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生态学杂志 ›› 2025, Vol. 44 ›› Issue (9): 2976-2982.doi: 10.13292/j.1000-4890.202509.010

• 研究报告 • 上一篇    下一篇

浙南北移幼龄红树林湿地碳汇能力变化特征

鲍明艳1,李秀珍1,陈雪初1,杜明卉1,李昌达2,陈雅慧3,杨华蕾1*
  

  1. 1华东师范大学河口海岸科学研究院, 河口海岸全国重点实验室, 蓝碳科学与技术研究中心, 上海 200241; 2温州市洞头区海洋与渔业发展研究中心, 浙江温州 325000; 3自然资源部温州海洋中心, 浙江温州 325000)

  • 出版日期:2025-09-10 发布日期:2025-09-05

Dynamics of carbon sink capacity in young northward-afforested mangroves in southern Zhejiang Province.

BAO Mingyan1, LI Xiuzhen1, CHEN Xuechu1, DU Minghui1, LI Changda2, CHEN Yahui3, YANG Hualei1*   

  1. (1State Key Laboratory of Estuarine and Coastal Research, Center for Blue Carbon Science and Technology, East China Normal University, Shanghai 200241, China; 2Dongtou Marine and Fishery Development Research Center, Wenzhou 325000, Zhejiang, China; 3Wenzhou Marine Center, Ministry of Natural Resources, Wenzhou 325000, Zhejiang, China).

  • Online:2025-09-10 Published:2025-09-05

摘要: 作为重要的蓝碳生态系统之一,红树林是减缓气候变化的天然、长期有效碳汇。气候变暖为红树林北移提供机遇,然而其固碳能力还需深入探究。本文利用长时间序列涡度通量观测技术,探究了浙南幼龄红树林湿地在日尺度和季节尺度上的净生态系统碳交换量(NEE)变化特征,并分析了关键环境驱动因子。结果表明,浙南红树林湿地NEE在日变化上呈现“U型”趋势,季节变化明显。CO2吸收通量于夏季达到最大值,其他季节随着温度的降低逐渐减弱。浙南幼龄红树林湿地NEE与光合有效辐射、风速呈显著正相关,而与气压、饱和水汽压差呈显著负相关。基于涡度NEE年累积数据,量化浙南幼龄(3年生)红树林碳汇能力为291 g C·m-2·a-1,表明浙南幼龄红树林具备了一定的碳汇能力。


关键词: 北移红树林, 秋茄, 涡度相关法, 净生态系统碳交换量, 环境因子

Abstract: As an important blue carbon ecosystem, mangrove forests are among the most effective natural systems for carbon sequestration in combating climate change. Climate change provides an opportunity for the northward expansion of mangroves. Yet, their capacity of carbon sequestration is poorly understood. With long-term eddy covariance technique, we investigated the daily and seasonal dynamics of net ecosystem exchange (NEE) of young northward-afforested mangroves in southern Zhejiang Province and explored the main driving factors. The results showed that NEE of the northward-afforested mangroves demonstrated a U-shaped pattern on diurnal scale. There was a strong seasonality of NEE, which peaked in summer and decreased as temperature cools. NEE was strongly positively correlated with photosynthetically active radiation and wind speed, but was negatively correlated with air pressure and vapor pressure deficit. Based on the annual cumulative data of eddy NEE, the carbon sequestration capacity of the young northward-afforested mangroves (3 years old) was 291 g C·m-2·a-1, reflecting its potential as a carbon sink.


Key words: northward-afforested mangrove, Kandelia obovata, eddy covariance technique, net ecosystem exchange, environmental factor