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  • 1
    Publication Date: 2021-07-01
    Description: Coral bleaching is a significant contributor to the worldwide degradation of coral reefs and is indicative of the termination of symbiosis between the coral host and its symbiotic algae (dinoflagellate; Symbiodinium sp. complex), usually by expulsion or xenophagy (symbiophagy) of its dinoflagellates. Herein, we provide evidence that during the earliest stages of environmentally induced bleaching, heat stress and light stress generate distinctly different pathomorphological changes in the chloroplasts, while a combined heat- and light-stress exposure induces both pathomorphologies; suggesting that these stressors act on the dinoflagellate by different mechanisms. Within the first 48 hours of a heat stress (32°C) under low-light conditions, heat stress induced decomposition of thylakoid structures before observation of extensive oxidative damage; thus it is the disorganization of the thylakoids that creates the conditions allowing photo-oxidative-stress. Conversely, during the first 48 hours of a light stress (2007 µmoles m−2 s−1 PAR) at 25°C, condensation or fusion of multiple thylakoid lamellae occurred coincidently with levels of oxidative damage products, implying that photo-oxidative stress causes the structural membrane damage within the chloroplasts. Exposure to combined heat- and light-stresses induced both pathomorphologies, confirming that these stressors acted on the dinoflagellate via different mechanisms. Within 72 hours of exposure to heat and/or light stresses, homeostatic processes (e.g., heat-shock protein and anti-oxidant enzyme response) were evident in the remaining intact dinoflagellates, regardless of the initiating stressor. Understanding the sequence of events during bleaching when triggered by different environmental stressors is important for predicting both severity and consequences of coral bleaching
    Keywords: Ecology ; Management ; Pollution
    Repository Name: AquaDocs
    Type: article , TRUE
    Format: application/pdf
    Format: application/pdf
    Format: e77173
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  • 2
    Publication Date: 2022-05-26
    Description: © The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Earth System Science Data 8 (2016): 235-252, doi:10.5194/essd-8-235-2016.
    Description: A compiled set of in situ data is important to evaluate the quality of ocean-colour satellite-data records. Here we describe the data compiled for the validation of the ocean-colour products from the ESA Ocean Colour Climate Change Initiative (OC-CCI). The data were acquired from several sources (MOBY, BOUSSOLE, AERONET-OC, SeaBASS, NOMAD, MERMAID, AMT, ICES, HOT, GeP&CO), span between 1997 and 2012, and have a global distribution. Observations of the following variables were compiled: spectral remote-sensing reflectances, concentrations of chlorophyll a, spectral inherent optical properties and spectral diffuse attenuation coefficients. The data were from multi-project archives acquired via the open internet services or from individual projects, acquired directly from data providers. Methodologies were implemented for homogenisation, quality control and merging of all data. No changes were made to the original data, other than averaging of observations that were close in time and space, elimination of some points after quality control and conversion to a standard format. The final result is a merged table designed for validation of satellite-derived ocean-colour products and available in text format. Metadata of each in situ measurement (original source, cruise or experiment, principal investigator) were preserved throughout the work and made available in the final table. Using all the data in a validation exercise increases the number of matchups and enhances the representativeness of different marine regimes. By making available the metadata, it is also possible to analyse each set of data separately. The compiled data are available at doi:10.1594/PANGAEA.854832 (Valente et al., 2015).
    Description: We thank NASA for project funding for data collection.
    Repository Name: Woods Hole Open Access Server
    Type: Article
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  • 3
    Publication Date: 2022-05-26
    Description: © The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Earth System Science Data 11(3), (2019): 1037-1068, doi: 10.5194/essd-11-1037-2019.
    Description: A global compilation of in situ data is useful to evaluate the quality of ocean-colour satellite data records. Here we describe the data compiled for the validation of the ocean-colour products from the ESA Ocean Colour Climate Change Initiative (OC-CCI). The data were acquired from several sources (including, inter alia, MOBY, BOUSSOLE, AERONET-OC, SeaBASS, NOMAD, MERMAID, AMT, ICES, HOT and GeP&CO) and span the period from 1997 to 2018. Observations of the following variables were compiled: spectral remote-sensing reflectances, concentrations of chlorophyll a, spectral inherent optical properties, spectral diffuse attenuation coefficients and total suspended matter. The data were from multi-project archives acquired via open internet services or from individual projects, acquired directly from data providers. Methodologies were implemented for homogenization, quality control and merging of all data. No changes were made to the original data, other than averaging of observations that were close in time and space, elimination of some points after quality control and conversion to a standard format. The final result is a merged table designed for validation of satellite-derived ocean-colour products and available in text format. Metadata of each in situ measurement (original source, cruise or experiment, principal investigator) was propagated throughout the work and made available in the final table. By making the metadata available, provenance is better documented, and it is also possible to analyse each set of data separately. This paper also describes the changes that were made to the compilation in relation to the previous version (Valente et al., 2016). The compiled data are available at https://doi.org/10.1594/PANGAEA.898188 (Valente et al., 2019).
