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[Variation characteristics of soil carbon sequestration under long-term different fertilization in red paddy soil]. | LitMetric

AI Article Synopsis

  • The study aimed to examine how different types of fertilization impact soil organic carbon (SOC) levels in red paddy soil over a 30-year period (1982-2012).
  • Results indicated that fertilization, particularly with organic manure combined with mineral fertilizers, significantly boosted SOC content and helped stabilize it after three decades.
  • There was a strong positive correlation found between carbon sequestration efficiency and the annual average input of organic carbon, suggesting that a minimum of 0.12 t C · hm(-2) · a(-1) is needed to sustain SOC balance.

Article Abstract

The objective of this study was to clarify the changes of soil organic carbon (SOC) content, the saturation capacity of soil carbon sequestration and its cooperation with carbon input (crop source and organic fertilizer source carbon) under long-term (1982-2012) different fertilization in red paddy soil. The results showed that fertilization could increase SOC content. The SOC content of all the fertilization treatments demonstrated a trend of stabilization after applying fertilizer for 30 years. The SOC content in the treatments applying organic manure with mineral fertilizers was between 21.02 and 21.24 g · kg(-1), and the increase rate ranged from 0.41 to 0.59 g · kg(-1) · a(-1). The SOC content in the treatments applying mineral fertilizers only was 15.48 g · kg(-1). The average soil carbon sequestration in the treatments that applied organic manure with mineral fertilizers ranged from 43.61 to 48.43 t C · hm(-2), and the average SOC storage over the years in these treatments was significantly greater than those applying mineral fertilizers only. There was an exponentially positive correlation between C sequestration efficiency and annual average organic C input. It must input exogenous organic carbon at least at 0. 12 t C · hm(-2) · a(-1) to maintain the balance of soil organic carbon under the experimental conditions.

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