Land Use and Environmental Effects on Greenhouse Gas Emissions and Carbon Sequestration in Pacific Northwest Tidal Wetlands - NERRS/NSC(NERRS Science Collaborative)
Data Set (DS) | Office for Coastal Management (OCM)GUID: gov.noaa.nmfs.inport:78505 | Updated: March 4, 2026 | Published / External
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Summary
Short Citation
Office for Coastal Management, 2026: Land Use and Environmental Effects on Greenhouse Gas Emissions and Carbon Sequestration in Pacific Northwest Tidal Wetlands - NERRS/NSC(NERRS Science Collaborative), https://www.fisheries.noaa.gov/inport/item/78505.
Full Citation Examples
By bridging scientific inquiry and climate policy implementation, this project filled key regional blue carbon data gaps and expanded blue carbon data accessibility to facilitate the development of climate mitigation strategies.
The Project
Blue carbon refers to the carbon sequestered and stored in tidal wetlands such as tidal swamps, salt marshes, and seagrass meadows (and mangrove forests at tropical and subtropical latitudes). Blue carbon ecosystems are especially effective at capturing and storing carbon, often storing disproportionately large amounts of carbon on a per acre basis. However, tidal wetlands can also emit varying amounts of greenhouse gases (GHGs)-including carbon dioxide, methane, and nitrous oxide-which can reduce or offset their net climate benefit.
To fill regional data gaps associated with GHG emissions and carbon accumulation rates in Pacific Northwest (PNW) tidal wetlands and investigate how net ecosystem carbon balance differs among wetland types and land uses, a project team of PNW Blue Carbon Working Group members partnered with two National Estuarine Research Reserves and other collaborators to plan and implement this project. This project was built on partnerships developed through previous Science Collaborative efforts and addressed key data gaps and research priorities identified in those earlier projects (see: 2016 Collaborative Research and 2018 Catalyst Project).
Through new data collection across five estuaries and continued engagement with partners, the project team examined how net ecosystem carbon balance differs among wetland types and land uses, quantified blue carbon-ecosystem driver relationships, expanded the regional blue carbon database, and provided new data to the Smithsonian's Coastal Carbon Research Coordination Network working group to help validate a national methane emissions model.
Significant findings included:
Most project sites with salinity >2-3 ppt showed reduced methane fluxes.
Highest methane emissions occurred in wet pastures and restored marshes, especially those with low salinity and high water table.
Carbon accumulation rates were highest in restored marshes, somewhat lower in least-disturbed marshes and swamps, and lowest in diked pastures.
Carbon accumulation rates varied within wetland categories, primarily due to local differences in growing season water table level.
The Impact
The project along with the PNW Blue Carbon Working Group (Working Group) has played a pivotal role in advancing blue carbon science and facilitating the development of natural climate solutions policy, generating both direct and indirect impacts on climate mitigation efforts focused on the US Pacific Northwest. Through collaborative research, policy integration, tool development, and regional coordination, the Working Group has significantly influenced how scientists and policymakers incorporate coastal ecosystems into natural climate solutions strategies.
The project's impacts include:
Helped advance climate policy and secure funding for natural climate solutions (e.g. directly contributed to Oregon's Blue Carbon Inventory, making Oregon the first state to formally incorporate blue carbon into its state climate plan).
Expanded data accessibility by creating a centralized data repository that has facilitated information sharing among regional and international stakeholders.
Contributed to and addressed data gaps in decision-support tools to enhance climate action .
Strengthened international scientific networks by forging connections between U.S. and Canadian researchers.
Project data were central to upgrading and improving the accuracy of blue carbon tools under development for the region: a regional blue carbon calculator and blue carbon mapping for individual estuaries.
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
ESTUARINE WETLANDS
URLs
Child Items
| Type | Title |
|---|---|
| Entity | N/A |
Contact Information
Metadata Contact
Jeremy Cothran
jeremy.cothran@gmail.com
Extents
-124.344° W,
-124.26° E,
43.315° N,
43.263° S
South Slough, OR NERR
2020-10 - 2024-09
Item Identification
| Title: | Land Use and Environmental Effects on Greenhouse Gas Emissions and Carbon Sequestration in Pacific Northwest Tidal Wetlands - NERRS/NSC(NERRS Science Collaborative) |
|---|---|
| Status: | Completed |
| Creation Date: | Unknown |
| Revision Date: | Unknown |
| Publication Date: | 2024-09 |
| Abstract: |
