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Joint Global Change Research Institute

Institution data

TypeFACILITY (active)
CountryRiverdale Park, US
Works176
Researchers114
Citations2.152
h-index10
i10-index10
Coverage1998 - 2026
ROR058cmd703
GRIDgrid.511098.4
WikidataQ6269227
OpenAlexI112475681
Websitehttps://www.pnnl.gov/projects/jgcri
Also known asJoint Global Change Research Institute
  • Implications of climate change impacts for emission and land use scenario development

    Open Access•Claudia Tebaldi, Brian C O''Neill et al.•ARTICLE•Environmental Research Letters•2026

  • Pathways of bio-jet adoption in the US aviation industry with implications for the overall transportation and energy sectors

    Open Access•Kanishka B Narayan, Taryn Waite et al.•ARTICLE•Environmental Research Letters•2026

  • Ensuring consistency between biogeochemical planetary boundaries

    Open Access•Paul Wolfram, Hassan Niazi et al.•ARTICLE•Nature Sustainability•2026•References: 4

  • Understanding regional heterogeneity in energy systems and energy affordability

    Open Access•Taryn Waite, Ying Zhang et al.•ARTICLE•Energy Research & Social Science•2026•References: 2

  • Ambitious food system interventions required to mitigate the risk of exceeding Earth’s environmental limits

    Open Access•Michalis Hadjikakou, Nicholas Bowles et al.•ARTICLE•One Earth•2025

  • Rate and growth limits for carbon capture and storage

    Open Access•Jay Fuhrman, Joe Lane et al.•ARTICLE•Environmental Research Letters•2025

  • Long-term decarbonization impacts on residential energy security across income groups and US states

    Open Access•Ying Zhang, Yang Ou et al.•ARTICLE•Environmental Research Letters•2025

  • Enhancing energy and food access through reduction of income inequality does not jeopardize the achievement of existing climate pledges

    Open Access•Jon Sampedro, Dirk-Jan Van De Ven et al.•ARTICLE•Environmental Research Letters•2025

  • Tradeoffs between uniform land protection and biodiversity-specific land protection with <2 °C global warming

    Open Access•Alan Di Vittorio, Kanishka B Narayan et al.•ARTICLE•Environmental Research Letters•2025

  • Predicting weather impacts on corn production in a data-limited region using a transfer learning approach

    Open Access•Srishti Vishwakarma, Stephanie A Morris et al.•ARTICLE•Environmental Research Letters•2025

  • The Interplay Between Climate and Urban Expansion on Building Energy Demand in Morocco

    Open Access•Mengqi Zhao, Lahouari Bounoua et al.•ARTICLE•Urban Science•2025

  • Improving land-use emission estimates under the Paris Agreement

    Open Access•Giacomo Grassi, Glen P Peters et al.•ARTICLE•Nature Sustainability•2025•References: 2

  • A conceptual framework for residential energy security in the context of clean energy transitions

    Open Access•Camille Wejnert-Depue, Ying Zhang et al.•ARTICLE•Energy Research & Social Science•2025•References: 4

  • Feasibility of peak temperature targets in light of institutional constraints

    Open Access•Christoph Bertram, Elina Brutschin et al.•ARTICLE•Nature Climate Change•2024

  • The hydrogen economy can reduce costs of climate change mitigation by up to 22

    Open Access•Paul Wolfram, Page Kyle et al.•ARTICLE•One Earth•2024

  • Limits to forests-based mitigation in integrated assessment modelling

    Open Access•Théo Rouhette, Neus Escobar et al.•ARTICLE•Environmental Research Letters•2024

  • Seeing the forest for the trees

    Open Access•Kanishka B Narayan, Pralit Patel et al.•ARTICLE•Environmental Research Letters•2024

  • Ambitious efforts on residual emissions can reduce CO 2 removal and lower peak temperatures in a net-zero future

    Open Access•Jay Fuhrman, Simone Speizer et al.•ARTICLE•Environmental Research Letters•2024

  • Divergent urban land trajectories under alternative population projections within the Shared Socioeconomic Pathways

    Open Access•Ryan A McManamay, Alen Raad et al.•ARTICLE•Environmental Research Letters•2024

  • Provincial-scale assessment of direct air capture to meet China’s climate neutrality goal under limited bioenergy supply

    Open Access•Hanwoong Kim, Yang Qiu et al.•ARTICLE•Environmental Research Letters•2024

  • Biochar as a carbon dioxide removal strategy in integrated long-run mitigation scenarios

    Open Access•Candelaria Bergero, Marshall Wise et al.•ARTICLE•Environmental Research Letters•2024

  • The role and deployment timing of direct air capture in Saudi Arabia’s net-zero transition

    Open Access•Yang Qiu, Gokul Iyer et al.•ARTICLE•Environmental Research Letters•2024

  • Implications of an emission trading scheme for India’s net-zero strategy

    Open Access•Aman Malik, Vaibhav Chaturvedi et al.•ARTICLE•Environmental Research Letters•2024