    Description: This research has been supported by the ESA Climate Change Initiative – Ocean Colour project (ref: AO-1/6207/09/I-LG).
    Repository Name: Woods Hole Open Access Server
    Type: Article
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  • 4
    Publication Date: 2024-02-01
    Keywords: Aerial sample, bulk filtered; AF1; AF2; AF3; AF4; AF5; AIRFILT; ALTITUDE; Ammonia; Ammonia, standard deviation; Ammonium, particulate; Ammonium, particulate, standard deviation; Date/Time of event; Dimethylamine; Dimethylamine, particulate; Dimethylamine, particulate, standard deviation; Dimethylamine, standard deviation; Ethylamine; Ethylamine, particulate; Ethylamine, particulate, standard deviation; Ethylamine, standard deviation; Event label; Flow injection gas diffusion analysis of acid impregnated filter; Flow injection gas diffusion analysis of teflon filter; JGOFS; Joint Global Ocean Flux Study; Latitude of event; Longitude of event; Monomethylamine; Monomethylamine, particulate; Monomethylamine, particulate, standard deviation; Monomethylamine, standard deviation; Ocean Margin Exchange Project; OMEX; POS211; POS211_AF1; POS211_AF2; POS211_AF3; POS211_AF4; POS211_AF5; Poseidon; Trimethylamine; Trimethylamine, particulate; Trimethylamine, particulate, standard deviation; Trimethylamine, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 100 data points
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  • 5
    Publication Date: 2024-02-01
    Keywords: Date/Time of event; DEPTH, water; Dimethylamine, dissolved; Event label; Flow injection gas diffusion (unfiltered); GC01; GC02; GC03; GC04; GC05; GC06; GC07; GC08; GC09; GC10; GC11; GC12; GC17; GC18; GC19; GC20; GC21; GC22; GC23; GC25; GC26; GC28; GC33; GC34; GC35; GC36; GC37; GC38; GC40; GC41; GC42; GC43; GC44; GC45; GC52; GC53; GC54; GC55; GC56; GC57; GC58; GC59; GC60; GC62; GPUMP; JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; Monomethylamine; Ocean Margin Exchange Project; OMEX; POS211; POS211_GC01; POS211_GC02; POS211_GC03; POS211_GC04; POS211_GC05; POS211_GC06; POS211_GC07; POS211_GC08; POS211_GC09; POS211_GC10; POS211_GC11; POS211_GC12; POS211_GC17; POS211_GC18; POS211_GC19; POS211_GC20; POS211_GC21; POS211_GC22; POS211_GC23; POS211_GC25; POS211_GC26; POS211_GC28; POS211_GC33; POS211_GC34; POS211_GC35; POS211_GC36; POS211_GC37; POS211_GC38; POS211_GC40; POS211_GC41; POS211_GC42; POS211_GC43; POS211_GC44; POS211_GC45; POS211_GC52; POS211_GC53; POS211_GC54; POS211_GC55; POS211_GC56; POS211_GC57; POS211_GC58; POS211_GC59; POS211_GC60; POS211_GC62; Poseidon; Ships non-toxic pump; Trimethylamine
    Type: Dataset
    Format: text/tab-separated-values, 132 data points
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  • 6
    Publication Date: 2024-02-01
