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  • 2020-2024  (15)
Collection
Keywords
Years
Year
  • 1
    Publication Date: 2023-04-29
    Keywords: Biomass; calcification; Chilean Patagonia; Comau Fjord, Patagonia, Chile; DATE/TIME; DEPTH, water; environmental fluctuation; growth; Identification; Latitude of event; Longitude of event; Monitoring station; MONS; PACOC; Plankton- And cold-water COral ecology in Comau Fjord, Chile; Respiration; Salinity; Season; Station label; Temperature, water; X-Huinay
    Type: Dataset
    Format: text/tab-separated-values, 49491 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-09-20
    Keywords: A, As; B; C; Calculated; Comau Fjord, Patagonia, Chile; D; DATE/TIME; Date/time start; Ed; Es; F, Fs, Lillihuapy, Lilliguapi; Liliguapi; Monitoring station; MONS; Near_SWALL; PACOC; Pared_de_la_cruz; Pirate_Cove; Plankton- And cold-water COral ecology in Comau Fjord, Chile; Rio_Tambor; Temperature, water; Temperature, water, mean; Temperature, water, minimum; Temperature, water, standard deviation; Temperature anomaly; Temperature logger, UTBI-001 TidbiT; X-Telele; X-Telele_deep
    Type: Dataset
    Format: text/tab-separated-values, 1131091 data points
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2023-09-20
    Keywords: A, As; B; C; Comau Fjord, Patagonia, Chile; D; Depth, description; DEPTH, water; Desmophyllum dianthus, calcification rate; Desmophyllum dianthus, respiration rate, oxygen; Desmophyllum dianthus, tissue length; Ed; Es; Event label; F, Fs, Lillihuapy, Lilliguapi; Identification; Latitude of event; Liliguapi; Longitude of event; Method comment; Monitoring station; MONS; Near_SWALL; PACOC; Pared_de_la_cruz; Pirate_Cove; Plankton- And cold-water COral ecology in Comau Fjord, Chile; Rio_Tambor; Season; Station label; X-Telele; X-Telele_deep
    Type: Dataset
    Format: text/tab-separated-values, 3579 data points
    Location Call Number Expected Availability
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  • 4
    Publication Date: 2023-09-20
    Keywords: A, As; Alkalinity, total; Aragonite saturation state; B; C; Carbon, inorganic, dissolved; Carbon dioxide, partial pressure; Comau Fjord, Patagonia, Chile; CTD; D; Depth, description; DEPTH, water; Ed; Es; Event label; F, Fs, Lillihuapy, Lilliguapi; Identification; Latitude of event; Liliguapi; Longitude of event; Monitoring station; MONS; Near_SWALL; Oxygen; PACOC; Pared_de_la_cruz; pH; Pirate_Cove; Plankton- And cold-water COral ecology in Comau Fjord, Chile; Rio_Tambor; Salinity; Sample ID; Season; Station label; Temperature, variability; Temperature, water; Temperature, water, mean; Temperature, water, standard deviation; Temperature logger, UTBI-001 TidbiT; X-Telele; X-Telele_deep
    Type: Dataset
    Format: text/tab-separated-values, 357 data points
    Location Call Number Expected Availability
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  • 5
    Publication Date: 2023-09-20
    Keywords: A, As; B; C; Comau Fjord, Patagonia, Chile; D; Depth, description; DEPTH, water; Desmophyllum dianthus, biomass; Ed; Es; Event label; F, Fs, Lillihuapy, Lilliguapi; Identification; Latitude of event; Liliguapi; Longitude of event; Method comment; Monitoring station; MONS; Near_SWALL; PACOC; Pared_de_la_cruz; Pirate_Cove; Plankton- And cold-water COral ecology in Comau Fjord, Chile; Rio_Tambor; Season; Station label; X-Telele; X-Telele_deep
    Type: Dataset
    Format: text/tab-separated-values, 1968 data points
    Location Call Number Expected Availability
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  • 6
    Publication Date: 2023-11-13
    Description: Between September 2016 and August 2017, we conducted year-long reciprocal transplantation experiments using the cold-water coral Desmophyllum dianthus along natural oceanographic horizontal and vertical gradients (vertically: 20 m to 300 m depth and horizontally: head to mouth of fjord) in Comau Fjord to study its acclimatisation potential to changing environmental conditions. Seasonal calcification, respiration and tissue biomass of native and novel (cross-transplanted) corals were determined at six shallow (A-F, 20 m) and one deep station (Ed, 300 m) during autral summer (January), autumn (May) and winter (August). Temperature was measured continuously at each of the coral stations using TidbiT temperature loggers, and CTD casts and discrete water samples were taken once per season. In addition, temperature and salinity were measured continuously with a CTD at another station (X).
