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Publikationer av Kenneth Möllersten

Refereegranskade

Artiklar

[1]
Fridahl, M., Schenuit, F., Lundberg, L., Möllersten, K., Böttcher, M., Rickels, W. & Hansson, A. (2023). Novel carbon dioxide removals techniques must be integrated into the European Union’s climate policies. Communications Earth & Environment, 4(1).
[2]
Zetterberg, L., Johnsson, F. & Möllersten, K. (2021). Incentivizing BECCS-A Swedish Case Study. FRONTIERS IN CLIMATE, 3.
[3]
Azar, C., Lindgren, K., Obersteiner, M., Riahi, K., van Vuuren, D. P., den Elzen, K. M. G. J. ... Larson, E. D. (2010). The feasibility of low CO2 concentration targets and the role of bio-energy with carbon capture and storage (BECCS). Climatic Change, 100(1), 195-202.
[5]
Möllersten, K., Gao, L. & Yan, J. (2006). CO2 Capture in Pulp and Paper Mills : CO2 Balances and Preliminary Cost Assessment. Mitigation and Adaptation Strategies for Global Change, 11(5-6), 1129-1150.
[6]
Azar, C., Lindgren, K., Larson, E. & Möllersten, K. (2006). Carbon capture and storage from fossil fuels and biomass - : Costs and potential role in stabilizing the atmosphere. Climatic Change, 74(1-3), 47-79.
[7]
Grönkvist, S., Möllersten, K. & Pingoud, K. (2006). Equal opportunity for biomass in greenhouse gas accounting of CO2 capture and storage : a step towards more cost-effective climate change mitigation regimes. Mitigation and Adaptation Strategies for Global Change, 11(5-6), 1083-1096.
[9]
Möllersten, K., Gao, L., Yan, J. Y. & Obersteiner, M. (2004). Efficient energy systems with CO2 capture and storage from renewable biomass in pulp and paper mills. Renewable energy, 29(9), 1583-1598.
[10]
Möllersten, K., Westermark, M. & Yan, J. (2003). Potential and cost-effectiveness of CO2-reducing measures in the pulp and paper industry. Energy, 28(7), 691-710.
[11]
[13]
Obersteiner, M., Azar, C., Kauppi, P., Möllersten, K., Moreira, J., Nilsson, S. ... van Ypersele, J. P. (2001). Managing climate risk. Science magazine, 294(5543), 786-787.

Konferensbidrag

[15]
Möllersten, K., Gustavsson, M. (2022). Implementing BECCS in Swedish district heating – An SDG assessment. I Proceedings 16th Greenhouse Gas Control Technologies Conference 2022 (GHGT-16)..
[16]
Möllersten, K., Naqvi, R., Jinyue, Y. (2020). Qualitative comparative assessment of Negative Emission Technologies. I International Conference on Applied Energy 2020. ICAE.
[17]
Möllersten, K., Gao, L., Yan, J. (2003). CO2 balances and mitigation costs of advanced CHP systems with CO2 capture in pulp and paper mills. Presenterad vid IEA Task 38 - Greenhouse Gas Balances of Biomass and Bioenergy Systems Conference: Efficient Use of Biomass for Greenhouse Gas Mitigation Östersund, Sweden, September 30 – October 1, 2003.
[18]
Möllersten, K., Yan, J. (2002). Comparative assessment of industrial energy systems with negative CO2 emissions : Black liquor-based CHP with CO2 removal. Presenterad vid World Renewable Energy Congress VII, (WREC), Cologne, Germany, 29 Jun - 5 Jul, 2002.
[20]
Möllersten, K., Westermark, M., Yan, J. (2001). Potential and cost-effectiveness of CO2-reducing measures in the pulp and paper industry. I Proceedings of the Fifth International Conference on Greenhouse Gas Control Technologies. Collingwood, Vic.

Kapitel i böcker

[21]
Möllersten, K., Zuzanna, C., Cladny, M. & Obersteiner, M. (2006). Negative emission biomass technologies in an uncertain climate future. I Steven F. Warmer (Red.), Progress in Biomass and Bioenergy Research (s. 217). New York: Nova Science Publishers, Inc.

Icke refereegranskade

Artiklar

[22]
Yan, J., Obersteiner, M., Möllersten, K. & Moreira, J. (2019). Negative Emission Technologies - NETs. Applied Energy, 255, 1-3.

Konferensbidrag

[23]
Bolin, B., Obersteiner, M., Möllersten, K., Azar, C. (2004). Climate Risk Management: Are we ignoring the obvious?. Presenterad vid Euroscience Open Forum 2004, Stockholm, 28-28 August. Stockholm.
[24]
Möllersten, K., Yan, J. (2001). Bioenergy with CO2 Removal and Disposal : An Approach to Negative CO2 Emissions in Energy Systems. Presenterad vid IEA Bioenergy Task 38 Workshop. Edinburgh, UK, 12th Nov. 2001.

Avhandlingar

[25]
Möllersten, K. (2002). Opportunities for CO2 Reductions and CO2-Lean Energy Systems in Pulp and Paper Mills (Doktorsavhandling , Kemiteknik, Stockholm, TRITA-KET R161). Hämtad från https://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-3398.

Rapporter

[26]
[27]
Johnsson, F., Zetterberg, L. & Möllersten, K. (2023). Mot nettonollutsläpp : hur kan koldioxidavskiljningbidra? (SNS Analys 98). Stockholm.
[28]
Johnsson, F., Zetterberg, L. & Möllersten, K. (2023). Towards net-zero emissions – how can carbon dioxide capture and storage contribute?. Stockholm: SNS förlag.
[29]
Obersteiner, M., Azar, C., Möllersten, K. & Riahi, K. (2001). Biomass Energy, Carbon Removaland Permanent Sequestration : A ‘Real Option’ for Managing Climate Risk (IIASA Interim Report IR-02-042). Laxenburg.
[30]
Grönkvist, S., Marbe, Å., Möllersten, K. & Sundgren, D. (2001). Fyra studier av energisamarbete i Sverige (Program Energisystems skriftserie Report No. 18). .
[31]
Obersteiner, M., Azar, C., Kossmeier, S., Mechler, R., Möllersten, K., Nilsson, S. ... Yan, J. (2001). Managing Climate Risk (IIASA Interim Report IR-01-051). Laxenburg, Austria: International Institute for Applied Systems Analysis.
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2024-07-17 09:47:01