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zadetkov: 191
1.
  • Increasing anthropogenic me... Increasing anthropogenic methane emissions arise equally from agricultural and fossil fuel sources
    Jackson, R B; Saunois, M; Bousquet, P ... Environmental research letters, 07/2020, Letnik: 15, Številka: 7
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    Climate stabilization remains elusive, with increased greenhouse gas concentrations already increasing global average surface temperatures 1.1°C above pre-industrial levels (World Meteorological ...
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2.
  • Persistent fossil fuel grow... Persistent fossil fuel growth threatens the Paris Agreement and planetary health
    Jackson, R B; Friedlingstein, P; Andrew, R M ... Environmental research letters, 12/2019, Letnik: 14, Številka: 12
    Journal Article
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    Amidst declarations of planetary emergency and reports that the window for limiting climate change to 1.5 °C is rapidly closing, global average temperatures and fossil fuel emissions continue to ...
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3.
  • Recent trends and drivers o... Recent trends and drivers of regional sources and sinks of carbon dioxide
    Sitch, S; Friedlingstein, P; Gruber, N ... Biogeosciences, 02/2015, Letnik: 12, Številka: 3
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    The land and ocean absorb on average just over half of the anthropogenic emissions of carbon dioxide (CO2) every year. These CO2 "sinks" are modulated by climate change and variability. Here we use a ...
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4.
  • Peatlands and the carbon cy... Peatlands and the carbon cycle: from local processes to global implications – a synthesis
    Limpens, J.; Berendse, F.; Blodau, C. ... Biogeosciences, 10/2008, Letnik: 5, Številka: 5
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    Peatlands cover only 3% of the Earth's land surface but boreal and subarctic peatlands store about 15–30% of the world's soil carbon (C) as peat. Despite their potential for large positive feedbacks ...
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5.
  • The growing role of methane... The growing role of methane in anthropogenic climate change
    Saunois, M; Jackson, R B; Bousquet, P ... Environmental research letters, 12/2016, Letnik: 11, Številka: 12
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    Unlike CO2, atmospheric methane concentrations are rising faster than at any time in the past two decades and, since 2014, are now approaching the most greenhouse-gas-intensive scenarios. The reasons ...
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6.
  • Five Decades of Northern La... Five Decades of Northern Land Carbon Uptake Revealed by the Interhemispheric CO2 Gradient
    Ciais, P.; Tan, J.; Wang, X. ... Nature (London), 04/2019, Letnik: 568, Številka: 7751
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    The global land and ocean carbon sinks have increased proportionally with increasing carbon dioxide emissions during the past decades. It is thought that Northern Hemisphere lands make a dominant ...
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7.
  • The shared socio-economic p... The shared socio-economic pathway (SSP) greenhouse gas concentrations and their extensions to 2500
    Meinshausen, Malte; Nicholls, Zebedee R. J; Lewis, Jared ... Geoscientific Model Development, 08/2020, Letnik: 13, Številka: 8
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    Anthropogenic increases in atmospheric greenhouse gas concentrations are the main driver of current and future climate change. The integrated assessment community has quantified anthropogenic ...
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8.
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9.
  • Current systematic carbon-c... Current systematic carbon-cycle observations and the need for implementing a policy-relevant carbon observing system
    Ciais, P; Dolman, A. J; Bombelli, A ... Biogeosciences, 07/2014, Letnik: 11, Številka: 13
    Journal Article, Web Resource
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    A globally integrated carbon observation and analysis system is needed to improve the fundamental understanding of the global carbon cycle, to improve our ability to project future changes, and to ...
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10.
  • Global energy growth is out... Global energy growth is outpacing decarbonization
    Jackson, R B; Le Quéré, C; Andrew, R M ... Environmental research letters, 12/2018, Letnik: 13, Številka: 12
    Journal Article
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    Recent reports have highlighted the challenge of keeping global average temperatures below 2 °C and-even more so-1.5 °C (IPCC 2018). Fossil-fuel burning and cement production release ∼90% of all CO2 ...
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zadetkov: 191

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