    Keywords: 19-Butanoyloxyfucoxanthin; 19-Hexanoyloxyfucoxanthin; Alloxanthin; alpha-Carotene, beta,epsilon-Carotene; beta-Carotene, beta,beta-Carotene; Chlorophyll a + pheophorbides; Chlorophyll b; Chlorophyll c1+c2; Chlorophyll c3; Date/Time of event; DEPTH, water; Diadinoxanthin; Divinyl chlorophyll a; Event label; Fucoxanthin; GPUMP; High Performance Liquid Chromatography assay of acetone extract (GF/F filtered); JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; Lutein; Ocean Margin Exchange Project; OMEX; Peridinin; PIG01; PIG02; PIG03; PIG04; PIG06; PIG07; PIG08; PIG09; PIG10; PIG11; PIG12; PIG13; PIG14; PIG15; PIG16; PIG17; PIG18; PIG19; PIG20; PIG21; PIG22; PIG23; PIG24; PIG25; PIG26; PIG27; PIG28; PIG29; PIG30; PIG31; PIG32; PIG33; PIG34; PIG35; PIG36; PIG37; PIG38; PIG39; PIG40; PIG41; PIG42; PIG43; PIG44; PIG45; PIG46; PIG47; PIG48; PIG49; PIG50; PIG51; PIG52; PIG53; PIG54; PIG55; PIG56; PIG57; PIG58; PIG59; PIG60; PIG61; PIG62; PIG63; POS211; POS211_PIG01; POS211_PIG02; POS211_PIG03; POS211_PIG04; POS211_PIG06; POS211_PIG07; POS211_PIG08; POS211_PIG09; POS211_PIG10; POS211_PIG11; POS211_PIG12; POS211_PIG13; POS211_PIG14; POS211_PIG15; POS211_PIG16; POS211_PIG17; POS211_PIG18; POS211_PIG19; POS211_PIG20; POS211_PIG21; POS211_PIG22; POS211_PIG23; POS211_PIG24; POS211_PIG25; POS211_PIG26; POS211_PIG27; POS211_PIG28; POS211_PIG29; POS211_PIG30; POS211_PIG31; POS211_PIG32; POS211_PIG33; POS211_PIG34; POS211_PIG35; POS211_PIG36; POS211_PIG37; POS211_PIG38; POS211_PIG39; POS211_PIG40; POS211_PIG41; POS211_PIG42; POS211_PIG43; POS211_PIG44; POS211_PIG45; POS211_PIG46; POS211_PIG47; POS211_PIG48; POS211_PIG49; POS211_PIG50; POS211_PIG51; POS211_PIG52; POS211_PIG53; POS211_PIG54; POS211_PIG55; POS211_PIG56; POS211_PIG57; POS211_PIG58; POS211_PIG59; POS211_PIG60; POS211_PIG61; POS211_PIG62; POS211_PIG63; Poseidon; Ships non-toxic pump; Zeaxanthin
    Type: Dataset
    Format: text/tab-separated-values, 930 data points
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  • 7
    Publication Date: 2024-02-01
    Keywords: Aerial sample, pump; AIRPUMP; ALTITUDE; Carbon dioxide, partial pressure; Date/Time of event; Event label; Gas chromatography; GCA01; GCA02; GCA03; GCA04; GCA05; GCA06; GCA07; GCA08; GCA09; GCA10; GCA11; GCA12; GCA13; GCA14; GCA15; GCA16; GCA17; GCA18; GCA19; GCA20; GCA21; GCA22; GCA24; GCA25; GCA26; GCA27; GCA28; GCA29; GCA30; GCA31; GCA32; GCA33; GCA34; GCA35; JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; Methane per air volume; Ocean Margin Exchange Project; OMEX; POS211; POS211_GCA01; POS211_GCA02; POS211_GCA03; POS211_GCA04; POS211_GCA05; POS211_GCA06; POS211_GCA07; POS211_GCA08; POS211_GCA09; POS211_GCA10; POS211_GCA11; POS211_GCA12; POS211_GCA13; POS211_GCA14; POS211_GCA15; POS211_GCA16; POS211_GCA17; POS211_GCA18; POS211_GCA19; POS211_GCA20; POS211_GCA21; POS211_GCA22; POS211_GCA24; POS211_GCA25; POS211_GCA26; POS211_GCA27; POS211_GCA28; POS211_GCA29; POS211_GCA30; POS211_GCA31; POS211_GCA32; POS211_GCA33; POS211_GCA34; POS211_GCA35; Poseidon
