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EMPI - Institut für Energie- und Material-Prozesse - RF
Anschrift
Carl-Benz-Straße 199
47057 Duisburg
47057 Duisburg
Raum
LN U1.12
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Telefax
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Stipendiat/-in, Reaktive Fluide
Aktuelle Veranstaltungen
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Vergangene Veranstaltungen (max. 10)
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Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Spray-flame synthesis of LaCo₀.₂Mn₀.₈O₃ for selective peroxymonosulfate activation into singlet oxygen towards efficient degradation of carbamazepineIn: Process Safety and Environmental Protection: Transactions of the Institution of Chemical Engineers: Part B , Jg. 194 2025 , S. 1347 - 1359DOI (Open Access)
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Investigating the mechanical and physical properties of lightweight geopolymer concreteIn: Al-Qadisiya Journal for Engineering Sciences , Jg. 17 2024 , Nr. 2 , S. 88 - 96DOI (Open Access)
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Spray-flame synthesis of Nb-doped TiO₂ nanoparticles and their electrochemical performance in sodium-ion batteriesIn: Applications in Energy and Combustion Science , Jg. 17 2024 , 100252DOI (Open Access)
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Titania/graphene nanocomposites from scalable gas-phase synthesis for high-capacity and high-stability sodium-ion battery anodesIn: Nanotechnology , Jg. 35 2024 , Nr. 22 , 225602DOI (Open Access)
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Kinetic evaluation of heterocatalytic ozone-based activation of peroxymonosulfate using acid-treated graphene catalyst for the degradation of micropollutantsIn: Journal of Environmental Chemical Engineering , Jg. 11 2023 , Nr. 3 , 109659
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Ozonation of carbamazepine in the presence of sulfur-dopped graphene : Effect of process parameters and formation of main transformation productsIn: Science of the Total Environment , Jg. 864 2023 , 161079
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Synthesis of novel LaCoO₃/graphene catalysts as highly efficient peroxymonosulfate activator for the degradation of organic pollutantsIn: Chemical Engineering Journal , Jg. 454 2023 , 139900DOI (Open Access)
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Enhanced heterogeneous activation of peroxymonosulfate by Ruddlesden-Popper-type La2CoO4+δ nanoparticles for bisphenol A degradationIn: Chemical Engineering Journal , Jg. 429 2022 , 131447DOI (Open Access)