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  <identifier identifierType="DOI">10.18453/rosdok_id00001794</identifier>
  <creators>
    <creator>
      <creatorName nameType="Personal">Großeheilmann, Julia</creatorName>
      <givenName>Julia</givenName>
      <familyName>Großeheilmann</familyName>
      <nameIdentifier nameIdentifierScheme="GND" schemeURI="http://d-nb.info/gnd/">http://d-nb.info/gnd/1114928380</nameIdentifier>
    </creator>
  </creators>
  <titles>
    <title>Innovative approaches for catalyst removal and recycling in organocatalysis</title>
  </titles>
  <publisher>Universität Rostock</publisher>
  <publicationYear>2016</publicationYear>
  <resourceType resourceTypeGeneral="Text" />
  <subjects>
    <subject xml:lang="en" schemeURI="http://dewey.info/" subjectScheme="dewey">540 Chemistry &amp; allied sciences</subject>
  </subjects>
  <dates>
    <date dateType="Created">2016</date>
  </dates>
  <language>en</language>
  <alternateIdentifiers>
    <alternateIdentifier alternateIdentifierType="PURL">http://purl.uni-rostock.de/rosdok/id00001794</alternateIdentifier>
    <alternateIdentifier alternateIdentifierType="URN">urn:nbn:de:gbv:28-diss2016-0108-7</alternateIdentifier>
  </alternateIdentifiers>
  <descriptions>
    <description descriptionType="Abstract">This project aimed at the development of efficient catalyst recycling concepts. For this purpose, three innovative strategies for catalyst recycling were designed, investigated and evaluated. Within the first stage, organic solvent nanofiltration was used for recovery and reuse of an organocatalyst. The embedding of organocatalysts in IL-based hydrogels as a second possibility for catalyst and product separation is an interesting novel immobilization method. Switchable solvent systems were investigated as the third separation method to optimize the organocatalytic reaction.</description>
  </descriptions>
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