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Resources

Resources

A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.

Displaying 1 - 8 of 8
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With funding from the NERRS Science Collaborative, scientists from 12 biogeographically diverse Reserves compared fluorescence measurements taken by the YSI EXO TAL sensor to extracted chlorophyll concentrations processed in the lab.

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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.

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Poster presented at the November 2020 NERRS Annual Meeting - Silas Tanner Poster presented at the February 2021 GTMNERR State of the Reserve Sympos
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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 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 GitHub Repository houses the statistical code, a model interface and example datasets to enable others to calcuate the retention capacity of a wetland.

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This infographic illustrates the role wetlands can play in removing total phosphorus from the water and ultimately help improve water quality and reduce Harmful Algal Blooms in Lake Erie. The infographic describes how the researchers estimated long-term phosphorus retention capacity for different types of wetlands in Ohio and provides suggestions as to how different audiences might be able to contribute to this effort.

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In collaboration with several local partners, Old Woman Creek National Estuarine Research Reserve conducted a study aimed at understanding different wetlands' long-term capacity for removing nutrients. Together, they produced this story map that demonstrates the importance of wetland services, explains different types of wetlands and management priorities, and summarizes how the team estimated the long-term phosphorus retention capacities of a variety of wetland types based on samples collected from sites in Ohio, including the Lake Erie watershed.