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    Pharmaceutical removal during managed aquifer recharge with pretreatment by advanced oxidation

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    Type
    Article
    Authors
    Lekkerkerker-Teunissen, Karin
    Chekol, E. T.
    Maeng, Sungkyu
    Ghebremichael, Kebreab A.
    Houtman, Corine J.
    Verliefde, Arne R. D.
    Verberk, J. Q J C
    Amy, Gary L.
    Van Dijk, Johannis C.
    KAUST Department
    Biological and Environmental Sciences and Engineering (BESE) Division
    Environmental Science and Engineering Program
    Water Desalination and Reuse Research Center (WDRC)
    Date
    2012-10
    Permanent link to this record
    http://hdl.handle.net/10754/562355
    
    Metadata
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    Abstract
    Organic micropollutants (OMPs) are detected in sources for drinking water and treatment possibilities are investigated. Innovative removal technologies are available such as membrane filtration and advanced oxidation, but also biological treatment should be considered. By combining an advanced oxidation process with managed aquifer recharge (MAR), two complementary processes are expected to provide a hybrid system for OMP removal, according to the multiple barrier approach. Laboratory scale batch reactor experiments were conducted to investigate the removal of dissolved organic carbon (DOC) and 14 different pharmaceutically active compounds (PhACs) from MAR influent water and water subjected to oxidation, under different process conditions. A DOC removal of 10% was found in water under oxic (aerobic) conditions for batch reactor experiments, a similar value for DOC removal was observed in the field. Batch reactor experiments for the removal of PhACs showed that the removal of pharmaceuticals ranged from negligible to more than 90%. Under oxic conditions, seven out of 14 pharmaceuticals were removed over 90% and 12 out of 14 pharmaceuticals were removed at more than 50% during 30 days of experiments. Under anoxic conditions, four out of 14 pharmaceuticals were removed over 90% and eight out of 14 pharmaceuticals were removed at more than 50% over 30 days' experiments. Carbamazepine and phenazone were persistent both under oxic and anoxic conditions. The PhACs removal efficiency with oxidized water was, for most compounds, comparable to the removal with MAR influent water. Copyright © IWA Publishing 2012.
    Citation
    Lekkerkerker-Teunissen, K., Chekol, E. T., Maeng, S. K., Ghebremichael, K., Houtman, C. J., Verliefde, A. R. D., … van Dijk, J. C. (2012). Pharmaceutical removal during managed aquifer recharge with pretreatment by advanced oxidation. Water Supply, 12(6), 755–767. doi:10.2166/ws.2012.050
    Sponsors
    The authors would like to acknowledge the NWO Casimir program for financial support for this research.
    Publisher
    IWA Publishing
    Journal
    Water Science & Technology: Water Supply
    DOI
    10.2166/ws.2012.050
    ae974a485f413a2113503eed53cd6c53
    10.2166/ws.2012.050
    Scopus Count
    Collections
    Articles; Biological and Environmental Science and Engineering (BESE) Division; Environmental Science and Engineering Program; Water Desalination and Reuse Research Center (WDRC)

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