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HYCATS FUNDED PROJECTS be chemically combined with solar hydrogen to produce hydrocarbons. Local hydrogen generation would also be an attractive technology for achieving the decentralised supply of energy to domestic properties. If fuel cells in residen- tial buildings could be supplied with solar hydrogen, this would also have the effect of simplifying the necessary power supply infrastructure. 2.7.2 Project description The goal of the HyCats project is to provide scalable technology for the cost-effective production of hydrogen by solar-driven chemical systems. The project partners from industry and from centres of applied and pure research will collaborate to develop and test new photocatalysts for water splitting and the associated reactor technology. The aim is that by the end of the project the industrial partners will have a toolbox available that con- sists of catalysts, development tools and reactors for photo-electrochemical hydrogen production and that will facilitate the rapid development of the technology into a marketable product. The material development work was guided by the following criteria: • Maximum efficiency • Maximum lifetime • Lowest possible material costs • Long-term availability of the raw materials used. Parallel syntheses were performed to generate large numbers of new semi- conductor materials with a variety of compositions followed by rapid tes- ting to identify active materials. In contrast to previously published high- throughput screening systems, the newly developed rapid tests included all of the reactions involved in the photochemical water splitting system and an analysis of the quantities of hydrogen and oxygen produced. Using catalytic activity as the guiding parameter, the catalyst composition, the co- catalysts, and the synthesis and calcination parameters were optimised. By iterating this process repeatedly and introducing new generations of cata- lysts, the project team was able to develop photocatalytic materials designed to make efficient use of solar energy in the production of hydrogen. A fundamental understanding of the processes involved is required if the synthesis is to be planned in a rational way. The starting point was the 173PDF Image | Chemical Processes and Use of CO2
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