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江苏盐城滨海湿地四种典型盐沼固碳通量及碳储量研究

Carbon sequestration flux and storage study of four typical salt marshes in Yancheng coastal wetlands, Jiangsu province

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【作者】 郑童心; 殷勇; 李春荣; 王爱华; 左平;

【Author】 ZHENG Tongxin;YIN Yong;LI Chunrong;WANG Aihua;ZUO Ping;School of Geographic and Oceanographic Sciences, Nanjing University;Key Laboratory for Coast and Island Development of Ministry of Education, Nanjing University;Key Laboratory of Coastal Salt Marsh Ecosystems and Resources, Ministry of Natural Resources;Jiangsu Yancheng National Natural Reserve of Rare Birds Management;Nanjing Hongchuang Geological Exploration Technology Service Co., Ltd;

【通讯作者】 左平;

【机构】 南京大学地理与海洋科学学院; 南京大学海岸与海岛开发教育部重点实验室; 江苏省有色金属华东地质勘查局自然资源部滨海盐沼湿地生态与资源重点实验室; 江苏盐城国家级珍禽自然保护区管理处; 南京宏创地质勘查技术服务有限公司;

【摘要】 盐沼具有初级生产力高、堆积速率快、分解速率慢等特征,在CO2的吸收和固定方面有着重要作用。本研究对江苏盐城滨海湿地的互花米草、芦苇、盐地碱蓬和香蒲4种盐沼植被的柱状沉积物进行分析,探讨了植被生物量、沉积物总有机碳(TOC)垂向变化、TOC来源、固碳通量和碳储量。结果显示,总生物量表现为芦苇(5412.59 g/m2)>互花米草(4444.72 g/m2)>香蒲(2819.15 g/m2)>盐地碱蓬(418.50 g/m2)。决定沉积物TOC垂向分布的主要因子有植被类型、地下生物量和人类扰动。表层沉积物(0~10 cm)中,固碳通量为芦苇[141.38 g/(m2·a)]>香蒲[90.73 g/(m2·a)]>互花米草[75.40 g/(m2·a)]>盐地碱蓬[50.91 g/(m2·a)],碳储量为芦苇(4.19×104 t C)>互花米草(1.48×104t C)>盐地碱蓬(2.87×103 t C)。植被生产力与沉积物的堆积速率都在很大程度上影响其固碳通量。

【Abstract】 Salt marshes are characterized by high primary productivity, rapid accumulation rates, and slow decomposition rates, playing a significant role in CO2 absorption and fixation. In this study, we analyzed sediment cores from four types of salt marsh vegetation in the coastal wetlands of Yancheng, Jiangsu Province:Spartina alterniflora, Phragmites australis, Suaeda salsa, and Typha orientalis. The study investigated vegetation biomass, vertical distribution of total organic carbon(TOC) in sediments, TOC sources, carbon sequestration fluxes, and carbon storage. The results showed that total biomass followed the order of P. australis(5412.59 g/m~2) > S. alterniflora(4444.72 g/m~2) > T. angustifolia(2819.15 g/m~2) > S. salsa(418.50 g/m~2). The vertical distribution of sediment TOC was primarily influenced by vegetation type,belowground biomass, and human disturbances. In the surface sediments(0-10 cm), carbon sequestration fluxes was P. australis [141.38 g/(m~2·a)] > T. orientalis [90.73 g/(m~2·a)] > S. alterniflora[75.40 g/(m~2·a)] >S. salsa [50.91 g/(m~2·a)]. Carbon storage was P. australis(4.19×10~4 t C) > S. alterniflora(1.48×10~4 t C) > S.salsa(2.87×10~3 t C). Both vegetation productivity and sedimentation rate significantly influenced the carbon sequestration fluxes.

【基金】 江苏省海洋科技创新项目(JSZRHYKJ202213)
  • 【文献出处】 海洋环境科学 ,Marine Environmental Science , 编辑部邮箱 ,2025年06期
  • 【分类号】X171
  • 【下载频次】206
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