    Keywords: Biomass; calcification; Chilean Patagonia; environmental fluctuation; growth; PACOC; Plankton- And cold-water COral ecology in Comau Fjord, Chile; Respiration
    Type: Dataset
    Format: application/zip, 5 datasets
    Location Call Number Expected Availability
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  • 7
    Publication Date: 2024-01-13
    Description: Physical and chemical parameters and associated coccolithophores species/Emiliania huxleyi morphotypes abundances and biovolume and co-occurring microplankton abundances recorded in southern Patagonia (~ 50-54 ºS) during the austral late-spring 2015 (at the end of november) and early-spring 2017 (at the end of september). Given the scarcity of data about coccolithophores in Patagonian waters and the impressive nearly a century spring-summer reports of Emiliania huxleyi blooms around the North Sea and Norwegian fjords system we want to observe what happens in this side of the planet. To do that, we collected seawater containing planktonic organisms at the surface and in some stations up to 75 m depth. Inverted microscopy along with SEM analyses were used to identify and quantify the planktonic items.
    Keywords: 1; 10; 11; 12; 13; 14; 15; 16; 17; 18; 19; 2; 20; 21; 3; 4; 5; 6; 7; 8; 9; Acid-cleaned suction system attached to a towed fish; Asterionellopsis spp.; Cerataulina spp. + Guinardia spp.; Ceratium lineatum; Ceratium pentagonum; Chaetoceros spp.; Corethron spp.; Date/Time of event; DEPTH, water; Detonula spp.; Diatoms, centrales; Dinophysis spp.; Ditylum spp.; Emiliania huxleyi; Emiliania huxleyi morphotypes; Eucampia spp.; Event label; Flagellates, naked; FLS-2015; FLS-2015-1; FLS-2015-10; FLS-2015-11; FLS-2015-12; FLS-2015-13; FLS-2015-14; FLS-2015-15; FLS-2015-16; FLS-2015-17; FLS-2015-18; FLS-2015-19; FLS-2015-2; FLS-2015-20; FLS-2015-21; FLS-2015-3; FLS-2015-4; FLS-2015-5; FLS-2015-6; FLS-2015-7; FLS-2015-8; FLS-2015-9; Foraminifera indeterminata; Forrest; Forrest_late_spring-2015; Gymnodinium spp.; Latitude of event; Leptocylindrus spp.; Licmophora spp.; Longitude of event; Nitzschia spp.; Oligotrichida + Cyclotrichiida; Patagonian fjords; Pennates, large; Pennates, medium; Pennates, small; Plagiogrammopsis spp.; Protoperidinium spp.; Pseudochattonella verruculosa; Pseudo-nitzschia spp.; Pyrophacus spp.; Rhizosolenia spp.; Scanning electron microscope (SEM); Scrippsiella spp.; Silicoflagellates indeterminata; Skeletonema spp.; South Pacific Ocean; Station label; Stephanopyxis turris; Striatella spp.; Syracosphaera spp.; Thalassionema spp.; Thalassiosira spp.; Tintinnid
    Type: Dataset
    Format: text/tab-separated-values, 1131 data points
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  • 8
    Publication Date: 2024-02-03
    Description: This study is the first integrated assessment of the main oceanographic features of the Beagle Channel, using data from several oceanographic cruises and a mooring. This dataset derives from an oceanographic mooring installed in the center of the Beagle Channel close to Yendegaia bay. This mooring included hourly temperature measurements at 50 m and 195 m between 21 July 2017 and 28 September 2019, while temperature at 100 m was recorded from 21 July 2017 to 19 July 2018 only. The study was funded by the IDEAL center (Research Center: Dynamics of High Latitude Marine Ecosystems, https://www.centroideal.cl/, award: FONDAP 15150003).
    Keywords: Beagle Channel; Beagle Channel Observatory; Cruise/expedition; DATE/TIME; DEPTH, water; DYNAMO; HYDRO‐USHUAIA; IDEAL_Beagle-Yendegaia_MOOR; LATITUDE; LONGITUDE; MOOR; Mooring; Particles dynamics in the Beagle channel and Ushuaia Bay (ECOS‐SUD/Mincyt program); Station label; Temperature, water; Temperature logger(s), Star Oddi; temperature profiles; Type
    Type: Dataset
    Format: text/tab-separated-values, 187628 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2024-02-03
    Description: This study is the first integrated assessment of the main oceanographic features of the Beagle Channel, using data from several oceanographic cruises conducted between 19-25 October 2016, 19-26 July 2017 and 18-23 July 2018 by the IDEAL center (Research Center: Dynamics of High Latitude Marine Ecosystems). During 2016 transects were done between the NW entrance of the Beagle Channel up to Yendegaia bay (mid of the channel). In winter 2017, simultaneous to the IDEAL transect, a full oceanographic survey onboard M/O Bernardo Houssay (PNA, Argentina) by researchers of CADIC (Austral Center for Scientific Research in Ushuaia) was conducted from nearby Yendegaia bay to the eastern limit of the Beagle Channel (27-30 August 2017), thus closing for the first time a full, high resolution, hydrographic section along the entire Channel. During 18-23 July 2018 the NW branch and the SW branch of the Beagle Channel was surveyed. The study was funded by the IDEAL center (https://www.centroideal.cl/, award: FONDAP 15150003).
