Fawzy, Samer; Osman, Ahmed I.; Doran, John; Rooney, David W. (2020). «Strategies for mitigation of climate change: a review». Environmental Chemistry Letters. 18 (6): 2069–2094. doi:10.1007/s10311-020-01059-w
Franziska Funke; Linus Mattauch; Inge van den Bijgaart; H. Charles J. Godfray; Cameron Hepburn; David Klenert; Marco Springmann; Nicolas Treich (19 de julho de 2022). «Toward Optimal Meat Pricing: Is It Time to Tax Meat Consumption?». Review of Environmental Economics and Policy (em inglês). 16 (2): 000. doi:10.1086/721078
Nyenah, Emmanuel; Sterl, Sebastian; Thiery, Wim (1 de maio de 2022). «Pieces of a puzzle: solar-wind power synergies on seasonal and diurnal timescales tend to be excellent worldwide». Environmental Research Communications. 4 (5). 055011 páginas. Bibcode:2022ERCom...4e5011N. ISSN2515-7620. doi:10.1088/2515-7620/ac71fb
Ruggles, Tyler H.; Caldeira, Ken (1 de janeiro de 2022). «Wind and solar generation may reduce the inter-annual variability of peak residual load in certain electricity systems». Applied Energy (em inglês). 305. 117773 páginas. Bibcode:2022ApEn..30517773R. ISSN0306-2619. doi:10.1016/j.apenergy.2021.117773
Bloess, Andreas; Schill, Wolf-Peter; Zerrahn, Alexander (2018). «Power-to-heat for renewable energy integration: A review of technologies, modeling approaches, and flexibility potentials». Applied Energy. 212: 1611–1626. Bibcode:2018ApEn..212.1611B. doi:10.1016/j.apenergy.2017.12.073
Cardenas, IC (2024). «Mitigation of climate change. Risk and uncertainty research gaps in the specification of mitigation actions». Environmental Science & Policy. 162 (December 2024): 103912. doi:10.1016/j.envsci.2024.103912
Moomaw, William R.; Masino, Susan A.; Faison, Edward K. (2019). «Intact Forests in the United States: Proforestation Mitigates Climate Change and Serves the Greatest Good». Frontiers in Forests and Global Change. 2: 27. Bibcode:2019FrFGC...2...27M. doi:10.3389/ffgc.2019.00027
Wilmers, Christopher C.; Schmitz, Oswald J. (19 de outubro de 2016). «Effects of gray wolf-induced trophic cascades on ecosystem carbon cycling». Ecosphere. 7 (10). Bibcode:2016Ecosp...7E1501W. doi:10.1002/ecs2.1501
Boysen, Lena R.; Lucht, Wolfgang; Gerten, Dieter; Heck, Vera; Lenton, Timothy M.; Schellnhuber, Hans Joachim (17 de maio de 2017). «The limits to global-warming mitigation by terrestrial carbon removal». Earth's Future. 5 (5): 463–474. Bibcode:2017EaFut...5..463B. doi:10.1002/2016EF000469
Hasler, Natalia; Williams, Christopher A.; Denney, Vanessa Carrasco; Ellis, Peter W.; Shrestha, Surendra; Terasaki Hart, Drew E.; Wolff, Nicholas H.; Yeo, Samantha; Crowther, Thomas W. (26 de março de 2024). «Accounting for albedo change to identify climate-positive tree cover restoration». Nature Communications (em inglês). 15 (1): 2275. Bibcode:2024NatCo..15.2275H. ISSN2041-1723. doi:10.1038/s41467-024-46577-1
Lugato, Emanuele; Bampa, Francesca; Panagos, Panos; Montanarella, Luca; Jones, Arwyn (1 de novembro de 2014). «Potential carbon sequestration of European arable soils estimated by modelling a comprehensive set of management practices». Global Change Biology. 20 (11): 3557–3567. Bibcode:2014GCBio..20.3557L. ISSN1365-2486. PMID24789378. doi:10.1111/gcb.12551
