Carbon capture and storage (CCS): the way forward

Author:

Bui Mai12345,Adjiman Claire S.52647,Bardow André891011ORCID,Anthony Edward J.121314154ORCID,Boston Andy16174,Brown Solomon1819204ORCID,Fennell Paul S.72214,Fuss Sabine222311,Galindo Amparo52647,Hackett Leigh A.242526,Hallett Jason P.72214ORCID,Herzog Howard J.272829ORCID,Jackson George72214,Kemper Jasmin30314,Krevor Samuel327264,Maitland Geoffrey C.7221432ORCID,Matuszewski Michael33343529,Metcalfe Ian S.3637384,Petit Camille72214,Puxty Graeme394041,Reimer Jeffrey42434429,Reiner David M.454647284,Rubin Edward S.48493529ORCID,Scott Stuart A.4750514,Shah Nilay52647,Smit Berend4243442952ORCID,Trusler J. P. Martin7221432,Webley Paul753415453,Wilcox Jennifer55565729,Mac Dowell Niall12345ORCID

Affiliation:

1. Centre for Environmental Policy

2. Imperial College London

3. London SW7 1NA

4. UK

5. Centre for Process Systems Engineering

6. London SW7 2AZ

7. Department of Chemical Engineering

8. Chair of Technical Thermodynamics

9. RWTH Aachen University

10. 52056 Aachen

11. Germany

12. Centre for Combustion

13. Carbon Capture & Storage

14. Cranfield University

15. Bedford

16. Red Vector Ltd.

17. Loughborough

18. Department of Chemical and Biological Engineering

19. The University of Sheffield

20. Sheffield S1 3JD

21. London

22. Mercator Research Institute on Global Commons and Climate Change

23. 10829 Berlin

24. Industria Mundum AG

25. Zürich

26. Switzerland

27. Massachusetts Institute of Technology

28. Cambridge

29. USA

30. IEA Greenhouse Gas R&D Programme (IEAGHG)

31. Cheltenham

32. Qatar Carbonates and Carbon Storage Research Centre

33. US Department of Energy

34. National Energy Technology Laboratory (NETL)

35. Pittsburgh

36. School of Chemical Engineering and Advanced Materials

37. Newcastle University

38. Newcastle-upon-Tyne NE1 7RU

39. CSIRO Energy

40. Mayfield West

41. Australia

42. Department of Chemical and Biomolecular Engineering

43. University of California Berkeley

44. Berkeley

45. Energy Policy Research Group

46. Judge Business School

47. University of Cambridge

48. Engineering & Public Policy and Mechanical Engineering

49. Carnegie Mellon University

50. Department of Engineering

51. Cambridge CB2 1PZ

52. Laboratory of Molecular Simulation

53. The University of Melbourne

54. The Peter Cook Centre for Carbon Capture and Storage

55. Chemical and Biological Engineering Department

56. Colorado School of Mines

57. Golden

Abstract

Carbon capture and storage (CCS) is vital to climate change mitigation, and has application across the economy, in addition to facilitating atmospheric carbon dioxide removal resulting in emissions offsets and net negative emissions. This contribution reviews the state-of-the-art and identifies key challenges which must be overcome in order to pave the way for its large-scale deployment.

Funder

Horizon 2020 Framework Programme

Research Councils UK

Publisher

Royal Society of Chemistry (RSC)

Subject

Pollution,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment,Environmental Chemistry

Reference1179 articles.

1. An overview of CO2 capture technologies

2. Carbon capture and storage update

3. COP21 Paris Agreement , European Commission, http://ec.europa.eu/clima/policies/international/negotiations/paris/index_en.htm

4. GCCSI, Large-scale CCS projects , Global CCS Institute, http://www.globalccsinstitute.com/projects/large-scale-ccs-projects , accessed July 2017

5. BEIS, UK carbon capture and storage: Government funding and support , Department for Business, Energy & Industrial Strategy (BEIS), London, UK, https://www.gov.uk/guidance/uk-carbon-capture-and-storage-government-funding-and-support , accessed June 2017

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