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Selection: Peng:S [4 articles] 

Publications by author Peng:S.

Global land cover mapping at 30m resolution: A POK-based operational approach

ISPRS Journal of Photogrammetry and Remote Sensing, Vol. 103 (May 2015), pp. 7-27,


Global Land Cover (GLC) information is fundamental for environmental change studies, land resource management, sustainable development, and many other societal benefits. Although GLC data exists at spatial resolutions of 300 m and 1000 m, a 30 m resolution mapping approach is now a feasible option for the next generation of GLC products. Since most significant human impacts on the land system can be captured at this scale, a number of researchers are focusing on such products. This paper reports the operational ...


How have past fire disturbances contributed to the current carbon balance of boreal ecosystems?

Biogeosciences, Vol. 13, No. 3. (04 February 2016), pp. 675-690,


Boreal fires have immediate effects on regional carbon budgets by emitting CO2 into the atmosphere at the time of burning, but they also have legacy effects by initiating a long-term carbon sink during post-fire vegetation recovery. Quantifying these different effects on the current-day pan-boreal (44–84° N) carbon balance and quantifying relative contributions of legacy sinks by past fires is important for understanding and predicting the carbon dynamics in this region. Here we used the global dynamic vegetation model ORCHIDEE–SPITFIRE (Organising Carbon and ...


The global methane budget 2000–2012

Earth System Science Data, Vol. 8, No. 2. (12 December 2016), pp. 697-751,


The global methane (CH4) budget is becoming an increasingly important component for managing realistic pathways to mitigate climate change. This relevance, due to a shorter atmospheric lifetime and a stronger warming potential than carbon dioxide, is challenged by the still unexplained changes of atmospheric CH4 over the past decade. Emissions and concentrations of CH4 are continuing to increase, making CH4 the second most important human-induced greenhouse gas after carbon dioxide. Two major difficulties in reducing uncertainties come from the large variety ...


Afforestation in China cools local land surface temperature

Proceedings of the National Academy of Sciences, Vol. 111, No. 8. (25 February 2014), pp. 2915-2919,


[Significance] China has the largest afforested area in the world. Afforestation not only contributes to increased carbon storage but also alters local albedo and turbulent energy fluxes, which offers feedback on the local and regional climate. This study presents previously unidentified observational evidence of the effect of large-scale afforestation on land surface temperature (LST) in China. Afforestation decreases daytime LST, because of enhanced evapotranspiration, and increases nighttime LST. This nighttime warming tends to offset daytime cooling in dry regions. These results ...

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