Tiwari, Shashank; Singh, Chhatarpal; Singh, Jay Shankar (2020). «Wetlands: A Major Natural Source Responsible for Methane Emission». In: Upadhyay, Atul Kumar; Singh; Singh. Restoration of Wetland Ecosystem: A Trajectory Towards a Sustainable Environment (em inglês). Singapore: Springer. pp. 59–74. ISBN978-981-13-7665-8. doi:10.1007/978-981-13-7665-8_5
Doney, Scott C.; Busch, D. Shallin; Cooley, Sarah R.; Kroeker, Kristy J. (2020). «The Impacts of Ocean Acidification on Marine Ecosystems and Reliant Human Communities». Annual Review of Environment and Resources (em inglês). 45 (1): 83–112. ISSN1543-5938. doi:10.1146/annurev-environ-012320-083019
Ricart, Aurora M.; Krause-Jensen, Dorte; Hancke, Kasper; Price, Nichole N.; Masqué, Pere; Duarte, Carlos M. (2022). «Sinking seaweed in the deep ocean for carbon neutrality is ahead of science and beyond the ethics». Environmental Research Letters. 17 (8): 081003. Bibcode:2022ERL....17h1003R. doi:10.1088/1748-9326/ac82ff
Hurd, Catriona L.; Law, Cliff S.; Bach, Lennart T.; Britton, Damon; Hovenden, Mark; Paine, Ellie R.; Raven, John A.; Tamsitt, Veronica; Boyd, Philip W. (2022). «Forensic carbon accounting: Assessing the role of seaweeds for carbon sequestration». Journal of Phycology. 58 (3): 347–363. Bibcode:2022JPcgy..58..347H. PMID35286717. doi:10.1111/jpy.13249
Boyd, Philip W.; Bach, Lennart T.; Hurd, Catriona L.; Paine, Ellie; Raven, John A.; Tamsitt, Veronica (2022). «Potential negative effects of ocean afforestation on offshore ecosystems». Nature Ecology & Evolution. 6 (6): 675–683. Bibcode:2022NatEE...6..675B. PMID35449458. doi:10.1038/s41559-022-01722-1
Rhodes, James S.; Keith, David W. (2008). «Biomass with capture: Negative emissions within social and environmental constraints: An editorial comment». Climatic Change. 87 (3–4): 321–8. Bibcode:2008ClCh...87..321R. doi:10.1007/s10584-007-9387-4
Kwan, Soo Chen; Hashim, Jamal Hisham (1 de abril de 2016). «A review on co-benefits of mass public transportation in climate change mitigation». Sustainable Cities and Society (em inglês). 22: 11–18. Bibcode:2016SusCS..22...11K. ISSN2210-6707. doi:10.1016/j.scs.2016.01.004
Mattioli, Giulio; Roberts, Cameron; Steinberger, Julia K.; Brown, Andrew (1 de agosto de 2020). «The political economy of car dependence: A systems of provision approach». Energy Research & Social Science (em inglês). 66. 101486 páginas. Bibcode:2020ERSS...6601486M. ISSN2214-6296. doi:10.1016/j.erss.2020.101486
Parmar, N.R.; Nirmal Kumar, J.I.; Joshi, C.G. (2015). «Exploring diet-dependent shifts in methanogen and methanotroph diversity in the rumen of Mehsani buffalo by a metagenomics approach». Frontiers in Life Science. 8 (4): 371–378. doi:10.1080/21553769.2015.1063550
Boadi, D (2004). «Mitigation strategies to reduce enteric methane emissions from dairy cows: Update review». Can. J. Anim. Sci. 84 (3): 319–335. doi:10.4141/a03-109
