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    <titleInfo>
      <title>Spatial and temporal variability of the CO2 fluxes in a tropical, highly urbanized estuary</title>
    </titleInfo>
    <name type="personnal">
      <namePart type="family">Noriega</namePart>
      <namePart type="given">C. E. D.</namePart>
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      <affiliation>IRD</affiliation>
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    <name type="personnal">
      <namePart type="family">Araujo</namePart>
      <namePart type="given">M.</namePart>
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        <roleTerm type="text">auteur</roleTerm>
        <roleTerm type="code" authority="marcrelator">aut</roleTerm>
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    </name>
    <name type="personnal">
      <namePart type="family">Lefèvre</namePart>
      <namePart type="given">Nathalie</namePart>
      <role>
        <roleTerm type="text">auteur</roleTerm>
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    <abstract>The spatial and temporal variations of the flux of CO2 were determined during 2007 in the Recife estuarine system (RES), a tropical estuary that receives anthropogenic loads from one of the most populated and industrialized areas of the Brazilian coast. The RES acts as a source of nutrients (N and P) for coastal waters. The calculated CO2 fluxes indicate that the upstream inputs of CO2 from the rivers are largely responsible for the net annual CO2 emission to the atmosphere of +30 to +48 mmol m(-2) day(-1), depending on the CO2 exchange calculation used, which mainly occurs during the late austral winter and early summer. The observed inverse relationship between the CO2 flux and the net ecosystem production (NEP) indicates the high heterotrophy of the system (except for the months of November and December). The NEP varies between -33 mmol m(-2) day(-1) in summer and -246 mmol m(-2) day(-1) in winter. The pCO(2) values were permanently high during the study period (average similar to 4,700 mu atm) showing a gradient between the inner (12,900 mu atm) and lower (389 mu atm) sections on a path of approximately 30 km. This reflects a state of permanent pollution in the basin due to the upstream loading of untreated domestic effluents (N/P = 1,367:6 mu mol kg(-1) and pH = 6.9 in the inner section), resulting in the continuous mineralization of organic material by heterotrophic organisms and thereby increasing the dissolved CO2 in estuarine waters.</abstract>
    <targetAudience authority="marctarget">specialized</targetAudience>
    <subject>
      <topic>Ecosystem metabolism</topic>
      <topic>Carbon dioxide fluxes</topic>
      <topic>pCO(2)</topic>
      <topic>Recife estuary</topic>
    </subject>
    <subject authority="local">
      <geographic>ZONE TROPICALE</geographic>
    </subject>
    <classification authority="local">036</classification>
    <classification authority="local">020</classification>
    <relatedItem type="host">
      <titleInfo>
        <title>Estuaries and Coasts</title>
      </titleInfo>
      <part>
        <detail type="volume">
          <number>36</number>
        </detail>
        <detail type="volume">
          <number>5</number>
        </detail>
        <extent unit="pages">
          <list> 1054-1072</list>
        </extent>
      </part>
      <originInfo>
        <dateIssued>2013</dateIssued>
      </originInfo>
      <identifier type="issn">1559-2723</identifier>
    </relatedItem>
    <identifier type="uri">https://www.documentation.ird.fr/hor/fdi:010060620</identifier>
    <identifier type="doi">10.1007/s12237-013-9608-1</identifier>
    <identifier type="issn">1559-2723</identifier>
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      <shelfLocator>[F B010060620]</shelfLocator>
      <url usage="primary display" access="object in context">https://www.documentation.ird.fr/hor/fdi:010060620</url>
      <url access="row object">https://www.documentation.ird.fr/intranet/publi/2013/09/010060620.pdf</url>
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      <recordCreationDate encoding="w3cdtf">2013-10-02</recordCreationDate>
      <recordChangeDate encoding="w3cdtf">2017-08-23</recordChangeDate>
      <recordIdentifier>fdi:010060620</recordIdentifier>
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        <languageTerm authority="iso639-2b">fre</languageTerm>
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