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    <doi_batch_id>_1648097621</doi_batch_id>
    <timestamp>1648097621</timestamp>
    <depositor>
      <depositor_name>Hamid Shirkhanloo</depositor_name>
      <email_address>sahar.zi67@gmail.com</email_address>
    </depositor>
    <registrant>Hamid Shirkhanloo</registrant>
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    <journal>
      <journal_metadata>
        <full_title>Analytical Methods in Environmental Chemistry Journal</full_title>
        <abbrev_title>AMECJournal</abbrev_title>
        <issn media_type="electronic">2645-5382</issn>
        <issn media_type="print">2645-5552</issn>
      </journal_metadata>
      <journal_issue>
        <publication_date media_type="online">
          <month>03</month>
          <day>30</day>
          <year>2022</year>
        </publication_date>
        <journal_volume>
          <volume>5</volume>
        </journal_volume>
        <issue>01</issue>
        <doi_data>
          <doi>10.24200/amecj.v5.i01</doi>
          <resource>http://journal.amecj.com/index.php/AMECJ-01/issue/view/21</resource>
        </doi_data>
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        <titles>
          <title>Rapid analysis of chromium (III, VI) in water and wastewater samples based on Task-specific ionic liquid by the ultra-assisted dispersive ionic liquid-liquid microextraction</title>
        </titles>
        <contributors>
          <person_name contributor_role="author" sequence="first">
            <given_name>Vahid</given_name>
            <surname>Saheb</surname>
          </person_name>
          <person_name contributor_role="author" sequence="first">
            <given_name>Tayebeh</given_name>
            <surname>Shamspur</surname>
          </person_name>
        </contributors>
        <jats:abstract xmlns:jats="http://www.ncbi.nlm.nih.gov/JATS1">
          <jats:p> In this research, 2-mercapto-1-methylimidazole a novel Task-specific ionic liquid (C4H6N2S; HS-CH3-IM) was used with a new approach for speciation of Cr (III, VI) from water samples by ultra-assisted dispersive ionic liquid-liquid microextraction procedure (USA-D-ILLME). Due to the procedure, 100 mg of HS-CH3-IM and 0.2 mL of acetone were mixed and injected into 10 mL of water or standard Cr (III) and Cr (VI) solution in the conical tube. After stirring for 5 min, the Cr (VI) and Cr (III) were extracted with a positive and negative charge of the thiol group (HS2+, HS-) in pH 2 or 8 and pH 5, respectively. The  Cr (III, VI) loaded on the HS-CH3-IM was back-extracted in a liquid solution. Finally, the concentration of the Cr (III, VI) ions in a remained solution were measured with ET-AAS . The total chromium was determined in water samples by summarizing the Cr (VI) and Cr (III) contents. All parameters such as the amount of HS-CH3-IM, the sample volume, pH, and the shaking/centrifuging time were optimized. Under the optimal conditions, good linear range (LR), LOD, and enrichment factor (EF) were obtained 0.05–1.7 μg L−1, 15 ng L−1, and 19.82 respectively (RSD% &lt; 1.45). </jats:p>
        </jats:abstract>
        <publication_date media_type="online">
          <month>03</month>
          <day>27</day>
          <year>2022</year>
        </publication_date>
        <pages>
          <first_page>75</first_page>
          <last_page>85</last_page>
        </pages>
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          <ai:license_ref>http://creativecommons.org/licenses/by/4.0</ai:license_ref>
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          <doi>10.24200/amecj.v5.i01.170</doi>
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