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) in Sediment oxygen demand in shallow water habitats around Tampa Bay in the Summers of 2015 and 2016
f | 1 | { | f | 1 | { |
2 | "author": "Susan Bell", | 2 | "author": "Susan Bell", | ||
3 | "author_email": "sbell@usf.edu", | 3 | "author_email": "sbell@usf.edu", | ||
4 | "creator_user_id": "851c91e4-6343-45af-967a-20a33797707e", | 4 | "creator_user_id": "851c91e4-6343-45af-967a-20a33797707e", | ||
5 | "extras": [ | 5 | "extras": [ | ||
6 | { | 6 | { | ||
7 | "key": "DOI", | 7 | "key": "DOI", | ||
8 | "value": "doi:10.7266/N7X0654X" | 8 | "value": "doi:10.7266/N7X0654X" | ||
9 | }, | 9 | }, | ||
10 | { | 10 | { | ||
11 | "key": "ISO.principalInvestigator", | 11 | "key": "ISO.principalInvestigator", | ||
12 | "value": "Susan Bell <sbell@usf.edu>" | 12 | "value": "Susan Bell <sbell@usf.edu>" | ||
13 | }, | 13 | }, | ||
14 | { | 14 | { | ||
15 | "key": "Place Keywords", | 15 | "key": "Place Keywords", | ||
16 | "value": "Tampa Bay, Lassing Park, Fort De Soto, War Memorial | 16 | "value": "Tampa Bay, Lassing Park, Fort De Soto, War Memorial | ||
17 | Park" | 17 | Park" | ||
18 | }, | 18 | }, | ||
19 | { | 19 | { | ||
20 | "key": "Temporal Begin", | 20 | "key": "Temporal Begin", | ||
21 | "value": "2015-07-27" | 21 | "value": "2015-07-27" | ||
22 | }, | 22 | }, | ||
23 | { | 23 | { | ||
24 | "key": "Temporal End", | 24 | "key": "Temporal End", | ||
25 | "value": "2016-06-29" | 25 | "value": "2016-06-29" | ||
26 | }, | 26 | }, | ||
27 | { | 27 | { | ||
28 | "key": "Theme Keywords", | 28 | "key": "Theme Keywords", | ||
29 | "value": "dissolved oxygen, DO, temperature, oxygen consumption, | 29 | "value": "dissolved oxygen, DO, temperature, oxygen consumption, | ||
30 | sediment, respiration, photosynthesis, seagrass, infauna, metabolism" | 30 | sediment, respiration, photosynthesis, seagrass, infauna, metabolism" | ||
31 | }, | 31 | }, | ||
32 | { | 32 | { | ||
33 | "key": "spatial", | 33 | "key": "spatial", | ||
34 | "value": "{ \"type\": \"Polygon\", \"coordinates\": [ [ [ | 34 | "value": "{ \"type\": \"Polygon\", \"coordinates\": [ [ [ | ||
35 | -82.7708, 27.75382 ], [ -82.62871, 27.75382 ], [ -82.62871, 27.47597 | 35 | -82.7708, 27.75382 ], [ -82.62871, 27.75382 ], [ -82.62871, 27.47597 | ||
36 | ], [ -82.7708, 27.47597 ], [ -82.7708, 27.75382 ] ] ] }" | 36 | ], [ -82.7708, 27.47597 ], [ -82.7708, 27.75382 ] ] ] }" | ||
37 | } | 37 | } | ||
38 | ], | 38 | ], | ||
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41 | "isopen": false, | 41 | "isopen": false, | ||
42 | "license_id": null, | 42 | "license_id": null, | ||
43 | "license_title": null, | 43 | "license_title": null, | ||
44 | "maintainer": "data@disl.org", | 44 | "maintainer": "data@disl.org", | ||
45 | "maintainer_email": "data@disl.org", | 45 | "maintainer_email": "data@disl.org", | ||
46 | "metadata_created": "2022-07-27T14:33:04.349435", | 46 | "metadata_created": "2022-07-27T14:33:04.349435", | ||
n | 47 | "metadata_modified": "2022-07-27T14:33:19.529167", | n | 47 | "metadata_modified": "2022-10-10T21:23:47.926456", |
48 | "name": | 48 | "name": | ||
49 | w-water-habitats-around-tampa-bay-in-the-summers-of-2015-andn7x0654x", | 49 | w-water-habitats-around-tampa-bay-in-the-summers-of-2015-andn7x0654x", | ||
50 | "notes": "### Abstract\nSediment oxygen demand and environmental | 50 | "notes": "### Abstract\nSediment oxygen demand and environmental | ||
51 | variables were measured with field-deployed metabolism core chambers | 51 | variables were measured with field-deployed metabolism core chambers | ||
52 | in various sites around the Tampa Bay area in the summers of 2015 and | 52 | in various sites around the Tampa Bay area in the summers of 2015 and | ||
53 | 2016. Each chamber consisted of a 15.24 cm diameter (20.32 cm length) | 53 | 2016. Each chamber consisted of a 15.24 cm diameter (20.32 cm length) | ||
54 | acrylic tube, capped at the top with a custom-built fitting for water | 54 | acrylic tube, capped at the top with a custom-built fitting for water | ||
