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A list of all pages that have property "HasTitle" with value "Nitrogen oxides and tropical agriculture". Since there have been only a few results, also nearby values are displayed.

Showing below up to 26 results starting with #1.

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List of results

  • O'Farrell et al., 2010  + (Multi-functional landscapes in semi arid environments: Implications for biodiversity and ecosystem services)
  • Den Elzen et al., 2007  + (Multi-gas emission envelopes to meet greenhouse gas concentration targets: Costs versus certainty of limiting temperature increase)
  • Meinshausen et al., 2006  + (Multi-gas emissions pathways to meet climate targets)
  • Van Vuuren et al., 2006d  + (Multi-gas scenarios to stabilize radiative forcing)
  • Johansson et al., 2014  + (Multi-model comparison of the economic and energy implications for China and India in an international climate regime)
  • Plotkin and Singh 2009  + (Multi-path transportation futures study: vehicle characterization and scenario analyses.)
  • Neumann et al., 2011b  + (Multi-scale scenarios of spatial-temporal dynamics in the European livestock sector)
  • Den Elzen et al., 2006  + (Multi-stage: A rule-based evolution of future commitments under the climate change convention)
  • Haddeland et al., 2011  + (Multimodel estimate of the global terrestrial water balance: Setup and first results)
  • Stocker et al., 2013  + (Multiple greenhouse-gas feedbacks from the land biosphere under future climate change scenarios)
  • Stehfest and Bouwman, 2006  + (N2O and NO emission from agricultural fields and soils under natural vegetation: Summarizing available measurement data and modeling of global annual emissions)
  • Garnier et al., 2010  + (N:P:Si nutrient export ratios and ecological consequences in coastal seas evaluated by the ICEP approach)
  • Toreti et al., 2020  + (Narrowing uncertainties in the effects of elevated CO2 on crops)
  • Hohne et al., 2012  + (National GHG emissions reduction pledges and 2°C: Comparison of studies)
  • Richards et al., 2018  + (National contributions to climate change mitigation from agriculture: allocating a global target)
  • Meinshausen et al., 2015  + (National post-2020 greenhouse gas targets and diversity-aware leadership)
  • Zhang et al., 2010  + (Natural and human-induced hypoxia and consequences for coastal areas: synthesis and future development)
  • Schaeffer et al., 2008  + (Near-linear cost increase to reduce climate-change risk)
  • Sattari et al., 2016  + (Negative global phosphorus budgets challenge sustainable intensification of grasslands)
  • Hartmann et al., 2010  + (Negative or positive effects of plantation and intensive forestry on biodiversity: a matter of scale)
  • Lowe et al., 2009  + (New study for climate modeling, analyses, and scenarios)
  • Groeneveld et al., 1998  + (Nitrate leaching in dairy farming: Economic effects of environmental restrictions)
  • Dentener et al., 2006  + (Nitrogen and sulfur deposition on regional and global scales: A multimodel evaluation)
  • Galloway et al., 2004  + (Nitrogen cycles: Past, present, and future)
  • Rabalais, 2002  + (Nitrogen in aquatic ecosystems)
  • Salvagiotti et al., 2008  + (Nitrogen uptake, fixation and response to fertilizer N in soybeans: A review)
  • Van Grinsven et al., 2014  + (Nitrogen use and food production in European regions from a global perspective)
  • Lassaletta et al., 2016  + (Nitrogen use in the global food system: Past trends and future trajectories of agronomic performance, pollution, trade, and dietary demand)
  • Bouwman et al., 2010b  + (Nitrous oxide emissions from the nitrogen cycle in arable agriculture: Estimation and mitigation)
  • Rose et al., 2014b  + (Non-Kyoto radiative forcing in long-run greenhouse gas emissions and climate change scenarios)
  • DEA, 2018  + (Note on technology costs for offshore wind farms and the background for updating CAPEX and OPEX in the technology catalogue datasheets)
  • Bouwman et al., 2013d  + (Nutrient dynamics, transfer and retention along the aquatic continuum from land to ocean: Towards integration of ecological and biogeochemical models)
  • Sotto et al., 2015  + (Nutrient load estimates for Manila Bay, Philippines using population data)
  • OECD, 2012  + (OECD Environmental outlook to 2050: The consequences of inaction)
  • Van Ruijven and Van Vuuren, 2009  + (Oil and natural gas prices and greenhouse gas emission mitigation)
  • Hoogwijk, 2004  + (On the global and regional potential of renewable energy sources)
  • Cengic et al., 2020  + (On the importance of predictor choice, modelling technique, and number of pseudo‐absences for bioclimatic envelope model performance)
  • Håkanson et al., 2007  + (On the issue of limiting nutrient and predictions of cyanobacteria in aquatic systems)
  • Berk and Den Elzen, 2001  + (Options for differentiation of future commitments in climate policy: How to realise timely participation to meet stringent climate goals?)
  • Stehfest et al., 2013  + (Options to reduce the environmental effects of livestock production - Comparison of two economic models)
  • Alcamo et al., 1995b  + (Overview of IMAGE 2.0: An integrated model of climate change and the global environment)
  • PBL, 2015  + (PBL Climate Pledge INDC tool)
  • Van Vuuren and Alfsen, 2006  + (PPP versus mer: Searching for answers in a multi-dimensional debate)
  • Rogelj et al., 2016  + (Paris Agreement climate proposals need a boost to keep warming well below 2 °C)
  • UNFCCC (2015b)  + (Paris Agreement. Decision 1/CP.17)
  • Overbeek et al., 2001  + (Partial validation of the Dutch model for emission and transport of nutrients (STONE))
  • Pope et al., 1995  + (Particulate air pollution as a predictor of mortality in a prospective study of U.S. adults)
  • Kok et al., 2018  + (Pathways for agriculture and forestry to contribute to terrestrial biodiversity conservation: A global scenario-study)
  • Walsh et al., 2017  + (Pathways for balancing CO2 emissions and sinks)
  • Kriegler et al., 2018  + (Pathways limiting warming to 1.5°C: A tale of turning around in no time?)