A Long-Term Perspective on Tidal Wetland Restoration: Vegetation Development, Elevation Capital, and Carbon Sequestration in the Oldest Projects Along the U.S. West Coast - NERR...
Data Set (DS) | Office for Coastal Management (OCM)GUID: gov.noaa.nmfs.inport:78652 | Updated: March 4, 2026 | Published / External
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Summary
Short Citation
Office for Coastal Management, 2026: A Long-Term Perspective on Tidal Wetland Restoration: Vegetation Development, Elevation Capital, and Carbon Sequestration in the Oldest Projects Along the U.S. West Coast - NERRS/NSC(NERRS Science Collaborative), https://www.fisheries.noaa.gov/inport/item/78652.
Full Citation Examples
This large-scale, multi-site assessment of some of the oldest tidal marsh restoration projects in California, Oregon, and Washington provides insight into the development of marsh plant communities and blue carbon functions and demonstrates the value of long-term monitoring.
The Project
Tidal wetland restoration is an important tool to increase wetland area and enhance ecosystem services in estuaries. It often involves re-introduction of tidal flow to former tidal wetlands. Although millions of dollars have been spent during recent decades on tidal restoration along the West Coast of the United States, there has been less investment in tracking the success of restoration projects through time. While tidal wetlands may be monitored for either structure or function soon after restoration, many projects are no longer tracked after several years. Restoration practitioners, managers, scientists, and coastal policy makers need information on long-term project outcomes to best plan and design future projects and quantify restoration benefits.
Working with four West Coast reserves, regional blue carbon working groups, local, state and tribal organizations, and other partners, this project examined some of the oldest tidal marsh restoration projects in California, Oregon, and Washington to learn more about restoration outcomes. The team compared restored marshes (aged 22-62 years) with nearby least-disturbed reference sites. The team collected data on wetland structure, including attributes which form the basis for many of the valued functions and services of tidal wetlands. This large-scale, multi-site assessment allowed for a powerful regional analysis of restoration outcomes along the West Coast.
For elevation capital, the team found that restored sites were often lower in the tidal frame than reference marshes. However, restoration projects involving sediment addition tended to be closer to the elevations of reference marshes. Restored marsh vegetation communities resembled reference sites in part. Both types of marshes tended to have high plant cover dominated by native species, but differences in species composition often remained and many restored sites tended to have lower plant diversity. Finally, results showed that soil carbon accumulation rates in restored sites were as high on average as reference marshes, suggesting that restoring sites have recovered this important ecological function.
The project findings are helping fill important regional data gaps by providing a long-term perspective on âlessons-learnedâ from past restoration projects. Project outputs include peer-reviewed articles, new regional datasets, and a restoration brief designed to help restoration practitioners and coastal wetland managers. Management recommendations offered in project products may confirm existing restoration practices, while others may provide useful new insights based on newly collected and analyzed data. Although this study included only tidal marsh restoration sites from the US West Coast, many of these recommendations may be applicable to restoration in other regions, or of other tidal wetland types such as tidal swamps.
The Impact
Strengthened West Coast partnerships in wetland restoration and monitoring.
Deepened scientific understanding of long-term tidal marsh development, especially related to vegetation and blue carbon.
Demonstrated the value of long-term monitoring of restoration projects.
Developed management recommendations that can provide insight and context for upcoming restoration projects at partnering NERRs.
Data Access & Downloads
None
Cite this dataset when used as a source: NOAA retains the right to analyze, synthesize and publish summaries of the NERRS/NSC data. The NERRS/NSC retains the right to be fully credited for having collected and process the data. Following academic courtesy standards, the NERR site where the data were collected should be contacted and fully acknowledged in any subsequent publications in which any part of the data are used. The data enclosed within this package/transmission are only as accurate as the quality assurance and quality control procedures that are described in the associated metadata reporting statement allow. The user bears all responsibility for its subsequent use/misuse in any further analyses or comparisons. The Federal government does not assume liability to the Recipient or third persons, nor will the Federal government reimburse or indemnify the Recipient for its liability due to any losses resulting in any way from the use of this data. Requested citation format: NOAA National Estuarine Research Reserve System (NERRS) Science Collaborative(NSC).
