Title of article :
DETERMINATION OF NANOFILTRATION EFFICENCY IN ARSENIC REMOVAL FROM DRINKING WATER
Author/Authors :
Akbari, H. R. power and water university of technology - Faculty of Water Engineering, تهران, ايران , Rashidi Mehrabadi, A. power and water university of technology - Faculty of Water Engineering, تهران, ايران , Torabian, A. university of tehran - Faculty of the Environment, تهران, ايران
From page :
273
To page :
278
Abstract :
Nowadays nanofiltration has been considered for the treatment of organic and inorganic pollutants in surface and groundwater resources. In this study, rejection characteristics of arsenic compounds such as As(III) to form As2O3 and As(V) to form Na2HAsO4.7H2O by a commercial nanofilter NF90 (DOW-FilmTec) was investigated. Arsenic rejection experiments included variations of feed arsenic concentration, transmembrane pressure and pH. In these experiments, as increasing initial concentration As(V) from 120mg/L to 1026 mg/L in feed water, the percentage of rejection of As(V) decreased from 98.35% to 96.59% (permeate water concentration was 2 mg/L to 35 mg/L) ,while as increasing initial concentration As(III) from 118 mg/L to 985 mg/L in feed water ,the percentage of rejection of As(III) decreased from 94.07% to 87.51% ( permeate water concentration was 7 mg/L to 123mg/L). Due to increase of pressure from 4 bar to 7 bar, the percentage of rejection of As(V) in finished water increased from 95.68% to 99.02% (permeate water concentration decreased from 21 mg/L to 5mg/L),while the percentage of rejection of As(III) decreased from 80.99% to 95.11% (permeate water concentration decreased from 96 mg/L to 25mg/L). Also due to increasing pH from 3 to 11, the percentage of rejection of As(V) in finished water increased from 95.45% to 99.00% (permeate water concentration decreased from 22 mg/L to 5mg/L), while the percentage of rejection of As(III) decreased from 86.6% to 94.81% (permeate water concentration decreased from 65 mg/L to 25 mg/L). Finally, nanofiltration application for arsenic removal from drinking water was recognized suitable regarding its proper efficiency and convenience operation and was recommended for point-of-use applications.
Keywords :
Nanofilteration , Arsenic , Nernst Planck equation , Donnan equilibrium , Drinking water
Journal title :
Iranian Journal of Environmental Health Science and Engineering (IJEHSE)
Journal title :
Iranian Journal of Environmental Health Science and Engineering (IJEHSE)
Record number :
2586759
Link To Document :
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