These high school STEM curriculum resources, created as part of the project Bringing Wetlands to Market Phase 2: Expanding Blue Carbon Implementation, examine the relationship between climate change impacts and carbon storage in New England salt marsh.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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The Pacific Northwest Blue Carbon Working Group has been bringing together wetland managers, resource managers and decision makers in Washington and Oregon to advance coastal blue carbon since 2014.
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These presentations from the Blue Carbon in Our Backyard conference share results from the second phase of the Bringing Wetlands to Market project. Presenters offer guidance for managers and policymakers to advance blue carbon research and application in New England and beyond.
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This market feasibility assessment evaluates the potential to monetize the greenhouse gas benefits of a project to restore tidal flows to former salt marsh in Massachusetts. It was conducted as part of the Bringing Wetlands to Market project.
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This user-friendly tool predicts greenhouse gas fluxes and potential carbon storage in coastal wetlands in the northeastern United States. It was developed as part of the Bringing Wetlands to Market project.
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These GIS-generated maps show peatlands by major land owners in the Kenai Lowlands, Alaska region.
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This protocol is intended to enable wetland managers, conservationists, and other practitioners to monitor and estimate a wetland ’s long-term Total Phosphorus (TP) retention capacity threshold.
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Coastal wetlands, including tidal wetlands, seagrass beds and mangroves, are some of the most economically important yet most vulnerable ecosystems globally.
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In these two February 2020 webinars, project lead Kim Cressman and her team provide an introduction to newly developed tools for analyzing and communicating about Surface Elevation Table (SET) data.
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This infographic illustrates the role wetlands can play in removing total phosphorus from the water and ultimately help improve water quality and reduce Harmful Algal Blooms in Lake Erie. The infographic describes how the researchers estimated long-term phosphorus retention capacity for different types of wetlands in Ohio and provides suggestions as to how different audiences might be able to contribute to this effort.