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生态学杂志 ›› 2026, Vol. 45 ›› Issue (4): 1211-1217.doi: 10.13292/j.1000-4890.202604.029

• 研究报告 • 上一篇    下一篇

盐城盐沼湿地植被历史演变与沉积物碳储量

郭明1,5,张亚楠2,吕慧华3,4,邢伟1,6*


  

  1. 1中国科学院武汉植物园, 湖泊与流域水安全全国重点实验室, 武汉 430074; 2盐城市湿地和世界自然遗产保护管理中心, 江苏盐城 224001; 3盐城工学院环境科学与工程学院, 江苏盐城 224051; 4盐城市黄海湿地研究院, 江苏盐城 224001; 5中国科学院大学, 北京 100049; 6中国科学院武汉植物园, 湿地演化与生态恢复湖北省重点实验室, 武汉 430074)

  • 出版日期:2026-04-10 发布日期:2026-04-10

Interannual variations of wetland vegetation and sediment carbon storage of coastal salt marshes in Yancheng City.

GUO Ming1,5, ZHANG Yanan2, LYU Huihua3,4, XING Wei1,6*   

  1. (1National Key Laboratory of Lake and Watershed Water Security, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430074, China; 2Yancheng Wetland and Natural World Heritage Conservation & Management Center, Yancheng 224001, Jiangsu, China; 3School of Environmental Science and Engineering, Yancheng Institute of Technology, Yancheng 224051, Jiangsu, China; 4Yancheng Yellow Sea Wetland Research Institute, Yancheng 224001, Jiangsu, China; 5University of Chinese Academy of Sciences, Beijing 100049, China; 6Hubei Key Laboratory of Wetland Evolution & Ecological Restoration, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430074, China).

  • Online:2026-04-10 Published:2026-04-10

摘要: 滨海湿地是重要的蓝色碳汇,而湿地植被的光合固碳能力则直接影响湿地沉积物中的有机碳含量和碳储量。通过文献检索和数据整合,分析1975—2021年盐城滨海湿地主要植被分布面积的年际变化,并比较芦苇、碱蓬和互花米草的最大光化学量子效率(Fv/Fm)和最大净光合速率(Pn)的差异,分析盐城盐沼湿地沉积物有机碳含量和碳储量。结果显示,1983—2021年,盐城国家级珍禽自然保护区核心区内芦苇和互花米草面积逐年增加,分别由50和280.54 hm2增加至6532.55和4281.86 hm2,碱蓬则由3293.2 hm2逐年减少至1315.33 hm2;而1975—2019年,核心区外芦苇和碱蓬面积大幅度减少,分别由约60000和70000 hm2减少至约8000和5000 hm2;盐城盐沼湿地互花米草的平均净光合速率为14.77 μmol CO2·m-2·s-1,大于芦苇(11.45 μmol CO2·m-2·s-1),说明互花米草固碳能力更强,这也导致了互花米草分布区域沉积物的有机碳含量和碳储量普遍高于芦苇和碱蓬分布区域。研究结果可为我国滨海湿地多样性保护和盐沼湿地固碳研究提供理论指导。


关键词: 滨海湿地, 湿地植被, 沉积物, 有机碳, 碳储量

Abstract: Coastal salt marshes are important blue carbon sinks. The photosynthetic carbon fixation capacity of salt marsh vegetation directly affects organic carbon content and carbon storage in sediments. In this study, we analyzed the interannual variation in the distribution area of major vegetation in the coastal salt marshes of Yancheng from 1975 to 2021 through literature review and data integration. Then, we examined the differences in PSII maximum photochemical efficiency (Fv/Fm) and maximum net photosynthetic rate (Pn) among Phragmites australis, Suaeda salsa, and Spartina alterniflora. Finally, we assessed the organic carbon content and carbon storage in the sediments of the Yancheng salt marsh. The results showed that the areas of P. australis and S. alterniflora in the core area of Yancheng National Rare Bird Nature Reserve increased year by year from 1983 to 2021, rising from 50 and 280.54 hm2 to 6532.55 and 4281.86 hm2 respectively, while the area of S. salsa decreased from 3293.2 to 1315.33 hm2. From 1975 to 2019, the areas of P. australis and S. salsa outside the core area decreased significantly, dropping from approximately 60000 and 70000 hm2 to approximately 8000 and 5000 hm2, respectively. The average net photosynthetic rate of S. alterniflora was 14.77 μmol CO2·m-2·s-1, higher than that of P. australis (11.45 μmol CO2·m-2·s-1), indicating a stronger carbon fixation capacity for S. alterniflora. This resulted in significantly higher organic carbon content and carbon storage in the sediments of areas dominated by S. alterniflora than those in areas dominated by P. australis and S. salsa. The findings provide theoretical guidance for the biodiversity conservation of coastal wetlands and the study of carbon fixation in salt marshes in China.


Key words: coastal wetland, wetland vegetation, sediment, organic carbon, carbon storage