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Chemical Processes and Use of CO2

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Chemical Processes and Use of CO2 ( chemical-processes-and-use-co2 )

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Seite 3.1 Carbon capture 178 (Prof. Klaus Görner, Universität Duisburg-Essen) Funded Projects: 3.2 EffiCO2 – New efficient carbon capture solvent 200 3.3 CO2-Kompressor – Developing a miniaturised, oil-free CO2 compressor with an 204 integrated CO2-cooled electric motor drive for large-scale CO2 heat pumps 3.4 InnovA2 – Innovative plant equipment concepts for increasing the efficiency 210 of production processes 3.5 Abwärme – Using low-temperature waste heat to drive absorption refrigerators 217 and absorption heat transformers – Novel refrigerant-absorbent pairs 3.6 EP-Wüt – Energy-efficient heat exchangers 224 3.7 OPHINA – Organic solvent nanofiltration for energy-efficient processes 232 3.8 LICIL – Methods for Extracting Lignin, Cellulose and Hemicellulose with the 235 Aid of Novel Ionic Liquids 3.9 Mixed-Matrix-membranes for gas separation 243 3.10 EEManagement – EEnergy efficiency management and benchmarking 249 for the process industry 3.11 HY-SILP – Development of novel, resource-saving hydroformylation technologies 255 and use of Supported Ionic Liquid Phase (SILP) catalysts 3.12 InReff – Integrated Resource Efficiency for Reducing Climate Impacts in the 262 Chemical Industry 3.13 Multi-Phase – Increased energy efficiency and reduced greenhouse gas emissions 269 through use of multi-scale modelling of multi-phase reactors 3.14 IL-WIND – Development of IL-based lubricants for wind turbines 272 3.15 SIT – Utilisation of low-calorific industrial heat by means of sorption heat pump systems 275 using ionic liquids and thermochemical accumulators (Horst Fehrenbach, Axel Liebich, Jonas Harth, Nabil Abdallah, Andreas Detzel, Balint Simon, Thomas Fröhlich, Jürgen Giegrich, ifeu – Institut für Energie- und Umweltforschung Heidelberg GmbH) INHALTSVERZEICHNIS 3 Energy Efficient Processes 178 4 Methodological Guidance on Implementing Carbon Accounting Mechanisms for Processes in the Chemical Industry – ifeu Heidelberg 278 5

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