    Keywords: ARG-CADIC; ARG-CADIC_mobh2017-05; ARG-CADIC_mobh2017-06; ARG-CADIC_mobh2017-07; ARG-CADIC_mobh2017-08a; ARG-CADIC_mobh2017-09; ARG-CADIC_mobh2017-10; ARG-CADIC_mobh2017-11; ARG-CADIC_mobh2017-22; ARG-CADIC_mobh2017-23; ARG-CADIC_mobh2017-24; ARG-CADIC_mobh2017-25; ARG-CADIC_mobh2017-26; ARG-CADIC_mobh2017-27; ARG-CADIC_mobh2017-28; ARG-CADIC_mobh2017-29; ARG-CADIC_mobh2017-30; ARG-CADIC_mobh2017-31; ARG-CADIC_mobh2017-32; ARG-CADIC_mobh2017-33; ARG-CADIC_mobh2017-34; ARG-CADIC_mobh2017-35; ARG-CADIC_mobh2017-36; ARG-CADIC_mobh2017-37; ARG-CADIC_mobh2017-38; ARG-CADIC_mobh2017-39; ARG-CADIC_mobh2017-40a; Beagle Channel; Beagle Channel Observatory; Chief scientist(s); Cruise/expedition; CTD, Sea-Bird [see device type column for specific CTD type]; CTD/Rosette; CTD-RO; DATE/TIME; Depth, bottom/max; DEPTH, water; Device type; dissolved oxygen; Dr. Bernardo Houssay; DYNAMO; Event label; Fluorescence; Fluorometer, WET Labs ECO AFL/FL; Forrest; HYDRO‐USHUAIA; IDEAL_Canal_Beagle_2016; IDEAL_Canal_Beagle_2016_01; IDEAL_Canal_Beagle_2016_02; IDEAL_Canal_Beagle_2016_03; IDEAL_Canal_Beagle_2016_04; IDEAL_Canal_Beagle_2016_05; IDEAL_Canal_Beagle_2016_06; IDEAL_Canal_Beagle_2016_07; IDEAL_Canal_Beagle_2016_08; IDEAL_Canal_Beagle_2016_09; IDEAL_Canal_Beagle_2016_10; IDEAL_Canal_Beagle_2016_11; IDEAL_Canal_Beagle_2016_12; IDEAL_Canal_Beagle_2016_13; IDEAL_Canal_Beagle_2016_26; IDEAL_Canal_Beagle_2016_27; IDEAL_Canal_Beagle_2016_28; IDEAL_Canal_Beagle_2016_29; IDEAL_Canal_Beagle_2016_37; IDEAL_Canal_Beagle_2017; IDEAL_Canal_Beagle_2017_01; IDEAL_Canal_Beagle_2017_02; IDEAL_Canal_Beagle_2017_03; IDEAL_Canal_Beagle_2017_04; IDEAL_Canal_Beagle_2017_05; IDEAL_Canal_Beagle_2017_06; IDEAL_Canal_Beagle_2017_07; IDEAL_Canal_Beagle_2017_08; IDEAL_Canal_Beagle_2017_09-1; IDEAL_Canal_Beagle_2017_09-2; IDEAL_Canal_Beagle_2017_10; IDEAL_Canal_Beagle_2017_11-1; IDEAL_Canal_Beagle_2017_11-2; IDEAL_Canal_Beagle_2017_12; IDEAL_Canal_Beagle_2017_23; IDEAL_Canal_Beagle_2018; IDEAL_Canal_Beagle_2018_01; IDEAL_Canal_Beagle_2018_02; IDEAL_Canal_Beagle_2018_03; IDEAL_Canal_Beagle_2018_04; IDEAL_Canal_Beagle_2018_05; IDEAL_Canal_Beagle_2018_06; IDEAL_Canal_Beagle_2018_07; IDEAL_Canal_Beagle_2018_08; IDEAL_Canal_Beagle_2018_09; IDEAL_Canal_Beagle_2018_10; IDEAL_Canal_Beagle_2018_11; IDEAL_Canal_Beagle_2018_12; IDEAL_Canal_Beagle_2018_17; IDEAL_Canal_Beagle_2018_18; IDEAL_Canal_Beagle_2018_19; IDEAL_Canal_Beagle_2018_20; IDEAL_Canal_Beagle_2018_21; IDEAL_Canal_Beagle_2018_22; IDEAL_Canal_Beagle_2018_23; IDEAL_Canal_Beagle_2018_24; IDEAL_Canal_Beagle_2018_25; LATITUDE; LONGITUDE; Optical dissolved oxygen sensor(s), Sea-Bird; Oxygen, dissolved; Particles dynamics in the Beagle channel and Ushuaia Bay (ECOS‐SUD/Mincyt program); Salinity; Station label; Temperature, water; temperature profiles; Vessel
    Type: Dataset
    Format: text/tab-separated-values, 263441 data points
    Location Call Number Expected Availability
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  • 10
    Publication Date: 2024-01-13