Eckard, R. J.; et al. (2010). «Options for the abatement of methane and nitrous oxide from ruminant production: A review». Livestock Science. 130 (1–3): 47–56. doi:10.1016/j.livsci.2010.02.010
Sudmant, Andrew; Boyle, Dom; Higgins-Lavery, Ruaidhri; Gouldson, Andy; Boyle, Andy; Fulker, James; Brogan, Jamie (5 de julho de 2024). «Climate policy as social policy? A comprehensive assessment of the economic impact of climate action in the UK». Journal of Environmental Studies and Sciences (em inglês). ISSN2190-6491. doi:10.1007/s13412-024-00955-9
Shrestha, Pallavi; Nukala, Sai Keerthana; Islam, Fariha; Badgery-Parker, Tim; Foo, Fiona (2024). «The co-benefits of climate change mitigation strategies on cardiovascular health: a systematic review». The Lancet Regional Health - Western Pacific. 48. 101098 páginas. doi:10.1016/j.lanwpc.2024.101098
Sampedro, Jon; Smith, Steven J.; Arto, Iñaki; González-Eguino, Mikel; Markandya, Anil; Mulvaney, Kathleen M.; Pizarro-Irizar, Cristina; Van Dingenen, Rita (2020). «Health co-benefits and mitigation costs as per the Paris Agreement under different technological pathways for energy supply». Environment International (em inglês). 136. 105513 páginas. Bibcode:2020EnInt.13605513S. PMID32006762. doi:10.1016/j.envint.2020.105513
Evans, Stuart; Mehling, Michael A.; Ritz, Robert A.; Sammon, Paul (16 de março de 2021). «Border carbon adjustments and industrial competitiveness in a European Green Deal». Climate Policy. 21 (3): 307–317. ISSN1469-3062. doi:10.1080/14693062.2020.1856637
Creutzig, Felix; Niamir, Leila; Bai, Xuemei; Callaghan, Max; Cullen, Jonathan; Díaz-José, Julio; Figueroa, Maria; Grubler, Arnulf; Lamb, William F. (25 de novembro de 2021). «Demand-side solutions to climate change mitigation consistent with high levels of well-being». Nature Climate Change (em inglês). 12 (1): 36–46. Bibcode:2022NatCC..12...36C. ISSN1758-6798. doi:10.1038/s41558-021-01219-y
Stechemesser, Annika; Koch, Nicolas; Mark, Ebba; Dilger, Elina; Klösel, Patrick; Menicacci, Laura; Nachtigall, Daniel; Pretis, Felix; Ritter, Nolan (2024). «Climate policies that achieved major emission reductions: Global evidence from two decades». American Association for the Advancement of Science. Science. 385 (6711): 884–892. doi:10.1126/science.adl6547
Stechemesser, Annika; Koch, Nicolas; Mark, Ebba; Dilger, Elina; Klösel, Patrick; Menicacci, Laura; Nachtigall, Daniel; Pretis, Felix; Ritter, Nolan (2024). «Climate policies that achieved major emission reductions: Global evidence from two decades». American Association for the Advancement of Science. Science. 385 (6711): 884–892. doi:10.1126/science.adl6547
Zefferman, Matthew R. (1 de janeiro de 2018). «Cultural multilevel selection suggests neither large or small cooperative agreements are likely to solve climate change without changing the game». Sustainability Science (em inglês). 13 (1): 109–118. Bibcode:2018SuSc...13..109Z. ISSN1862-4057. doi:10.1007/s11625-017-0488-3
