
我国海岸带蓝碳生态系统结构现状与保护优化策略研究
潘德炉, 张偲, 秦大河, 杨志峰, 吴丰昌, 周成虎, 白雁, 郝增周, 欧阳晓光, 阳平坚, 李登峰
中国工程科学 ›› 2024, Vol. 26 ›› Issue (6) : 233-245.
我国海岸带蓝碳生态系统结构现状与保护优化策略研究
Current Structural Status and Optimized Protection Strategies for Coastal Blue-Carbon Ecosystems in China
海岸带蓝碳生态系统是增加碳汇、实现碳中和最有潜力的生态学途径之一。虽然我国生态环境治理和生态系统保护修复近年来取得明显成效,但海岸带蓝碳生态系统保护修复模式和蓝碳资源价值转化实现等仍有待优化。本研究梳理并分析了我国红树林、盐沼湿地和海草床等三大海岸带蓝碳生态系统的分布结构及变化;从海岸带蓝碳资源、生态系统保护修复、蓝碳资源价值和碳汇交易市场等方面,阐述了我国海岸带蓝碳生态系统的碳汇认知、保护修复的科学性和系统性、蓝碳资源管控体系和价值实现等方面存在的问题。研究提出了完善海岸带蓝碳生态系统认知、强化绿色可持续的保护修复模式、发展蓝碳资源精细化管控体系和交易体系等建议,可为我国“双碳”目标下的海岸带蓝碳生态系统保护修复与发展研究提供理论指导和决策参考。
The coastal blue-carbon ecosystems have become the most promising ecological pathways to increasing carbon sinks and achieving carbon neutrality. In recent years, significant achievements have been obtained in ecological environment management and ecosystem protection and restoration in China. However, the protection and restoration model of coastal blue-carbon ecosystems and the value transformation and realization of blue-carbon resources still need to be optimized. This study summarizes and analyzes the current distribution and changes of mangroves, salt marshes, and seagrass beds in China. Subsequently, it elaborates on the problems regarding the understanding of coastal blue-carbon ecosystems, scientific and systematic nature of blue-carbon ecosystem protection and restoration, and management system and value realization of blue-carbon resources, from the aspects of coastal blue-carbon resources, ecosystem protection and restoration, blue-carbon resource values, and blue-carbon trading market. Furthermore, we propose to improve the understanding of coastal blue-carbon ecosystems, strengthen green and sustainable protection and restoration models, and develop refined management and trading systems for blue-carbon resources. This study is expected to provide theoretical guidance and decision-making support for the conservation and restoration of coastal blue-carbon ecosystems in China.
海岸带 / 蓝碳生态系统 / 生态保护 / 生态修复 / 粤港澳大湾区
coastal zone / blue-carbon ecosystem / ecological protection / ecological restoration / Guangdong-Hong Kong-Macao Greater Bay Area
[1] |
胡学东. 国家蓝色碳汇研究报告: 国家蓝碳行动可行性研究 [M]. 北京: 中国书籍出版社, 2020.
Hu X D. National blue carbon sequestration research report: Feasibility study of national blue carbon action [M]. Beijing: China Book Press, 2020.
|
[2] |
张瑶, 赵美训, 崔球, 等. 近海生态系统碳汇过程、调控机制及增汇模式 [J]. 中国科学: 地球科学, 2017, 47(4): 438‒449.
Zhang Y, Zhao M X, Cui Q, et al. Processes of coastal ecosystem carbon sequestration and approaches for increasing carbon sink [J]. Scientia Sinica (Terrae), 2017, 47(4): 438‒449.
|
[3] |
唐剑武, 叶属峰, 陈雪初, 等. 海岸带蓝碳的科学概念、研究方法以及在生态恢复中的应用 [J]. 中国科学: 地球科学, 2018, 48(6): 661‒670.
Tang J W, Ye S F, Chen X C, et al. Coastal blue carbon: Concept, study method, and the application to ecological restoration [J]. Scientia Sinica (Terrae), 2018, 48(6): 661‒670.
|
[4] |
刘镇杭, 刘大海, 池源, 等. 基于自然的海岸带蓝碳增汇措施及其技术体系研究 [J]. 海岸工程, 2023, 42(1): 13‒24.
