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  • Effects of soil compaction, rain exposure and their interaction on soil carbon dioxide emission
  • density exhibited a negative relationship with CO2 emission. Furthermore the AA. found that the magnitude of CO2 effluxes depended on the interaction of these 2 abiotic factors. Given these results, understanding the influence of soil compaction
  • and raindrop impact on CO2 emission could lead to modified soil management practices which promote carbon sequestration.
  • This work investigated the effects of land cover and land-use change (LUC) on the ability of a soil to store carbon (C) and reduce carbon dioxide (CO2) emissions, in a Mediterranean area. Using a paired-site approach, the AA. estimated the effect
  • practices that control the biogeochemical and physical properties of soil could help reduce CO2 emissions and sequester SOC.