Forster PM, Forster HI, Evans MJ, Gidden MJ, Jones CD, Keller CA, et al. (7 de agosto de 2020). «Current and future global climate impacts resulting from COVID-19». Nature Climate Change (em inglês). 10 (10): 913–919. Bibcode:2020NatCC..10..913F. ISSN1758-6798. doi:10.1038/s41558-020-0883-0
Nyenah, Emmanuel; Sterl, Sebastian; Thiery, Wim (1 de maio de 2022). «Pieces of a puzzle: solar-wind power synergies on seasonal and diurnal timescales tend to be excellent worldwide». Environmental Research Communications. 4 (5). 055011 páginas. Bibcode:2022ERCom...4e5011N. ISSN2515-7620. doi:10.1088/2515-7620/ac71fb
Ruggles, Tyler H.; Caldeira, Ken (1 de janeiro de 2022). «Wind and solar generation may reduce the inter-annual variability of peak residual load in certain electricity systems». Applied Energy (em inglês). 305. 117773 páginas. Bibcode:2022ApEn..30517773R. ISSN0306-2619. doi:10.1016/j.apenergy.2021.117773
Bloess, Andreas; Schill, Wolf-Peter; Zerrahn, Alexander (2018). «Power-to-heat for renewable energy integration: A review of technologies, modeling approaches, and flexibility potentials». Applied Energy. 212: 1611–1626. Bibcode:2018ApEn..212.1611B. doi:10.1016/j.apenergy.2017.12.073
Moomaw, William R.; Masino, Susan A.; Faison, Edward K. (2019). «Intact Forests in the United States: Proforestation Mitigates Climate Change and Serves the Greatest Good». Frontiers in Forests and Global Change. 2: 27. Bibcode:2019FrFGC...2...27M. doi:10.3389/ffgc.2019.00027
Wilmers, Christopher C.; Schmitz, Oswald J. (19 de outubro de 2016). «Effects of gray wolf-induced trophic cascades on ecosystem carbon cycling». Ecosphere. 7 (10). Bibcode:2016Ecosp...7E1501W. doi:10.1002/ecs2.1501
Boysen, Lena R.; Lucht, Wolfgang; Gerten, Dieter; Heck, Vera; Lenton, Timothy M.; Schellnhuber, Hans Joachim (17 de maio de 2017). «The limits to global-warming mitigation by terrestrial carbon removal». Earth's Future. 5 (5): 463–474. Bibcode:2017EaFut...5..463B. doi:10.1002/2016EF000469
Hasler, Natalia; Williams, Christopher A.; Denney, Vanessa Carrasco; Ellis, Peter W.; Shrestha, Surendra; Terasaki Hart, Drew E.; Wolff, Nicholas H.; Yeo, Samantha; Crowther, Thomas W. (26 de março de 2024). «Accounting for albedo change to identify climate-positive tree cover restoration». Nature Communications (em inglês). 15 (1): 2275. Bibcode:2024NatCo..15.2275H. ISSN2041-1723. doi:10.1038/s41467-024-46577-1
Lugato, Emanuele; Bampa, Francesca; Panagos, Panos; Montanarella, Luca; Jones, Arwyn (1 de novembro de 2014). «Potential carbon sequestration of European arable soils estimated by modelling a comprehensive set of management practices». Global Change Biology. 20 (11): 3557–3567. Bibcode:2014GCBio..20.3557L. ISSN1365-2486. PMID24789378. doi:10.1111/gcb.12551
Ricart, Aurora M.; Krause-Jensen, Dorte; Hancke, Kasper; Price, Nichole N.; Masqué, Pere; Duarte, Carlos M. (2022). «Sinking seaweed in the deep ocean for carbon neutrality is ahead of science and beyond the ethics». Environmental Research Letters. 17 (8): 081003. Bibcode:2022ERL....17h1003R. doi:10.1088/1748-9326/ac82ff
