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Neal T Graham

Biographic Data

ID6928931
NAMENeal T Graham
GIVEN NAMESNeal T
FAMILY NAMEGraham
SIGNATUREGRAHAM N T
AFFILIATIONSJoint Global Change Research Institute
ORCID0000-0001-6867-5475
VERIFIEDYes
TOTAL WORKS8
TOTAL CITATIONS0
AUTHOR COUNT8
EDITOR COUNT0
FIRST PUBLICATION YEAR2019
LATEST PUBLICATION YEAR2025
H-INDEX0
  • 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

  • Seeing the forest for the trees: Implementing dynamic representation of forest management and forest carbon in a long-term global multisector model

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

    Studies have found that understanding forest management is critical in understanding the interaction between the carbon cycle and the integrated human-Earth system. This makes effectively representing forest management decisions such as planting and harvesting important. Here, we implement a novel dynamic forest harvest model in a global state of the art multi-sector dynamics model, namely the Global Change Analysis Model (GCAM). We implement an …

  • Global peak water limit of future groundwater withdrawals

    Open Access•Hassan Niazi, Thomas Wild et al.•ARTICLE•Nature Sustainability•2024•References: 10

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

    Michalis Hadjikakou, Nicholas Bowles et al.•PREPRINT•2023

    Transforming the global food system is essential to avoid exceeding Earth’s environmental limits. A robust evidence base is crucial to assess the scale and combination of interventions required for a sustainable transformation. We developed a risk assessment framework, underpinned by an evidence synthesis of global food system modeling studies, to quantify the potential of individual and combined interventions to mitigate the risk of exceeding gl…

  • Agricultural market integration preserves future global water resources

    Open Access•Neal T Graham, Gokul Iyer et al.•ARTICLE•One Earth•2023

    Traded agricultural goods redistribute water, virtually, around the world to satisfy unmet demands while limiting excess water extraction in importing regions. However, gaps remain in our understanding of how alternative international trade regimes may alter agricultural water demands, locally and virtually. Here, we explore global agricultural water savings and virtual water trade impacts of such trade regimes under reference and low-carbon scen…

  • Assessing the future of global energy-for-water

    Open Access•Page Kyle, Mohamad Hejazi et al.•ARTICLE•Environmental Research Letters•2021

    This study incorporates the energy demands of water abstraction, treatment, distribution, and post-use wastewater treatment into the Global Change Analysis Model, an integrated human-Earth systems model, and analyzes a range of scenarios that estimate the future evolution of this demand of energy. The study complements research on historical and future water-for-energy, and builds on bottom-up estimates of historical energy-for-water (EFW), by in…

  • Future evolution of virtual water trading in the United States electricity sector

    Open Access•Neal T Graham, Gokul Iyer et al.•ARTICLE•Environmental Research Letters•2021

    Future transformations in the electricity sector could entail major shifts in power sector technology mixes and electricity trade, with consequences for the trading of virtual water. Previous virtual water trade studies largely focus on historical timeframes. We explore, for the first time, future—through 2050—virtual water trade driven by electricity trade under a range of future electricity sector transformation scenarios using the United State…

  • Humans drive future water scarcity changes across all Shared Socioeconomic Pathways

    Open Access•Neal T Graham, Mohamad Hejazi et al.•ARTICLE•Environmental Research Letters•2019

    Future changes in climate and socioeconomic systems will drive both the availability and use of water resources, leading to evolutions in scarcity. The contributions of both systems can be quantified individually to understand the impacts around the world, but also combined to explore how the coevolution of energy-water-land systems affects not only the driver behind water scarcity changes, but how human and climate systems interact in tandem to …

No prominent works on this page.

  • Humans drive future water scarcity changes across all Shared Socioeconomic Pathways

    Open Access•Neal T Graham, Mohamad Hejazi et al.•ARTICLE•Environmental Research Letters•2019

    Future changes in climate and socioeconomic systems will drive both the availability and use of water resources, leading to evolutions in scarcity. The contributions of both systems can be quantified individually to understand the impacts around the world, but also combined to explore how the coevolution of energy-water-land systems affects not only the driver behind water scarcity changes, but how human and climate systems interact in tandem to …

  • Assessing the future of global energy-for-water

    Open Access•Page Kyle, Mohamad Hejazi et al.•ARTICLE•Environmental Research Letters•2021

    This study incorporates the energy demands of water abstraction, treatment, distribution, and post-use wastewater treatment into the Global Change Analysis Model, an integrated human-Earth systems model, and analyzes a range of scenarios that estimate the future evolution of this demand of energy. The study complements research on historical and future water-for-energy, and builds on bottom-up estimates of historical energy-for-water (EFW), by in…

  • Future evolution of virtual water trading in the United States electricity sector

    Open Access•Neal T Graham, Gokul Iyer et al.•ARTICLE•Environmental Research Letters•2021

    Future transformations in the electricity sector could entail major shifts in power sector technology mixes and electricity trade, with consequences for the trading of virtual water. Previous virtual water trade studies largely focus on historical timeframes. We explore, for the first time, future—through 2050—virtual water trade driven by electricity trade under a range of future electricity sector transformation scenarios using the United State…

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

    Michalis Hadjikakou, Nicholas Bowles et al.•PREPRINT•2023

    Transforming the global food system is essential to avoid exceeding Earth’s environmental limits. A robust evidence base is crucial to assess the scale and combination of interventions required for a sustainable transformation. We developed a risk assessment framework, underpinned by an evidence synthesis of global food system modeling studies, to quantify the potential of individual and combined interventions to mitigate the risk of exceeding gl…

  • Agricultural market integration preserves future global water resources

    Open Access•Neal T Graham, Gokul Iyer et al.•ARTICLE•One Earth•2023

    Traded agricultural goods redistribute water, virtually, around the world to satisfy unmet demands while limiting excess water extraction in importing regions. However, gaps remain in our understanding of how alternative international trade regimes may alter agricultural water demands, locally and virtually. Here, we explore global agricultural water savings and virtual water trade impacts of such trade regimes under reference and low-carbon scen…

  • Seeing the forest for the trees: Implementing dynamic representation of forest management and forest carbon in a long-term global multisector model

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

    Studies have found that understanding forest management is critical in understanding the interaction between the carbon cycle and the integrated human-Earth system. This makes effectively representing forest management decisions such as planting and harvesting important. Here, we implement a novel dynamic forest harvest model in a global state of the art multi-sector dynamics model, namely the Global Change Analysis Model (GCAM). We implement an …

  • Global peak water limit of future groundwater withdrawals

    Open Access•Hassan Niazi, Thomas Wild et al.•ARTICLE•Nature Sustainability•2024•References: 10

  • 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

Environmental Science (8 works) · Ecology (7 works) · Economics (7 works) · Natural resource economics (6 works) · Water-Energy-Food Nexus Studies (6 works) · Business (5 works) · Agriculture (4 works) · Water resources (4 works) · Water resources management and optimization (4 works) · Biology (3 works)

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