Controlled Theme Keywords
CARBON SEQUESTRATION, SALT MARSH
URLs
Child Items
| Type | Title |
|---|---|
| Entity | N/A |
Contact Information
Metadata Contact
Jeremy Cothran
jeremy.cothran@gmail.com
Extents
-122.505° W,
-122.45° E,
38.014° N,
37.98° S
San Franciso Bay, CA NERR
-121.772° W,
-121.72° E,
36.843° N,
36.799° S
Elkhorn Slough, CA NERR
-124.344° W,
-124.265° E,
43.315° N,
43.263° S
South Slough, OR NERR
-117.14° W,
-117.09° E,
32.577° N,
32.532° S
Tijuana River, CA NERR
2022-10 - 2024-09
Item Identification
| Title: | A Long-Term Perspective on Tidal Wetland Restoration: Vegetation Development, Elevation Capital, and Carbon Sequestration in the Oldest Projects Along the U.S. West Coast - NERRS/NSC(NERRS Science Collaborative) |
|---|---|
| Status: | Completed |
| Creation Date: | 2024-09 |
| Revision Date: | Unknown |
| Publication Date: | Unknown |
| Abstract: |
This large-scale, multi-site assessment of some of the oldest tidal marsh restoration projects in California, Oregon, and Washington provides insight into the development of marsh plant communities and blue carbon functions and demonstrates the value of long-term monitoring. The Project Tidal wetland restoration is an important tool to increase wetland area and enhance ecosystem services in estuaries. It often involves re-introduction of tidal flow to former tidal wetlands. Although millions of dollars have been spent during recent decades on tidal restoration along the West Coast of the United States, there has been less investment in tracking the success of restoration projects through time. While tidal wetlands may be monitored for either structure or function soon after restoration, many projects are no longer tracked after several years. Restoration practitioners, managers, scientists, and coastal policy makers need information on long-term project outcomes to best plan and design future projects and quantify restoration benefits. Working with four West Coast reserves, regional blue carbon working groups, local, state and tribal organizations, and other partners, this project examined some of the oldest tidal marsh restoration projects in California, Oregon, and Washington to learn more about restoration outcomes. The team compared restored marshes (aged 22-62 years) with nearby least-disturbed reference sites. The team collected data on wetland structure, including attributes which form the basis for many of the valued functions and services of tidal wetlands. This large-scale, multi-site assessment allowed for a powerful regional analysis of restoration outcomes along the West Coast. For elevation capital, the team found that restored sites were often lower in the tidal frame than reference marshes. However, restoration projects involving sediment addition tended to be closer to the elevations of reference marshes. Restored marsh vegetation communities resembled reference sites in part. Both types of marshes tended to have high plant cover dominated by native species, but differences in species composition often remained and many restored sites tended to have lower plant diversity. Finally, results showed that soil carbon accumulation rates in restored sites were as high on average as reference marshes, suggesting that restoring sites have recovered this important ecological function. The project findings are helping fill important regional data gaps by providing a long-term perspective on âlessons-learnedâ from past restoration projects. Project outputs include peer-reviewed articles, new regional datasets, and a restoration brief designed to help restoration practitioners and coastal wetland managers. Management recommendations offered in project products may confirm existing restoration practices, while others may provide useful new insights based on newly collected and analyzed data. Although this study included only tidal marsh restoration sites from the US West Coast, many of these recommendations may be applicable to restoration in other regions, or of other tidal wetland types such as tidal swamps. |
| Purpose: |
The Impact Strengthened West Coast partnerships in wetland restoration and monitoring. Deepened scientific understanding of long-term tidal marsh development, especially related to vegetation and blue carbon. Demonstrated the value of long-term monitoring of restoration projects. Developed management recommendations that can provide insight and context for upcoming restoration projects at partnering NERRs. |
| Supplemental Information: |
Project Lead: Christopher Janousek, Oregon State University, janousec@oregonstate.edu Technical Lead: John Rybczyk, Western Washington University, rybczyj2@wwu.edu Collaborative Lead: Jenni Schmitt, South Slough NERR, jenni.schmitt@dsl.oregon.gov Partners: Western Washington University; Institute for Applied Ecology; Pacific Northwest Blue Carbon Working Group |
Keywords
Theme Keywords
| Thesaurus | Keyword |
|---|---|
| Global Change Master Directory (GCMD) Science Keywords |
EARTH SCIENCE > BIOSPHERE > ECOLOGICAL DYNAMICS > ECOSYSTEM FUNCTIONS > CARBON SEQUESTRATION
|
| Global Change Master Directory (GCMD) Science Keywords |
EARTH SCIENCE > BIOSPHERE > ECOSYSTEMS > MARINE ECOSYSTEMS > COASTAL > SALT MARSH
|
| UNCONTROLLED | |
| None | ; remote sensing; |
| None | accretion |
| None | blue carbon |
