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Publication

1 January, 2019/in Publication/by appdev.its

Mesfun S., Lundgren J., Toffolo A., Lindbergh G., Lagergren C., Engvall K. Integration of an electrolysis unit for producer gas conditioning in a bio-synthetic natural gas plant. 2019. Journal of Energy Resources Technology, Transactions of the ASME. 141. 1. 012002. 10.1115/1.4040942.

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Publication

1 January, 2019/in Publication/by appdev.its

Patel A., Antonopoulou I., Enman J., Rova U., Christakopoulos P., Matsakas L. Lipids detection and quantification in oleaginous microorganisms: an overview of the current state of the art. 2019. BMC Chemical Engineering. 1. 1. 13. 10.1186/s42480-019-0013-9.

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Publication

1 January, 2019/in Publication/by appdev.its

Wiinikka H., Sepman A., Ögren Y., Lindblom B., Nordin L.-O. Combustion Evaluation of Renewable Fuels for Iron-Ore Pellet Induration. 2019. Energy Fuels. 33. 8. 7819-7829. 10.1021/acs.energyfuels.9b01356.

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Fuelling with entirely bio-based petrol. Jyri-Pekka Mikkola (left) and Kent van Klint. Photo by ©AnnaStrom.©AnnaStrom

Entirely “green” petrol, diesel, jet fuel being developed in Sweden

23 November, 2018/in News/by Anna Strom

Bio4Energy researchers at Umeå University and partnering company Eco Oil Sweden have launched a new technology for making “green” equivalents of fossil fuels petrol, diesel and kerosene (jet fuel).

The new fuels contain not a single fossil molecule but still may be used in conventional automotive engines, thanks to their being chemical equivalents. The production process can be operated by non-experts within the space of a standard shipping container.

The new fuels contain not a single fossil molecule but still may be used in conventional automotive engines, thanks to their being chemical equivalents. The production process can be operated by non-experts within the space of a standard shipping container.

The technology and the pilot unit that it has been tested in have already attracted the attention of investors in Sweden, Germany, the United Arab Emirates and the United States.

“The containers can be shipped anywhere in the world”, said lead researcher Jyri-Pekka Mikkola, Professor at Umeå University and Åbo Akademi University, in Sweden and Finland, respectively.

Hydrocarbons are the basic components of fossil fuels such as petrol, diesel and jet fuel. It follows that making hydrocarbons from biomass, for instance forestry residues, has been a hot topic in research and development.

Disruptive technology

“This is a disruptive technology. It does not have to be constructed on the scale of a biorefinery”, Mikkola said.

“This application could be operated on behalf of a petrol station or village. Because the process also renders liquefied petroleum gas, which can be used in gas-to-power engines, it may be used to produce electricity”, he added.

The pilot unit that the technology has been tested in can make up to 250 litres of biofuel per day from biomass that is turned into an alcohol before becoming hydrocarbons.

The researchers together with business partner Kent van Klint have started a company, Eco Oil Sweden; to market the technology. The next step for the business partners is to demonstrate the technology on a near commercial scale.

Two full-scale plants on cards

“Two full-scale plants will be built. One for petrol and one for diesel, according to the principle that the resulting fuels will be entirely void of petrochemicals. Both fuels will be exact chemical copies of their synthetic counterparts,” according to van Klint.

“Our business model is to produce and sell plants”, he said.

“We leave it in the hands of those who have capital to construct full-scale production units”, Mikkola added.

“We are going to concentrate on selling licences and making the catalysts. The secret is in the catalysts”.

The invention and the pilot unit have been developed by Mikkola and colleagues Ajaikumar Samikannu, William Siljebo and Lakhya Konwar in the research environment Bio4Energy at Umeå University in northern Sweden.

The group members are partners in the company Eco Oil Sweden.

https://bio4energy.se/wp-content/uploads/2018/11/Green-petrol-fuelling_AnnaStrom©2024.jpg 1667 2500 Anna Strom https://bio4energy.se/wp-content/uploads/2022/08/Logo_stor_farg-300x74.png Anna Strom2018-11-23 18:06:002024-10-17 14:30:10Entirely “green” petrol, diesel, jet fuel being developed in Sweden

Publication

1 January, 2018/in Publication/by appdev.its

Patrizio P., Leduc S., Kraxner F., Fuss S., Kindermann G., Mesfun S., Spokas K., Mendoza A., Mac Dowell N., Wetterlund E., Lundgren J., Dotzauer E., Yowargana P., Obersteiner M. Reducing US Coal Emissions Can Boost Employment. 2018. Joule. 2. 12. 2633-2648. 10.1016/j.joule.2018.10.004.

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Publication

1 January, 2018/in Publication/by appdev.its

Chen Z.-Q., Baison J., Pan J., Karlsson B., Andersson B., Westin J., García-Gil M.R., Wu H.X. Accuracy of genomic selection for growth and wood quality traits in two control-pollinated progeny trials using exome capture as the genotyping platform in Norway spruce. 2018. BMC Genomics. 19. 1. 946. 10.1186/s12864-018-5256-y.

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Publication

1 January, 2018/in Publication/by appdev.its

Carvalho L., Furusjö E., Ma C., Ji X., Lundgren J., Hedlund J., Grahn M., Öhrman O.G.W., Wetterlund E. Alkali enhanced biomass gasification with in situ S capture and a novel syngas cleaning. Part 2: Techno-economic assessment. 2018. Energy. 165. 471-482. 10.1016/j.energy.2018.09.159.

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Publication

1 January, 2018/in Publication/by appdev.its

Chen G., Wu G., Alriksson B., Chen L., Wang W., Jönsson L.J., Hong F.F. Scale-up of production of bacterial nanocellulose using submerged cultivation. 2018. Journal of Chemical Technology and Biotechnology. 93. 12. 3418-3427. 10.1002/jctb.5699.

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Publication

1 January, 2018/in Publication/by appdev.its

Ouraich I., Wetterlund E., Forsell N., Lundmark R. A spatial-explicit price impact analysis of increased biofuel production on forest feedstock markets: A scenario analysis for Sweden. 2018. Biomass and Bioenergy. 119. 364-380. 10.1016/j.biombioe.2018.09.029.

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Publication

1 January, 2018/in Publication/by appdev.its

Mesfun S., Leduc S., Patrizio P., Wetterlund E., Mendoza-Ponce A., Lammens T., Staritsky I., Elbersen B., Lundgren J., Kraxner F. Spatio-temporal assessment of integrating intermittent electricity in the EU and Western Balkans power sector under ambitious CO2 emission policies. 2018. Energy. 164. 676-693. 10.1016/j.energy.2018.09.034.

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