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<city>Tallahassee</city>
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<resTitle>TMDL Development Priority HUC Basins</resTitle>
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<pubDate time="unknown">2021-10-18T00:00:00</pubDate>
<createDate>2021-10-01T00:00:00</createDate>
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<rpOrgName>Florida Department of Environmental Protection (DEP), Division of Environmental Assessment &amp; Restoration (DEAR)</rpOrgName>
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<delPoint>2600 Blair Stone Rd</delPoint>
<city>Tallahassee</city>
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<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P STYLE="margin:0 0 6 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;A TMDL (Total Maximum Daily Load is a scientific determination of the maximum amount of a given pollutant that a surface water can absorb and still meet the water quality standards that protect its designated uses including recreation, human health, and aquatic life. Water bodies that do not meet water quality standards are identified as 'impaired' for the particular pollutants of concern — nutrients, bacteria, mercury, etc. — and TMDLs must be developed, adopted and implemented for those pollutants to reduce pollutants and restore the water body so that designated uses are attained. The threshold limits on pollutants in surface waters — Florida's surface water quality standards on which TMDLs are based —are set forth primarily in rules 62-302 and 62-303, Florida Administrative Code (FAC), and the associated table of water quality criteria. Adopted TMDL rules are included in Chapter 62-304, FAC. &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 6 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;The data layer depicts the hydrologic basins where the State of Florida has proposed future development of TMDLs through 2022. &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;SPAN&gt;&lt;SPAN&gt;These basins are based on the Hydrologic Unit Code (HUC) watersheds that are delineated by USGS using a nationwide system based on surface hydrologic features. This system divides the country into 21 regions (2-digit), 222 subregions (4-digit), 370 basins (6-digit), 2,270 subbasins (8-digit), approximately 20,000 watersheds (10-digit), and approximately 100,000 subwatersheds (12-digit). The HUC basins shown here are at the 8-digit level.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN /&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
<idPurp>To provide a spatial distribution of the priority HUC8 Basins where the State of Florida plans to develop TMDLs through 2022.</idPurp>
<idCredit>Florida Department of Environmental Protection (DEP), Division of Environmental Assessment &amp; Restoration</idCredit>
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<keyword>FL</keyword>
<keyword>US</keyword>
<keyword>Florida</keyword>
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<resTitle>ISO 19115 Topic Categories</resTitle>
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<keyword>TMDL Total Maximum Daily Load Impairment, Environmental Monitoring and Modeling, Water Resources</keyword>
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<useLimit>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P STYLE="margin:0 0 6 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;This data is intended to be used for general informational and planning purposes. This layer is not for legal decision making.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN /&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</useLimit>
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</spatRpType>
<dataLang>
<languageCode value="eng">
</languageCode>
<countryCode Sync="TRUE" value="USA">
</countryCode>
</dataLang>
<envirDesc Sync="TRUE"> Version 6.2 (Build 9200) ; Esri ArcGIS 10.6.1.9270</envirDesc>
<dataExt>
<geoEle>
<GeoBndBox>
<westBL>-87.630408</westBL>
<eastBL>-79.872612</eastBL>
<southBL>24.501839</southBL>
<northBL>31.041203</northBL>
</GeoBndBox>
</geoEle>
</dataExt>
<dataExt>
<exDesc>Date item was created and published in the GIS Library</exDesc>
<tempEle>
<TempExtent>
<exTemp>
<TM_Instant>
<tmPosition>2021-10-18T00:00:00</tmPosition>
</TM_Instant>
</exTemp>
</TempExtent>
</tempEle>
</dataExt>
<dataChar>
<CharSetCd value="004">
</CharSetCd>
</dataChar>
<dataExt>
<geoEle>
<GeoBndBox esriExtentType="search">
<westBL>-87.684112</westBL>
<eastBL>-79.816848</eastBL>
<northBL>31.092878</northBL>
<southBL>24.368854</southBL>
<exTypeCode>1</exTypeCode>
</GeoBndBox>
</geoEle>
</dataExt>
<idPoC>
<rpIndName>Ansel Bubel</rpIndName>
<rpOrgName>Florida Department of Environmental Protection (DEP), Division of Environmental Assessment &amp; Restoration (DEAR)</rpOrgName>
<rpPosName>Environmental Administrator</rpPosName>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>2600 Blair Stone Rd</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32399-2400</postCode>
<eMailAdd>Ansel.Bubel@dep.state.fl.us</eMailAdd>
<country>US</country>
</cntAddress>
<cntPhone>
<voiceNum tddtty="">850-245-8072</voiceNum>
</cntPhone>
</rpCntInfo>
<role>
<RoleCd value="007">