    Type: Dataset
    Format: text/tab-separated-values, 63 data points
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  • 8
    Publication Date: 2024-02-01
    Keywords: Calculated from pH and alkalinity; Carbon dioxide, partial pressure; Date/Time of event; DEPTH, water; Event label; Gas chromatography; GCW01; GCW02; GCW03; GCW04; GCW05; GCW06; GCW07; GCW08; GCW09; GCW10; GCW11; GCW12; GCW13; GCW14; GCW15; GCW16; GCW17; GCW18; GCW19; GCW20; GCW21; GCW22; GCW23; GCW25; GCW26; GCW27; GCW28; GCW29; GCW30; GCW31; GCW32; GCW33; GCW34; GCW35; GPUMP; JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; Methane; Ocean Margin Exchange Project; OMEX; POS211; POS211_GCW01; POS211_GCW02; POS211_GCW03; POS211_GCW04; POS211_GCW05; POS211_GCW06; POS211_GCW07; POS211_GCW08; POS211_GCW09; POS211_GCW10; POS211_GCW11; POS211_GCW12; POS211_GCW13; POS211_GCW14; POS211_GCW15; POS211_GCW16; POS211_GCW17; POS211_GCW18; POS211_GCW19; POS211_GCW20; POS211_GCW21; POS211_GCW22; POS211_GCW23; POS211_GCW25; POS211_GCW26; POS211_GCW27; POS211_GCW28; POS211_GCW29; POS211_GCW30; POS211_GCW31; POS211_GCW32; POS211_GCW33; POS211_GCW34; POS211_GCW35; Poseidon; Ships non-toxic pump
    Type: Dataset
    Format: text/tab-separated-values, 68 data points
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  • 9
    Publication Date: 2024-02-01
    Keywords: Aerial sample, pump; AIRPUMP; ALTITUDE; Belgica; BG9506; BG9506_CH4AIR001; BG9506_CH4AIR002; BG9506_CH4AIR003; BG9506_CH4AIR004; BG9506_CH4AIR005; BG9506_CH4AIR006; BG9506_CH4AIR007; BG9506_CH4AIR008; BG9506_CH4AIR009; BG9506_CH4AIR010; BG9506_CH4AIR011; BG9506_CH4AIR012; BG9506_CH4AIR013; BG9506_CH4AIR014; BG9506_CH4AIR015; BG9506_CH4AIR016; BG9506_CH4AIR017; BG9506_CH4AIR018; BG9506_CH4AIR019; BG9506_CH4AIR020; BG9506_CH4AIR021; BG9506_CH4AIR022; BG9506_CH4AIR023; BG9506_CH4AIR024; BG9506_CH4AIR025; BG9506_CH4AIR026; BG9506_CH4AIR027; BG9506_CH4AIR028; BG9506_CH4AIR029; BG9506_CH4AIR030; BG9506_CH4AIR031; BG9506_CH4AIR032; BG9506_CH4AIR033; BG9506_CH4AIR034; BG9506_CH4AIR035; BG9506_CH4AIR036; BG9506_CH4AIR037; BG9506_CH4AIR038; BG9506_CH4AIR039; BG9506_CH4AIR040; BG9506_CH4AIR041; BG9506_CH4AIR042; BG9506_CH4AIR043; BG9506_CH4AIR044; BG9506_CH4AIR045; BG9506_CH4AIR046; BG9506_CH4AIR047; BG9506_CH4AIR048; BG9506_CH4AIR049; BG9506_CH4AIR050; BG9506_CH4AIR051; BG9506_CH4AIR052; BG9506_CH4AIR053; BG9506_CH4AIR054; BG9506_CH4AIR055; BG9506_CH4AIR056; BG9506_CH4AIR057; BG9506_CH4AIR058; BG9506_CH4AIR059; BG9506_CH4AIR060; BG9506_CH4AIR061; BG9506_CH4AIR062; BG9506_CH4AIR063; BG9506_CH4AIR064; BG9506_CH4AIR065; BG9506_CH4AIR066; BG9506_CH4AIR067; BG9506_CH4AIR068; BG9506_CH4AIR069; BG9506_CH4AIR070; BG9506_CH4AIR071; BG9506_CH4AIR072; BG9506_CH4AIR073; BG9506_CH4AIR074; BG9506_CH4AIR075; BG9506_CH4AIR076; BG9506_CH4AIR077; BG9506_CH4AIR078; BG9