By bridging scientific inquiry and climate policy implementation, this project filled key regional blue carbon data gaps and expanded blue carbon data accessibility to facilitate the development of climate mitigation strategies. The Project Blue carbon refers to the carbon sequestered and stored in tidal wetlands such as tidal swamps, salt marshes, and seagrass meadows (and mangrove forests at tropical and subtropical latitudes). Blue carbon ecosystems are especially effective at capturing and storing carbon, often storing disproportionately large amounts of carbon on a per acre basis. However, tidal wetlands can also emit varying amounts of greenhouse gases (GHGs)-including carbon dioxide, methane, and nitrous oxide-which can reduce or offset their net climate benefit. To fill regional data gaps associated with GHG emissions and carbon accumulation rates in Pacific Northwest (PNW) tidal wetlands and investigate how net ecosystem carbon balance differs among wetland types and land uses, a project team of PNW Blue Carbon Working Group members partnered with two National Estuarine Research Reserves and other collaborators to plan and implement this project. This project was built on partnerships developed through previous Science Collaborative efforts and addressed key data gaps and research priorities identified in those earlier projects (see: 2016 Collaborative Research and 2018 Catalyst Project). Through new data collection across five estuaries and continued engagement with partners, the project team examined how net ecosystem carbon balance differs among wetland types and land uses, quantified blue carbon-ecosystem driver relationships, expanded the regional blue carbon database, and provided new data to the Smithsonian's Coastal Carbon Research Coordination Network working group to help validate a national methane emissions model. Significant findings included: Most project sites with salinity >2-3 ppt showed reduced methane fluxes. Highest methane emissions occurred in wet pastures and restored marshes, especially those with low salinity and high water table. Carbon accumulation rates were highest in restored marshes, somewhat lower in least-disturbed marshes and swamps, and lowest in diked pastures. Carbon accumulation rates varied within wetland categories, primarily due to local differences in growing season water table level. |
| Purpose: |
The Impact The project along with the PNW Blue Carbon Working Group (Working Group) has played a pivotal role in advancing blue carbon science and facilitating the development of natural climate solutions policy, generating both direct and indirect impacts on climate mitigation efforts focused on the US Pacific Northwest. Through collaborative research, policy integration, tool development, and regional coordination, the Working Group has significantly influenced how scientists and policymakers incorporate coastal ecosystems into natural climate solutions strategies. The project's impacts include: Helped advance climate policy and secure funding for natural climate solutions (e.g. directly contributed to Oregon's Blue Carbon Inventory, making Oregon the first state to formally incorporate blue carbon into its state climate plan). Expanded data accessibility by creating a centralized data repository that has facilitated information sharing among regional and international stakeholders. Contributed to and addressed data gaps in decision-support tools to enhance climate action . Strengthened international scientific networks by forging connections between U.S. and Canadian researchers. Project data were central to upgrading and improving the accuracy of blue carbon tools under development for the region: a regional blue carbon calculator and blue carbon mapping for individual estuaries. |
| Supplemental Information: |
Project & Collaborative Lead: Craig Cornu, Institute for Applied Ecology, cecornu@gmail.com Technical Leads: Chris Janousek, Oregon State University, Christopher.Janousek@oregonstate.edu Scott Bridgham, University of Oregon, bridgham@uoregon.edu Heida Diefenderfer, University of Washington, heida.diefenderfer@pnnl.gov John Rybczyk, Western Washington University, john.rybczyk@wwu.edu
Partners: Pacific Northwest National Laboratory; Silvestrum Climate Associates LLC; U.S. Geological Survey; Smithsonian Environmental Research Center; The Nature Conservancy; Restore America's Estuaries; Tillamook Estuaries Partnership; Strategic Collaborations LLC; Terracarbon LLC; WA Department of Natural Resources; VERRA; Aster Global Environmental Solutions Inc; The Climate Trust |
Keywords
Theme Keywords
| Thesaurus | Keyword |
|---|---|
| Global Change Master Directory (GCMD) Science Keywords |
EARTH SCIENCE > BIOSPHERE > ECOSYSTEMS > AQUATIC ECOSYSTEMS > WETLANDS > ESTUARINE WETLANDS
|
| UNCONTROLLED | |
| None | accretion |
| None | carbon accumulation rate |
| None | elevation |
| None | greenhouse gas emissions |
| None | groundwater |
| None | PAR |
| None | plant composition |
| None | plant cover |
| None | RTK-GNSS |
| None | salinity |
| None | SET |
| None | soil temperature |
| None | soils |
| None | surface elevation change |
| None | temperature |
| None | tidal marsh |
| None | tidal swamp |
| None | tidal wetlands |
| None | vegetation |
Spatial Keywords
| Thesaurus | Keyword |
|---|---|
| UNCONTROLLED | |
| None | Pacific Northwest |
| None | South Slough, OR 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: | -124.344 | |
|---|---|---|
| E° Bound: | -124.26 | |
| N° Bound: | 43.315 | |
| S° Bound: | 43.263 | |
| Description |
South Slough, OR NERR |
|
Extent Group 1 / Time Frame 1
| Time Frame Type: | Range |
|---|---|
| Start: | 2020-10 |
| 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/Cornu20 |
|---|---|
| Distributor: | Office for Coastal Management (OCM) (2015 - Present) |
| File Name: | Cornu20 |
| File Type (Deprecated): | Multiple formats |
URLs
URL 1
| URL: | https://nerrssciencecollaborative.org/project/Cornu20 |
|---|---|
| Name: | Cornu20 |
| 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
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|
Type | Title |
|---|---|---|
| Entity | N/A |
Catalog Details
| Catalog Item ID: | 78505 |
|---|---|
| GUID: | gov.noaa.nmfs.inport:78505 |
| Metadata Record Created By: | Jeremy Cothran |
| Metadata Record Created: | 2025-11-03 19:34+0000 |
| Metadata Record Last Modified By: | SysAdmin InPortAdmin |
| Metadata Record Last Modified: | 2026-03-04 19:17+0000 |
| Metadata Record Published: | 2025-11-03 |
| 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 |
