Conference Agenda
Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).
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Daily Overview |
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17a: Advanced Analytical Methods: Insights into challenging and dynamic (Geo)Material Processes
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2:45pm - 3:15pm
Invited Session Keynote ID: 390 / Session 17a: 001 Topics: 17: Advanced Analytical Methods: Insights into challenging and dynamic (Geo)Material Processes Fluid-cell Raman Spectroscopy for operando Observations of Reaction and Transport Phenomena during Solid-Fluid Interactions University of Bonn, Germany 3:15pm - 3:30pm
ID: 196 / Session 17a: 002 Topics: 17: Advanced Analytical Methods: Insights into challenging and dynamic (Geo)Material Processes Enlightening high temperature corrosion phenomena by a multi-analytical approach on different length scale Martin-Luther-Universität Halle, Deutschland 3:30pm - 3:45pm
ID: 164 / Session 17a: 003 Topics: 17: Advanced Analytical Methods: Insights into challenging and dynamic (Geo)Material Processes X-ray micro computed tomography (µXCT) as a tool for the characterization and evaluation of pyrometallurgical products from slag recycling throughout different scales 1: Helmholtz-Zentrum Dresden Rossendorf, Helmholtz Institute Freiberg for Resource Technology, Germany; 2: Federal Institute for Materials Research and Testing, Germany; 3: The University of Jyväskylä, Faculty of Science and Mathematics,Department of Chemistry, Finland 3:45pm - 4:00pm
ID: 183 / Session 17a: 004 Topics: 17: Advanced Analytical Methods: Insights into challenging and dynamic (Geo)Material Processes Decoding solid-state reduction: in situ and ex situ insights into ball-milling processes Max Planck Institut für Kohlenforschung, Germany 4:00pm - 4:15pm
ID: 215 / Session 17a: 005 Topics: 17: Advanced Analytical Methods: Insights into challenging and dynamic (Geo)Material Processes Quantifying Slag Properties to Assess Lithium Recyclability 1: Martin-Luther-Universität Halle-Wittenberg, Germany; 2: Institute for Technologies and Economics of Lithium GmbH | ||

