011.
- 45. WHO, Disinfectant and disinfectant by-product, Environmental Health Criteria 216, Geneva 2000.
- 46. Wyczarska-Kokot J., Piechurski F., Badanie układu oczyszczania wody basenowej z zastosowaniem filtra podciśnieniowego ze złożem wielowarstwowym, koloidalnego roztworu nanosrebra oraz lampy UV, praca zbiorowa, Kuś K., Piechurski F. red., „Instalacje basenowe”, Politechnika Śląska, Gliwice 2011.
- 47. www.wapotec.pl.
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Bibliografia
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