This document summarizes stakeholder information collected by the Kachemak Bay Reserve to gain insight into community priorities related to climate adaptation.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This project overview describes a 2016 Science Transfer project that is supporting the development of new, innovate visitor displays at the Guana Tolomato Matanzas, Mission-Aransas, and Delaware National Estuarine Research Reserves.
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This project overview describes a 2015 Science Transfer project that produced tools, graphical support, and training for research staff at the Mid-Atlantic reserves to better utilize reserve monitoring data.
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This project overview describes a 2015 Science Transfer project at the Tijuana River Reserve that used existing knowledge and gathered new data to improve the health and management of lagoons in southern California.
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This project overview describes a 2015 Science Transfer project that used scenario planning and the best available science to facilitate local dialogue addressing how climate change may impact the Kenai Peninsula, Alaska.
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This project overview describes a 2017 Collaborative Research project that tested the effectiveness of thin-layer sediment placement as a marsh adaptation strategy.
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Eleven projects have been recommended for funding by the National Oceanic and Atmospheric Administration ’s National Estuarine Research Reserve System (NERRS) Science Collaborative.
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These slides summarize a webinar given by Susi Moser on January 10, 2018 on the Successful Adaptation Indicators and Metrics project, which focuses on measuring the success of climate adaptation.
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These slides summarize a webinar given by Danielle Boudreau and Syverine Bentz on December 20, 2017, on how they used scenario planning to overcome uncertainty around barriers to climate adaptation in southcentral Alaska.
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This 2017 article appeared in the journal Ecology, and presents findings from a study assessing the individual and synergistic effects of air temperature and salinity on Olympia oyster mortality across temporal patterns that accurately reflect the natural environment.