506_CH4AIR079; BG9506_CH4AIR080; BG9506_CH4AIR081; BG9506_CH4AIR082; BG9506_CH4AIR083; BG9506_CH4AIR084; BG9506_CH4AIR085; BG9506_CH4AIR086; BG9506_CH4AIR087; BG9506_CH4AIR088; BG9506_CH4AIR089; BG9506_CH4AIR090; BG9506_CH4AIR091; BG9506_CH4AIR092; BG9506_CH4AIR093; BG9506_CH4AIR094; BG9506_CH4AIR095; BG9506_CH4AIR096; BG9506_CH4AIR097; BG9506_CH4AIR098; BG9506_CH4AIR099; BG9506_CH4AIR100; BG9506_CH4AIR101; BG9506_CH4AIR102; BG9506_CH4AIR103; BG9506_CH4AIR104; BG9506_CH4AIR105; BG9506_CH4AIR106; BG9506_CH4AIR107; BG9506_CH4AIR108; BG9506_CH4AIR109; BG9506_CH4AIR110; BG9506_CH4AIR111; BG9506_CH4AIR112; BG9506_CH4AIR113; BG9506_CH4AIR114; BG9506_CH4AIR115; BG9506_CH4AIR116; BG9506_CH4AIR117; BG9506_CH4AIR118; BG9506_CH4AIR119; BG9506_CH4AIR120; BG9506_CH4AIR121; BG9506_CH4AIR122; BG9506_CH4AIR123; BG9506_CH4AIR124; BG9506_CH4AIR125; BG9506_CH4AIR126; BG9506_CH4AIR127; BG9506_CH4AIR128; BG9506_CH4AIR129; BG9506_CH4AIR130; BG9506_CH4AIR131; BG9506_CH4AIR132; BG9506_CH4AIR133; BG9506_CH4AIR134; BG9506_CH4AIR135; BG9506_CH4AIR136; BG9506_CH4AIR137; BG9506_CH4AIR138; BG9506_CH4AIR139; BG9506_CH4AIR140; BG9506_CH4AIR141; BG9506_CH4AIR142; BG9506_CH4AIR143; BG9506_CH4AIR144; BG9506_CH4AIR145; BG9506_CH4AIR146; BG9506_CH4AIR147; BG9506_CH4AIR148; BG9506_CH4AIR149; BG9506_CH4AIR150; CH4AIR001; CH4AIR002; CH4AIR003; CH4AIR004; CH4AIR005; CH4AIR006; CH4AIR007; CH4AIR008; CH4AIR009; CH4AIR010; CH4AIR011; CH4AIR012; CH4AIR013; CH4AIR014; CH4AIR015; CH4AIR016; CH4AIR017; CH4AIR018; CH4AIR019; CH4AIR020; CH4AIR021; CH4AIR022; CH4AIR023; CH4AIR024; CH4AIR025; CH4AIR026; CH4AIR027; CH4AIR028; CH4AIR029; CH4AIR030; CH4AIR031; CH4AIR032; CH4AIR033; CH4AIR034; CH4AIR035; CH4AIR036; CH4AIR037; CH4AIR038; CH4AIR039; CH4AIR040; CH4AIR041; CH4AIR042; CH4AIR043; CH4AIR044; CH4AIR045; CH4AIR046; CH4AIR047; CH4AIR048; CH4AIR049; CH4AIR050; CH4AIR051; CH4AIR052; CH4AIR053; CH4AIR054; CH4AIR055; CH4AIR056; CH4AIR057; CH4AIR058; CH4AIR059; CH4AIR060; CH4AIR061; CH4AIR062; CH4AIR063; CH4AIR064; CH4AIR065; CH4AIR066; CH4AIR067; CH4AIR068; CH4AIR069; CH4AIR070; CH4AIR071; CH4AIR072; CH4AIR073; CH4AIR074; CH4AIR075; CH4AIR076; CH4AIR077; CH4AIR078; CH4AIR079; CH4AIR080; CH4AIR081; CH4AIR082; CH4AIR083; CH4AIR084; CH4AIR085; CH4AIR086; CH4AIR087; CH4AIR088; CH4AIR089; CH4AIR090; CH4AIR091; CH4AIR092; CH4AIR093; CH4AIR094; CH4AIR095; CH4AIR096; CH4AIR097; CH4AIR098; CH4AIR099; CH4AIR100; CH4AIR101; CH4AIR102; CH4AIR103; CH4AIR104; CH4AIR105; CH4AIR106; CH4AIR107; CH4AIR108; CH4AIR109; CH4AIR110; CH4AIR111; CH4AIR112; CH4AIR113; CH4AIR114; CH4AIR115; CH4AIR116; CH4AIR117; CH4AIR118; CH4AIR119; CH4AIR120; CH4AIR121; CH4AIR122; CH4AIR123; CH4AIR124; CH4AIR125; CH4AIR126; CH4AIR127; CH4AIR128; CH4AIR129; CH4AIR130; CH4AIR131; CH4AIR132; CH4AIR133; CH4AIR134; CH4AIR135; CH4AIR136; CH4AIR137; CH4AIR138; CH4AIR139; CH4AIR140; CH4AIR141; CH4AIR142; CH4AIR143; CH4AIR144; CH4AIR145; CH4AIR146; CH4AIR147; CH4AIR148; CH4AIR149; CH4AIR150; Cork Harbour; Date/Time of event; Event label; Gas chromatography; JGOFS; Joint Global Ocean Flux Study; LATITUDE; LONGITUDE; Methane per air volume; Ocean Margin Exchange Project; OMEX; Pertuis Charentais; Scheldt Delta Estuary