| None | bulk density |
| None | carbon density |
| None | carbon sequestration |
| None | elevation |
| None | elevation capital |
| None | macroalgae |
| None | NDVI |
| None | plant cover |
| None | restoration |
| None | salt marsh |
| None | soil organic content |
| None | soil salinity |
| None | species richness |
| None | tidal datums |
| None | tidal marsh |
| None | tidal wetlands |
| None | UVVR |
| None | vegetation |
| None | water level |
| None | water temperature |
Spatial Keywords
| Thesaurus | Keyword |
|---|---|
| UNCONTROLLED | |
| None | Elkhorn Slough, CA NERR |
| None | San Francisco Bay, CA NERR |
| None | South Slough, OR NERR |
| None | Tijuana River, CA NERR |
Data Set Information
| Data Set Scope Code: | Data Set |
|---|---|
| Maintenance Frequency: | As Needed |
| Distribution Liability: |
The distributor does not assume liability. |
Support Roles
Data Steward
| Date Effective From: | 2015 |
|---|---|
| Date Effective To: | |
| Contact (Organization): | Office for Coastal Management (OCM) |
| Address: |
2234 South Hobson Avenue Charleston, SC 29405-2413 |
| ROR: | https://ror.org/05v14bq57 |
| URL: | https://www.coast.noaa.gov/ |
Distributor
| Date Effective From: | 2015 |
|---|---|
| Date Effective To: | |
| Contact (Organization): | Office for Coastal Management (OCM) |
| Address: |
2234 South Hobson Avenue Charleston, SC 29405-2413 |
| ROR: | https://ror.org/05v14bq57 |
| URL: | https://www.coast.noaa.gov/ |
Metadata Contact
| Date Effective From: | 2017-10-31 |
|---|---|
| Date Effective To: | |
| Contact (Person): | Cothran, Jeremy |
| Address: | |
| Email Address: | jeremy.cothran@gmail.com |
Extents
| Currentness Reference: | Ground Condition |
|---|
Extent Group 1
Extent Group 1 / Geographic Area 1
| W° Bound: | -122.505 | |
|---|---|---|
| E° Bound: | -122.45 | |
| N° Bound: | 38.014 | |
| S° Bound: | 37.98 | |
| Description |
San Franciso Bay, CA NERR |
|
Extent Group 1 / Geographic Area 2
| W° Bound: | -121.772 | |
|---|---|---|
| E° Bound: | -121.72 | |
| N° Bound: | 36.843 | |
| S° Bound: | 36.799 | |
| Description |
Elkhorn Slough, CA NERR |
|
Extent Group 1 / Geographic Area 3
| W° Bound: | -124.344 | |
|---|---|---|
| E° Bound: | -124.265 | |
| N° Bound: | 43.315 | |
| S° Bound: | 43.263 | |
| Description |
South Slough, OR NERR |
|
Extent Group 1 / Geographic Area 4
| W° Bound: | -117.14 | |
|---|---|---|
| E° Bound: | -117.09 | |
| N° Bound: | 32.577 | |
| S° Bound: | 32.532 | |
| Description |
Tijuana River, CA NERR |
|
Extent Group 1 / Time Frame 1
| Time Frame Type: | Range |
|---|---|
| Start: | 2022-10 |
| End: | 2024-09 |
Access Information
| Security Class: | Unclassified |
|---|---|
| Data Access Constraints: |
None |
| Data Use Constraints: |
Cite this dataset when used as a source: NOAA retains the right to analyze, synthesize and publish summaries of the NERRS/NSC data. The NERRS/NSC retains the right to be fully credited for having collected and process the data. Following academic courtesy standards, the NERR site where the data were collected should be contacted and fully acknowledged in any subsequent publications in which any part of the data are used. The data enclosed within this package/transmission are only as accurate as the quality assurance and quality control procedures that are described in the associated metadata reporting statement allow. The user bears all responsibility for its subsequent use/misuse in any further analyses or comparisons. The Federal government does not assume liability to the Recipient or third persons, nor will the Federal government reimburse or indemnify the Recipient for its liability due to any losses resulting in any way from the use of this data. Requested citation format: NOAA National Estuarine Research Reserve System (NERRS) Science Collaborative(NSC). |
Distribution Information
Distribution 1
| Download URL: | https://nerrssciencecollaborative.org/project/Janousek22 |
|---|---|
| Distributor: | Office for Coastal Management (OCM) (2015 - Present) |
| File Name: | Janousek22 |
| File Type (Deprecated): | Multiple formats |
URLs
URL 1
| URL: | https://nerrssciencecollaborative.org/project/Janousek22 |
|---|---|
| Name: | Janousek22 |
| URL Type: |
Online Resource
|
Data Quality
| Representativeness: |
N/A |
|---|---|
| Quality Control Procedures Employed: |
This information is detailed within the project links. |
Lineage
| Lineage Statement: |
This information is detailed within the project links. |
|---|
Sources
N/A
Process Steps
Process Step 1
| Description: |
N/A |
|---|---|
| Process Contact: | Office for Coastal Management (OCM) |
| ROR: | https://ror.org/05v14bq57 |
Child Items
Rubric scores updated every 15m
|
|
Type | Title |
|---|---|---|
| Entity | N/A |
Catalog Details
| Catalog Item ID: | 78652 |
|---|---|
| GUID: | gov.noaa.nmfs.inport:78652 |
| Metadata Record Created By: | Jeremy Cothran |
| Metadata Record Created: | 2025-11-21 19:16+0000 |
| Metadata Record Last Modified By: | SysAdmin InPortAdmin |
| Metadata Record Last Modified: | 2026-03-04 19:17+0000 |
| Metadata Record Published: | 2025-11-21 |
| Owner Org: | OCM |
| Metadata Publication Status: | Published Externally |
| Do Not Publish?: | N |
| Metadata Last Review Date: | 2019-11-08 |
| Metadata Review Frequency: | 3 Years |
| Metadata Next Review Date: | 2022-11-08 |