55 | stirring and HOBO logger placement. For each chamber deployed, | 55 | stirring and HOBO logger placement. For each chamber deployed, | ||
56 | dissolved oxygen and water temperature data were collected from within | 56 | dissolved oxygen and water temperature data were collected from within | ||
57 | the chamber. Light meters were deployed in parallel with the chambers | 57 | the chamber. Light meters were deployed in parallel with the chambers | ||
58 | to detect ambient light penetration into the water column. From these | 58 | to detect ambient light penetration into the water column. From these | ||
59 | data, sediment oxygen consumption (mmol O2/m2/day) was calculated. | 59 | data, sediment oxygen consumption (mmol O2/m2/day) was calculated. | ||
60 | These measurements can be correlated with average temperature, light, | 60 | These measurements can be correlated with average temperature, light, | ||
61 | time of day, habitat type, site, and sampling year. These data can | 61 | time of day, habitat type, site, and sampling year. These data can | ||
62 | also be associated with infaunal abundances and characteristics in a | 62 | also be associated with infaunal abundances and characteristics in a | ||
63 | related Tampa dataset (GRIIDC UDI: R4.x262.000:0015).\n\n### | 63 | related Tampa dataset (GRIIDC UDI: R4.x262.000:0015).\n\n### | ||
64 | Purpose\nSediment oxygen demand is an aggregate measurement of | 64 | Purpose\nSediment oxygen demand is an aggregate measurement of | ||
65 | numerous ecosystem functions, including photosynthesis by seagrasses | 65 | numerous ecosystem functions, including photosynthesis by seagrasses | ||
66 | and benthic microalgae, respiration by a diverse microbial community, | 66 | and benthic microalgae, respiration by a diverse microbial community, | ||
67 | respiration by meio- and macro-fauna, and enhanced microbial | 67 | respiration by meio- and macro-fauna, and enhanced microbial | ||
68 | metabolism due to irrigation by macrofauna. We measured sediment | 68 | metabolism due to irrigation by macrofauna. We measured sediment | ||
69 | oxygen demand at three sites in Tampa Bay, eastern Gulf of Mexico, as | 69 | oxygen demand at three sites in Tampa Bay, eastern Gulf of Mexico, as | ||
70 | a non-oil-contaminated reference site with which to compare with | 70 | a non-oil-contaminated reference site with which to compare with | ||
71 | oil-contaminated sites in the Chandeleur Islands (contamination due to | 71 | oil-contaminated sites in the Chandeleur Islands (contamination due to | ||
72 | the Deep Water Horizon, DWH, oil spill). Oxygen demand was measured | 72 | the Deep Water Horizon, DWH, oil spill). Oxygen demand was measured | ||
73 | using light and dark custom-built metabolism chambers. Sampling was | 73 | using light and dark custom-built metabolism chambers. Sampling was | ||
74 | conducted once per year in the summer season (July 2015, June 2016). | 74 | conducted once per year in the summer season (July 2015, June 2016). | ||
75 | Results are being analyzed for dependence on ambient oxygen | 75 | Results are being analyzed for dependence on ambient oxygen | ||
76 | concentration, sediment PAH at the 3 sites, annual differences, and | 76 | concentration, sediment PAH at the 3 sites, annual differences, and | ||
77 | infaunal community biomass. This study aims to provide a | 77 | infaunal community biomass. This study aims to provide a | ||
78 | non-contaminated reference dataset with which to compare with oiled | 78 | non-contaminated reference dataset with which to compare with oiled | ||
79 | sites in an effort to assess the impact of oil contamination on | 79 | sites in an effort to assess the impact of oil contamination on | ||
80 | sediment ecosystem function in the context of natural daily, seasonal, | 80 | sediment ecosystem function in the context of natural daily, seasonal, | ||
