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Chinese Journal of Ecology ›› 2024, Vol. 43 ›› Issue (5): 1381-1389.doi: 10.13292/j.1000-4890.202405.031

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Responses of soil organic carbon and available phosphorus to salinity in Tianjin coastal wetland and its influencing factors.

LI Suqing1, GUAN Dongxing1,2*, LI Xiyuan1, ZHANG Jianchao1, TENG H. Henry1,3   

  1. (1Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University, Tianjin 300072, China; 2College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China; 3Tianjin Key Laboratory of Earth Critical Zone Science and Sustainable Development in Bohai Rim, Tianjin University, Tianjin 300072, China).

  • Online:2024-05-10 Published:2024-07-10

Abstract: Coastal wetlands are fragile and ecologically sensitive areas that are facing severe environmental challenges, such as sea level rise. The invasion of seawater has led to an increase in soil salinity, bringing a series of negative effects such as soil nutrient imbalance and reduced productivity. To investigate the effects of soil salinity on soil organic carbon (SOC) and available phosphorus (AP) content, soil samples were collected from typical coastal wetlands in Tianjin. The contents of SOC, AP, different P forms, soil salinity, pH, particle size, and alkaline phosphatase activity were measured. The results showed that SOC content varied from 1.88 to 8.51 g·kg-1 and the AP content varied from 10.50 to 56.07 mg·kg-1, including H2O extracted and NaHCOextracted P. Ca-bound P from HCl extraction dominated the inorganic P. With the increases of salinity, SOC and AP contents showed a trend of firstly increasing and then decreasing. SOC content was significantly positively correlated with soil total nitrogen content, alkaline phosphatase activity and NaOH-P content, and significantly negatively correlated with soil sand fraction. AP content was significantly positively correlated with total P, NaHCO3-P, NaOH-P, and H2O-P contents, and negatively correlated with soil sand fraction. This study revealed the characteristics and influencing factors of salinity response of SOC and AP contents in coastal wetlands, which provides reference for nutrient management of coastal wetlands in the context of global change.


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