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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2 CHEMICAL ENERGY STORAGE IC4 Whether or not an adsorptive method of carbon capture can be deployed at a real power plant site will depend on how the price for CO2 develops in future. The price is currently so low that wet scrubbing is practically the only method being used to capture CO2. There is also at present no policy frame- work that would suggest that the application of CCS technology is going to become any more likely in the near future. One possible initial application of CO2 captured from power plant flue gases could be its use in enhanced oil recovery (carbon dioxide injection). If at some point in the future economic conditions were to change so as to favour CCS technologies, the research findings and the structures establis- hed in the iC4 project could be used as the basis for developing and optimi- sing the technologies studied in the project. COOMem Although substantial progress was made during the project regarding the individual materials used for the separation and support layers, creating a composite material containing both layers was only possible by incorporati- on of an additional intermediate layer. As a result, the membrane materials cannot be used at present by the industry partner (WACKER) for CO2 sepa- ration as originally planned without significant further development work and investment in commercialising the technology. However, the improved understanding of the materials involved in the membrane separation process did enable the use of a non-coated membra- ne for an application in the consumer goods industry in which there was no requirement to create a composite of the (supporting) membrane and the separation layer. COOMeth The COOMeth project showed that the newly developed bimetallic catalyst systems, particularly those involving Al2O3, exhibited improved performan- ce levels compared with the benchmark reference system. It was also de- monstrated that the reactor concept developed by MAN is suitable for the methanation reaction. The results therefore demonstrate the potential for future commercial exploitation. PhotoCOO The direction of the research work and the implementation of the research programme were agreed and conducted in close collaboration with Clariant AG. A fundamentally new understanding of deactivation reactions in both homogeneous and heterogeneous catalysis was established that will be in- corporated into the future development of high-performance catalysts. 160

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