Economic Potential of DACCS and Global CCS Progress slide image

Economic Potential of DACCS and Global CCS Progress

5. ANALYSIS 5.1 CARBON MARKETS 1. 2. 3. 4. 5. International Carbon Action Partnership. ICAP ETS map [Internet]. [cited 2022 Aug 4]. Available from: https://icapcarbonaction.com/en/ets European Commission. Implementation of the CCS Directive [Internet]. Implementation of the CCS Directive. 2022 [cited 2022 Jun 21]. Available from: https://ec.europa.eu/clima/eu-action/carbon-capture-use- and-storage/implementation-ccs-directive_en California Air Resources Board. Carbon Capture and Sequestration Protocol under the Low Carbon Fuel Standard. 2018. Bureau of Environment, Tokyo Metropolitan Government. Tokyo Cap-and-Trade Program [Internet]. Tokyo Cap-and-Trade Program. 2022 [cited 2022 Jun 15]. Available from: https://www.kankyo.metro.tokyo. Ig.jp/en/climate/cap_and_trade/index.html Gouvernement du Québec, Ministère de l'Environnement et de la Lutte contre les changements climatiques. The Carbon Market - a Green Economy Growth Tool! [Internet]. The Carbon Market - a Green Economy Growth Tool! 2022 [cited 2022 Jun 14]. Available from: https://www.environnement.gouv.qc.ca/changementsclimatiques/marche-carbone_en.asp 6. The Oxford Institute for Energy Studies. The Evolution of Carbon Markets and their Role in Climate Mitigation and Sustainable Development. New Oxford Energy Forum 2022 Jun; 19 7. IETA. CLPC_A6 summary_highres no crops. 2019. 8. CCS+ Initiative [Internet]. [cited 2022 Aug 12]. Available from: https://www.ccsplus.org/ 9. KAPSARC. Carbon Sequestration Units (CSUs): A New Tool to Mitigate Carbon Emissions. 10. OGCI. Study on carbon storage units and obligations under Article 6 of the Paris Agreement [Internet]. Oil and Gas Climate Initiative. [cited 2022 Aug 12]. Available from: Study on carbon storage units and obligations under Article 6 of the Paris Agreement 11. Oxford Martin School. Making fossil fuel extractors clean up after themselves is affordable and low-risk. 5.3 HYDROGEN 1. Hydrogen Council. Hydrogen scaling up: A sustainable pathway for the global energy transition. 2017. 2. 3. 4. HESC. Successful Completion of Pilot Project Report [Internet]. 2022 [cited 2022 Aug 5]. Available from: https://drive.google.com/file/d/127L2epevYr7XNEX2XEY-i105x9IIL-A1/view International Trade Rules for Hydrogen and its Carriers: Information and Issues for Consideration [Internet]. 2022 [cited 2022 Aug 5]. Available from: https://www.iphe.net/_files/ ugd/45185a_29c90ec0ea15463eadf5d585cfd7b20a.pdf International Energy Agency. Global Hydrogen Review 2021 [Internet]. 2021 Nov. Available from: www.iea.org/t&c 5.5 INDUSTRY 1. Ellis LD, Badel AF, Chiang ML, J-Y Park R, Chiang YM. Toward electrochemical synthesis of cement-An electrolyzer-based process for decarbonating CaCO3 while producing useful gas streams. PNAS [Internet]. 2019 [cited 2022 Jul 22];117(23). Available from: www.pnas.org/cgi/doi/10.1073/pnas.1821673116 2. Kearns D, Liu H, Consoli C. TECHNOLOGY READINESS AND COSTS OF CCS. 2021 Mar. 5.6 EVOLUTION OF STORAGE 1. 2. Santos. Globally significant carbon capture and storage project a step closer. https://www.santos.com/news/globally-significant-carbon-capture-and-storage-project-a-step-closer/. 2022. Hoffman N, George Carman, Mohammad Bagheri, Todd Goebel, The Carbon Net Project. Site characterisation for carbon storage in the near shore Gippsland Basin. Melbourne; 2015. [67] GLOBAL CCS INSTITUTE
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