</RoleCd>
</role>
<displayName>Ansel Bubel</displayName>
</idPoC>
<idPoC>
<rpIndName>Ronald Hughes</rpIndName>
<rpOrgName>FDEP, Division of Environmental Assessment &amp; Restoration (DEAR)</rpOrgName>
<rpPosName>Environmental Specialist III</rpPosName>
<role>
<RoleCd value="009">
</RoleCd>
</role>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>2600 Blair Stone Rd</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32399-2400</postCode>
<eMailAdd>ronald.hughes@floridadep.gov</eMailAdd>
</cntAddress>
</rpCntInfo>
<displayName>Ronald Hughes</displayName>
</idPoC>
<tpCat>
<TopicCatCd value="003">
</TopicCatCd>
</tpCat>
<tpCat>
<TopicCatCd value="007">
</TopicCatCd>
</tpCat>
</dataIdInfo>
<mdMaint>
<maintFreq>
<MaintFreqCd value="009">
</MaintFreqCd>
</maintFreq>
</mdMaint>
<dqInfo>
<dqScope>
<scpLvl>
<ScopeCd value="005">
</ScopeCd>
</scpLvl>
</dqScope>
<report dimension="" type="DQTopConsis">
<evalMethDesc>Points, nodes, lines, and areas conform to topological rules. Lines intersect only at nodes, and all nodes anchor the ends of lines. Lines do not overshoot or undershoot other lines where they are supposed to meet. There are no duplicate lines. Lines bound areas and lines identify the areas to the left and right of the lines. Gaps and overlaps among areas do not exist. All areas close.</evalMethDesc>
</report>
<report dimension="" type="DQConcConsis">
<measDesc>Points, nodes, lines, and areas conform to topological rules. Lines intersect only at nodes, and all nodes anchor the ends of lines. Lines do not overshoot or undershoot other lines where they are supposed to meet. There are no duplicate lines. Lines bound areas and lines identify the areas to the left and right of the lines. Gaps and overlaps among areas do not exist. All areas close.</measDesc>
</report>
<report dimension="" type="DQCompOm">
<measDesc>The completeness of the data reflects the content of the sources, which most often are the published USGS topographic quadrangle and/or the USDA Forest Service Primary Base Series (PBS) map. The USGS topographic quadrangle is usually supplemented by Digital Orthophoto Quadrangles (DOQs). Features found on the ground may have been eliminated or generalized on the source map because of scale and legibility constraints. In general, streams longer than one mile (approximately 1.6 kilometers) were collected. Most streams that flow from a lake were collected regardless of their length. Only definite channels were collected so not all swamp/marsh features have stream/rivers delineated through them. Lake/ponds having an area greater than 6 acres were collected. Note, however, that these general rules were applied unevenly among maps during compilation. Reaches codes are defined on all features of type stream/river, canal/ditch, artificial path, coastline, and connector. Waterbody reach codes are defined on all lake/pond and most reservoir features. Names were applied from the GNIS database. Detailed capture conditions are provided for every feature type in the Standards for National Hydrography Dataset available online through http://mapping.usgs.gov/standards/. This statement is generally true for the most common sources of NHD data. Other sources and methods may have been used to create or update NHD data. In some cases, additional information may be found in the NHDMetadata table.</measDesc>
</report>
<report dimension="" type="DQQuanAttAcc">
<measDesc>Statements of attribute accuracy are based on accuracy statements made for U.S. Geological Survey Digital Line Graph (DLG) data, which is estimated to be 98.5 percent. One or more of the following methods were used to test attribute accuracy: manual comparison of the source with hardcopy plots; symbolized display of the DLG on an interactive computer graphic system; selected attributes that could not be visually verified on plots or on screen were interactively queried and verified on screen. In addition, software validated feature types and characteristics against a master set of types and characteristics, checked that combinations of types and characteristics were valid, and that types and characteristics were valid for the delineation of the feature. Feature types, characteristics, and other attributes conform to the Standards for National Hydrography Dataset (USGS, 1999) as of the date they were loaded into the database. All names were validated against a current extract from the Geographic Names Information System (GNIS). The entry and identifier for the names match those in the GNIS. The association of each name to reaches has been interactively checked, however, operator error could in some cases apply a name to a wrong reach. This statement is generally true for the most common sources of NHD data. Other sources and methods may have been used to create or update NHD data. In some cases, additional information may be found in the NHDMetadata table.</measDesc>
</report>
<report dimension="horizontal" type="DQAbsExtPosAcc">
