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the evaluation, the intensification and the optimization of carbonation (biotic and abiotic) processes involving different feedstocks, to address three different applications of industry decarbonation, in straight
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, particularly in the context of national, European, and international research programs, as well as in collaborative research projects in partnership with industry. The research activities carried out mainly fall
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on the manufacture of complete prototypes, using rapid prototyping tools, and their experimental characterisation. The measurements will focus in particular on identifying the non-linearities induced by each component
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partner BDR Thermea, a prototype heat pump incorporating the new reactive fluid (pure or mixed with an inert fluid) will be designed, manufactured and tested experimentally. This phase will validate
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mechanical structures, systems, and processes. Our areas of activity are in line with those of the mechanical engineering industry, with a particular focus on projects in the fields of aeronautics, space
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collaboration with a major cosmetics manufacturer, and provide ample opportunity for research stays at the manufacturer's R&D facilities in Paris. With more than 750 researchers, the FEMTO-ST Institute (CNRS
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and their applications in academia and industry, both regionally and nationally. For more information about IS2M, please visit the website: https://www.is2m.uha.fr/ . The Mulhouse Institute of Materials
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understanding of processes at the atomic scale and the development of innovative nanochemical manufacturing techniques and high-precision characterization will be established to modify the functionalities of 2D
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catalysis (UCCS) and molecular adsorption (ICGM), and a manufacturer of personal protective equipment (Paul Boyer Technologies) able to provide its expertise in the field of manufacturing NRBC protective
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for manufacturing chiral metal nanoclusters of different sizes, metal compositions and degrees of chirality (intrinsic and induced). The main objective is to use the nanoclusters designed both as multiphoton imaging