Liu Z H, Liu D H, Chi Y, et al. Research on measures and technology system for enhancing coastal blue carbon sink based on natural endowment [J]. Coastal Engineering, 2023, 42(1): 13‒24.
|
[5] |
Ouyang X, Lee S Y. Updated estimates of carbon accumulation rates in coastal marsh sediments [J]. Biogeosciences, 2014, 11(18): 5057‒5071.
|
[6] |
章海波, 骆永明, 刘兴华, 等. 海岸带蓝碳研究及其展望 [J]. 中国科学: 地球科学, 2015, 45(11): 1641‒1648.
Zhang H B, Luo Y M, Liu X H, et al. Research on blue carbon in coastal zones and its prospects [J]. Scientia Sinica (Terrae) 2015, 45(11): 1641‒1648.
|
[7] |
Blue future: Coastal wetlands can have a crucial role in the fight against climate change [J]. Nature, 2016, 529: 255‒256.
|
[8] |
Wang F M, Liu J H, Qin G M, et al. Coastal blue carbon in China as a nature-based solution toward carbon neutrality [J]. The Innovation, 2023, 4(5): 100481.
|
[9] |
Zhang J F, Mao D H, Liu J H, et al. Spartina alterniflora invasion benefits blue carbon sequestration in China [J]. Science Bulletin, 2024, 69(12): 1991‒2000.
|
[10] |
Zhou J G, Zhang J F, Chen Y P, et al. Blue carbon gain by plant invasion in saltmarsh overcompensated carbon loss by land reclamation [J]. Carbon Research, 2023, 2(1): 39.
|
[11] |
李捷, 刘译蔓, 孙辉, 等. 中国海岸带蓝碳现状分析 [J]. 环境科学与技术, 2019, 42(10): 207‒216.
Li J, Liu Y M, Sun H, et al. Analysis of blue carbon in China's coastal zone [J]. Environmental Science & Technology, 2019, 42(10): 207‒216.
|
[12] |
He Q. A drowned future for coastal ecosystems [J]. Nature, 2023, 621(7977): 44‒45.
|
[13] |
Saintilan N, Horton B, Törnqvist T E, et al. Widespread retreat of coastal habitat is likely at warming levels above 1.5 ℃ [J]. Nature, 2023, 621(7977): 112‒119.
|
[14] |
Wang F M, Sanders C J, Santos I R, et al. Global blue carbon accumulation in tidal wetlands increases with climate change [J]. National Science Review, 2020, 8(9): nwaa296.
|
[15] |
陈思明, 邓钟, 张红月, 等. 气候变化对中国沿海红树林潜在分布格局的影响 [J]. 湿地科学与管理, 2024, 20(3): 32‒37, 44.
Chen S M, Deng Z, Zhang H Y, et al. Impact of climate change on potential distribution of mangrove along the Chinese coast [J]. Wetland Science & Management, 2024, 20(3): 32‒37, 44.
|
[16] |
Reis A, Rovai A S, da Cunha Lana P, et al. Mangrove interaction with saltmarsh varies at different life stages [J]. Science of the Total Environment, 2023, 905: 167410.
|
[17] |
Gouvêa L P, Fragkopoulou E, Cavanaugh K, et al. Oceanographic connectivity explains the intra-specific diversity of mangrove forests at global scales [J]. Proceedings of the National Academy of Sciences of the United States of America, 2023, 120(14): e2209637120.
|
[18] |
Huang W X, Han G X, Wei S Y, et al. Seasonal precipitation distribution determines ecosystem CO2 and H2O exchange by regulating spring soil water-salt dynamics in a brackish wetland [J]. Functional Ecology, 2024, 38(9): 1959‒1970.
|
[19] |
Li X, Chen K L, Zhang Q Q, et al. The response of soil carbon mineralization losses to changes in rainfall frequency is seasonally dependent in an estuarine saltmarsh [J]. Soil Biology and Biochemistry, 2024, 197: 109538.
|
[20] |
Song J, Liang Z H, Li X G, et al. Precipitation changes alter plant dominant species and functional groups by changing soil salinity in a coastal salt marsh [J]. Journal of Environmental Management, 2024, 368: 122235.
|
[21] |
Smith S V. Marine macrophytes as a global carbon sink [J]. Science, 1981, 211(4484): 838‒840.
|
[22] |
Fan B X, Li Y F. China's conservation and restoration of coastal wetlands offset much of the reclamation-induced blue carbon losses [J]. Global Change Biology, 2024, 30(1): e17039.
