Title of article :
Preparation and characterization of poly (ethersulfone) nanofiltration membranes for amoxicillin removal from contaminated water
Author/Authors :
Omidvar، Maryam نويسنده Master of Business Management, Ershad university, Tehran, Iran , , Mousavi، mahmoud نويسنده Department of Chemical Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, Iran , , Soltanieh، Mohammad نويسنده Department of Chemical Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran , , Safekordi، Ali Akbar نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی 0 سال 2014
Pages :
10
From page :
1
To page :
10
Abstract :
Nowadays, antibiotics such as amoxicillin have been entered in water bodies. Nanofiltration has been proposed as an attractive technology for removal of antibiotics from aquatic environment instead of conventional wastewater treatment. In this paper, novel asymmetric flat sheet nanofiltration membranes were prepared via immersion precipitation technique and by using the poly(ethersulfone)/Brij®S100/Poly(vinylpirrolidone)/1- methyl-2-pyrolidone casting solutions. The effect of addition of Brij®S100 as a non-ionic surfactant additive as well as concentration of poly (ethersulfone) on morphology, wettability, pure water flux and rejection of amoxicillin were studied using the scanning electron microscopy, water contact angle apparatus and experimental set-up. The results indicated that the addition of Brij®S100 to the casting solutions resulted in the formation of membranes with higher hydrophilicity and relatively noticeable rejection of amoxicillin up to 99% in comparison with unmodified poly (ethersulfone) membrane. Contrary to amoxicillin rejection, pure water flux was decreased when higher poly(ethersulfone) concentration was employed.
Journal title :
Iranian Journal of Environmental Health Science and Engineering (IJEHSE)
Serial Year :
2014
Journal title :
Iranian Journal of Environmental Health Science and Engineering (IJEHSE)
Record number :
1754378
Link To Document :
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