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  <titleInfo>
    <title>Conversion of carbon dioxide to methanol over visible light responsive catalyst</title>
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  <name type="personal">
    <namePart>Mariotte Patrick Jebi</namePart>
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    <dateIssued encoding="marc">2017</dateIssued>
    <issuance>monographic</issuance>
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    <languageTerm authority="iso639-2b" type="code">eng</languageTerm>
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    <extent>xiv, 50 pages : illustrations (some color) ; 30 cm. + 1 CD-ROM</extent>
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  <abstract>The significant increase of carbon dioxide contributed for the largest share of the world’s greenhouse gas emissions. There is a growing need to mitigate CO2 emissions. One of the strategies to mitigate CO2 emissions is using CO2 as a raw material in chemical processes. In the present study, a TiO2 loaded copper (II) oxide (CuO) photoelectrode was synthesized, characterized and studied for photoelectrocatalytic (PEC) reduction of carbon dioxide (CO2) into methanol under visible light (λ &gt; 470 nm) irradiation. In this perspective, The material was constructed via sol-gel method from copper (II) nitrate, Cu(NO3)2.3H2O (99 %) and commercial Degussa P25 TiO2 as precursors. The photocatalysts were characterized by X-ray diffraction, UV-vis absorption specra, X-ray photoelectron spectroscopy (XPS), photoluminescence spectrophotometer, and mott schottky (MS). Linear sweep voltammetry (LSV) was employed to evaluate the effect of visible light (λ &gt;400 nm) on the CO2 reduction reactions. The characterization results indicated that the band gap energy of the CuO-TiO2 catalyst from UV-Vis is 1.39 eV. The flat band potential calculated from the MS data as 0.83 V versus normal hydrogen electrode (NHE). The LSV the dark and under visible light irradiation further support the visible light-responsive photocatalytic activities CuO-TiO2 giving onset potential value from -0.20 V with current peak potential appearing at -0.35V (vs NHE) suggesting an increase in photocurrent and occurrence CO2 photoreduction reaction. The PEC performance of CuO-TiO2 photocatalyst showed an increased methanol yield of 20.1 μmol.L-1.cm-2 under visible light irradiation.</abstract>
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  <note type="statement of responsibility">Mariotte Anak Patrick Jebi</note>
  <note>Faculty of Chemical &amp; Natural Resources Engineering</note>
  <note>Project Paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang – 2017</note>
  <note>Includes bibliographical references</note>
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      <namePart>Faculty of Chemical &amp; Natural Resources Engineering</namePart>
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    <topic>Dissertations</topic>
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  <subject authority="lcsh">
    <topic>Universities and Colleges</topic>
    <topic>Dissertations</topic>
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  <subject authority="lcsh">
    <topic>Theses</topic>
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  <identifier type="isbn">THE0000948(Local)</identifier>
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    <recordCreationDate encoding="marc">180212</recordCreationDate>
    <recordChangeDate encoding="iso8601">20251117113356.0</recordChangeDate>
    <recordIdentifier source="KUKTEM">vtls000102949</recordIdentifier>
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