Standardized protocols for sensor-based chlorophyll monitoring are now available for use by staff around the system to implement high frequency chlorophyll monitoring at their reserves.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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Recommendations for the NERRS SWMP, summarizing outputs in an archivable format deemed useful by end users (NERRS research staff).
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Project Lead Nikki Dix (Guana Tolomato Matanzas National Estuarine Research Reserve) gives a 5-minute introduction to "Refining Techniques for High-frequency Monitoring of Chlorophyll Alpha in the NERRS," a catalyst project funded in 2020 by the NERRS Science Collaborative.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the April 2022 webinar "Refining Techniques for High-Frequency Monitoring of Chlorophyll."
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This story map describes a 2010 Collaborative Research project spearheaded by North Inlet-Winyah Bay Reserve that investigated how swashes collect, transform, and export the nutrients and organic matter that fuel hypoxia along coastal South Carolina.
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These resources are from workshops, focus groups, and surveys that a team from North Inlet-Winyah Bay and ACE Basin reserves used to scope their 2012 Collaborative Research project, "Advancing Low Impact Development in Coastal South Carolina."
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These resources contain information about stakeholder workshops hosted by the 2012 Collaborative Research project team, "Advancing Low Impact Development in Coastal South Carolina." These resources include meeting agendas, presentations, meeting notes, and other materials.
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This spreadsheet was developed by a 2012 Collaborative Research team to help property owners in coastal South Carolina calculate rules for stormwater treatment and runoff reductions from their sites based on statewide rules and regulations.
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This spreadsheet was designed by a 2012 Collaborative Research team to help property owners and designers properly size rainwater harvesting systems.