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March 12, 2026Scientia Sinica Vitae0 citationsOpen Access

Assessment of degradation drivers and conservation effectiveness in China’s salt marsh blue carbon ecosystem

XWXinXin WANGYZYuhan ZhengRJRuiTing JU

Key Points

  • This research aims to assess the drivers of salt marsh degradation and evaluate the effectiveness of conservation efforts in China.
  • Integrated field sampling and satellite remote sensing techniques.
  • Utilized machine learning for spatiotemporal analysis of coastal salt marsh areas.
  • Analyzed surface soil organic carbon (SOC) over the past two decades.
  • Coastal salt marsh area in China showed a 'first decrease, then increase' pattern.
  • Loss driven by aquaculture and agricultural expansion; recovery linked to wetland restoration policies.
  • Overall increase in salt marsh area positively affected surface SOC, though effects were heterogeneous.

Abstract

Salt marshes are vital blue carbon ecosystems on Earth, with substantial carbon sequestration capacity that play a crucial role in mitigating global climate warming. However, the dynamics of salt marsh loss and gain and their impacts on carbon sink functions in China at the national scale remain poorly understood. This study integrates field sampling, satellite remote sensing, and machine learning to systematically analyze the spatiotemporal evolution of coastal salt marsh areas and surface SOC in China over the past two decades. This paper focused on revealing how land-use changes and the implementation of national protection and restoration policies have influenced salt marsh area and surface SOC dynamics. The results showed that the area of coastal salt marshes in China followed a significant “first decrease, then increase” trajectory. Salt marsh loss was primarily driven by the expansion of aquaculture ponds and agricultural land, whereas policies such as “returning ponds to wetlands” and “returning farmland to wetlands” facilitated the recovery of salt marsh area. Although the net increase in salt marsh area exhibited spatiotemporally heterogeneous effects on surface SOC, it overall exerted a cumulative promotive effect. Moreover, national protection and restoration policies have effectively mitigated the intensity of human disturbances in China’s coastal areas, emerging as a key driver behind both salt marsh recovery and surface SOC accumulation. These findings provide a scientific basis for scaling up salt marsh conservation and clarifying their roles in blue carbon systems, offering valuable insights for refining wetland protection and climate adaptation strategies.

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Cite This Study

WANG et al. (2026) studied this question.

synapsesocial.com/papers/69b2573196eeacc4fcec5c1dhttps://doi.org/10.1360/ssv-2025-0267
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