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      <dc:title>Semiautomatic method for the ultra-trace arsenic speciation in environmental waters via magnetic solid phase extraction prior to HPLC-ICP-MS determination</dc:title>
      <dc:creator>Montoro-Leal, Pablo</dc:creator>
      <dc:creator>García-Mesa, Juan Carlos</dc:creator>
      <dc:creator>López-Guerrero, María del Mar</dc:creator>
      <dc:creator>Siles-Cordero, María Teresa</dc:creator>
      <dc:creator>Vereda-Alonso, Elisa Isabel</dc:creator>
      <dc:subject>Extracción (Química)</dc:subject>
      <dc:subject>Arsénico</dc:subject>
      <dc:subject>Nanopartículas</dc:subject>
      <dc:description>SHOTGUN PRESENTATION</dc:description>
      <dc:description>A new magnetic functionalized material based on graphene oxide magnetic nanoparticles (MGO)&#xd;
was designed and characterized in order to develop a magnetic solid phase extraction method&#xd;
(MSPE) to enrich both inorganic and organic arsenic species in environmental waters. A FIA system&#xd;
is used to preconcentrate the arsenic species simultaneously, while the ultra-trace separation and&#xd;
determination of arsenobetaine (AsBet), cacodylate, As(III) and As(V) species have been achieved&#xd;
by high performance liquid chromatography coupled to inductively coupled plasma mass&#xd;
spectrometry (HPLC-ICP-MS) technique. The sample is introduced in the FIA system where the&#xd;
MSPE takes place, and 1 ml of eluent is collected in a chromatographic vial. After preconcentration,&#xd;
the vial is introduced in the autosampler of HPLC-ICP-MS. Therefore, preconcentration and&#xd;
separation/determination processes are automatic and conducted separately (Figure 1). The&#xd;
strategy of this work was focused on the compatibility between the MSPE eluent and the mobile&#xd;
phase of HPLC column system, resulting in an efficient and reliable semiautomatic&#xd;
preconcentration and detection of inorganic and organic arsenic speciation. To the best of our&#xd;
knowledge, this is the first method combining an online MSPE and HPLC-MS, and one of the first&#xd;
using a magnetic nanomaterial based on MGO for online MSPE. Under the optimized conditions,&#xd;
the preconcentration factors obtained for AsBet, cacodilate, As(III) and As(V) with 12 mL sample&#xd;
solution were 4, 12, 6 and 19, respectively. The LODs for the arsenic species were AsBet 7 ng L -1,&#xd;
cacodylate 0.4 ng L-1, As(III) 1.0 ng L-1 and As(V) 0.2 ng L-1 and RSDs &lt; 5%. The developed method&#xd;
was validated by analyzing tap water, well water and seawater samples, and Certified Reference&#xd;
Materials; fortified lake water TMDA 64.3 and seawater Cass-6 NRC, promising for routine&#xd;
monitoring of arsenic species in environmental water</dc:description>
      <dc:date>2021-01-08T08:45:20Z</dc:date>
      <dc:date>2021-01-08T08:45:20Z</dc:date>
      <dc:date>2020</dc:date>
      <dc:date>2021-01-08</dc:date>
      <dc:type>conference output</dc:type>
      <dc:identifier>https://hdl.handle.net/10630/20667</dc:identifier>
      <dc:language>eng</dc:language>
      <dc:relation>4 th International Caparica Christmas Conference on Sample Treatment 2020</dc:relation>
      <dc:relation>Caparica (Portugal)</dc:relation>
      <dc:relation>Del 30/11/2020 al 03/12/2020</dc:relation>
      <dc:rights>open access</dc:rights>
   </ow:Publication>
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