    Type: Dataset
    Format: text/tab-separated-values, 150 data points
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  • 10
    Publication Date: 2024-02-01
    Keywords: Belgica; BG9506; BG9506_CH4AQ001; BG9506_CH4AQ002; BG9506_CH4AQ003; BG9506_CH4AQ004; BG9506_CH4AQ005; BG9506_CH4AQ006; BG9506_CH4AQ007; BG9506_CH4AQ008; BG9506_CH4AQ009; BG9506_CH4AQ010; BG9506_CH4AQ011; BG9506_CH4AQ012; BG9506_CH4AQ013; BG9506_CH4AQ014; BG9506_CH4AQ015; BG9506_CH4AQ016; BG9506_CH4AQ017; BG9506_CH4AQ018; BG9506_CH4AQ019; BG9506_CH4AQ020; BG9506_CH4AQ021; BG9506_CH4AQ022; BG9506_CH4AQ023; BG9506_CH4AQ024; BG9506_CH4AQ025; BG9506_CH4AQ026; BG9506_CH4AQ027; BG9506_CH4AQ028; BG9506_CH4AQ029; BG9506_CH4AQ030; BG9506_CH4AQ031; BG9506_CH4AQ032; BG9506_CH4AQ033; BG9506_CH4AQ034; BG9506_CH4AQ035; BG9506_CH4AQ036; BG9506_CH4AQ037; BG9506_CH4AQ038; BG9506_CH4AQ039; BG9506_CH4AQ040; BG9506_CH4AQ041; BG9506_CH4AQ042; BG9506_CH4AQ043; BG9506_CH4AQ044; BG9506_CH4AQ045; BG9506_CH4AQ046; BG9506_CH4AQ047; BG9506_CH4AQ048; BG9506_CH4AQ049; BG9506_CH4AQ050; BG9506_CH4AQ051; BG9506_CH4AQ052; BG9506_CH4AQ053; BG9506_CH4AQ054; BG9506_CH4AQ055; BG9506_CH4AQ056; BG9506_CH4AQ057; BG9506_CH4AQ058; BG9506_CH4AQ059; BG9506_CH4AQ060; BG9506_CH4AQ061; BG9506_CH4AQ062; BG9506_CH4AQ063; BG9506_CH4AQ064; BG9506_CH4AQ065; BG9506_CH4AQ066; BG9506_CH4AQ067; BG9506_CH4AQ068; BG9506_CH4AQ069; BG9506_CH4AQ070; BG9506_CH4AQ071; BG9506_CH4AQ072; BG9506_CH4AQ073; BG9506_CH4AQ074; BG9506_CH4AQ075; BG9506_CH4AQ076; BG9506_CH4AQ077; BG9506_CH4AQ078; BG9506_CH4AQ079; BG9506_CH4AQ080; BG9506_CH4AQ081; BG9506_CH4AQ082; BG9506_CH4AQ083; BG9506_CH4AQ084; BG9506_CH4AQ085; BG9506_CH4AQ086; BG9506_CH4AQ087; BG9506_CH4AQ088; BG9506_CH4AQ089; BG9506_CH4AQ090; BG9506_CH4AQ091; BG9506_CH4AQ092; BG9506_CH4AQ093; BG9506_CH4AQ094; BG9506_CH4AQ095; BG9506_CH4AQ096; BG9506_CH4AQ097; BG9506_CH4AQ098; BG9506_CH4AQ099; BG9506_CH4AQ100; BG9506_CH4AQ101; BG9506_CH4AQ102; BG9506_CH4AQ103; BG9506_CH4AQ104; BG9506_CH4AQ105; BG9506_CH4AQ106; BG9506_CH4AQ107; BG9506_CH4AQ108; BG9506_CH4AQ109; BG9506_CH4AQ110; BG9506_CH4AQ111; BG9506_CH4AQ112; BG9506_CH4AQ113; BG9506_CH4AQ114; BG9506_CH4AQ115; BG9506_CH4AQ116; BG9506_CH4AQ117; BG9506_CH4AQ118; BG9506_CH4AQ119; BG9506_CH4AQ120; BG9506_CH4AQ121; BG9506_CH4AQ122; BG9506_CH4AQ123; BG9506_CH4AQ124; BG9506_CH4AQ125; BG9506_CH4AQ126; BG9506_CH4AQ127; BG9506_CH4AQ128; BG9506_CH4AQ129; BG9506_CH4AQ130; BG9506_CH4AQ131; BG9506_CH4AQ132; BG9506_CH4AQ133; BG9506_CH4AQ134; BG9506_CH4AQ135; BG9506_CH4AQ136; BG9506_CH4AQ137; BG9506_CH4AQ138; BG9506_CH4AQ139; BG9506_CH4AQ140; BG9506_CH4AQ141