<measDesc>Statements of horizontal positional accuracy are based on accuracy statements made for U.S. Geological Survey topographic quadrangle maps. These maps were compiled to meet National Map Accuracy Standards. For horizontal accuracy, this standard is met if at least 90 percent of points tested are within 0.02 inch (at map scale) of the true position. Additional offsets to positions may have been introduced where feature density is high to improve the legibility of map symbols. In addition, the digitizing of maps is estimated to contain a horizontal positional error of less than or equal to 0.003 inch standard error (at map scale) in the two component directions relative to the source maps. Visual comparison between the map graphic (including digital scans of the graphic) and plots or digital displays of points, lines, and areas, is used as control to assess the positional accuracy of digital data. Digital map elements along the adjoining edges of data sets are aligned if they are within a 0.02 inch tolerance (at map scale). Features with like dimensionality (for example, features that all are delineated with lines), with or without like characteristics, that are within the tolerance are aligned by moving the features equally to a common point. Features outside the tolerance are not moved; instead, a feature of type connector is added to join the features. This statement is generally true for the most common sources of NHD data. Other sources and methods may have been used to create or update NHD data. In some cases, additional information may be found in the NHDMetadata table.</measDesc>
</report>
<report dimension="vertical" type="DQAbsExtPosAcc">
<measDesc>Statements of vertical positional accuracy for elevation of water surfaces are based on accuracy statements made for U.S. Geological Survey topographic quadrangle maps. These maps were compiled to meet National Map Accuracy Standards. For vertical accuracy, this standard is met if at least 90 percent of well-defined points tested are within one-half contour interval of the correct value. Elevations of water surface printed on the published map meet this standard; the contour intervals of the maps vary. These elevations were transcribed into the digital data; the accuracy of this transcription was checked by visual comparison between the data and the map. This statement is generally true for the most common sources of NHD data. Other sources and methods may have been used to create or update NHD data. In some cases, additional information may be found in the NHDMetadata table.</measDesc>
</report>
<dataLineage>
<statement>Selected from the Florida NHD NHD HUC 8 Sub Basin Boundaries.</statement>
<prcStep>
<stepDesc>Five Florida NHD HUC 8 Sub Basins were selected and used for this new layer as requested by James Albright and FDEP TMDL Section staff in order to represent priority HUC 8 Basins where the State of Florida plans to develop TMDLs through 2022.</stepDesc>
<stepDateTm>2021-10-01T00:00:00</stepDateTm>
<stepProc>
<rpIndName>Ronald Hughes</rpIndName>
<rpOrgName>FDEP, Division of Environmental Assessment &amp; Restoration (DEAR)</rpOrgName>
<rpPosName>Environmental Specialist III</rpPosName>
<role>
<RoleCd value="009">
</RoleCd>
</role>
<rpCntInfo>
<cntAddress addressType="both">
<delPoint>2600 Blair Stone Rd</delPoint>
<city>Tallahassee</city>
<adminArea>FL</adminArea>
<postCode>32399-2400</postCode>
<eMailAdd>ronald.hughes@floridadep.gov</eMailAdd>
</cntAddress>
</rpCntInfo>
</stepProc>
</prcStep>
</dataLineage>
</dqInfo>
<spatRepInfo>
<VectSpatRep>
<geometObjs Name="TMDL_HUC_PRIORITY_BASINS">
<geoObjTyp>
<GeoObjTypCd Sync="TRUE" value="002">
</GeoObjTypCd>
</geoObjTyp>
<geoObjCnt Sync="TRUE">5</geoObjCnt>
</geometObjs>
<topLvl>
<TopoLevCd Sync="TRUE" value="001">
</TopoLevCd>
</topLvl>
</VectSpatRep>
</spatRepInfo>
<refSysInfo>
<RefSystem>
<refSysID>
<identCode Sync="TRUE" code="6439">
</identCode>
<idCodeSpace Sync="TRUE">EPSG</idCodeSpace>
<idVersion Sync="TRUE">8.2.10(10.3.1)</idVersion>
</refSysID>
</RefSystem>
</refSysInfo>
<eainfo>
<detailed Name="TMDL_HUC_PRIORITY_BASINS">
<enttyp>
<enttypl Sync="FALSE">TMDL_HUC_PRIORITY_BASINS</enttypl>
<enttypt Sync="TRUE">Feature Class</enttypt>
<enttypc Sync="TRUE">5</enttypc>
</enttyp>
<attr>
<attrlabl Sync="TRUE">OBJECTID</attrlabl>
<attalias Sync="TRUE">OBJECTID</attalias>
<attrtype Sync="TRUE">OID</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="TRUE">Internal feature number.</attrdef>
<attrdefs Sync="TRUE">Esri</attrdefs>
<attrdomv>
<udom Sync="TRUE">Sequential unique whole numbers that are automatically generated.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl Sync="TRUE">HUC8</attrlabl>
<attalias Sync="TRUE">HUC8</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">NAME</attrlabl>
<attalias Sync="TRUE">NAME</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">120</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">SHAPE</attrlabl>
<attalias Sync="TRUE">Shape</attalias>
<attrtype Sync="TRUE">Geometry</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef Sync="TRUE">Feature geometry.</attrdef>
<attrdefs Sync="TRUE">Esri</attrdefs>
<attrdomv>
<udom Sync="TRUE">Coordinates defining the features.</udom>
</attrdomv>
</attr>
<attr>
<attrlabl Sync="TRUE">SHAPE.AREA</attrlabl>
<attalias Sync="TRUE">SHAPE.AREA</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">SHAPE.LEN</attrlabl>
<attalias Sync="TRUE">SHAPE.LEN</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
</detailed>
</eainfo>
</metadata>