Hurd, Catriona L.; Law, Cliff S.; Bach, Lennart T.; Britton, Damon; Hovenden, Mark; Paine, Ellie R.; Raven, John A.; Tamsitt, Veronica; Boyd, Philip W. (2022). «Forensic carbon accounting: Assessing the role of seaweeds for carbon sequestration». Journal of Phycology. 58 (3): 347–363. Bibcode:2022JPcgy..58..347H. PMID35286717. doi:10.1111/jpy.13249
Boyd, Philip W.; Bach, Lennart T.; Hurd, Catriona L.; Paine, Ellie; Raven, John A.; Tamsitt, Veronica (2022). «Potential negative effects of ocean afforestation on offshore ecosystems». Nature Ecology & Evolution. 6 (6): 675–683. Bibcode:2022NatEE...6..675B. PMID35449458. doi:10.1038/s41559-022-01722-1
Rhodes, James S.; Keith, David W. (2008). «Biomass with capture: Negative emissions within social and environmental constraints: An editorial comment». Climatic Change. 87 (3–4): 321–8. Bibcode:2008ClCh...87..321R. doi:10.1007/s10584-007-9387-4
Kwan, Soo Chen; Hashim, Jamal Hisham (1 de abril de 2016). «A review on co-benefits of mass public transportation in climate change mitigation». Sustainable Cities and Society (em inglês). 22: 11–18. Bibcode:2016SusCS..22...11K. ISSN2210-6707. doi:10.1016/j.scs.2016.01.004
Mattioli, Giulio; Roberts, Cameron; Steinberger, Julia K.; Brown, Andrew (1 de agosto de 2020). «The political economy of car dependence: A systems of provision approach». Energy Research & Social Science (em inglês). 66. 101486 páginas. Bibcode:2020ERSS...6601486M. ISSN2214-6296. doi:10.1016/j.erss.2020.101486
Sampedro, Jon; Smith, Steven J.; Arto, Iñaki; González-Eguino, Mikel; Markandya, Anil; Mulvaney, Kathleen M.; Pizarro-Irizar, Cristina; Van Dingenen, Rita (2020). «Health co-benefits and mitigation costs as per the Paris Agreement under different technological pathways for energy supply». Environment International (em inglês). 136. 105513 páginas. Bibcode:2020EnInt.13605513S. PMID32006762. doi:10.1016/j.envint.2020.105513
Creutzig, Felix; Niamir, Leila; Bai, Xuemei; Callaghan, Max; Cullen, Jonathan; Díaz-José, Julio; Figueroa, Maria; Grubler, Arnulf; Lamb, William F. (25 de novembro de 2021). «Demand-side solutions to climate change mitigation consistent with high levels of well-being». Nature Climate Change (em inglês). 12 (1): 36–46. Bibcode:2022NatCC..12...36C. ISSN1758-6798. doi:10.1038/s41558-021-01219-y
Zefferman, Matthew R. (1 de janeiro de 2018). «Cultural multilevel selection suggests neither large or small cooperative agreements are likely to solve climate change without changing the game». Sustainability Science (em inglês). 13 (1): 109–118. Bibcode:2018SuSc...13..109Z. ISSN1862-4057. doi:10.1007/s11625-017-0488-3
Forster PM, Forster HI, Evans MJ, Gidden MJ, Jones CD, Keller CA, et al. (7 de agosto de 2020). «Current and future global climate impacts resulting from COVID-19». Nature Climate Change (em inglês). 10 (10): 913–919. Bibcode:2020NatCC..10..913F. ISSN1758-6798. doi:10.1038/s41558-020-0883-0
«Share of cumulative power capacity by technology, 2010-2027». IEA.org. International Energy Agency (IEA). 5 de dezembro de 2022. Arquivado do original em 4 de fevereiro de 2023 Source states "Fossil fuel capacity from IEA (2022), World Energy Outlook 2022. IEA. Licence: CC BY 4.0."
