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(H2FUTURE) combines the University of Oulu’s research strengths in future H2 production, sustainable metals reduction processes, and hydrogen resistant steel development to a unique, holistic
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microstructures and properties. A strong background in physical metallurgy of steels will be important for this position to correlate the process-microstructure-property relationships. This position resides in
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the region, which is internationally leading in fossil-free steel production. Subject description Process Metallurgy deals with the sustainable extraction of metals from primary and secondary raw materials
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phases (TCP), also known as Frank-Kasper (FK) phases. These intermetallic phases are important for the design of superalloys and light steels that play a key role in energy efficiency, power generation
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Group to support and lead work relating to analysis of new technologies to decarbonize emissions-intensive industries. Focus will be on the cement & concrete and iron & steel sectors, as well as other
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This postdoctoral position involves the modelling of molten salts and ionic liquids related to sustainable steel production studies at Argonne National Laboratory. The focus of this position is on
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We are seeking a Postdoctoral Appointee to work on the modeling of electrochemical processes related to steel production at Argonne National Laboratory. The focus of this position is on developing
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and testing of catalysts for CO2 utilization and exhaust gas purification of steel mill gases in industry-financed and publicly funded projects. We are looking for your support as a post-doc in the
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the transformation and circularity in energy-intensive industries (steel, cement, and plastics). The position is initially funded for 3 years(Postdocs) or 4 years (PhD candidates). Extensions are envisaged and rely
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Delft, within the Steel and Composite Structures section in the Department of Engineering Structures, under the supervision of Dr. Florentia Kavoura and Prof. Milan Veljkovic from the Faculty of Civil