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Haszeldine RS, Flude S, Johnson G, Scott V (2018) Negative emissions technologies and carbon
capture and storage to achieve the Paris agreement commitments. Philosophical Transactions.
Ser A Math Phys Eng Sci 376(2119):20160447. https://doi.org/10.1098/rsta.2016.0447
Hathaway BJ, Davidson JH, Kittelson DB (2011) Solar gasification of biomass: kinetics of pyrolysis
and steam gasification in molten salt. J SolEnergy Eng 133(2):021011. https://doi.org/10.1115/
1.4003680
Ishida K (2017) Out line of the Osaki CoolGen project. Paper presented at the ASME 2017 Power
conference joint with ICOPE-17 collocated with the ASME 2017 11th international conference
on energy sustainability, the ASME 2017 15th international conference on fuel cell science,
engineering and technology, and the ASME 2017 Nuclear Forum
Kato E, Yamagata Y (2014) BECCS capability of dedicated bioenergy crops under a future land-use
scenario targeting net negative carbon emissions. Earth’s Future 2(9):421–439. https://doi.org/
10.1002/2014EF000249
Kenji, A. (2015). The Situation and Progress of the Osaki COOLGEN Blowing-Oxygen IGCC
Project. Paper presented at the Nineth Sino Japanese Energy Saving and Environmental Protection
Comprehensive Forum.
Mathy S, Menanteau P, Criqui P (2018) After the Paris agreement: measuring the global decarbonization wedges from national energy scenarios. Ecol Econ 150:273–289. https://doi.org/10.
1016/j.ecolecon.2018.04.012
Moreira JR, Romeiro V, Fuss S, Kraxner F, Pacca SA (2016) BECCS potential in Brazil: achieving
negative emissions in ethanol and electricity production based on sugar cane bagasse and other
residues. Appl Energy 179:55–63. https://doi.org/10.1016/j.apenergy.2016.06.044
Moriarty P, Honnery D (2016) Review: assessing the climate mitigation potential of biomass. AIMS
Energy 5(1):20–38. https://doi.org/10.3934/energy.2017.1.20
Muri H (2018) The role of large—scale BECCS in the pursuit of the 1.5°C target: an earth system
model perspective. Environ Res Let 13(4):044010. https://doi.org/10.1088/1748-9326/aab324
Piatkowski N, Wieckert C, Weimer AW, Steinfeld A (2011) Solar-driven gasification of carbonaceous feedstock—a review. Energy Environ. Sci. 4(1):73–82. https://doi.org/10.1039/C0EE00
312C
Pour N, Webley PA, Cook PJ (2018) Opportunities for application of BECCS in the Australian power
sector. Appl Energy 224(March):615–635. https://doi.org/10.1016/j.apenergy.2018.04.117
Psarras P, Krutka H, Fajardy M, Zhang Z, Liguori S, Dowell NM, Wilcox J (2017) Slicing the
pie: how big could carbon dioxide removal be? Wiley Interdisc Rev: Energy Environ 6(5):1–21.
https://doi.org/10.1002/wene.253
Skone TJ, Cooney G, Marriott J (2016) A life cycle analysis perspective of CCS. Retrieved from
Washington D.C.
Tanaka Y, Abe M, Sawada Y, Tanase D, Ito T, Kasukawa T (2014) Tomakomai CCS demonstration
project in Japan, 2014 update. Energy Procedia 63:6111–6119
Tokimatsu K, Konishi S, Ishihara K, Tezuka T, Yasuoka R, Nishio M (2016) Role of innovative
technologies under the global zero emissions scenarios. Appl Energy 162:1483–1493. https://
doi.org/10.1016/j.apenergy.2015.02.051
UNFCCC (2015) US INDC cover note and accompanying information.
and Accompanying Information.pdf>, Accessed 4 June 2018
UNFCCC. (2018a). The Paris agreement. https://unfccc.int/process-and-meetings/the-paris-agreem
ent/the-paris-agreement, Accessed 31 May 2018
UNFCCC. (2018b). The Paris agreement, status of ratification. https://unfccc.int/process/the-parisagreement/status-of-ratification, Accessed 31 May 2018
Zhang H, Baeyens J, Degrève J, Cacères G (2013) Concentrated solar power plants: review and
design methodology. Renew Sustain Energy Rev 22:466–481
