Estimating the aboveground biomass and carbon stocks of tall shrubs in a prerestoration degraded salt marsh

Wetlands play a vital role in Earth's carbon cycle and provide important ecosystem services. Their ability to perform their roles can be compromised by human activities that destroy or impair their functioning. The restoration of degraded wetlands may allow carbon cycle functioning, as well as...

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Published inRestoration ecology Vol. 31; no. 1
Main Authors Fouse, Jacqualyn A., Eagle, Meagan J., Kroeger, Kevin D., Smith, Timothy P.
Format Journal Article
LanguageEnglish
Published Malden, USA Wiley Periodicals, Inc 01.01.2023
Blackwell Publishing Ltd
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Abstract Wetlands play a vital role in Earth's carbon cycle and provide important ecosystem services. Their ability to perform their roles can be compromised by human activities that destroy or impair their functioning. The restoration of degraded wetlands may allow carbon cycle functioning, as well as other services, to be recovered. Predicting the potential outcomes from any restoration project requires upfront consideration, including via modeling possible changes in carbon stocks. In this study, we quantified the carbon stocks in tall shrub vegetation proliferating in a degraded salt marsh that is currently the subject of an extensive restoration project. We produced allometric models to estimate biomass and carbon stocks for three tall shrub species, which, along with other freshwater and upland species in the area, will die with continued restoration. Therefore, estimating the potential for carbon losses in biomass is important. We also developed a means of estimating carbon stocks in other nontree plants in the estuary area. Useful equations for estimating the biomass of tall shrubs are limited in general and lacking for degraded systems. Our study adds to the literature on carbon stocks in shrub species and fills a data gap for degraded ecosystems. It also contributes to the broader carbon feasibility study of the aforementioned restoration project that was designed to predict the overall net impact of the project on greenhouse gas emissions in the ecosystem.
AbstractList Wetlands play a vital role in Earth's carbon cycle and provide important ecosystem services. Their ability to perform their roles can be compromised by human activities that destroy or impair their functioning. The restoration of degraded wetlands may allow carbon cycle functioning, as well as other services, to be recovered. Predicting the potential outcomes from any restoration project requires upfront consideration, including via modeling possible changes in carbon stocks. In this study, we quantified the carbon stocks in tall shrub vegetation proliferating in a degraded salt marsh that is currently the subject of an extensive restoration project. We produced allometric models to estimate biomass and carbon stocks for three tall shrub species, which, along with other freshwater and upland species in the area, will die with continued restoration. Therefore, estimating the potential for carbon losses in biomass is important. We also developed a means of estimating carbon stocks in other nontree plants in the estuary area. Useful equations for estimating the biomass of tall shrubs are limited in general and lacking for degraded systems. Our study adds to the literature on carbon stocks in shrub species and fills a data gap for degraded ecosystems. It also contributes to the broader carbon feasibility study of the aforementioned restoration project that was designed to predict the overall net impact of the project on greenhouse gas emissions in the ecosystem.
Author Smith, Timothy P.
Fouse, Jacqualyn A.
Kroeger, Kevin D.
Eagle, Meagan J.
Author_xml – sequence: 1
  givenname: Jacqualyn A.
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  surname: Fouse
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  givenname: Timothy P.
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  organization: U.S. National Park Service
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Notes Coordinating Editor: Virginia Matzek
Author contributions: JAF, TPS conceived and designed the study; JAF performed the field work, developed and conducted statistical analyses; JAF, MJE, KDK, TPS analyzed the data; JAF, MJE, KDK, TPS wrote and edited the manuscript.
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Snippet Wetlands play a vital role in Earth's carbon cycle and provide important ecosystem services. Their ability to perform their roles can be compromised by human...
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SubjectTerms aboveground biomass
Allometry
Biomass
Carbon
carbon changes
Carbon cycle
Degradation
degraded estuary
ecological restoration
Ecosystem degradation
Ecosystem services
Ecosystems
Emissions
Environmental restoration
Estuaries
Estuarine dynamics
Feasibility studies
Freshwater
Greenhouse gases
highlands
Human influences
humans
Inland water environment
net greenhouse gas impact
Restoration
Salt marshes
Saltmarshes
Shrubs
Stocks
tall shrub
vegetation
wetland restoration
Wetlands
Title Estimating the aboveground biomass and carbon stocks of tall shrubs in a prerestoration degraded salt marsh
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