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2007 | 16 | 3 |

Tytuł artykułu

Elimination of polyethylene glycol from aqueous solution using activated carbon

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The present study looks at the adsorption of polyethylene glycol onto activated carbon with the different molecular weight. The amount of PEG adsorbed on activated carbon depends on temperatures and pH. The adsorption capacities were determined through the adsorption isotherms. The results of the adsorption isotherm and kinetic studies show that the adsorption process can be well described with the Langmuir model. After linearization of the Arrhenius equation the activated energy had been estimated.

Wydawca

-

Rocznik

Tom

16

Numer

3

Opis fizyczny

p.385-388,fig.,ref.

Twórcy

autor
  • Water Research Institute, Nabr.arm.gen.L.Svobodu 5, 81249 Bratislava, Slovakia
autor
autor

Bibliografia

  • 1. SCHRÖDER H.Fr. High Performance Liquid Chromatography with Tandem Mass Spectrometry – fast and advanced analytical method for drinking water and wastewater (Hochdruckflüssigkeitschromatographie gekoppelt mit Tandemmassenspektrometrie – Eine schnelle und zukunftsweisende Analysenmethode in der Wasser- und Abwasseranalytik; Vom Wasser), 73, 111, 1989.
  • 2. SCHRÖDER H.Fr. Identification of Non-Biodegradable, Hydrophilic, Organic Substances in Industrial and Municipal Waste Water Treatment Plant-Effluents by Liquid Chromatography-Tandem Mass Spectrometry (LC /MS /MS ); Wat. Sci. Tech., 23, 339, 1991.
  • 3. SCHRÖDER H.Fr. Surfactants – non-biodegradable, significant pollutants in sewage treatment plant effluents. Separation, identification and quantification by LC ,FIA/MS and MS /MS . J. Chromatogr., 647, 219, 1993.
  • 4. SCHRÖDER H.Fr. Determination of the surfactant – specific determination method in comparison with the liquid chromatography/mass spectrophotometry (SubstanceBestimmung von Tensiden – Substanzklassenspezifische Bestimmungsmethoden im Vergleich mit flüssigkeitschromatographischer/ massenspektroskopischer (substanzspezifischer) Bestimmung). Vom Wasser, 79, 193, 1992.
  • 5. ANDREOZZI R., CAPRIO V., INSOLA A. Kinetics and mechanisms of polyethyleneglycol fragmentation by ozone in aqueous solution. Water Res. 30(12), 1996.
  • 6. LI H., CHANG C.Y., YU Y.H., CHIANG P.C., CHEN Y.H., LEE S.J., KU Y., CHEN C.N. Kinetics of Ozonation of Polyethylene Glycol in Printed Wiring Board Electroplating Solution. J. Chin. Inst. Envr. Eng., 10(1), 69, 2000.
  • 7. CHANG C.Y., CHEN Y.H., LI H., CHIU C.Y., YU Y.H., CHIANG P.C., KU Y., CHEN J.N. Kinetics of Decomposition of Polyethylene Glycol in Electroplating Solution by Ozonation with UV Radiation, Journal of Environmental Engineering, ASCE, 127(10), 908, 2001.
  • 8. ARBUCKLE W.B., OSMAN M.Y. Polyethylene Glycol Adsorption Equilibrium on Activated Carbon. Environmental Engineering Science, 17(3), 147, 2000.
  • 9. CHANG C.F., CHANG C.Y., TSAI W.T., WU S.C. Adsorption Equilibrium of Polyethylene Glycol in Electroplating Solution on Activated Carbon. J. Colloid and Interface Science, 232, 207, 2000.
  • 10. ZHAO X., URANO K., OGASAWARA S. Adsorption of polyethylene glycol from aqueous solution on montmorillonite clays. Colloid and Polymer Science, 267(10), 899, 1989.
  • 11. SLEJKO I., FRANK L. Adsorption Technology – A step by step approach to process evaluation and adsorption. Chemical industries; v.19, Marcel Dekker, New York, 1985.
  • 12. Duncan Q.M. Craig, A review of thermal methods used for the analysis of the crystal form, solution thermodynamics and glass transition behaviour of polyethylene glycols. Thermochimica acta 248, 186, 1995.
  • 13. CHANG C.Y., TSAI W.T., ING C.H., CHANG C.F. Adsorption of polyethylene glycol (PEG ) from solution onto hydrophobic zeolite. Journal of Colloid and Interface Science, 260, 273, 2003.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-cb375780-f67a-46af-95b5-c8ffb910561e
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