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  • PANGAEA  (57,462)
  • 2000-2004  (57,462)
Collection
Keywords
Years
Year
  • 1
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-22
    Keywords: 06AQANTX_4/536-1; 06AQANTX_4/537-1; 06AQANTX_4/538-1; 06AQANTX_4/539-1; 06AQANTX_4/540-1; 06AQANTX_4/541-1; 06AQANTX_4/542-1; 06AQANTX_4/543-1; 06AQANTX_4/544-1; 06AQANTX_4/545-1; 06AQANTX_4/546-1; 06AQANTX_4/547-1; 06AQANTX_4/548-1; 06AQANTX_4/549-1; 06AQANTX_4/550-1; 06AQANTX_4/551-1; 06AQANTX_4/552-1; 06AQANTX_4/553-1; 06AQANTX_4/554-1; 06AQANTX_4/555-1; 06AQANTX_4/556-1; 06AQANTX_4/557-1; 06AQANTX_4/558-1; 06AQANTX_4/559-1; 06AQANTX_4/560-1; 06AQANTX_4/562-1; 06AQANTX_4/563-1; 06AQANTX_4/564-1; 06AQANTX_4/565-1; 06AQANTX_4/566-1; 06AQANTX_4/567-1; 06AQANTX_4/568-1; 06AQANTX_4/569-1; 06AQANTX_4/570-1; 06AQANTX_4/571-1; 06AQANTX_4/572-1; 06AQANTX_4/573-1; 06AQANTX_4/574-1; 06AQANTX_4/575-1; 06AQANTX_4/576-1; 06AQANTX_4/577-1; 06AQANTX_4/578-1; 06AQANTX_4/579-1; 06AQANTX_4/580-3; 06AQANTX_4/581-1; 06AQANTX_4/582-1; 06AQANTX_4/583-3; 06AQANTX_4/584-1; 06AQANTX_4/585-1; 06AQANTX_4/586-3; 06AQANTX_4/587-1; 06AQANTX_4/588-1; 06AQANTX_4/589-3; 06AQANTX_4/590-1; 06AQANTX_4/591-2; 06AQANTX_4/592-3; 06AQANTX_4/593-3; 06AQANTX_4/594-1; 06AQANTX_4/595-3; 06AQANTX_4/596-1; 06AQANTX_4/597-1; 06AQANTX_4/598-3; 06AQANTX_4/599-1; 06AQANTX_4/600-1; 06AQANTX_4/601-1; 06AQANTX_4/602-2; 06AQANTX_4/603-3; 06AQANTX_4/604-1; 06AQANTX_4/605-1; 06AQANTX_4/606-2; 06AQANTX_4/610-1; 06AQANTX_4/611-1; 06AQANTX_4/612-1; 06AQANTX_4/613-1; 06AQANTX_4/618-3; 06AQANTX_4/619-1; 06AQANTX_4/623-3; 06AQANTX_4/624-1; 06AQANTX_4/625-3; 06AQANTX_4/626-3; 06AQANTX_4/627-1; 06AQANTX_4/628-3; 06AQANTX_4/629-1; 06AQANTX_4/630-3; 06AQANTX_4/631-1; 06AQANTX_4/632-1; 06AQANTX_4/633-1; 06AQANTX_4/634-1; 06AQANTX_4/635-1; 06AQANTX_4/635-3; 06AQANTX_4/636-1; 06AQANTX_4/637-1; 06AQANTX_4/638-1; 06AQANTX_4/639-1; 06AQANTX_4/640-1; 06AQANTX_4/641-1; 06AQANTX_4/642-1; 06AQANTX_4/643-1; 06AQANTX_4/644-1; ANT-X/4; Bottle number; Carbon, total; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Freon-11 (trichorofluoromethane); Freon-12 (dichlorodifluoromethane); Helium; Helium, dHe-3; Helium, dHe-3, standard deviation; Helium, standard deviation; Latitude of event; Longitude of event; Neon; Neon, standard deviation; Nitrate; Nitrite; Oxygen; Phosphate; Polarstern; Pressure, water; PS21/536-1; PS21/537-1; PS21/538-1; PS21/539-1; PS21/540-1; PS21/541-1; PS21/542-1; PS21/543-1; PS21/544-1; PS21/545-1; PS21/546-1; PS21/547-1; PS21/548-1; PS21/549-1; PS21/550-1; PS21/551-1; PS21/552-1; PS21/553-1; PS21/554-1; PS21/555-1; PS21/556-1; PS21/557-1; PS21/558-1; PS21/559-1; PS21/560-1; PS21/562-1; PS21/563-1; PS21/564-1; PS21/565-1; PS21/566-1; PS21/567-1; PS21/568-1; PS21/569-1; PS21/570-1; PS21