IPCC (2022). Shukla; Skea, J.; Slade, R.; Al Khourdajie, A., eds. Climate Change 2022: Mitigation of Climate Change. Contribution of Working Group III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. [S.l.]: Cambridge University Press: Os benefícios globais das rotas que limitam o aquecimento a 2°C (>67%) superam os custos globais de mitigação no século 21, se os impactos econômicos agregados das mudanças climáticas estiverem no limite moderado a alto da faixa avaliada e se for atribuído um peso consistente com a teoria econômica aos impactos econômicos de longo prazo. Isso é válido mesmo sem levar em conta os benefícios em outras dimensões do desenvolvimento sustentável ou os danos não relacionados ao mercado decorrentes das mudanças climáticas (confiança média)
«Carbon Sources and Sinks». National Geographic Society (em inglês). 26 de março de 2020. Consultado em 18 de junho de 2021. Arquivado do original em 14 de dezembro de 2020
Lugato, Emanuele; Bampa, Francesca; Panagos, Panos; Montanarella, Luca; Jones, Arwyn (1 de novembro de 2014). «Potential carbon sequestration of European arable soils estimated by modelling a comprehensive set of management practices». Global Change Biology. 20 (11): 3557–3567. Bibcode:2014GCBio..20.3557L. ISSN1365-2486. PMID24789378. doi:10.1111/gcb.12551
Hurd, Catriona L.; Law, Cliff S.; Bach, Lennart T.; Britton, Damon; Hovenden, Mark; Paine, Ellie R.; Raven, John A.; Tamsitt, Veronica; Boyd, Philip W. (2022). «Forensic carbon accounting: Assessing the role of seaweeds for carbon sequestration». Journal of Phycology. 58 (3): 347–363. Bibcode:2022JPcgy..58..347H. PMID35286717. doi:10.1111/jpy.13249
Boyd, Philip W.; Bach, Lennart T.; Hurd, Catriona L.; Paine, Ellie; Raven, John A.; Tamsitt, Veronica (2022). «Potential negative effects of ocean afforestation on offshore ecosystems». Nature Ecology & Evolution. 6 (6): 675–683. Bibcode:2022NatEE...6..675B. PMID35449458. doi:10.1038/s41559-022-01722-1
Sampedro, Jon; Smith, Steven J.; Arto, Iñaki; González-Eguino, Mikel; Markandya, Anil; Mulvaney, Kathleen M.; Pizarro-Irizar, Cristina; Van Dingenen, Rita (2020). «Health co-benefits and mitigation costs as per the Paris Agreement under different technological pathways for energy supply». Environment International (em inglês). 136. 105513 páginas. Bibcode:2020EnInt.13605513S. PMID32006762. doi:10.1016/j.envint.2020.105513
Ritchie, Hannah; Roser, Max; Rosado, Pablo (11 de maio de 2020). «CO2 and Greenhouse Gas Emissions». Our World in Data. Consultado em 27 de agosto de 2022
Ritchie, Hannah; Roser, Max; Rosado, Pablo (11 de maio de 2020). «CO2 and Greenhouse Gas Emissions». Our World in Data. Consultado em 21 de dezembro de 2022
«Share of cumulative power capacity by technology, 2010-2027». IEA.org. International Energy Agency (IEA). 5 de dezembro de 2022. Arquivado do original em 4 de fevereiro de 2023 Source states "Fossil fuel capacity from IEA (2022), World Energy Outlook 2022. IEA. Licence: CC BY 4.0."
«Global Wind Atlas». DTU Technical University of Denmark. Consultado em 28 de março de 2020. Arquivado do original em 24 de fevereiro de 2020
«Carbon Sources and Sinks». National Geographic Society (em inglês). 26 de março de 2020. Consultado em 18 de junho de 2021. Arquivado do original em 14 de dezembro de 2020
Nyenah, Emmanuel; Sterl, Sebastian; Thiery, Wim (1 de maio de 2022). «Pieces of a puzzle: solar-wind power synergies on seasonal and diurnal timescales tend to be excellent worldwide». Environmental Research Communications. 4 (5). 055011 páginas. Bibcode:2022ERCom...4e5011N. ISSN2515-7620. doi:10.1088/2515-7620/ac71fb
