These factsheets provide information on wetland plants that may be used for shoreline restoration projects. Each plant factsheet includes pictures, listed environmental tolerances, informational websites, and helpful tips for planting.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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James Arnott's dissertation contributes new, more extensive empirical data and analysis about the drivers and mechanisms of co-production with the aim to better understand how to accelerate the development of actionable sustainability science.
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The ocean is inextricably linked to human societies. Climate change and its associated impacts to the aquatic environment pose problems for human communities as well.
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This Master's thesis examines sediment accumulation in two disparate coastal environments, including the Hudson River Reserve, as part of a larger research project about marsh formation and resilience, sediment movement, and the potential impact of dam removals.
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This thesis represents the first study to examine a full individual energy budget for the triploid Eastern oyster, Crassostrea virginica, with implications for shellfish aquaculture in the southeastern United States.
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This experimental study by Ada Bersoza Hernández and Christine Angelini informs the design of more durable wooden stabilization structures in coastal environments.
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This is a Senior Honors Thesis written by Kinsey Fischer, an advisee of Rachel Noble. This study was conducted as part of a 2016 - 2020 collaborative research project about stormwater impacts in Beaufort, North Carolina.
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This 2019 report describes the findings of a University of Michigan SEAS Master's project which provides insights for KBNERR regarding current ecosystem services valued in Kachemak Bay using a socio-cultural, place-based, ecosystem services framework.
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This paper, published in Coastal Management, reviews how the National Estuarine Research Reserve System ’s funding program evolved over the past two decades to improve how researchers and users of research work together to increase the uptake of science to achieve resource management and conservation goals.
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This article, published in Sustainability in 2018, characterizes the boat wake climate in Florida's Intracoastal Waterway, assesses the area's bathymetry, and anticipates the effects of experimental living shorelines (natural breakwall and oyster restoration structures) on facilitating sediment deposition and slowing vegetation retreat.