Thin-layer sediment placement (TLP) is a promising management tool for enhancing tidal marsh resilience to rising seas.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
Displaying 1 - 5 of 5 |
Journal Article
Abstract
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Keywords: thin-layer sediment, wetland resilience
Reserves: Chesapeake Bay, MD, Chesapeake Bay, VA, Elkhorn Slough, CA, Great Bay, NH, Narragansett Bay, RI, North Carolina, San Francisco Bay, CA, Waquoit Bay, MA
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Journal Article
This article, which appeared in Science of The Total Environment, describes a study assessing the extent and causes of potential fecal contamination in the frequently-visited Rachel Carson Reserve, NC.
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Keywords: stormwater, runoff, nutrient pollution, pathogen
Reserves: North Carolina
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Collections
This collection features climate resilience and adaptation work completed by project teams from 2015-2018. The collection includes a detailed management brief narrative, an infographic showing how the interconnected nature of the NERRS facilitates collective learning and accelerated action, and a webinar recording from a panel discussion on September 9, 2019.
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Keywords: climate resilience, climate adaptation, science usability
Reserves: Chesapeake Bay, MD, Delaware, Great Bay, NH, Hudson River, NY, Jacques Cousteau, NJ, Kachemak Bay, AK, Lake Superior, WI, Narragansett Bay, RI, North Inlet-Winyah Bay, SC, Old Woman Creek, OH, San Francisco Bay, CA, Tijuana River, CA, Waquoit Bay, MA, Weeks Bay, AL, Wells, ME
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Collections
This collection features living shorelines work completed by project teams from 2015-2019. The collection includes a detailed management brief narrative, an infographic showing different shoreline stabilization strategies and how they vary across locations in order to suit the conditions present, and a webinar recording from a panel discussion on April 11, 2019.
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Keywords: living shoreline, oyster, gabion-break, shoreline management, ecosystem services, resilience, restoration
Reserves: ACE Basin, SC, Chesapeake Bay, MD, Guana Tolomato Matanzas, FL, Hudson River, NY, North Inlet-Winyah Bay, SC, Weeks Bay, AL
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Journal Article
This paper, published in Biological Conservation, describes an innovative approach developed by the NERRS to evaluate the ability of tidal marshes to thrive as sea levels rise.
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Keywords: Sentinel Site, data synthesis, wetland resilience
Reserves: ACE Basin, SC, Chesapeake Bay, MD, Chesapeake Bay, VA, Delaware, Elkhorn Slough, CA, Grand Bay, MS, Great Bay, NH, Hudson River, NY, Narragansett Bay, RI, North Carolina, North Inlet-Winyah Bay, SC, Padilla Bay, WA, San Francisco Bay, CA, South Slough, OR, Tijuana River, CA, Waquoit Bay, MA