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    <title>Investigation of the applicability of wetland biomass for producing hydrochar by hydrothermal carbonization and its effectiveness for the adsorption of ammonia</title>
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  <abstract type="Summary">Die Motivation dieser Arbeit war die Nutzung von weitverbreiteten aber wenig genutzten  Moorbiomassen wie Schilf, Rohrkolben, Binsen und Seggen als Substrate für die hydrothermale Karbonisierung (HTC), um kohlenstoffhaltige Materialien zu produzieren und ihre Eignung als alternative Adsorbentien zur Entfernung von Ammoniak in wässriger Lösung zu prüfen. Die Ergebnisse bestätigten, dass es möglich war, Moorbiomasse in kohlenstoffhaltige Produkte mit einer ausreichend hohen Effizienz für die Ammoniakentfernung in wässriger Lösung umzuwandeln, um sie potenziell als Filtermaterial nutzen zu können.&lt;ger&gt;</abstract>
  <abstract type="Summary">The underlying motivation of this work was the use of widespread but underutilized wetland biomass as reed, typha, juncus and carex to be used as substrates for the hydrothermal carbonation (HTC) to produce a variety of high-value carbonaceous materials and to test their suitability as alternative adsorbents for the removal of ammonia in aqueous solution. The results of this work confirmed that it was possible to transform these wetland biomasses into carbonaceous products with a sufficiently high efficiency for ammonia removal in aqueous solution, which could be designed as a filter.&lt;eng&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Bassel Ibrahim</note>
  <note>GutachterInnen: Norbert Kanswohl (Universität Rostock, Agrar- und Umweltwissenschaftliche Fakultät, Professur für Agrartechnologie und Verfahrenstechnik) ; Frank Scholwin (Institut für Biogas, Kreislaufwirtschaft und Energie) ; Christina Dornack (Technische Universität Dresden, Institut für Abfall- und Kreislaufwirtschaft)</note>
  <note type="thesis">Dissertation Universität Rostock 2019</note>
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      <title>Investigation of the applicability of wetland biomass for producing hydrochar by hydrothermal carbonization and its effectiveness for the adsorption of ammonia</title>
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