; BG9506_CH4AQ142; BG9506_CH4AQ143; BG9506_CH4AQ144; BG9506_CH4AQ145; BG9506_CH4AQ146; BG9506_CH4AQ147; BG9506_CH4AQ148; BG9506_CH4AQ149; BG9506_CH4AQ150; BG9506_CH4AQ151; BG9506_CH4AQ152; BG9506_CH4AQ153; BG9506_CH4AQ154; BG9506_CH4AQ155; BG9506_CH4AQ156; BG9506_CH4AQ157; BG9506_CH4AQ158; BG9506_CH4AQ159; BG9506_CH4AQ160; BG9506_CH4AQ161; BG9506_CH4AQ162; BG9506_CH4AQ163; BG9506_CH4AQ164; BG9506_CH4AQ165; BG9506_CH4AQ166; BG9506_CH4AQ167; BG9506_CH4AQ168; BG9506_CH4AQ169; BG9506_CH4AQ170; BG9506_CH4AQ171; BG9506_CH4AQ172; BG9506_CH4AQ173; BG9506_CH4AQ174; BG9506_CH4AQ175; BG9506_CH4AQ176; BG9506_CH4AQ177; BG9506_CH4AQ178; BG9506_CH4AQ179; BG9506_CH4AQ180; BG9506_CH4AQ181; BG9506_CH4AQ182; BG9506_CH4AQ183; BG9506_CH4AQ184; BG9506_CH4AQ185; BG9506_CH4AQ186; BG9506_CH4AQ187; BG9506_CH4AQ188; BG9506_CH4AQ189; BG9506_CH4AQ190; BG9506_CH4AQ191; BG9506_CH4AQ192; BG9506_CH4AQ193; BG9506_CH4AQ194; BG9506_CH4AQ195; BG9506_CH4AQ196; BG9506_CH4AQ197; BG9506_CH4AQ198; BG9506_CH4AQ199; BG9506_CH4AQ200; BG9506_CH4AQ201; BG9506_CH4AQ202; BG9506_CH4AQ203; BG9506_CH4AQ204; BG9506_CH4AQ205; BG9506_CH4AQ206; BG9506_CH4AQ207; BG9506_CH4AQ208; BG9506_CH4AQ209; BG9506_CH4AQ210; BG9506_CH4AQ211; BG9506_CH4AQ212; BG9506_CH4AQ213; BG9506_CH4AQ214; BG9506_CH4AQ215; BG9506_CH4AQ216; BG9506_CH4AQ217; BG9506_CH4AQ218; BG9506_CH4AQ219; BG9506_CH4AQ220; BG9506_CH4AQ221; BG9506_CH4AQ222; BG9506_CH4AQ223; BG9506_CH4AQ224; BG9506_CH4AQ225; BG9506_CH4AQ226; BG9506_CH4AQ227; BG9506_CH4AQ228; BG9506_CH4AQ229; BG9506_CH4AQ230; BG9506_CH4AQ231; BG9506_CH4AQ232; BG9506_CH4AQ233; BG9506_CH4AQ234; BG9506_CH4AQ235; BG9506_CH4AQ236; BG9506_CH4AQ237; BG9506_CH4AQ238; BG9506_CH4AQ239; BG9506_CH4AQ240; BG9506_CH4AQ241; BG9506_CH4AQ242; BG9506_CH4AQ243; BG9506_CH4AQ244; BG9506_CH4AQ245; BG9506_CH4AQ246; BG9506_CH4AQ247; BG9506_CH4AQ248; BG9506_CH4AQ249; BG9506_CH4AQ250; BG9506_CH4AQ251; BG9506_CH4AQ252; BG9506_CH4AQ253; BG9506_CH4AQ254; BG9506_CH4AQ255; BG9506_CH4AQ256; BG9506_CH4AQ257; BG9506_CH4AQ258; BG9506_CH4AQ259; BG9506_CH4AQ260; BG9506_CH4AQ261; BG9506_CH4AQ262; BG9506_CH4AQ263; BG9506_CH4AQ264; BG9506_CH4AQ265; BG9506_CH4AQ266; BG9506_CH4AQ267; BG9506_CH4AQ268; BG9506_CH4AQ269; BG9506_CH4AQ270; BG9506_CH4AQ271; BG9506_CH4AQ272; BG9506_CH4AQ273; BG9506_CH4AQ274; BG9506_CH4AQ275; BG9506_CH4AQ276; BG9506_CH4AQ277; BG9506_CH4AQ278; BG9506_CH4AQ279; BG9506_CH4AQ280; BG9506_CH4AQ281; BG9506_CH4AQ282; BG9506_CH4AQ283; BG9506_CH4AQ284; BG9506_CH4AQ285; BG9506_CH4AQ286; BG9506_CH4AQ287; BG9506_CH4AQ288; BG9506_CH4AQ289; BG9506_CH4AQ290; BG9506_CH4AQ291; BG9506_CH4AQ292; BG9506_CH4AQ293; BG9506_CH4AQ294; BG9506_CH4AQ295; BG9506_CH4AQ296; BG9506_CH4AQ297; BG9506_CH4AQ298; BG9506_CH4AQ299; BG9506_CH4AQ300; BG9506_CH4AQ301; BG9506_CH4AQ302; BG9506_CH4AQ303; BG9506_CH4AQ304; BG9506_CH4AQ305; BG9506_CH4AQ306; BG9506_CH4AQ307; BG9506_CH4AQ308; BG9506_CH4AQ309; BG9506_CH4AQ310; BG9506