|
[23] |
Lu W Z, Xiao J F, Gao H Q, et al. Carbon fluxes of China's coastal wetlands and impacts of reclamation and restoration [J]. Global Change Biology, 2024, 30(4): e17280.
|
[24] |
Wang X X, Xiao X M, Zhang X, et al. Rapid and large changes in coastal wetland structure in China's four major river deltas [J]. Global Change Biology, 2023, 29(8): 2286‒2300.
|
[25] |
Curnick D J, Pettorelli N, Amir A A, et al. The value of small mangrove patches [J]. Science, 2019, 363(6424): 239.
|
[26] |
Liu Z Z, Fagherazzi S, He Q, et al. A global meta-analysis on the drivers of salt marsh planting success and implications for ecosystem services [J]. Nature Communications, 2024, 15(1): 3643.
|
[27] |
Hatje V, Copertino M, Patire V F, et al. Vegetated coastal ecosystems in the southwestern Atlantic Ocean are an unexploited opportunity for climate change mitigation [J]. Communications Earth & Environment, 2023, 4: 160.
|
[28] |
Schwarz C, van Rees F, Xie D H, et al. Salt marshes create more extensive channel networks than mangroves [J]. Nature Communications, 2022, 13(1): 2017.
|
[29] |
李森, 范航清, 邱广龙, 等. 海草床恢复研究进展 [J]. 生态学报, 2010, 30(9): 2443‒2453.
Li S, Fan H Q, Qiu G L, et al. Review on research of seagrass beds restoration [J]. Acta Ecologica Sinica, 2010, 30(9): 2443‒2453.
|
[30] |
Fourqurean J W, Duarte C M, Kennedy H, et al. Seagrass ecosystems as a globally significant carbon stock [J]. Nature Geoscience, 2012, 5: 505‒509.
|
[31] |
陈克亮, 吴侃侃, 黄海萍, 等. 我国海洋生态修复政策现状、问题及建议 [J]. 应用海洋学学报, 2021, 40(1): 170‒178.
Chen K L, Wu K K, Huang H P, et al. Marine ecological restoration policies in China: Status, problems and suggestions [J]. Journal of Applied Oceanography, 2021, 40(1): 170‒178.
|
[32] |
徐淑升, 龚海洋, 陈绵润. 红树林、陆地草原、海草床生态修复的对比研究 [J]. 环境科学与管理, 2023, 48(8): 111‒115.
Xu S S, Gong H Y, Chen M R. Comparative analysis on ecological restoration of mangrove, land grassland and seagrass beds [J]. Environmental Science and Management, 2023, 48(8): 111‒115.
|
[33] |
于凌云, 林绅辉, 焦学尧, 等. 粤港澳大湾区红树林湿地面临的生态问题与保护对策 [J]. 北京大学学报(自然科学版), 2019, 55(4): 782‒790.
Yu L Y, Lin S H, Jiao X Y, et al. Ecological problems and protection countermeasures of mangrove wetland in Guangdong-Hong Kong-Macao greater bay area [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2019, 55(4): 782‒790.
|
[34] |
陈志德. 下潭尾湿地公园红树林生态修复实施效果分析 [J]. 南方农业, 2024, 18(16): 162‒164, 177.
Chen Z D. Implementation effect of mangrove ecological restoration in Xiatanwei Wetland Park [J]. South China Agriculture, 2024, 18(16): 162‒164, 177.
|
[35] |
任光瑞. 临港潮滩盐沼植被的生态修复效果分析 [J]. 中国资源综合利用, 2024, 42(1): 135‒137.
Ren G R. Analysis on ecological restoration effect of salt marsh vegetation in Lingang tidal flats [J]. China Resources Comprehensive Utilization, 2024, 42(1): 135‒137.
|
[36] |
吴一凡, 艾瑶, 郑忠禄, 等. 厦门四个红树林湿地修复工程成效评估 [J]. 生态学杂志, 2023, 42(10): 2419‒2424.
Wu Y F, Ai Y, Zheng Z L, et al. Evaluation for the effectiveness of four mangrove wetland restoration projects in Xiamen [J]. Chinese Journal of Ecology, 2023, 42(10): 2419‒2424.
|
[37] |
赵茜瑶. 美国纽约弗莱士河公园的景观生态修复 [J]. 现代园艺, 2016 (10): 133‒134.