/571-1; PS21/572-1; PS21/573-1; PS21/574-1; PS21/575-1; PS21/576-1; PS21/577-1; PS21/578-1; PS21/579-1; PS21/580-3; PS21/581-1; PS21/582-1; PS21/583-3; PS21/584-1; PS21/585-1; PS21/586-3; PS21/587-1; PS21/588-1; PS21/589-3; PS21/590-1; PS21/591-2; PS21/592-3; PS21/593-3; PS21/594-1; PS21/595-3; PS21/596-1; PS21/597-1; PS21/598-3; PS21/599-1; PS21/600-1; PS21/601-1; PS21/602-2; PS21/603-3; PS21/604-1; PS21/605-1; PS21/606-2; PS21/610-1; PS21/611-1; PS21/612-1; PS21/613-1; PS21/618-3; PS21/619-1; PS21/623-3; PS21/624-1; PS21/625-3; PS21/626-3; PS21/627-1; PS21/628-3; PS21/629-1; PS21/630-3; PS21/631-1; PS21/632-1; PS21/633-1; PS21/634-1; PS21/635-1; PS21/635-3; PS21/636-1; PS21/637-1; PS21/638-1; PS21/639-1; PS21/640-1; PS21/641-1; PS21/642-1; PS21/643-1; PS21/644-1; PS21 06AQANTX_4; Salinity; Salinometer, inductive; Silicate; Temperature, water; Temperature, water, potential; Tritium; Tritium, standard deviation; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 32378 data points
    Location Call Number Expected Availability
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  • 2
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-22
    Keywords: 06AQANTVIII_2/119-1; 06AQANTVIII_2/124-1; 06AQANTVIII_2/129-1; 06AQANTVIII_2/134-1; 06AQANTVIII_2/137-1; 06AQANTVIII_2/138-1; 06AQANTVIII_2/139-1; 06AQANTVIII_2/140-1; 06AQANTVIII_2/141-1; 06AQANTVIII_2/142-1; 06AQANTVIII_2/143-1; 06AQANTVIII_2/144-1; 06AQANTVIII_2/145-1; 06AQANTVIII_2/146-1; 06AQANTVIII_2/147-1; 06AQANTVIII_2/149-1; 06AQANTVIII_2/150-1; 06AQANTVIII_2/151-1; 06AQANTVIII_2/152-1; 06AQANTVIII_2/153-1; 06AQANTVIII_2/154-1; 06AQANTVIII_2/155-1; 06AQANTVIII_2/156-1; 06AQANTVIII_2/157-1; 06AQANTVIII_2/159-1; 06AQANTVIII_2/160-1; 06AQANTVIII_2/161-1; 06AQANTVIII_2/162-1; 06AQANTVIII_2/163-1; 06AQANTVIII_2/164-1; 06AQANTVIII_2/165-1; 06AQANTVIII_2/166-1; 06AQANTVIII_2/167-1; 06AQANTVIII_2/168-1; 06AQANTVIII_2/169-1; 06AQANTVIII_2/170-1; 06AQANTVIII_2/171-1; 06AQANTVIII_2/172-1; 06AQANTVIII_2/173-1; 06AQANTVIII_2/174-1; 06AQANTVIII_2/175-1; 06AQANTVIII_2/176-1; 06AQANTVIII_2/177-1; 06AQANTVIII_2/178-1; 06AQANTVIII_2/179-1; 06AQANTVIII_2/180-1; 06AQANTVIII_2/181-1; 06AQANTVIII_2/182-1; 06AQANTVIII_2/183-1; 06AQANTVIII_2/184-1; 06AQANTVIII_2/185-1; 06AQANTVIII_2/186-1; 06AQANTVIII_2/187-1; 06AQANTVIII_2/188-1; 06AQANTVIII_2/189-1; 06AQANTVIII_2/192-1; 06AQANTVIII_2/193-1; 06AQANTVIII_2/194-1; 06AQANTVIII_2/195-1; 06AQANTVIII_2/197-1; 06AQANTVIII_2/198-1; 06AQANTVIII_2/199-1; 06AQANTVIII_2/200-1; 06AQANTVIII_2/201-1; 06AQANTVIII_2/202-1; 06AQANTVIII_2/203-1; 06AQANTVIII_2/204-1; 06AQANTVIII_2/205-1; 06AQANTVIII_2/206-1; 06AQANTVIII_2/207-1; 06AQANTVIII_2/208-1; 06AQANTVIII_2/209-1; 06AQANTVIII_2/210-1; 06AQANTVIII_2/211-1; 06AQANTVIII_2/212-1; 06AQANTVIII_2/213-1; 06AQANTVIII_2/214-1; 