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2 CHEMICAL ENERGY STORAGE HYCATS tor syntheses and how their physical properties can be influenced by con- trolling the production parameters. Correlations were also established between catalytic activity and the physicochemical properties of the photo- catalysts. These results allow useful conclusions to be drawn regarding the optimal configuration of material properties for photocatalysts used in oth- er applications such as photochemical syntheses and photochemical water purification. 2.7.4 Exploitation, commercialisation and dissemination of results The results produced during the HyCats project were included in academ- ic dissertations, published in scientific journals and presented at scientific and technical conferences. They are also being used in ongoing photocat- alyst development work. Access to the HyCats toolbox will be available to HyCats project partners through bilateral cooperation agreements, such as photocatalyst testing in the solar concentrator SoCRatus operated by DLR. The efficiency achieved so far in solar chemical hydrogen production is still too low for these photocatalysts to be marketed for this purpose at the cur- rent time. Nevertheless, during the project numerous tantalum and niobium com- pounds were synthesised and characterised and many of these are of inter- est for other technical applications. The results from the HyCats project will therefore continue to be exploited in other research projects. At present, some of the synthesised Ta/Nb compounds and new synthetic routes are being test- ed for their suitability for other commercial applications. Examples of such applications include industrial catalysts for organic syntheses, pigments and electroceramics, such as lead-free piezo-ceramics. Of particular interest in this regard are the synthetic routes that achieve high BET surface areas. The rapid catalyst screening facility that was set up also permits other re- actions to be examined. The results and experience gained from the HyCats project can be applied to other research projects that are addressing similar environmentally relevant issues. The photocatalytic purification of water and air are examples of two such topics that could benefit from this sort of approach. Spectroscopic analysis in high-throughput systems can be applied to many substance classes and is therefore an analytical instrument of uni- versal character. The methods of synthesis and particularly the polymerisa- tion techniques developed in HyCats will be used for the high-throughput preparation of mixed oxide catalysts for other heterogeneous catalysis reac- tions, such as selective oxidations. These techniques allow the fabrication of mixed catalysts that exhibit a very homogeneous distribution of elements. 176PDF Image | Chemical Processes and Use of CO2
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