Maximizing blue carbon stocks through saltmarsh restoration

被引:7
作者
McMahon, Lucy [1 ]
Ladd, Cai J. T. [2 ]
Burden, Annette [3 ]
Garrett, Ed [1 ]
Redeker, Kelly R. [4 ]
Lawrence, Peter [5 ]
Gehrels, Roland [1 ]
机构
[1] Univ York, Dept Environm & Geog, Wentworth Way, York, England
[2] Univ Glasgow, Sch Geog & Earth Sci, Glasgow, Scotland
[3] UK Ctr Ecol & Hydrol, Bangor, Wales
[4] Univ York, Dept Biol, Wentworth Way, York, England
[5] Univ Cumbria, Inst Sci & Environm, Ambleside, England
基金
英国自然环境研究理事会;
关键词
blue carbon; saltmarsh habitat; ecosystem restoration; relative tidal height; vegetation zonation; MANAGED REALIGNMENT; ATRIPLEX-PORTULACOIDES; COASTAL ECOSYSTEMS; PLANT DIVERSITY; TIDAL MARSHES; SOIL; VEGETATION; ESTUARY; STORAGE; SEQUESTRATION;
D O I
10.3389/fmars.2023.1106607
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Political discourse around coastal wetland restoration and blue carbon management strategies has increased in the past decade, yet carbon storage has neither been a reason for restoration, nor a criterion to measure the success of current saltmarsh restoration schemes in the UK. To maximise climate change mitigation through saltmarsh restoration, knowledge on the key drivers of carbon stock variability is required. We use restored saltmarshes of similar age, paired with adjacent natural marshes as references, to identify drivers of carbon stocks following managed realignment within an estuary in southeastern England. From surficial soil cores (top 30 cm), we measured carbon stock alongside environmental characteristics. Carbon stock between natural and restored sites were similar after similar to 30 years when restored sites were above mean high water neap (MHWN) tidal levels. Elevated marsh platforms likely provide suitable conditions for the development of mature plant communities associated with greater capture and production of organic carbon. The restored site at Tollesbury (Essex, UK) had a 2-fold lower carbon stock than other restored sites in the estuary. We attribute this to the site's low position in the tidal frame, below MHWN tidal levels, coupled with low sediment supply and the dominance of pioneer plant communities. As blue carbon is anticipated to become an important facet of saltmarsh restoration, we recommend that sites above MHWN tidal levels are selected for managed realignment or that preference is given to coastlines with a high sediment supply that may rapidly elevate realignment sites above MHWN. Alternatively, elevation could be artificially raised prior to realignment. Restoration schemes aiming to maximise climate change mitigation should also encourage the establishment of key plant species (e.g., Atriplex portulacoides in our study) to enhance carbon stocks. However, the overall goal of restoration ought to be carefully considered as trade-offs in ecosystem services may ensue if restoration for climate change mitigation alone is pursued.
引用
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页数:16
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共 120 条
[41]  
Garbutt R. A., 2008, Managed realignment at Tollesbury Centre Ecol. Hydrology Rep, P47
[42]   Monitoring the development of intertidal habitats on former agricultural land after the managed realignment of coastal defences at Tollesbury, Essex, UK [J].
Garbutt, RA ;
Reading, CJ ;
Wolters, M ;
Gray, AJ ;
Rothery, P .
MARINE POLLUTION BULLETIN, 2006, 53 (1-4) :155-164
[43]   Factors influencing the organic carbon pools in tidal marsh soils of the Elbe estuary (Germany) [J].
Hansen, Kerstin ;
Butzeck, Christian ;
Eschenbach, Annette ;
Groengroeft, Alexander ;
Jensen, Kai ;
Pfeiffer, Eva-Maria .
JOURNAL OF SOILS AND SEDIMENTS, 2017, 17 (01) :47-60
[44]   No Detectable Broad-Scale Effect of Livestock Grazing on Soil Blue-Carbon Stock in Salt Marshes [J].
Harvey, Rachel J. ;
Garbutt, Angus ;
Hawkins, Stephen J. ;
Skov, Martin W. .
FRONTIERS IN ECOLOGY AND EVOLUTION, 2019, 7
[45]   Dynamics of sediment carbon stocks across intertidal wetland habitats of Moreton Bay, Australia [J].
Hayes, Matthew A. ;
Jesse, Amber ;
Hawke, Bruce ;
Baldock, Jeff ;
Tabet, Basam ;
Lockington, David ;
Lovelock, Catherine E. .
GLOBAL CHANGE BIOLOGY, 2017, 23 (10) :4222-4234
[46]  
Howard J., 2014, COASTAL BLUE CARBON
[47]   Clarifying the role of coastal and marine systems in climate mitigation [J].
Howard, Jennifer ;
Sutton-Grier, Ariana ;
Herr, Dorothee ;
Kleypas, Joan ;
Landis, Emily ;
Mcleod, Elizabeth ;
Pidgeon, Emily ;
Simpson, Stefanie .
FRONTIERS IN ECOLOGY AND THE ENVIRONMENT, 2017, 15 (01) :42-50
[48]  
Hudson R., 2021, SALTMARSH RESTORATIO
[49]   Carbon sequestration in temperate grassland ecosystems and the influence of management, climate and elevated CO2 [J].
Jones, MB ;
Donnelly, A .
NEW PHYTOLOGIST, 2004, 164 (03) :423-439
[50]   Sediment characteristics of a restored saltmarsh and mudflat in a managed realignment scheme in Southeast England [J].
Kadiri, Margaret ;
Spencer, Kate L. ;
Heppell, Catherine M. ;
Fletcher, Paul .
HYDROBIOLOGIA, 2011, 672 (01) :79-89