Year 2017, Volume 2, Issue 1, Pages 114 - 119 2017-02-25

Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process

Sevde Ustun ODABASI [1]

322 515

Pharmaceutical residues are considered as emerging environmental problem because of their potential toxicology risk on living organisms. Environmental problem of pharmaceuticals are persistence to the aquatic ecosystem even at low concentrations (µg/L-ng/L). Conventional wastewater treatment plants are not enough to remove an emerging solution. Ibuprofen (IBF), a non-steroidal anti-inflammatory drug (NSAID), is a most widely used medicine in almost part of world. In present study, under laboratory conditions, coagulation followed by advance oxidation, using H2O2 and FeSO4 (Fenton process) is used to degrade the concentrations of ibuprofen from water were conducted. Fenton process is known to be most effective and common methods for the treatment of such wastewaters. In the present study H2O2 was used with FeSO4 for the treatment ibuprofen and effects of H2O2, FeSO4 concentrations COD and TOC removals.  Experiments with optimal concentrations of H2O2 and FeSO4 were carried out by chancing pH, temperature, stirring and residence time of solution (2-6), room temperature, (10,20,30 min) and (30,60,90 min) respectively. Concentration of FeSO4 and H2O2 were selected as (30,75,150 mg/L). After processing, 150 ml of samples taken out from the upper layers of sample COD and TOC tests were conducted.

Ibuprofen, Fenton Process, Pharmaceuticals, Water
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Subjects Engineering
Journal Section Makaleler
Authors

Author: Sevde Ustun ODABASI
Institution: ONDOKUZ MAYIS UNIV
Country: Turkey


Dates

Publication Date: February 25, 2017

Bibtex @ { ejens292893, journal = {European Journal of Engineering and Natural Sciences}, issn = {}, eissn = {2458-8156}, address = {CNR Çevre}, year = {2017}, volume = {2}, pages = {114 - 119}, doi = {}, title = {Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process}, key = {cite}, author = {Ustun ODABASI, Sevde} }
APA Ustun ODABASI, S . (2017). Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process. European Journal of Engineering and Natural Sciences, 2 (1), 114-119. Retrieved from http://dergipark.org.tr/ejens/issue/27741/292893
MLA Ustun ODABASI, S . "Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process". European Journal of Engineering and Natural Sciences 2 (2017): 114-119 <http://dergipark.org.tr/ejens/issue/27741/292893>
Chicago Ustun ODABASI, S . "Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process". European Journal of Engineering and Natural Sciences 2 (2017): 114-119
RIS TY - JOUR T1 - Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process AU - Sevde Ustun ODABASI Y1 - 2017 PY - 2017 N1 - DO - T2 - European Journal of Engineering and Natural Sciences JF - Journal JO - JOR SP - 114 EP - 119 VL - 2 IS - 1 SN - -2458-8156 M3 - UR - Y2 - 2017 ER -
EndNote %0 European Journal of Engineering and Natural Sciences Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process %A Sevde Ustun ODABASI %T Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process %D 2017 %J European Journal of Engineering and Natural Sciences %P -2458-8156 %V 2 %N 1 %R %U
ISNAD Ustun ODABASI, Sevde . "Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process". European Journal of Engineering and Natural Sciences 2 / 1 (February 2017): 114-119.
AMA Ustun ODABASI S . Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process. European Journal of Engineering and Natural Sciences. 2017; 2(1): 114-119.
Vancouver Ustun ODABASI S . Investigation and Evaluation of Degradability of Ibuprofen from Wastewater by Using Fenton Process. European Journal of Engineering and Natural Sciences. 2017; 2(1): 119-114.