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Effects of climate extremes on the terrestrial carbon cycle: concepts, processes and potential future impactsNARA Subscribed
Extreme droughts, heat waves, frosts, precipitation, wind storms and other climate extremes may impact the structure, composition and functioning of terrestrial ecosystems, and thus carbon cycling and its feedbacks to the climate system. Yet, the interconnected avenues through which climate extremes drive ecological and physiological processes and alter the carbon balance are poorly understood. Here, we review the literature o...
Major sources of greenhouse gas ( GHG ) emissions from agricultural crop production are nitrous oxide ( N 2 O ) emissions resulting from the application of mineral and organic fertilizer, and carbon dioxide ( CO 2 ) emissions from soil carbon losses. Consequently, choice of fertilizer type, optimizing fertilizer application rates and timing, reducing microbial denitrification and improving soil carbon management are focus area...
Climate change cannot be entirely responsible for soil carbon loss observed in England and Wales, 1978–2003NARA Subscribed
We present results from modelling studies, which suggest that, at most, only about 10–20% of recently observed soil carbon losses in England and Wales could possibly be attributable to climate warming. Further, we present reasons why the actual losses of SOC from organic soils in England and Wales might be lower than those reported.
Projected changes in the organic carbon stocks of cropland mineral soils of European Russia and the Ukraine, 1990–2070NARA Subscribed
In this paper, we use the Rothamsted Carbon Model to estimate how cropland mineral soil carbon stocks are likely to change under future climate, and how agricultural management might influence these stocks in the future. The model was run for croplands occurring on mineral soils in European Russia and the Ukraine, representing 74 Mha of cropland in Russia and 31 Mha in the Ukraine. The model used climate data (1990–2070) from...
Projected changes in mineral soil carbon of European croplands and grasslands, 1990–2080NARA Subscribed
We present the most comprehensive pan‐European assessment of future changes in cropland and grassland soil organic carbon (SOC) stocks to date, using a dedicated process‐based SOC model and state‐of‐the‐art databases of soil, climate change, land‐use change and technology change. Soil carbon change was calculated using the Rothamsted carbon model on a European 10 × 10′ grid using climate data from four global climate models im...
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