This decision support tool, developed as part of a 2017 collaborative research project, allows users to select different combinations of tidal range, suspended sediment, ditch density, and sea-level rise variables and visualize predicted outcomes over different time frames.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This curriculum was developed as part of a 2018 Science Transfer project to share knowledge and lessons learned about managing conflict in collaborative science.
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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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This document summarizes a December 2017 workshop hosted by Mission-Aransas Reserve that explored ways to generate a return on investment from wetland preservation and restoration projects in Texas.
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This tool is a novel approach to compare the resilience of different marshes to sea level rise.
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These process agendas provide a better understanding of how the CCVATCH tool may be applied over the course of one or multiple days by an assessment team.
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This model is a power-law based model developed by using data for four different wetlands in Waquoit Bay and Great Pond estuaries, MA. It was developed as part of a 2011 Collaborative Research project, "Bringing Wetlands to Market in Massachusetts."
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This document helps guide coastal and land managers in understanding the ways by which coastal blue carbon can help achieve coastal management goals.
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This document outlines procedures to use the Methodology for Tidal Wetland and Seagrass Restoration, approved by the Verified Carbon Standard, to estimate net greenhouse gas emission reductions and removals resulting from restoration of coastal wetlands.