06AQANTVIII_2/215-1; 06AQANTVIII_2/216-1; 06AQANTVIII_2/217-1; 06AQANTVIII_2/218-1; 06AQANTVIII_2/219-1; 06AQANTVIII_2/220-1; 06AQANTVIII_2/221-1; 06AQANTVIII_2/222-1; ANT-VIII/2; Bottle number; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Nitrate; Nitrite; Oxygen; Phosphate; Polarstern; Pressure, water; PS16/119-1; PS16/124-1; PS16/129-1; PS16/134-1; PS16/137-1; PS16/138-1; PS16/139-1; PS16/140-1; PS16/141-1; PS16/142-1; PS16/143-1; PS16/144-1; PS16/145-1; PS16/146-1; PS16/147-1; PS16/149-1; PS16/150-1; PS16/151-1; PS16/152-1; PS16/153-1; PS16/154-1; PS16/155-1; PS16/156-1; PS16/157-1; PS16/158-2; PS16/159-1; PS16/160-1; PS16/161-1; PS16/162-1; PS16/163-1; PS16/164-1; PS16/165-1; PS16/166-1; PS16/167-1; PS16/168-1; PS16/169-1; PS16/170-1; PS16/171-1; PS16/172-1; PS16/173-1; PS16/174-1; PS16/175-1; PS16/176-1; PS16/177-1; PS16/178-1; PS16/179-1; PS16/180-1; PS16/181-1; PS16/182-1; PS16/183-1; PS16/184-1; PS16/185-1; PS16/186-1; PS16/187-1; PS16/188-1; PS16/189-1; PS16/192-1; PS16/193-1; PS16/194-1; PS16/195-1; PS16/197-1; PS16/198-1; PS16/199-1; PS16/200-1; PS16/201-1; PS16/202-1; PS16/203-1; PS16/204-1; PS16/205-1; PS16/206-1; PS16/207-1; PS16/208-1; PS16/209-1; PS16/210-1; PS16/211-1; PS16/212-1; PS16/213-1; PS16/214-1; PS16/215-1; PS16/216-1; PS16/217-1; PS16/218-1; PS16/219-1; PS16/220-1; PS16/221-1; PS16/222-1; PS16 06AQANTVIII_2; Salinity; Salinometer, inductive; Silicate; Temperature, water; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 16368 data points
    Location Call Number Expected Availability
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  • 3
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-22
    Keywords: 06AQANTIX_2/100-1; 06AQANTIX_2/101-1; 06AQANTIX_2/102-1; 06AQANTIX_2/103-1; 06AQANTIX_2/104-1; 06AQANTIX_2/105-1; 06AQANTIX_2/106-1; 06AQANTIX_2/108-1; 06AQANTIX_2/109-1; 06AQANTIX_2/113-1; 06AQANTIX_2/115-1; 06AQANTIX_2/36-1; 06AQANTIX_2/39-1; 06AQANTIX_2/40-1; 06AQANTIX_2/41-1; 06AQANTIX_2/42-1; 06AQANTIX_2/43-1; 06AQANTIX_2/44-1; 06AQANTIX_2/45-1; 06AQANTIX_2/46-1; 06AQANTIX_2/47-1; 06AQANTIX_2/48-1; 06AQANTIX_2/49-1; 06AQANTIX_2/50-1; 06AQANTIX_2/51-1; 06AQANTIX_2/53-1; 06AQANTIX_2/55-1; 06AQANTIX_2/56-1; 06AQANTIX_2/57-1; 06AQANTIX_2/58-1; 06AQANTIX_2/59-1; 06AQANTIX_2/60-1; 06AQANTIX_2/61-1; 06AQANTIX_2/62-1; 06AQANTIX_2/63-1; 06AQANTIX_2/64-1; 06AQANTIX_2/65-1; 06AQANTIX_2/66-1; 06AQANTIX_2/67-1; 06AQANTIX_2/68-1; 06AQANTIX_2/69-1; 06AQANTIX_2/70-1; 06AQANTIX_2/71-1; 06AQANTIX_2/72-1; 06AQANTIX_2/73-1; 06AQANTIX_2/74-1; 06AQANTIX_2/75-1; 06AQANTIX_2/76-1; 06AQANTIX_2/77-1; 06AQANTIX_2/78-1; 06AQANTIX_2/79-1; 06AQANTIX_2/80-1; 06AQANTIX_2/81-1; 06AQANTIX_2/82-1; 06AQANTIX_2/83-1; 06AQANTIX_2/84-1; 06AQANTIX_2/85-1; 06AQANTIX_2/86-1; 06AQANTIX_2/87-1; 06AQANTIX_2/88-1; 