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SIT FUNDED PROJECTS further work developing pilot-scale thermochemical storage systems. A car- bon footprint estimate derived from the research results provides a basis for gauging possible reductions in CO2 emissions and resource consumption. 3.15.3 Exploitation, commercialisation and dissemination of results In 2007, industrial sites in Germany alone generated an annual waste heat potential of 406 TWh. Exploiting this potential could decrease primary en- ergy consumption, lower greenhouse gas emissions and reduce costs, giving German industry a competitive advantage and ensuring sustainable growth. The development of thermochemical storage systems is still at an early stage and it is not yet possible to operate an absorption heat pump and heat stor- age system in combination at the pilot scale. The work carried out during the project did however demonstrate that this technology could create oppor- tunities to reduce carbon emissions. Close collaboration between university research organisations and industrial partners created opportunities to align innovative research with application-related needs. The SIT project provid- ed an excellent opportunity for research work by engineering and science students, with a total of four doctoral dissertations and numerous Bachelor’s and Master’s theses completed over the course of the project. 277PDF Image | Chemical Processes and Use of CO2
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