Yayın: Removal of trihalomethanes from drinking water by nanofiltration membranes
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Tarih
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Danışman
Bölüm / Program
Dergi Başlığı
Dergi ISSN
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Yayıncı
Elsevier BV
Türü
Özet
Chlorine reacts with the natural organic matter (NOM) in waters and forms disinfection by-products (DBP). Major of these by-products are trihalomethanes (THM) and haloacetic acids (HAA). They have been known to cause cancer and other toxic effects to human beings. This study determined the removal efficiencies of THM by nanofiltration (NF) techniques with NF200 and DS5 membrane. The rejection of this chlorination by-products was studied at various feed concentration by changing transmembrane pressure. Experimental results indicated that in general increasing operating pressure produces a higher flux but does not have a significant effect on THM rejection. On the other hand, increasing the feed concentration produces a little change in the overall flux and rejection capacity. NF200 membrane removed more THM than DS5 membrane. The higher removal efficiency of dibromochloromethane (DBCM) was attributed to brominating characteristics (higher molecular weight (MW) and molecular size). As a consequence, the results of this study suggest that the NF membrane process is one of the best available technologies for removing THM compounds.
Tanım
Dergi veya Seri
Journal of Hazardous Materials
ISSN
0304-3894
ISBN
Haklar
OPEN
Anahtar Kelimeler
Byproducts, pollutant removal, Water Pollutants, membrane, membrane filter, organic matter, Chloroform/*isolation & purification, Filtration/instrumentation, Membranes, Artificial, Nanostructures, Water Pollutants, Chemical/*isolation & purification, Water Supply, concentration (composition), article, water treatment, carcinogen, acetic acid, chlorine, Artificial, dibromochloromethane, Chloroform, Chlorine, Methane, temperature measurement, Nanofiltration (NF), chemical reaction, alkalinity, Chemical, Acetic acid, experimental study, Water Supply, Potable water, Operational conditions, disinfection, molecular size, filtration, Synthetic water, Membranes, chlorination, Concentration (process), Haloacetic acids, drinking water, pH measurement, Biological materials, Trihalomethanes (THM), molecular weight, Membranes, Artificial, Nanofiltration, Nanostructures, halogenated hydrocarbon, nanofiltration, trihalomethane, membrane potential, halocarbon, Filtration, Water Pollutants, Chemical