  • Residential energy demand, emissions, and expenditures at regional and income-decile level for alternative futures

    Open Access•Jon Sampedro, Stephanie Waldhoff et al.•ARTICLE•Environmental Research Letters•2024

  • Helping the climate by replacing liquefied natural gas with liquefied hydrogen or ammonia

    Open Access•Paul Wolfram, Patrick O’Rourke et al.•ARTICLE•Environmental Research Letters•2024

Next
  • The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications

    Open Access•Keywan Riahi, Detlef P Van Vuuren et al.•ARTICLE•Global Environmental Change•2016•Cited by: 311•References: 12

  • Adaptive capacity and its assessment

    Open Access•Nathan L Engle•ARTICLE•Global Environmental Change•2011•Cited by: 208•References: 15

  • Land-use futures in the shared socio-economic pathways

    Open Access•Alexander Popp, Katherine Calvin et al.•ARTICLE•Global Environmental Change•2016•Cited by: 83•References: 5

  • Fossil-fueled development (SSP5)

    Open Access•Elmar Kriegler, Nico Bauer et al.•ARTICLE•Global Environmental Change•2016•Cited by: 39•References: 4

  • A proposal for a new scenario framework to support research and assessment in different climate research communities

    Open Access•Detlef P Van Vuuren, Keywan Riahi et al.•ARTICLE•Global Environmental Change•2011•Cited by: 25•References: 3

  • The SSP4

    Open Access•Katherine Calvin, Ben Bond‐Lamberty et al.•ARTICLE•Global Environmental Change•2016•Cited by: 23•References: 9

  • Future air pollution in the Shared Socio-economic Pathways

    Open Access•Shilpa Rao, Zbigniew Klimont et al.•ARTICLE•Global Environmental Change•2016•Cited by: 23

  • Actionable knowledge and the art of engagement

    Open Access•Katharine J Mach, Maria Carmen Lemos et al.•ARTICLE•Current Opinion in Environmental…•2020•Cited by: 19•References: 10

  • Great expectations? Reconciling the aspiration, outcome, and possibility of co-production

    Open Access•Kripa Jagannathan, James Arnott et al.•ARTICLE•Current Opinion in Environmental…•2020•Cited by: 16•References: 15

  • Understanding the contribution of non-carbon dioxide gases in deep mitigation scenarios

    Open Access•David Gernaat, Katherine Calvin et al.•ARTICLE•Global Environmental Change•2015•Cited by: 10•References: 1

  • Anthropogenic Drivers of Ecosystem Change

    Open Access•Gerald C Nelson, Edward M Bennett et al.•ARTICLE•Conservation Ecology•2006•Cited by: 9

  • The vulnerabilities of agricultural land and food production to future water scarcity

    Open Access•Nuala Fitton, Peter Alexander et al.•ARTICLE•Global Environmental Change•2019•Cited by: 8•References: 5

  • Hierarchical marginal land assessment for land use planning

    Open Access•S Kang, Sang Yull Kang et al.•ARTICLE•Land Use Policy•2013•Cited by: 8•References: 19

  • Evaluating regional vulnerability to climate change

    Open Access•Elizabeth L Malone, Nathan L Engle•ARTICLE•Wiley Interdisciplinary Reviews…•2011•Cited by: 8•References: 21

  • Regional power system modeling for evaluating renewable energy development and CO2 emissions reduction in China

    Open Access•Yuanzhe Yang, Hongyu Zhang et al.•ARTICLE•Environmental Impact Assessment…•2018•Cited by: 7•References: 20

  • IPCC emission scenarios

    Open Access•Jiesper Strandsbjerg Tristan Pedersen, Jiesper Tristan Strandsbjerg Pedersen…•ARTICLE•Global Environmental Change•2022•Cited by: 4•References: 17

  • Are scenario projections overly optimistic about future yield progress

    Open Access•Willem‐Jan van Zeist, Willem-Jan van Zeist et al.•ARTICLE•Global Environmental Change•2020•Cited by: 4•References: 1

  • The costs of adaptation to climate change for water infrastructure in OECD countries

    Open Access•Gordon Hughes, Paul Chinowsky et al.•ARTICLE•Utilities Policy•2010•Cited by: 4

  • Kyoto's Unfinished Business

    Henry D Jacoby, Ronald G Prinn et al.•ARTICLE•Foreign Affairs•1998•Cited by: 4

  • The importance of reclassification to understanding urban growth

    Open Access•Leiwen Jiang, Bryan Jones et al.•ARTICLE•Population Space and Place•2022•Cited by: 3•References: 14

  • Energy use in buildings in a long-term perspective

    Open Access•Diána Ürge-Vorsatz, Ksenia Petrichenko et al.•ARTICLE•Current Opinion in Environmental…•2013•Cited by: 2•References: 1

  • The contribution of future agricultural trends in the US Midwest to global climate change mitigation

    Open Access•Allison M Thomson, Page Kyle et al.•ARTICLE•Global Environmental Change•2013•Cited by: 2•References: 1

