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      Spatiotemporal variability of fire effects on soil carbon and nitrogen: A global meta-analysis.

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          Abstract

          A consensus about the fire-related soil carbon (C) and nitrogen (N) impacts that determine soil health and ecosystem services at the global scale remains elusive. Here, we conducted a global meta-analysis of 3173 observations with 1444, 1334, 228, and 167 observations for soil C, N, pyrogenic C (PyC), and the percent of PyC to total organic C (PyC/TOC) from 296 field studies. Results showed that fire significantly decreased soil C (-15.2%) and N (-14.6%) but increased soil PyC (40.6%) and PyC/TOC (30.3%). Stronger negative fire impacts on soil C and N were found in tropical and temperate climates than in Mediterranean and subtropical climates; stronger effects were found in forest ecosystems than in non-forest ecosystems. Wildfire and high-severity fire led to greater soil C and N losses than prescribed and low-severity fires, respectively, while they promoted greater increases in soil PyC and PyC/TOC than prescribed and low-severity fires, respectively. However, soil C and N recovered to control levels approximately 10 years after fire, which is a shorter period than previously determined. These results suggest that fire-induced PyC production should be accounted for in the C budget under global change. These results will improve our knowledge of the spatiotemporal variability of fire effects on soil C and N storage and have implications for fire management and ecosystem recovery.

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          Author and article information

          Journal
          Glob Chang Biol
          Global change biology
          Wiley
          1365-2486
          1354-1013
          Sep 2021
          : 27
          : 17
          Affiliations
          [1 ] Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, National Observations and Research Station for Wetland Ecosystems of the Yangtze Estuary, Institute of Eco-Chongming, School of Life Sciences, Fudan University, Shanghai, China.
          [2 ] Tibet University - Fudan University Joint Laboratory for Biodiversity and Global Change, Research Center for Ecology, College of Science, Tibet University, Lhasa, China.
          Article
          10.1111/gcb.15742
          34101948
          34b151c0-c1fd-44ed-b000-9687ed019a25
          History

          pyrogenic carbon,burning,carbon cycle,ecosystem recovery,fire,nitrogen cycle

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