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Global forest gaps reduce litterfall but increase litter carbon and phosphorus release - Communications Earth & Environment
Abstract Ongoing global climate change and conventional forestry have led to a dramatic increase in new forest gaps, predicted to strongly impact litter turnover and nutrient cycling. Here we synthesized 8739 paired observations to quantify the impacts of naturally occurring and artificially created gaps on litterfall, litter decomposition, and the release of carbon and nutrients.
Climate warming accelerates carbon release from foliar litter—A global synthesis
CONFLICT OF INTEREST STATEMENT The authors declare no competing interests. Supporting Information Filename Description gcb17350-sup-0001-Supinfo.zipZip archive, 1.5 MB Appendix S1. REFERENCES , , , , & (2015). Evaluating machine learning approaches for the interpolation of monthly air temperature at Mt. Kilimanjaro, Tanzania. Spatial Statistics, 14, 91–113. (2014). Decomposition patterns for foliar litter—A theory for influencing factors. Soil Biology and Biochemistry, 78, 222–232. , & (2014).
Responses of soil C pools to combined warming and altered precipitation regimes: A meta‐analysis
Main limitations and future perspectives A better understanding of the combined effects and interactions of warming and altered precipitation regimes on soil C pools is essential to predict the responses of soil carbon sequestration to climate change. However, the available experimental results still pose some limitations.
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