UKLANJANJE NESTEROIDNIH ANTIINFLAMATORNIH FARMACEUTIKA FOTOKATALITIČKOM DEGRADACIJOM PRIMENOM TITANIJUM-DIOKSIDA
Ključne reči:
ibuprofen, ketoprofen, diklofenak, titanijum dioksid, fotokataliza, HPLC
Apstrakt
Povećana upotreba nesteroidnih antiinflamatornih farmaceutika kao što su ibuprofen, diklofenak i ketoprofen dovela je do njihove prisutnosti u procednim vodama deponija komunalnog otpada kao posledica neadekvatnog odlaganja. U radu su u toku 90 minuta rastvori ibuprofena, diklofenaka i ketoprofena sa dodatkom titanijum dioksida bili podvrgnuti UV zračenju, nakon čega su HPLC metodom određene koncentracije nerazgrađenih polaznih supstanci. Cilj rada jeste da se utvrdi mogućnost fotokatalitičke degradacije ovih farmaceutika pomoću titanijum dioksida u laboratorijskim uslovima.
Reference
6. LITERATURA
[1] M., Hassan, Y., Zhao, B. Xie, “Employing TiO2 photocatalysis to deal with landfill leachate: Current status and development”, Chemical Engineering Journal, Vol 285, pp.264-275, 2015.
[2] K. Ikehata, “Degradation of Aqueous Pharmaceuticals by Ozonation and Advanced Oxidation Processes: A Review”, Ozone: Science and Engineering, Vol 28(6), pp.353-414, 2006.
[3] K. Jyothi, S. Yesodharan, E. Yesodharan, “Ultrasound (US), Ultraviolet light (UV) and combination (US+UV) assisted semiconductor catalysed degradation of organic pollutants in water: Oscillation in the concentration of hydrogen peroxide formed in situ”, Ultrasonics Sonochem, Vol 21(5), pp.1787-1796, 2014.
[4] A. Kurniawan, L. Wai-hung, S. Chan, “Radicals-catalyzed oxidation reactions for degradation of recalcitrant compounds from landfill leachate”, Chemical Engineering Journal, Vol 125(1), pp.35-57, 2006.
[5] E. Meeroff, F.Bloetscher, V. Reddy, F. Gasnier, “Application of photochemical technologies for treatment of landfill leachate”, Journal of Hazardous Materials, Vol 209-210, pp. 299-307, 2012.
[6] D. Trebouet, P. Schlumpf, P. Jaouen, F.Quemeneur, “Stabilized Landfill Leachate Treatment by Combined Physicochemical–Nanofiltration Processes”, Water Research, Vol 32(12), pp. 2935-2942, 2001.
[7] M.Weller, 2013. Advanced oxidation treatment for ibuprofen, ketoprofen, and Naproxen in water and method for determining ibuprofen, ketoprofen, and naproxen concentration using liquid-liquid Extraction – gas chromatograhy-flame ionization detection. Worcester: University of Worcester.
[8] F.Youngman, 2013. Optimization of TiO2 photocatalyst in an advanced oxidation process for the treatment of landfill leachate. Boca Raton, Florida:Florida Atlantic University.
[1] M., Hassan, Y., Zhao, B. Xie, “Employing TiO2 photocatalysis to deal with landfill leachate: Current status and development”, Chemical Engineering Journal, Vol 285, pp.264-275, 2015.
[2] K. Ikehata, “Degradation of Aqueous Pharmaceuticals by Ozonation and Advanced Oxidation Processes: A Review”, Ozone: Science and Engineering, Vol 28(6), pp.353-414, 2006.
[3] K. Jyothi, S. Yesodharan, E. Yesodharan, “Ultrasound (US), Ultraviolet light (UV) and combination (US+UV) assisted semiconductor catalysed degradation of organic pollutants in water: Oscillation in the concentration of hydrogen peroxide formed in situ”, Ultrasonics Sonochem, Vol 21(5), pp.1787-1796, 2014.
[4] A. Kurniawan, L. Wai-hung, S. Chan, “Radicals-catalyzed oxidation reactions for degradation of recalcitrant compounds from landfill leachate”, Chemical Engineering Journal, Vol 125(1), pp.35-57, 2006.
[5] E. Meeroff, F.Bloetscher, V. Reddy, F. Gasnier, “Application of photochemical technologies for treatment of landfill leachate”, Journal of Hazardous Materials, Vol 209-210, pp. 299-307, 2012.
[6] D. Trebouet, P. Schlumpf, P. Jaouen, F.Quemeneur, “Stabilized Landfill Leachate Treatment by Combined Physicochemical–Nanofiltration Processes”, Water Research, Vol 32(12), pp. 2935-2942, 2001.
[7] M.Weller, 2013. Advanced oxidation treatment for ibuprofen, ketoprofen, and Naproxen in water and method for determining ibuprofen, ketoprofen, and naproxen concentration using liquid-liquid Extraction – gas chromatograhy-flame ionization detection. Worcester: University of Worcester.
[8] F.Youngman, 2013. Optimization of TiO2 photocatalyst in an advanced oxidation process for the treatment of landfill leachate. Boca Raton, Florida:Florida Atlantic University.
Objavljeno
2020-10-04
Sekcija
Inženjerstvo tretmana i zaštite voda -- TEMPUS