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EEMANAGEMENT FUNDED PROJECTS 3.10.4 Exploitation, commercialisation and dissemination of results With the help of the results achieved during the project, the STRUCTese® methods will be able to be applied globally in future, i.e. without being re- stricted to particular companies or processes. The production processes at Covestro, BASF PCN, Clariant and bitop, where the STRUCTese® methodology was implemented for the purposes of project case studies, are already benefiting from reduced energy consumption levels and lower CO2 emissions. At Covestro the STRUCTese® methodology has so far been introduced into 66 production units. In 2014, these production units saved a total of 1,500,000 MWh of primary energy. Based on the experience gained with the new energy-efficiency management system, Covestro has set itself the target of reducing the specific CO2 emissions per metric ton of product by 40% over the period 2005 to 2020. Marketing and dissemination of the methodology is ongoing. In the life science field, the project partner INOSIM Consulting has been able to add STRUCTese® for Life Sciences to its existing project portfolio. The company bitop AG will be using the STRUC- Tese® concept in its product manufacturing processes, thus boosting their long-term sustainability. In contrast to bitop, the project partner instrAction does not operate its own production units. The core competence at instrAc- tion is the development of innovative chromatographic materials that are sold worldwide. By using STRUCTese® Life Science, instrAction will be able to take into account the energy efficiency of those production processes in which its chromatographic materials will later be used during the material development stage. As a result, chromatographic materials from instrAction will enjoy a technological advantage over competitor products. The next stage for the academic project partners will be to broaden the use of approximation methods and associated process design concepts in indus- trial practice. The results achieved during this project have already been in- tegrated into teaching modules and are being used to heighten awareness among students for energy efficiency issues. The development of a generic process model for describing organophilic membranes now allows alterna- tive energy-optimised processes that exploit organophilic membrane tech- nology to be simulated in detail and rigorously optimised. This will be used in future research work to further reduce energy requirements within the chemical and petrochemical industries. 253PDF Image | Chemical Processes and Use of CO2
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