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This page provides a simple browsing interface for finding entities described by a property and a named value. Other available search interfaces include the page property search, and the ask query builder.
List of results
- Bauer et al., 2017 + (Shared Socio-Economic Pathways of the Energy Sector – Quantifying the Narratives)
- Raupach et al., 2014 + (Sharing a quota on cumulative carbon emissions)
- Den Elzen et al., 2010b + (Sharing developed countries' post-2012 greenhouse gas emission reductions based on comparable efforts)
- Dellink et al., 2009 + (Sharing the burden of financing adaptation to climate change)
- Den Elzen and Höhne, 2010 + (Sharing the reduction effort to limit global warming to 2°C)
- Visser et al., 2018 + (Signal detection in global mean temperatures after "Paris": An uncertainty and sensitivity analysis)
- Liu et al., 2016a + (Similar estimates of temperature impacts on global wheat yield by three independent methods)
- Pugh et al., 2015 + (Simulated carbon emissions from land-use change are substantially enhanced by accounting for agricultural management)
- Zuidema et al., 1994 + (Simulating changes in global land cover as affected by economic and climatic factors)
- Jones et al., 2016 + (Simulating the Earth system response to negative emissions)
- Klein Goldewijk et al., 1994 + (Simulating the carbon flux between the terrestrial environment and the atmosphere)
- Stehfest and Müller, 2004 + (Simulation of N2O emissions from a urine-affected pasture in New Zealand with the ecosystem model DayCent)
- Stehfest et al., 2007 + (Simulation of global crop production with the ecosystem model DayCent)
- Van Bussel et al., 2015 + (Simulation of the phenological development of wheat and maize at the global scale)
- Shindell et al., 2012 + (Simultaneously mitigating near-term climate change and improving human health and food security)
- Kroeze et al., 2007 + (Sinks for nitrous oxide at the earth's surface)
- Fischer et al., 2005 + (Socio-economic and climate change impacts on agriculture: an integrated assessment, 1990-2080)
- Koelbl et al., 2015 + (Socio-economic impacts of future electricity generation scenarios in Europe: Potential costs and benefits of using CO2 Capture and Storage (CCS))
- Koelbl et al., 2016 + (Socio-economic impacts of low-carbon power generation portfolios: Strategies with and without CCS for the Netherlands)
- O'Neill, 2013 + (Socio-economic observations, scenarios, and their use in LUC models)
- Rozanov et al., 1990 + (Soils)
- Foley et al., 2011 + (Solutions for a cultivated planet)
- Seitzinger et al., 2005 + (Sources and delivery of carbon, nitrogen, and phosphorus to the coastal zone: An overview of Global Nutrient Export from Watersheds (NEWS) models and their application)
- Egoh et al., 2009 + (Spatial congruence between biodiveristy and ecosystem services in South Africa)
- Bagstad et al., 2013 + (Spatial dynamics of ecosystm service flows: A comprehensive approach to quntifying actual services)
- AgMIP, 2014 + (Special issue (AgMIP))
- IPCC, 2005 + (Special report on CO<sub>2</sub> capture and storage)
- IPCC, 2000 + (Special report on emissions scenarios)
- Diaz and Rosenberg, 2008 + (Spreading dead zones and consequences for marine ecosystems)
- Rotmans et al., 1992 + (Stabilizing atmospheric concentrations: towards international methane control)
- Van Vuuren et al., 2007a + (Stabilizing greenhouse gas concentrations at low levels: An assessment of reduction strategies and costs)
- Alcamo et al., 1995a + (Stabilizing greenhouse gases: Global and regional consequences)
- Van Dijk et al., 2020 + (Stakeholder-designed scenarios for global food security assessments)
- IRENA, 2022 + (Statistics Time Series)
- SCBD, 2010 + (Strategic action plan for biodiversity 2011-2020 and the Aichi targets)
- Den Elzen et al., 1992b + (Strengthening the Montreal protocol: does it cool down the greenhouse?)
- IPCC, 2019 + (Summary for Policymakers. In: Climate Change and Land: an IPCC special report on climate change, desertification, land degradation, sustainable land management, food security, and greenhouse gas fluxes in terrestrial ecosystems)
- USGS, 2013 + (Supporting data for the U.S. Geological Survey 2012 world assessment of undiscovered oil and gas resources: U.S. Geological Survey Digital Data Series DDS–69–FF)
- Sun et al., 2008 + (Surface N Balances in Agricultural Crop Production Systems in China for the Period 1980-20151 1 Project supported by the Chinese Academy of Sciences (No. KZCX2-YW-N-038) and the National Basic Research Program of China (No. 2005CB121108))
- Bouwman et al., 2005d + (Surface N balances and reactive N loss to the environment from global intensive agricultural production systems for the period 1970-2030)
- Mironenko et al., 2015 + (Sustainable development goals: Why do we need them?)
- Putz et al., 2012 + (Sustaining conservation values in selectively logged tropical forests: the attained and the attainable)
- Maes et al., 2012 + (Synergies and trade-offs between ecosystem service supply, biodiversity, and habitat conservation status in Europe)
- Pietzcker et al., 2017 + (System integration of wind and solar power in integrated assessment models: A cross-model evaluation of new approaches)
- IRF, 2007 + (THE BRISBANE DECLARATION (2007))
- Harmsen et al., 2019b + (Taking some heat off the NDCs? The limited potential of additional short-lived climate forcers’ mitigation)
- Van Vuuren et al., 2008b + (Temperature increase of 21st century mitigation scenarios)
- Gerten et al., 2004 + (Terrestrial vegetation and water balance - hydrological evaluation of a dynamic global vegetation model)
- Bouwman and Taylor, 1995 + (Testing high resolution nitroux oxide emission estimates against observations using an atmospheric transport model)
- Bouwman and Taylor, 1996 + (Testing high-resolution nitrous oxide emission estimates against observations using an atmospheric transport model)
- Bouwman et al., 2000 + (Testing hypotheses on global emissions of nitrous oxide using atmospheric models)