Zhao X Y. Landscape ecological restoration of Flesh River Park in New York, USA [J]. Xiandai Horticulture, 2016 (10): 133‒134.
|
[38] |
余辉. 日本琵琶湖流域生态系统的修复与重建 [J]. 环境科学研究, 2016, 29(1): 36‒43.
Yu H. Ecosystem restoration and regeneration of Lake Biwa Basin, Japan [J]. Research of Environmental Sciences, 2016, 29(1): 36‒43.
|
[39] |
Kamali B, Hashim R. Mangrove restoration without planting [J]. Ecological Engineering, 2011, 37(2): 387‒391.
|
[40] |
Zaldívar-Jiménez A, Ladrón-de-Guevara-Porras P, Pérez-Ceballos R, et al. US‒Mexico joint gulf of Mexico large marine ecosystem based assessment and management: Experience in community involvement and mangrove wetland restoration in términos lagoon, Mexico [J]. Environmental Development, 2017, 22: 206‒213.
|
[41] |
唐圣囡, 李京梅. 美国湿地补偿银行制度运转的关键点及对中国的启示 [J]. 湿地科学, 2018, 16(6): 764‒770.
Tang S N, Li J M. Key points of the operation of the US wetland mitigation banking system and its inspiration to China [J]. Wetland Science, 2018, 16(6): 764‒770.
|
[42] |
李显锋. 水污染防治的立法实践、经验与启示——以日本琵琶湖保护为例 [J]. 农林经济管理学报, 2015, 14(2): 184‒191.
Li X F. Legislative practices, experiences and enlightenments of prevention and control of water pollution: A case study of Lake Biwa protection [J]. Journal of Agro-Forestry Economics and Management, 2015, 14(2): 184‒191.
|
[43] |
高扬, 何念鹏, 汪亚峰. 生态系统固碳特征及其研究进展 [J]. 自然资源学报, 2013, 28(7): 1264‒1274.
Gao Y, He N P, Wang Y F. Characteristics of carbon sequestration by ecosystem and progress in its research [J]. Journal of Natural Resources, 2013, 28(7): 1264‒1274.
|
[44] |
叶嘉晖, 邱崇玉, 曾文轩, 等. 海草床沉积物有机碳研究综述 [J]. 海洋科学, 2022, 46(9): 130‒145.
Ye J H, Qiu C Y, Zeng W X, et al. Review of organic carbon in seagrass bed sediment [J]. Marine Sciences, 2022, 46(9): 130‒145.
|
[45] |
Duarte C M, Losada I J, Hendriks I E, et al. The role of coastal plant communities for climate change mitigation and adaptation [J]. Nature Climate Change, 2013, 3: 961‒968.
|
[46] |
张莉, 郭志华, 李志勇. 红树林湿地碳储量及碳汇研究进展 [J]. 应用生态学报, 2013, 24(4): 1153‒1159.
Zhang L, Guo Z H, Li Z Y. Carbon storage and carbon sink of mangrove wetland: Research progress [J]. Chinese Journal of Applied Ecology, 2013, 24(4): 1153‒1159.
|
[47] |
Komiyama A, Ong J E, Poungparn S. Allometry, biomass, and productivity of mangrove forests: A review [J]. Aquatic Botany, 2008, 89(2): 128‒137.
|
[48] |
Thorhaug A, Gallagher J B, Kiswara W, et al. Coastal and estuarine blue carbon stocks in the greater Southeast Asia Region: Seagrasses and mangroves per nation and sum of total [J]. Marine Pollution Bulletin, 2020, 160: 111168.
|
[49] |
王法明, 唐剑武, 叶思源, 等. 中国滨海湿地的蓝色碳汇功能及碳中和对策 [J]. 中国科学院院刊, 2021, 36(3): 241‒251.
Wang F M, Tang J W, Ye S Y, et al. Blue carbon sink function of Chinese coastal wetlands and carbon neutrality strategy [J]. Bulletin of Chinese Academy of Sciences, 2021, 36(3): 241‒251.
|
[50] |
曹磊, 宋金明, 李学刚, 等. 中国滨海盐沼湿地碳收支与碳循环过程研究进展 [J]. 生态学报, 2013, 33(17): 5141‒5152.
