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fawda123 committed May 10, 2024
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2 changes: 1 addition & 1 deletion .nojekyll
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26 changes: 16 additions & 10 deletions docs/communities/cc1.html

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<html xmlns="http://www.w3.org/1999/xhtml" lang="en" xml:lang="en"><head>

<meta charset="utf-8">
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<meta name="generator" content="quarto-1.4.549">

<meta name="viewport" content="width=device-width, initial-scale=1.0, user-scalable=yes">

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<script src="../../site_libs/react-18.2.0/react.min.js"></script>
<script src="../../site_libs/react-18.2.0/react-dom.min.js"></script>
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</section>
</div>
<div id="more">
<div class="img-fluid quarto-figure quarto-figure-center">
<div class="quarto-figure quarto-figure-center">
<figure class="figure">
<p><img src="../../img/CC-2-1_Feature Photo_seagrass with blenny.jpg" class="img-fluid figure-img"></p>
<figcaption>Seagrasses may provide an important marine refuge by buffering the impacts of ocean acidification for fish and shellfish. SOURCE: Jimmy White</figcaption>
Expand All @@ -281,7 +282,7 @@ <h3 data-anchor-id="background">BACKGROUND:</h3>
<p>Long-term water quality monitoring data from the Environmental Protection Commission of Hillsborough County (EPCHC) indicates that pH in the Tampa Bay estuary has actually steadily increased (become more basic) since the 1980s, as local management strategies improved water quality and seagrass abundance. Seagrasses are expected to benefit from elevated atmospheric carbon dioxide through increased primary productivity, and photosynthesis can increase seawater pH and availability of the mineral calcium carbonate. Thus, seagrasses may provide an ocean acidification refuge to organisms closely associated with seagrass beds, particularly shellfish and other economically important fish species. A TBERF funded study by Eckerd College and USGS found that seagrass may buffer impacts of ocean acidification on crabs in pH ranges from 7.5-8.2.</p>
<div class="cell" data-layout-align="center">
<div class="cell-output-display">
<div class="img-fluid quarto-figure quarto-figure-center">
<div class="quarto-figure quarto-figure-center">
<figure class="figure">
<p><img src="cc2_files/figure-html/unnamed-chunk-2-1.png" class="img-fluid quarto-figure quarto-figure-center figure-img" style="width:85.0%"></p>
<figcaption>Green bars represent seagrass acreage as measured by the right axis; points represent average mid-depth pH as measured on the left axis. SOURCE: EPCHC and SWFWMD</figcaption>
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</div>
</div>
<p>Through December 2022, TBEP and the US Geological Survey continued a collaborative project to monitor carbon system parameters within the Tampa Bay estuary and nearshore Gulf. The program examined the extent to which seagrass recovery has helped buffer the chemical impacts of ocean acidification. Sampling in seagrass beds and adjacent bare substrates evaluated the role of seagrass beds in maintaining and elevating pH, spatial and temporal differences within the estuary, as well as the effects of inflow and circulation. The site near Port Manatee continues to be maintained by USGS without further support from the TBEP Work Plan.</p>
<div class="img-fluid quarto-figure quarto-figure-center">
<div class="quarto-figure quarto-figure-center">
<figure class="figure">
<p><img src="../../img/CC-2-2_Photo_Oysters on shoreline.jpg" class="img-fluid figure-img"></p>
<figcaption>Increasing acidification of coastal waters can affect the viability of oysters and other organisms that produce calcium carbonate for their shells. SOURCE: Nanette O’Hara</figcaption>
Expand All @@ -305,8 +306,8 @@ <h3 data-anchor-id="background">BACKGROUND:</h3>
<h3 data-anchor-id="activities">ACTIVITIES</h3>
<div class="cell">
<div class="cell-output-display">
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<script type="application/json" data-for="htmlwidget-e0f5067e01ec2f772992">{"x":{"tag":{"name":"Reactable","attribs":{"data":{"Activity":["CC-2.1","CC-2.2","CC-2.3"]},"columns":[{"id":".details","name":"","type":null,"sortable":false,"resizable":false,"filterable":false,"searchable":false,"width":45,"align":"center","details":[{"name":"div","attribs":{},"children":[{"name":"h3","attribs":{},"children":["Description"]},{"name":"p","attribs":{},"children":["Improve understanding of ocean acidification levels in Tampa Bay. Establish at least one long term monitoring station within the Tampa Bay estuary and one directly outside the bay to track changes in Tampa Bay estuarine and Gulf of Mexico pH conditions. 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</div>
</div>
</section>
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</section>
<section id="endnotes" class="level4">
<h4 data-anchor-id="endnotes">Endnotes</h4>
<p><a href="../acronyms.html">Acronyms</a> <a href="https://tbep.org">List of All Actions</a> <a href="https://tbep.org/about-tbep/who-we-are/">Who We Are</a></p>
<p><a href="../misc/acronyms.html">Acronyms</a> <a href="https://tbep.org">List of All Actions</a> <a href="https://tbep.org/about-tbep/who-we-are/">Who We Are</a></p>
</section>
</div>
</section>
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