• Title of article

    Effects of feedwater pretreatment on the removal of organic microconstituents by a low fouling reverse osmosis membrane Original Research Article

  • Author/Authors

    Haiou Huang، نويسنده , , Hyunhee Cho، نويسنده , , Kellogg Schwab، نويسنده , , Joseph G. Jacangelo، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    9
  • From page
    446
  • To page
    454
  • Abstract
    The removal of 16 organic microconstituents by a commercially available low-fouling RO membrane was systematically investigated in this study under different feedwater pretreatment conditions, including magnetic ion exchange (MIEX), alum coagulation and ultrafiltration (UF). It was found that organic microconstituents were consistently removed by RO despite noticeable changes in the composition of feedwater natural organic matter (NOM) as determined by size exclusion chromatography. Sequential treatment of the natural water by MIEX, coagulation, UF, and RO revealed that MIEX removed more than 70% of NOM, but less than 40% of the microconstituents while RO was capable of removing more than 90% of the target organics, regardless of their chemical properties. These findings suggest that RO treatment is effective in removing organic microconstituents in natural water that have molecular weights greater than the molecular weight cutoff of the membrane, while MIEX, coagulation, and UF are not effective means for enhancing organic microconstituent removal by RO. Meanwhile, the fouling of the RO membrane by an ultra-filtered natural surface water was minor and not influenced by the variations in organic composition after different pretreatment schemes, indicating the potential of combining membrane modification and UF pretreatment for effective control of RO membrane fouling.
  • Keywords
    Pretreatment , Magnetic ion exchange , Reverse osmosis , Endocrine disrupting compounds , Pharmaceutical and personal care products , Ultrafiltration
  • Journal title
    Desalination
  • Serial Year
    2011
  • Journal title
    Desalination
  • Record number

    1115007