Cao L, Song J M, Li X G, et al. Research progresses in carbon budget and carbon cycle of the coastal salt marshes in China [J]. Acta Ecologica Sinica, 2013, 33(17): 5141‒5152.
|
[51] |
郑凤英, 邱广龙, 范航清, 等. 中国海草的多样性、分布及保护 [J]. 生物多样性, 2013, 21(5): 517‒526.
Zheng F Y, Qiu G L, Fan H Q, et al. Diversity, distribution and conservation of Chinese seagrass species [J]. Biodiversity Science, 2013, 21(5): 517‒526.
|
[52] |
Phillps R C, Menez E G. Seagrass [M]. Washinton DC: Smithsonian Institution Press, 1988.
|
[53] |
Li Y, Fu C C, Hu J, et al. Soil carbon, nitrogen, and phosphorus stoichiometry and fractions in blue carbon ecosystems: Implications for carbon accumulation in allochthonous-dominated habitats [J]. Environmental Science & Technology, 2023, 57(14): 5913‒5923.
|
[54] |
Li Y, Fu C C, Wang W Q, et al. An overlooked soil carbon pool in vegetated coastal ecosystems: National-scale assessment of soil organic carbon stocks in coastal shelter forests of China [J]. Science of the Total Environment, 2023, 876: 162823.
|
[55] |
Xu S C, Xu S, Zhou Y, et al. Long-term changes in the unique and largest seagrass meadows in the Bohai Sea (China) using satellite (1974—2019) and sonar data: Implication for conservation and restoration [J]. Remote Sensing, 2021, 13(5): 856.
|
[56] |
Ma T T, Li X W, Bai J H, et al. Four decades' dynamics of coastal blue carbon storage driven by land use/land cover transformation under natural and anthropogenic processes in the Yellow River Delta, China [J]. Science of the Total Environment, 2019, 655: 741‒750.
|
[57] |
Sasmito S D, Taillardat P, Clendenning J N, et al. Effect of land-use and land-cover change on mangrove blue carbon: A systematic review [J]. Global Change Biology, 2019, 25(12): 4291‒4302.
|
[58] |
McLeod E, Chmura G L, Bouillon S, et al. A blueprint for blue carbon: Toward an improved understanding of the role of vegetated coastal habitats in sequestering CO2 [J]. Frontiers in Ecology and the Environment, 2011, 9(10): 552‒560.
|
[59] |
Ouyang X G, Maher D T, Santos I R. Climate change decreases groundwater carbon discharges in global tidal wetlands [J]. One Earth, 2024, 7(8): 1442‒1455.
|
[60] |
Lovelock C E, Reef R. Variable impacts of climate change on blue carbon [J]. One Earth, 2020, 3(2): 195‒211.
|
[61] |
Lovelock C E, Cahoon D R, Friess D A, et al. The vulnerability of Indo-Pacific mangrove forests to sea-level rise [J]. Nature, 2015, 526(7574): 559‒563.
|
[62] |
田广红, 陈蕾伊, 彭少麟, 等. 外来红树植物无瓣海桑的入侵生态特征 [J]. 生态环境学报, 2010, 19(12): 3014‒3020.
Tian G H, Chen L Y, Peng S L, et al. Ecological traits of invasiveness of alien mangrove species Sonneratia apetala [J]. Ecology and Environmental Sciences, 2010, 19(12): 3014‒3020.
|
[63] |
Zhang X, Xiao X M, Wang X X, et al. Continual expansion of Spartina alterniflora in the temperate and subtropical coastal zones of China during 1985—2020 [J]. International Journal of Applied Earth Observation and Geoinformation, 2023, 117: 103192.
|
[64] |
Ouyang X G, Guo F, Lee S Y, et al. Mangrove restoration in China's tidal ecosystems [J]. Science, 2024, 385(6711): 836.
|
[65] |
Twomey A J, Nunez K, Carr J A, et al. Planning hydrological restoration of coastal wetlands: Key model considerations and solutions [J]. Science of the Total Environment, 2024, 915: 169881.
|
[66] |
冯翠翠, 龚语嫣, 叶观琼, 等. 全球海岸带国家蓝碳资源价值与类型研究 [J]. 应用海洋学学报, 2024, 43(1): 1‒11.
Feng C C, Gong Y Y, Ye G Q, et al. Value accounting and type analysis of coastal blue carbon resources in the world coastal countries [J]. Journal of Applied Oceanography, 2024, 43(1): 1‒11.
|
/
〈 |
|
〉 |