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Oczyszczanie ścieków kosmetycznych metodami fizykochemicznymi i chemicznymi

Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Treatment of cosmetic wastewater using physicochemical and chemical methods
Języki publikacji
PL
Abstrakty
PL
W pracy dokonano przeglądu piśmiennictwa dotyczącego skuteczności fizykochemicznych i chemicznych metod oczyszczania ścieków kosmetycznych. Omawiane procesy mogą być głównym stopniem oczyszczania ścieków, bądź etapem poprzedzającym oczyszczanie biologiczne. Wyniki uzyskiwane przez poszczególnych autorów trudno ze sobą porównać ze względu na bardzo dużą różnorodność składu i stężeń zanieczyszczeń. O doborze metody oczyszczania powinny decydować skład ścieków i wymagania dotyczące stopnia oczyszczenia ścieków.
EN
The paper is a review of literature on the effectiveness of physicochemical and chemical methods of cosmetic wastewater treatment. These methods may be the principle level of treatment, or be a stage prior to biological treatment. The result obtained by different authors is difficult to compare because of the very high variability of the composition and concentrations of pollutants in wastewater. The selection of treatment methods should be decided by the composition of wastewater and legal requirements that must be met before discharge of wastewater into the receiver.
Czasopismo
Rocznik
Strony
94--97
Opis fizyczny
Bibliogr. 22 poz.
Twórcy
autor
autor
autor
  • Zakład Informatyki i Badań Jakości Środowiska, Politechnika Warszawska, Warszawa
Bibliografia
  • 1. Aloui F., Kchaou S., Sayadi S.: Physicochemical treatments of anionic surfactants wastewater: Effect on aerobic biodegradability. Journal of Hazardous Materials 2009, 164, 353-359.
  • 2. Bautista P., Mohedano A.F., Gilarranz M.A., Casas J.A., Rodriguez J.J.: Application of Fenton oxidation to cosmetic wastewaters treatment. Journal of Hazardous Materials 2007, 143, 128-134.
  • 3. Bautista P., Mohedano A.F., Menendez N., Casas J.A., Rodriguez J.J.: Catalytic wet peroxide oxidation of cosmetic wastewaters with Fe-bearing catalysts. Catalysis Today 2010, 151, 148-152.
  • 4. Boroski M., Rodrigues A.C., Garcia J.C., Sampaio L.C., Nozaki J., Hioka N.: Combined electrocoagulation and TiO2 photoassisted treatment applied to wastewater effluents from pharmaceutical and cosmetic industries. Journal of Hazardous Materials 2009, 162, 448-454.
  • 5. Carballa M., Omil F., Lema J.M.: Removal of cosmetic ingredients and pharmaceuticals in sewage primary treatment. Water Research 2005, 39, 4790-4796.
  • 6. Carballa M., Omil F., Lema J.M., Llompart M., Garcia-Jares C., Rodriguez I., Gomez M., Ternes T.: Behavior of pharmaceuticals, cosmetics and hormones in a sewage treatment plant. Water Research 2004, 38, 2918-2926.
  • 7. Chen D., Zeng X., Sheng Y., Bi X., Gui H., Sheng G., Fu J.: The concentrations and distribution of polycyclic musks in a typical cosmetic plant. Chemosphere 2007, 66, 252-258.
  • 8. El-Gohary F., Tawfik A., Mahmoud U.: Comparative study between chemical coagulation/precipitation (C/P) versus coagulation/dissolved air flotation (CIDAF) for pre-treatment of personal care products (PCPs) wastewater. Desalination 2010, 252,106-112.
  • 9. Ellis J.B.: Pharmaceutical and personal care products (PPCPs) in urban receiving waters. Environmental Pollution 2006, 144, 184-189.
  • 10. Esplugas S., Bila D.M., Krause L. G.T., Dezotti M.: Ozonation and advanced oxidation technologies to remove disrupting chemicals (EDCs) and pharmaceuticals and personal care products (PPCPs) in water effluents. Journal of Hazardous Materials 2007, 149, 631 -642.
  • 11. Horii Y., Reiner J.L., Loganathan B. G., Kumar K.S., Sajwan K., Kannan K.: Occurrence and fate of polycyclic musks in wastewater treatment plants in Kentucky and Georgia, USA. Chemosphere 2007, 68, 2011 -2020.
  • 12. Joss A., Keller E., Alder A. C., Gobel A., McArdell C.S., Ternes T., Siegrist H.: Removal of pharmaceuticals and fragrances in biological wastewater treatment. Water Research 2005, 39, 3139-3152.
  • 13. Kasprzyk - Hordern B., Dinsdale R.M., Guwy A.J.: The removal of pharmaceuticals, personal care products, endocrine disruptors and illicit drugs during wastewater treatment and its impact on the quality of receiving waters. Water Research 2009, 43, 363-380.
  • 14. Marcinowski P., Kucharska M., Bogacki J., Naumczyk J., Wiliński P.: Chemical pre-treatment of cosmetics wastewater, w trakcie recenzji.
  • 15. Matamoros V., Arias C., Brix H., Bayona J.M.: Preliminary screening of small-scale domestic wastewater treatment systems for removal of pharmaceutical and personal care products. Water Research 2009, 43, 55-62.
  • 16. Moldovan Z.: Occurrences of pharmaceutical and personal care products as micropollutants in rivers from Romania. Chemosphere 2006, 64, 1808-1817.
  • 17. Miege C., Choubert J.M., Ribeiro L., Eusebe M., Coquery M.: Fate of pharmaceuticals and personal care products in wastewater treatment plants - conception of a database and first results. Environmental Pollution 2009, 157, 1721 -1726
  • 18. Reif R., Suárez S., Omil F., Lema J.M.: Fate of pharmaceuticals and cosmetic ingredients during the operation of a MBR treating sewage. Desalination 2008, 221, 511-517.
  • 19. Rosal R., Rodriguez A., Perdigon-Melon J.A., Mezcua M., Hernando M.D., Leton P., Garcia-Calvo E., Aguera A., Fernandez-Alba A.R.: Removal of pharmaceuticals and kinetics of mineralization by O3/H2O2 a biotreated municipal wastewater. Water Research 2008, 42, 3719-3728.
  • 20. Rosal R., Rodriguez A., Perdigon-Melon J.A., Petre A., Garcia-Calvo E., Gomez J.M., Aguera A., Fernandez-Alba A.R.: Occurrence of emerging pollutants in urban wastewater and their removal through biological treatment followed by ozonation. Water Research 2010, 44, 578-588.
  • 21. WangX. -J., Song Y., Mai J.-S.: Combined Fenton oxidation and aerobic biological processes for treating a surfactant wastewater containing abundant sulfate. Journal of Hazardous Materials 2008, 160, 344-348.
  • 22. Zeng X., Sheng G., Gui H., Chen D., Shao W., Fu J.: Preliminary study on the occurrence and distribution of polycyclic musks in a wastewater treatment plant in Guandong, China. Chemosphere 2007, 69, 1305-1311.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP2-0011-0022
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