81 | and annual variability in a dynamic ecosystem.\n\n**DOI: | 81 | and annual variability in a dynamic ecosystem.\n\n**DOI: | ||
82 | [doi:10.7266/N7X0654X](https://www.doi.org/10.7266/N7X0654X)**\n\n### | 82 | [doi:10.7266/N7X0654X](https://www.doi.org/10.7266/N7X0654X)**\n\n### | ||
83 | Suggested Citation\nSusan Bell. 2017. Sediment oxygen demand in | 83 | Suggested Citation\nSusan Bell. 2017. Sediment oxygen demand in | ||
84 | shallow water habitats around Tampa Bay in the Summers of 2015 and | 84 | shallow water habitats around Tampa Bay in the Summers of 2015 and | ||
85 | 2016. Distributed by: Gulf of Mexico Research Initiative Information | 85 | 2016. Distributed by: Gulf of Mexico Research Initiative Information | ||
86 | and Data Cooperative (GRIIDC), Harte Research Institute, Texas A&M | 86 | and Data Cooperative (GRIIDC), Harte Research Institute, Texas A&M | ||
87 | University\u2013Corpus Christi. doi:10.7266/N7X0654X\n\n**Funded by:** | 87 | University\u2013Corpus Christi. doi:10.7266/N7X0654X\n\n**Funded by:** | ||
88 | Gulf of Mexico Research Initiative (GoMRI)\n\n**Funding cycle:** | 88 | Gulf of Mexico Research Initiative (GoMRI)\n\n**Funding cycle:** | ||
89 | RFP-IV\n\n**Research group:** Alabama Center for Ecological Resilience | 89 | RFP-IV\n\n**Research group:** Alabama Center for Ecological Resilience | ||
90 | (ACER)\n\n", | 90 | (ACER)\n\n", | ||
91 | "num_resources": 2, | 91 | "num_resources": 2, | ||
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94 | "approval_status": "approved", | 94 | "approval_status": "approved", | ||
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97 | become a center for transformative U.S. oceanic and coastal research | ||||
98 | and education.. Founded in 1971 by the State of Alabama Legislature to | ||||
99 | maximize the marine sciences capabilities of several Alabama | ||||
100 | institutions and minimize duplication. \r\n\r\nLocated on the eastern | ||||
101 | tip of Dauphin Island, a barrier island in the northern Gulf of | ||||
102 | Mexico, DISL is surrounded by Mobile Bay, the Mississippi Sound, and | ||||
103 | the waters of the Gulf, making it a perfect location to conduct a wide | ||||
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111 | \r\n\r\n[The Discovery Hall Programs (DHP)](https://www.disl.edu/dhp/) | ||||
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118 | bring marine science to students across Alabama in the classroom and | ||||
119 | at community events. \r\n\r\nResearch programs at the Dauphin Island | ||||
120 | Sea Lab range from biogeochemistry and oceanography to ecosystem | ||||
121 | ecology. While much of our research focuses on the near-shore and | ||||
122 | estuarine processes of the northern Gulf of Mexico, field sites of our | ||||
123 | internationally-renowned faculty also include the Arctic, Mexico, | ||||
124 | Australia, and other countries.\r\n\r\nThe Dauphin Island Sea Lab also | ||||
125 | offers state and local government, industry, and agency | ||||
126 | decision-makers a range of coastal zone management services, including | ||||
127 | access to the nationally acclaimed data management center. Armed with | ||||
128 | data through the DISL data management center, entities can make | ||||
129 | well-informed decisions and sound policies while considering | ||||
130 | environmental impact. Another key contributor to successful coastal | ||||
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244 | }, | ||||
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263 | "state": "active", | ||||
264 | "vocabulary_id": null | ||||
265 | } | ||||
266 | ], | ||||
267 | "title": "Sediment oxygen demand in shallow water habitats around | 205 | "title": "Sediment oxygen demand in shallow water habitats around | ||
268 | Tampa Bay in the Summers of 2015 and 2016", | 206 | Tampa Bay in the Summers of 2015 and 2016", | ||
269 | "type": "dataset", | 207 | "type": "dataset", | ||
270 | "url": null, | 208 | "url": null, | ||
271 | "version": null | 209 | "version": null | ||
272 | } | 210 | } |