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Showing 1–6 of 6 results
Advanced filters: Author: Gaurav Ganti Clear advanced filters
  • Carbon dioxide removal (CDR) plays an important role in decarbonization pathways to meet climate goals, but some methods are land-intensive. Multimodel analysis reveals conflicts between biodiversity and CDR that are distributed unevenly, and shows that synergies are crucial to meet climate and conservation goals.

    • Ruben Prütz
    • Joeri Rogelj
    • Sabine Fuss
    ResearchOpen Access
    Nature Climate Change
    P: 1-9
  • Here the authors present a framework to assess the temperature outcomes of decarbonization scenarios from institutions such as the IEA, BP and Shell. Scenarios are evaluated for consistency with the long-term temperature goal of the Paris Agreement.

    • Robert J. Brecha
    • Gaurav Ganti
    • Matthew J. Gidden
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-11
  • Carbon dioxide removal via afforestation and reforestation could be scaled up globally to account for ten percent of net greenhouse gas emission reductions required between 2020 and 2030, according to an analysis of land-based carbon removal deployed in the IPCC-assessed scenarios.

    • Gaurav Ganti
    • Thomas Gasser
    • Matthew J. Gidden
    ResearchOpen Access
    Communications Earth & Environment
    Volume: 5, P: 1-7
  • Aiming for declining global temperatures can limit long-term climate risks compared with a mere stabilization of global warming, including sea-level rise and cryosphere changes.

    • Carl-Friedrich Schleussner
    • Gaurav Ganti
    • Joeri Rogelj
    ResearchOpen Access
    Nature
    Volume: 634, P: 366-373
  • Greenhouse gas emissions pathways compatible with the Paris Agreement simultaneously pursue warming of less than 1.5 °C, very likely never exceed 2 °C and achieve net zero greenhouse gas emissions by the second half of the century. They can require smaller amounts of carbon dioxide removal.

    • Carl-Friedrich Schleussner
    • Gaurav Ganti
    • Matthew J. Gidden
    ResearchOpen Access
    Communications Earth & Environment
    Volume: 3, P: 1-11