_CH4AQ311; BG9506_CH4AQ312; BG9506_CH4AQ313; BG9506_CH4AQ314; BG9506_CH4AQ315; BG9506_CH4AQ316; BG9506_CH4AQ317; BG9506_CH4AQ318; BG9506_CH4AQ319; BG9506_CH4AQ320; BG9506_CH4AQ321; BG9506_CH4AQ322; BG9506_CH4AQ323; BG9506_CH4AQ324; BG9506_CH4AQ325; BG9506_CH4AQ326; BG9506_CH4AQ327; BG9506_CH4AQ328; BG9506_CH4AQ329; BG9506_CH4AQ330; BG9506_CH4AQ331; BG9506_CH4AQ332; BG9506_CH4AQ333; BG9506_CH4AQ334; BG9506_CH4AQ335; BG9506_CH4AQ336; BG9506_CH4AQ337; BG9506_CH4AQ338; BG9506_CH4AQ339; BG9506_CH4AQ340; BG9506_CH4AQ341; BG9506_CH4AQ342; BG9506_CH4AQ343; BG9506_CH4AQ344; BG9506_CH4AQ345; BG9506_CH4AQ346; BG9506_CH4AQ347; BG9506_CH4AQ348; BG9506_CH4AQ349; BG9506_CH4AQ350; BG9506_CH4AQ351; BG9506_CH4AQ352; BG9506_CH4AQ353; BG9506_CH4AQ354; BG9506_CH4AQ355; BG9506_CH4AQ356; BG9506_CH4AQ357; BG9506_CH4AQ358; BG9506_CH4AQ359; BG9506_CH4AQ360; BG9506_CH4AQ361; BG9506_CH4AQ362; BG9506_CH4AQ363; BG9506_CH4AQ364; BG9506_CH4AQ365; BG9506_CH4AQ366; BG9506_CH4AQ367; BG9506_CH4AQ368; BG9506_CH4AQ369; BG9506_CH4AQ370; BG9506_CH4AQ371; BG9506_CH4AQ372; BG9506_CH4AQ373; BG9506_CH4AQ374; BG9506_CH4AQ375; BG9506_CH4AQ376; BG9506_CH4AQ377; BG9506_CH4AQ378; BG9506_CH4AQ379; BG9506_CH4AQ380; BG9506_CH4AQ381; BG9506_CH4AQ382; BG9506_CH4AQ383; BG9506_CH4AQ384; BG9506_CH4AQ385; BG9506_CH4AQ386; BG9506_CH4AQ387; BG9506_CH4AQ388; BG9506_CH4AQ389; BG9506_CH4AQ390; BG9506_CH4AQ391; BG9506_CH4AQ392; BG9506_CH4AQ393; BG9506_CH4AQ394; BG9506_CH4AQ395; BG9506_CH4AQ396; BG9506_CH4AQ397; BG9506_CH4AQ398; BG9506_CH4AQ399; BG9506_CH4AQ400; BG9506_CH4AQ401; BG9506_CH4AQ402; BG9506_CH4AQ403; BG9506_CH4AQ404; BG9506_CH4AQ405; BG9506_CH4AQ406; BG9506_CH4AQ407; BG9506_CH4AQ408; BG9506_CH4AQ409; BG9506_CH4AQ410; BG9506_CH4AQ411; BG9506_CH4AQ412; BG9506_CH4AQ413; BG9506_CH4AQ414; BG9506_CH4AQ415; BG9506_CH4AQ416; BG9506_CH4AQ417; BG9506_CH4AQ418; BG9506_CH4AQ419; BG9506_CH4AQ420; BG9506_CH4AQ421; BG9506_CH4AQ422; BG9506_CH4AQ423; BG9506_CH4AQ424; BG9506_CH4AQ425; BG9506_CH4AQ426; BG9506_CH4AQ427; BG9506_CH4AQ428; BG9506_CH4AQ429; BG9506_CH4AQ430; BG9506_CH4AQ431; BG9506_CH4AQ432; BG9506_CH4AQ433; BG9506_CH4AQ434; BG9506_CH4AQ435; BG9506_CH4AQ436; BG9506_CH4AQ437; BG9506_CH4AQ438; BG9506_CH4AQ439; BG9506_CH4AQ440; BG9506_CH4AQ441; BG9506_CH4AQ442; BG9506_CH4AQ443; BG9506_CH4AQ444; BG9506_CH4AQ445; BG9506_CH4AQ446; BG9506_CH4AQ447; BG9506_CH4AQ448; BG9506_CH4AQ449; BG9506_CH4AQ450; BG9506_CH4AQ451; BG9506_CH4AQ452; BG9506_CH4AQ453; BG9506_CH4AQ454; BG9506_CH4AQ455; BG9506_CH4AQ456; CH4AQ001; CH4AQ002; CH4AQ003; CH4AQ004; CH4AQ005; CH4AQ006; CH4AQ007; CH4AQ008; CH4AQ009; CH4AQ010; CH4AQ011; CH4AQ012; CH4AQ013; CH4AQ014; CH4AQ015; CH4AQ016; CH4AQ017; CH4AQ018; CH4AQ019; CH4AQ020; CH4AQ021; CH4AQ022; CH4AQ023;
    Type: Dataset
    Format: text/tab-separated-values, 456 data points
    Location Call Number Limitation Availability
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