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SUNFIRE FUNDED PROJECTS gen requirements can be met more cheaply by a local dedicated electroly- sis unit than by an expensive hydrogen logistics network. Larger facilities, such as refineries, are also conceivable provided that the necessary statu- tory framework is in place. In future developments, co-electrolysis will also be used for the direct production of synthesis gas. The first applications of this technology will be demonstration units probably operated in cooperation with compa- nies in the chemical sector. Further work in this area is planned as part of the government-funded Kopernikus scheme. b) PtX technology will be offered in its entirety, with sunfire GmbH concen- trating on the production of synthesis gas. The chemical synthesis tech- nologies (Fischer-Tropsch, methanol synthesis, Sabatier process) will be provided by partners. Discussions are currently being held with numer- ous potential customers and operators. Major obstacles on the path to establishing a first industrial-scale technology demonstrator are the con- tinuing high costs and the regulatory framework (see below). c) The RWGS 2.0 reactor has yielded some important findings relating to high-temperature insulation and high-temperature heating under pres- sure and energy efficient means of avoiding soot production when cool- ing synthesis gas. In addition to their application in renewable synthesis gas technology, these findings can also be used beneficially in the produc- tion of synthesis gas from fossil-based natural gas. Sunfire will be com- mercially exploiting these findings in other sectors. d) The concept of inter-sector coupling described above and the technical progress made during the sunfire project have been communicated re- gularly at specialist meetings and conferences. sunfire GmbH is working with numerous partners from industry and from public bodies to establish a sustainable concept for the economically viable introduction of PtX technology. This collaborative interaction is designed not only to con- tinue technology development but also to address issues relating to the essential regulatory framework. Only when sustainably produced chemi- cals and fuels are able to compete fairly against fossil-based products will there be any meaningful chance of them transitioning from the develop- ment and technology demonstration stage towards large-volume indus- trial-scale applications. 141PDF Image | Chemical Processes and Use of CO2
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