  • Integrated estimates of global terrestrial carbon sequestration

    Open Access•Allison M Thomson, R C Izaurralde et al.•ARTICLE•Global Environmental Change•2007•Cited by: 2•References: 1

  • Hydropower expansion in eco-sensitive river basins under global energy-economic change

    Open Access•Kamal Chowdhury, Thomas Wild et al.•ARTICLE•Nature Sustainability•2024•Cited by: 1•References: 10

  • The impact of agricultural trade approaches on global economic modeling

    Open Access•Xin Zhao, Marshall Wise et al.•ARTICLE•Global Environmental Change•2022•Cited by: 1•References: 11

  • Kyoto's Unfinished Business

    Henry D Jacoby, Ronald G Prinn et al.•ARTICLE•Foreign Affairs•1998•Cited by: 4

  • Anthropogenic Drivers of Ecosystem Change

    Open Access•Gerald C Nelson, Edward M Bennett et al.•ARTICLE•Conservation Ecology•2006•Cited by: 9

  • Integrated estimates of global terrestrial carbon sequestration

    Open Access•Allison M Thomson, R C Izaurralde et al.•ARTICLE•Global Environmental Change•2007•Cited by: 2•References: 1

  • Permanence discounting for land-based carbon sequestration

    Open Access•Man‐Keun Kim, Man-Keun Kim et al.•ARTICLE•Ecological Economics•2008

  • International climate policy architectures

    Open Access•Leon Clarke, Jae Edmonds et al.•ARTICLE•Energy Economics•2009

  • Implications of Limiting CO 2 Concentrations for Land Use and Energy

    Open Access•Marshall Wise, Katherine Calvin et al.•ARTICLE•Science•2009

  • The future of scenarios

    Open Access•Hugh Pitcher, Hugh M Pitcher•ARTICLE•Environmental Research Letters•2009

  • Scenarios for Global Biodiversity in the 21st Century

    Open Access•Henrique M Pereira, Paul Leadley et al.•ARTICLE•Science•2010

  • Historical (1850–2000) gridded anthropogenic and biomass burning emissions of reactive gases and aerosols

    Open Access•Jean‐François Lamarque, J-F Lamarque et al.•ARTICLE•Atmospheric Chemistry and Physics•2010

  • The next generation of scenarios for climate change research and assessment

    Open Access•Richard H Moss, Jae Edmonds et al.•ARTICLE•Nature•2010

  • Downscaling socioeconomic and emissions scenarios for global environmental change research

    Open Access•Detlef P Van Vuuren, Steve Smith et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2010

  • Climate change vulnerability and resilience

    Open Access•María Eugenia Ibarrarán, Elizabeth L Malone et al.•ARTICLE•Environment Development and…•2010

  • Applications of integrated assessment modeling to climate change

    Open Access•Marcus C Sarofim, John Reilly•ARTICLE•Wiley Interdisciplinary Reviews…•2010•Cited by: 1•References: 1

  • The costs of adaptation to climate change for water infrastructure in OECD countries

    Open Access•Gordon Hughes, Paul Chinowsky et al.•ARTICLE•Utilities Policy•2010•Cited by: 4

  • The RCP greenhouse gas concentrations and their extensions from 1765 to 2300

    Open Access•Malte Meinshausen, Steven J Smith et al.•ARTICLE•Climatic Change•2011

  • Harmonization of land-use scenarios for the period 1500–2100

    Open Access•G C Hurtt, Louise Chini et al.•ARTICLE•Climatic Change•2011

  • The representative concentration pathways

    Open Access•Detlef P Van Vuuren, Jae Edmonds et al.•ARTICLE•Climatic Change•2011

  • Rcp4.5

    Open Access•Allison M Thomson, Katherine Calvin et al.•ARTICLE•Climatic Change•2011

  • The greenhouse impact of unconventional gas for electricity generation

    Open Access•Nathan Hultman, Dylan Rebois et al.•ARTICLE•Environmental Research Letters•2011

  • Global projections for anthropogenic reactive nitrogen emissions to the atmosphere

    Open Access•Detlef P Van Vuuren, Lex Bouwman et al.•ARTICLE•Current Opinion in Environmental…•2011•Cited by: 1•References: 11

  • Evaluating regional vulnerability to climate change

    Open Access•Elizabeth L Malone, Nathan L Engle•ARTICLE•Wiley Interdisciplinary Reviews…•2011•Cited by: 8•References: 21

  • A proposal for a new scenario framework to support research and assessment in different climate research communities

    Open Access•Detlef P Van Vuuren, Keywan Riahi et al.•ARTICLE•Global Environmental Change•2011•Cited by: 25•References: 3

  • Adaptive capacity and its assessment

    Open Access•Nathan L Engle•ARTICLE•Global Environmental Change•2011•Cited by: 208•References: 15

  • Ecosystem Impacts of Geoengineering

    Open Access•Lynn M Russell, Philip J Rasch et al.•ARTICLE•AMBIO•2012

  • Climate Change and National Security

    Elizabeth L Malone•ARTICLE•Weather, Climate, and Society•2013

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