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Finnish demo plant produces renewable fuel from carbon dioxide captured from the air
admin
2017-06-12
发布年2017
语种英语
国家美国
领域地球科学
正文(英文)
Cyril Bajamundi, Research scientist from VTT . Credit: LUT

The unique Soletair demo plant developed by VTT Technical Research Centre of Finland and Lappeenranta University of Technology (LUT) uses carbon dioxide to produce renewable fuels and chemicals. The pilot plant is coupled to LUT's solar power plant in Lappeenranta.

The aim of the project is to demonstrate the technical performance of the overall process and produce 200 litres of fuels and other hydrocarbons for research purposes. This concerns a one-of-a-kind demo plant in which the entire process chain, from to hydrocarbon production, is in the same place.

The demo plant comprises four separate units: a ; equipment for separating carbon dioxide and water from the air; a section that uses electrolysis to produce hydrogen; and synthesis equipment for producing a crude-oil substitute from and hydrogen.

Pilot-scale plant units have been designed for distributed, small-scale production. Production capacity can be increased by adding more units.

"The concept we are exploring is an example of how the chemical industry could be electrified in the future. The burning of fossil fuels must end by 2050, but people will continue to need some hydrocarbons," says Professor Jero Ahola of LUT.

"The result will be multi-sectoral industrial integration. Finnish industry's expertise in this area is being reinforced by collaboration," comments Principal Scientist Pekka Simell of VTT, who is in charge of coordinating the project.

VTT and LUT will test the Soletair demo plant during the summer. After the piloting phase, synthesis units will be used in a number of EU projects over the coming years. It will provide a platform for conducting research with international companies.

Information gathered during the project will be useful for the commercialisation of the technologies. New business opportunities will arise for companies such as those benefiting from the circular economy or surplus electricity, or for chemical companies.

Explore further: Power-to-liquid—pilot operation of first compact plant

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来源平台Science X network
文献类型新闻
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/122958
专题地球科学
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