Search by property

Jump to navigation Jump to search

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.

Search by property

A list of all pages that have property "HasTitle" with value "Impacts of future land cover changes on atmospheric CO2 and climate". Since there have been only a few results, also nearby values are displayed.

Showing below up to 26 results starting with #1.

View (previous 50 | next 50) (20 | 50 | 100 | 250 | 500)


    

List of results

  • De Vries et al., 2010  + (Impacts of model structure and data aggregation on European wide predictions of nitrogen and green house gas fluxes in response to changes in livestock, land cover, and land management)
  • De Vries et al., 2009  + (Impacts of spatial aggregation on national and European predictions of nitrogen and green house gas fluxes in response to changes in livestock, land cover and management)
  • Von Bloh et al., 2018  + (Implementing the nitrogen cycle into the dynamic global vegetation, hydrology, and crop growth model LPJmL (version 5.0))
  • Chuwah et al., 2013  + (Implications of alternative assumptions regarding future air pollution control in scenarios similar to the Representative Concentration Pathways)
  • Van Ruijven et al., 2012b  + (Implications of greenhouse gas emission mitigation scenarios for the main Asian regions)
  • Den Elzen et al., 2012a  + (Implications of long-term global and developed country reduction targets for developing countries)
  • Lucas et al., 2013  + (Implications of the international reduction pledges on long-term energy system changes and costs in China and India)
  • Van den Berg et al., 2020  + (Implications of various effort-sharing approaches for national carbon budgets and emission pathways)
  • Klein et al., 2007  + (Importance of pollinators in changing landscapes for world crops)
  • Klein et al., 2011  + (Importance of pollinators in chaninging landscapes for world crops)
  • McCollum et al., 2015  + (Improving the behavioral realism of global integrated assessment models: An application to consumers' vehicle choices)
  • Schmidinger and Stehfest, 2012  + (Including CO2 implications of land occupation in LCAs-method and example for livestock products)
  • Hof et al., 2010  + (Including adaptation costs and climate change damages in evaluating post-2012 burden-sharing regimes)
  • Roorda and Neelis, 2006  + (Inclusion of production, energy use and value added for steel, cement and paper in the TIMER energy demand module)
  • Ballantyne et al., 2012  + (Increase in observed net carbon dioxide uptake by land and oceans during the past 50 years)
  • Yan et al., 2010  + (Increasing anthropogenic nitrogen inputs and riverine DIN exports from the Changjiang River basin under changing human pressures)
  • Kruyt et al., 2009  + (Indicators for energy security)
  • Overmars et al., 2011  + (Indirect land use change emissions related to EU biofuel consumption: An analysis based on historical data)
  • Wicke et al., 2012  + (Indirect land use change: Review of existing models and strategies for mitigation)
  • Flessa et al., 1996  + (Influence of cattle wastes on nitrous oxide and methane fluxes in pasture land)
  • Girod et al., 2013  + (Influence of travel behavior on global CO2 emissions)
  • Bouwman and Sombroek, 1990  + (Inputs to climatic change by soil and agriculture related activities: present status and possible future trends)
  • Daioglou et al., 2019  + (Integrated assessment of biomass supply and demand in climate change mitigation scenarios)
  • WMO/UNEP, 2013  + (Integrated assessment of black carbon and tropospheric ozone)
  • Roelfsema et al., 2018b  + (Integrated assessment of international climate mitigation commitments outside the UNFCCC)