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Kepler University (JKU). LIFT_C acts as a catalyst for change, providing impulses that help initiate transformation. It supports the search for solutions to shared contemporary challenges and, as a hub
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supercritical reaction conditions Working with commercial and academic catalysts Kinetic investigation & modelling of supercritical steam reforming Integration of experimental results into reactor and process
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supplies. Opportunities will also be available to contribute to the activities of the U.S. Nodal Office of the Global Land Programme, which serves as a regional node and catalyst for land system science and
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each year worldwide are used for NH3 synthesis (i.e. H2 production), reflecting the current carbon footprint of the process: 1.2% of the CO2 produced each year worldwide. Research into catalysts for NH3
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available for 3-years to work with Florian Hollfelder at the Biochemistry Department of Cambridge University (https://hollfelder.bioc.cam.ac.uk/ ). The project is part of the Horizon Europe Eu Marie Curie
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offered in the group of Prof. M. Rivero-Crespo at Stockholm University. The candidate will work on the synthesis and characterization of multifunctional Metal-Organic Frameworks (MOFs). The catalysts will
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of the catalysts behavior under reaction conditions. Where to apply Website https://www.polimi.it/en/bandi-per-i-ricercatori Requirements Research FieldAgricultural sciences » OtherEducation LevelPhD or equivalent
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 17 days ago
) Vacancy ID: NF0009460 Salary Range: $62,115-$72,000 Position Summary/Description: The Operational Excellence (OE) Team at the University of North Carolina at Chapel Hill acts as a catalyst for change and a
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Nov. 17, 2025 and continue until positions are filled. Applications should be submitted at: https://careers.purdue.edu/job/Assistant-Professor-of-Advanced-Chemistry/39238-en_US/ A background check is
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Design and synthesis of advanced heterogeneous catalysts for sustainable petrochemical transformations School of Mathematical and Physical Sciences PhD Research Project Self Funded Dr Marco Conte