    Description: Physical and chemical parameters and associated coccolithophores species/Emiliania huxleyi morphotypes abundances and biovolume and co-occurring microplankton abundances recorded in southern Patagonia (~ 50-54 ºS) during the austral late-spring 2015 (at the end of november) and early-spring 2017 (at the end of september). Given the scarcity of data about coccolithophores in Patagonian waters and the impressive nearly a century spring-summer reports of Emiliania huxleyi blooms around the North Sea and Norwegian fjords system we want to observe what happens in this side of the planet. To do that, we collected seawater containing planktonic organisms at the surface and in some stations up to 75 m depth. Inverted microscopy along with SEM analyses were used to identify and quantify the planktonic items. Determination of salinity and temperature was made with a YSI- 30 Termosalinometer (Yellow Springs, OH, USA) and pCO2 was determined with a Qubit-S157 CO2-analyzer (Kingston, Ontario, Canada). Macronutrients, opal and pH were determined as described in Torres et al. (2020; doi:10.1016/j.ecss.2020.106597). Full carbonate system parameters (including Ωcal) were estimated from pH, AT, salinity, temperature (25 °C as input and in situ temperature as output conditions), pressure (0 dbar as input and depth as output conditions) using CO2Sys Excel macro spreadsheet version 2.1 (Pierrot et al., 2006) with Mehrbach set of solubility constants (Mehrbach et al., 1973) refitted by Dickson and Millero (Dickson and Millero, 1987). To extrapolate full carbonate parameters from pCO2 (onboard sensor) and salinity measurements where alkalinity samples were not directly available, the regression curve for the salinity-AT relationship (μmol kg–1) = 63.4 × salinity + 101 (R2 = 0.99, N = 186; Torres et al., 2020) was used to derive AT estimated from salinity.
    Keywords: 1; 10; 11; 12; 13; 14; 15; 16; 17; 18; 19; 2; 20; 21; 22; 23; 24; 25; 26; 27; 28; 29; 3; 30; 31; 32; 4; 5; 6; 7; 8; 9; Acid-cleaned suction system attached to a towed fish; after Torres etal. 2021; Biogenic silica; Calcite saturation state; Carbon dioxide, partial pressure; Cell biovolume; Date/Time of event; DEPTH, water; Emiliania huxleyi; Emiliania huxleyi morphotypes; Estimated; Estimated from the median of measured diameter of coccospheres and assuming a spherical geometric shape (Hillebrand et al., 1999); Event label; FES-2017; FES-2017-22; FES-2017-23; FES-2017-24; FES-2017-25; FES-2017-26; FES-2017-27; FES-2017-28; FES-2017-29; FES-2017-30; FES-2017-31; FES-2017-32; FLS-2015; FLS-2015-1; FLS-2015-10; FLS-2015-11; FLS-2015-12; FLS-2015-13; FLS-2015-14; FLS-2015-15; FLS-2015-16; FLS-2015-17; FLS-2015-18; FLS-2015-19; FLS-2015-2; FLS-2015-20; FLS-2015-21; FLS-2015-3; FLS-2015-4; FLS-2015-5; FLS-2015-6; FLS-2015-7; FLS-2015-8; FLS-2015-9; Forrest; Forrest_early_spring-2017; Forrest_late_spring-2015; Infrared CO2 analyzer (Qubit S157); Latitude of event; Longitude of event; Nitrate; Patagonian fjords; pH; Phosphate; Salinity; Silica, dissolved; South Pacific Ocean; Station label; Temperature, water; YSI 30 salinty/conductivity/temperature meter
    Type: Dataset
    Format: text/tab-separated-values, 684 data points
    Location Call Number Expected Availability
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