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[Factors influencing the spatial variability in soil respiration under different land use regimes]. | LitMetric

AI Article Synopsis

  • Researchers conducted field experiments to examine how different land use types affect soil respiration and its spatial variability.
  • The study found significant differences in soil respiration rates across various land use regimes, with rates ranging from 1.82 to 7.46 micromol x (m2 x s)(-1), largely influenced by soil organic carbon content.
  • A model combining soil organic carbon, available phosphorous, and tree diameter at breast height explained 92.8% of the variability in soil respiration within forest ecosystems.

Article Abstract

In order to investigate the factors influencing the spatial variability in soil respiration under different land use regimes, field experiments were performed. Soil respiration and relevant environment, vegetation and soil factors were measured. The spatial variability in soil respiration and the relationship between soil respiration and these measured factors were investigated. Results indicated that land use regimes had significant effects on soil respiration. Soil respiration varied significantly (P < 0.001) among different land use regimes. Soil respiration rates ranged from 1.82 to 7.46 micromol x (m2 x s)(-1), with a difference of 5.62 micromol x (m2 x s)(-1) between the highest and lowest respiration rates. Soil organic carbon was a key factor controlling the spatial variability in soil respiration. In all, ecosystems studied, the relationship between soil respiration and soil organic carbon content can be described by a power function. Soil respiration increased with the increase of soil organic carbon. In forest ecosystem, the relationship between soil respiration and diameter at breast height (DBH) of trees can be explained by a natural logarithmic function. A model composed of soil organic carbon (C, %), available phosphorous (AP, g x kg(-1)) and diameter at breast height (DBH, cm) explained 92.8% spatial variability in soil respiration for forest ecosystems.

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