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materials to destroy these pollutants efficiently and sustainably. You will design and test metal-doped zeolites, silicate-based catalysts and activated carbons, that activate hydrogen peroxide for the wet
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) in Paris. It will be co-supervised by Catherine AMIENS, from the LCC's 'Engineering of Metallic Nanoparticles' team (https://www.lcc-toulouse.fr/ en/engineering-of-metal-nanoparticles-team-l/ ) and
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several international research groups and centres. For further information about our school go to - https://www.unsw.edu.au/engineering/our-schools/chemical-engineering The Particles and Catalysis
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technologies through several international research groups and centres. For further information about our school go to - https://www.unsw.edu.au/engineering/our-schools/chemical-engineering The Particles and
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on the electrocatalytic conversion of plastic waste (PET, PE, and PP) into formic acid and hydrogen, both high value-added products, using sustainable alternative media (ionic liquids (ILs) and eutectic systems (ESs)) and
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of new fuels such as hydrogen and ammonia on ships, and risk analysis during bunkering (refueling). Similar analyses for battery-powered vessels. Possible courses for the position: In various Maritime
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. An overview of the QUP research, including the relationship between the projects, can be found at: https://www2.kek.jp/qup/en/research/ . We are particularly seeking candidates who are interested in any
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of assistant professor in the Opus 29 project entitled "A new high-energy hybrid system for energy storage in hydrogen absorbing alloys with ionic liquid-based electrolyte" financed by National Science
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charging infrastructure, as well as hydrogen systems in grid operation. For more information, please visit our website: https://www.academiceurope.com/ads/wissenschaftlicher-mitarbeiterin-m-w-d-professur-fur
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of hydrogen behavior in metals using conductive polymers -Data-driven analysis of hydrogen diffusion in metals and development of materials design guidelines -Elucidation of corrosion and hydrogen embrittlement