Ruggles, Tyler H.; Caldeira, Ken (1 de janeiro de 2022). «Wind and solar generation may reduce the inter-annual variability of peak residual load in certain electricity systems». Applied Energy (em inglês). 305. 117773 páginas. Bibcode:2022ApEn..30517773R. ISSN0306-2619. doi:10.1016/j.apenergy.2021.117773
Hasler, Natalia; Williams, Christopher A.; Denney, Vanessa Carrasco; Ellis, Peter W.; Shrestha, Surendra; Terasaki Hart, Drew E.; Wolff, Nicholas H.; Yeo, Samantha; Crowther, Thomas W. (26 de março de 2024). «Accounting for albedo change to identify climate-positive tree cover restoration». Nature Communications (em inglês). 15 (1): 2275. Bibcode:2024NatCo..15.2275H. ISSN2041-1723. doi:10.1038/s41467-024-46577-1
Lugato, Emanuele; Bampa, Francesca; Panagos, Panos; Montanarella, Luca; Jones, Arwyn (1 de novembro de 2014). «Potential carbon sequestration of European arable soils estimated by modelling a comprehensive set of management practices». Global Change Biology. 20 (11): 3557–3567. Bibcode:2014GCBio..20.3557L. ISSN1365-2486. PMID24789378. doi:10.1111/gcb.12551
Doney, Scott C.; Busch, D. Shallin; Cooley, Sarah R.; Kroeker, Kristy J. (2020). «The Impacts of Ocean Acidification on Marine Ecosystems and Reliant Human Communities». Annual Review of Environment and Resources (em inglês). 45 (1): 83–112. ISSN1543-5938. doi:10.1146/annurev-environ-012320-083019
Kwan, Soo Chen; Hashim, Jamal Hisham (1 de abril de 2016). «A review on co-benefits of mass public transportation in climate change mitigation». Sustainable Cities and Society (em inglês). 22: 11–18. Bibcode:2016SusCS..22...11K. ISSN2210-6707. doi:10.1016/j.scs.2016.01.004
Mattioli, Giulio; Roberts, Cameron; Steinberger, Julia K.; Brown, Andrew (1 de agosto de 2020). «The political economy of car dependence: A systems of provision approach». Energy Research & Social Science (em inglês). 66. 101486 páginas. Bibcode:2020ERSS...6601486M. ISSN2214-6296. doi:10.1016/j.erss.2020.101486
Sudmant, Andrew; Boyle, Dom; Higgins-Lavery, Ruaidhri; Gouldson, Andy; Boyle, Andy; Fulker, James; Brogan, Jamie (5 de julho de 2024). «Climate policy as social policy? A comprehensive assessment of the economic impact of climate action in the UK». Journal of Environmental Studies and Sciences (em inglês). ISSN2190-6491. doi:10.1007/s13412-024-00955-9
Lamb, William F.; Mattioli, Giulio; Levi, Sebastian; Roberts, J. Timmons; Capstick, Stuart; Creutzig, Felix; Minx, Jan C.; Müller-Hansen, Finn; Culhane, Trevor (2020). «Discourses of climate delay». Global Sustainability (em inglês). 3. Bibcode:2020GlSus...3E..17L. ISSN2059-4798. doi:10.1017/sus.2020.13
Evans, Stuart; Mehling, Michael A.; Ritz, Robert A.; Sammon, Paul (16 de março de 2021). «Border carbon adjustments and industrial competitiveness in a European Green Deal». Climate Policy. 21 (3): 307–317. ISSN1469-3062. doi:10.1080/14693062.2020.1856637
Creutzig, Felix; Niamir, Leila; Bai, Xuemei; Callaghan, Max; Cullen, Jonathan; Díaz-José, Julio; Figueroa, Maria; Grubler, Arnulf; Lamb, William F. (25 de novembro de 2021). «Demand-side solutions to climate change mitigation consistent with high levels of well-being». Nature Climate Change (em inglês). 12 (1): 36–46. Bibcode:2022NatCC..12...36C. ISSN1758-6798. doi:10.1038/s41558-021-01219-y
Zefferman, Matthew R. (1 de janeiro de 2018). «Cultural multilevel selection suggests neither large or small cooperative agreements are likely to solve climate change without changing the game». Sustainability Science (em inglês). 13 (1): 109–118. Bibcode:2018SuSc...13..109Z. ISSN1862-4057. doi:10.1007/s11625-017-0488-3
Forster PM, Forster HI, Evans MJ, Gidden MJ, Jones CD, Keller CA, et al. (7 de agosto de 2020). «Current and future global climate impacts resulting from COVID-19». Nature Climate Change (em inglês). 10 (10): 913–919. Bibcode:2020NatCC..10..913F. ISSN1758-6798. doi:10.1038/s41558-020-0883-0