- Tytuł:
- Application of advanced oxidation process (H2O2/UV) for removal of organic materials from pharmaceutical industry effluent
- Autorzy:
-
Azizi, E.
Fazlzadeh, M.
Ghayebzadeh, M.
Hemati, L.
Beikmohammadi, M.
Ghaffari, H. R.
Zakeri, H. R.
Sharafi, K. - Powiązania:
- https://bibliotekanauki.pl/articles/207937.pdf
- Data publikacji:
- 2017
- Wydawca:
- Politechnika Wrocławska. Oficyna Wydawnicza Politechniki Wrocławskiej
- Tematy:
-
oksydacja
ścieki farmaceutyczne
substancje organiczne
odpady farmaceutyczne
ChzT
bioreaktor
amoxicillin
UV/H2O2
COD
przemysł farmaceutyczny
waste water
membrane bioreactor
UV/H2O2 process
reactor
mineralization
pharmaceutical industry effluent - Opis:
- Pharmaceutical wastewater is one of the major complex and toxic industrial effluents containing little or no biodegradable organic matters. In this study, H2O2/UV based advanced oxidation process (AOP) was used to remove organic materials from pharmaceutical industry effluent. For the chemical oxygen demand (COD) removal radiation of medium pressure mercury vapor UV lamp was used in the presence of hydrogen peroxide (H2O2/UV). Results indicated that the efficiency of COD removal depends on the initial concentration H2O2, oxidation time and pH. The efficiency of COD removal at low H2O2con-centration was very low even coupled with UV light, which can be attributed to the low generation of hydroxyl radicals (OH). At high concentration of H2O2 (500 mg/dm3) and optimum pH (pH = 4), 87.6% removal efficiency could be achieved during 70 min oxidation. For high concentration of H2O2 (500 mg/dm3) at pH 3 and 7, the maximum COD removal efficiency was 28.5% and 15.2% respectively, indicating significant roles of pH and H2O2concentration in the process of COD removal.
- Źródło:
-
Environment Protection Engineering; 2017, 43, 1; 183-191
0324-8828 - Pojawia się w:
- Environment Protection Engineering
- Dostawca treści:
- Biblioteka Nauki