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        <identifier>oai:www.ideals.illinois.edu:2142/16841</identifier>
        <datestamp>2023-07-10</datestamp>
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        <thesis xmlns="http://www.ndltd.org/standards/metadata/etdms/1.1/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:dc="http://purl.org/dc/elements/1.1/" xsi:schemaLocation="http://www.ndltd.org/standards/metadata/etdms/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdms11.xsd http://purl.org/dc/elements/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdmsdc.xsd">
          <dc:contributor>Strathmann, Timothy J.</dc:contributor>
          <dc:creator>Sugihara, Matthew N.</dc:creator>
          <dc:date>2010-08-20T17:59:31Z</dc:date>
          <dc:date>2010-08-20T17:59:31Z</dc:date>
          <dc:date>2010-08-20T17:59:31Z</dc:date>
          <dc:date>2010-08</dc:date>
          <dc:description>In recent years, triiodinated X-ray contrast agents (XRCs) have been widely detected in
natural waters at concentrations that are often relatively high compared to other
pharmaceutical micropollutants due to their extensive use and high biological recalcitrance.
Diatrizoate is an ionic XRC that has been found to be especially resistant to conventional
wastewater and drinking water treatment processes. This study examines the aqueous
photocatalytic treatment of diatrizoate using nanophase titanium dioxide (TiO2). Experiments
demonstrate that diatrizoate is degraded in aqueous TiO2 suspensions illuminated with
ultraviolet-A (UVA) light under both oxic and anoxic conditions. Both oxidative and reductive
transformation pathways for diatrizoate are initiated by photo-excited charge separation in the
TiO2 semiconductor, which generates a strongly oxidizing valence band hole (hvb
+) and a
strongly reducing conduction band electron (ecb
-). In oxic solutions, diatrizoate degrades
principally by oxidation with hydroxyl radicals (×OH) formed after hvb
+ oxidizes adsorbed
H2O/OH-. Iodine substituents are readily liberated, but little mineralization of organic carbon
and nitrogen occurs at short reaction times. Rates of photocatalytic oxidation decrease with increasing pH, attributed to unfavorable electrostatic interactions between anionic diatrizoate and the negatively charged TiO2 surface at elevated pH conditions. High concentrations of bicarbonate (HCO3-), a common natural water constituent, inhibit diatrizoate oxidation by
scavenging ×OH and forming less reactive carbonate radicals (CO3
×-). In anoxic solutions,
experiments demonstrate that in the absence of another exogenous electron acceptor (e.g.,
BrO3-), diatrizoate can also be reductively deiodinated by reaction with ecb-, and this pathwaydominates if high concentrations of other ×OH-reactive chemicals (e.g., methanol) are present.
Photocatalytic reduction is a much more chemical-selective treatment process than oxidation
with ×OH, so this pathway may be a promising strategy for selectively treating XRCs present in
organic-rich wastewater streams.</dc:description>
          <dc:description>Item withdrawn by Mark Zulauf (zulauf@illinois.edu) on 2010-07-19T14:00:36Z
Item was in collections:
University of Illinois Theses &amp; Dissertations (ID: 1)
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          <dc:identifier>http://hdl.handle.net/2142/16841</dc:identifier>
          <dc:language>en</dc:language>
          <dc:rights>Copyright 2010 Matthew N. Sugihara</dc:rights>
          <dc:subject>Diatrizoate</dc:subject>
          <dc:subject>x-ray contrast media</dc:subject>
          <dc:subject>titanium dioxide</dc:subject>
          <dc:subject>tio2</dc:subject>
          <dc:subject>photocatalysis</dc:subject>
          <dc:subject>pharmaceuticals</dc:subject>
          <dc:subject>phacs</dc:subject>
          <dc:subject>ppcps</dc:subject>
          <dc:subject>iopromide</dc:subject>
          <dc:title>UV- TiO2 photocatalytic degradation of the x-ray contrast agent diatrizoate: kinetics and mechanisms in oxic and anoxic solutions</dc:title>
          <degree>
            <department>Civil &amp; Environmental Eng</department>
            <departmentCode>1251</departmentCode>
            <discipline>Environ Engr in Civil Engr</discipline>
            <disciplineCode>0231</disciplineCode>
            <grantor>University of Illinois at Urbana-Champaign</grantor>
            <level>Thesis</level>
            <name>M.S.</name>
            <program>MS:Env Engr  Civil Engr -UIUC</program>
            <programCode>10KS0231MS</programCode>
          </degree>
        </thesis>
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