06AQANTIX_2/89-1; 06AQANTIX_2/90-1; 06AQANTIX_2/91-1; 06AQANTIX_2/92-1; 06AQANTIX_2/93-1; 06AQANTIX_2/94-1; 06AQANTIX_2/95-1; 06AQANTIX_2/96-1; 06AQANTIX_2/97-1; 06AQANTIX_2/98-1; 06AQANTIX_2/99-1; ANT-IX/2; Bottle number; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Nitrate; Nitrite; Oxygen; Phosphate; Polarstern; Pressure, water; PS18/036-1; PS18/039-1; PS18/040-1; PS18/041-1; PS18/042-1; PS18/043-1; PS18/044-1; PS18/045-1; PS18/046-1; PS18/047-1; PS18/048-1; PS18/049-1; PS18/050-1; PS18/051-1; PS18/053-1; PS18/055-1; PS18/056-1; PS18/057-1; PS18/058-1; PS18/059-1; PS18/060-1; PS18/061-1; PS18/062-1; PS18/063-1; PS18/064-1; PS18/065-1; PS18/066-1; PS18/067-1; PS18/068-1; PS18/069-1; PS18/070-1; PS18/071-1; PS18/072-1; PS18/073-1; PS18/074-1; PS18/075-1; PS18/076-1; PS18/077-1; PS18/078-1; PS18/079-1; PS18/080-1; PS18/081-1; PS18/082-1; PS18/083-1; PS18/084-1; PS18/085-1; PS18/086-1; PS18/087-1; PS18/088-1; PS18/089-1; PS18/090-1; PS18/091-1; PS18/092-1; PS18/093-1; PS18/094-1; PS18/095-1; PS18/096-1; PS18/097-1; PS18/098-1; PS18/099-1; PS18/100-1; PS18/101-1; PS18/102-1; PS18/103-1; PS18/104-1; PS18/105-1; PS18/106-1; PS18/108-1; PS18/109-1; PS18/113-1; PS18/114-1; PS18/115-1; PS18 06AQANTIX_2; Salinity; Salinometer, inductive; Silicate; Temperature, water; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 15172 data points
    Location Call Number Expected Availability
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  • 4
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-22
    Keywords: 06AQANTXV_4/100-1; 06AQANTXV_4/10-1; 06AQANTXV_4/101-1; 06AQANTXV_4/102-1; 06AQANTXV_4/103-1; 06AQANTXV_4/104-1; 06AQANTXV_4/105-1; 06AQANTXV_4/106-1; 06AQANTXV_4/107-2; 06AQANTXV_4/107-4; 06AQANTXV_4/108-1; 06AQANTXV_4/109-1; 06AQANTXV_4/1-1; 06AQANTXV_4/110-1; 06AQANTXV_4/111-1; 06AQANTXV_4/112-1; 06AQANTXV_4/113-1; 06AQANTXV_4/114-2; 06AQANTXV_4/114-4; 06AQANTXV_4/115-1; 06AQANTXV_4/11-6; 06AQANTXV_4/116-1; 06AQANTXV_4/117-1; 06AQANTXV_4/118-1; 06AQANTXV_4/119-1; 06AQANTXV_4/120-1; 06AQANTXV_4/12-1; 06AQANTXV_4/121-1; 06AQANTXV_4/122-2; 06AQANTXV_4/123-1; 06AQANTXV_4/124-1; 06AQANTXV_4/125-1; 06AQANTXV_4/126-1; 06AQANTXV_4/127-1; 06AQANTXV_4/128-1; 06AQANTXV_4/129-1; 06AQANTXV_4/130-1; 06AQANTXV_4/13-1; 06AQANTXV_4/131-1; 06AQANTXV_4/132-1; 06AQANTXV_4/133-1; 06AQANTXV_4/134-1; 06AQANTXV_4/135-1; 06AQANTXV_4/136-1; 06AQANTXV_4/14-1; 06AQANTXV_4/15-1; 06AQANTXV_4/15-2; 06AQANTXV_4/16-1; 06AQANTXV_4/17-1; 06AQANTXV_4/18-1; 06AQANTXV_4/19-1; 06AQANTXV_4/20-1; 06AQANTXV_4/20-2; 06AQANTXV_4/21-1; 06AQANTXV_4/22-1; 06AQANTXV_4/23-1; 06AQANTXV_4/24-1; 06AQANTXV_4/25-1; 06AQANTXV_4/26-1; 06AQANTXV_4/27-1; 06AQANTXV_4/28-1; 06AQANTXV_4/29-1; 06AQANTXV_4/30-1; 06AQANTXV_4/30-2; 06AQANTXV_4/31-1; 06AQANTXV_4/3-2; 06AQANTXV_4/32-1; 06AQANTXV_4/33-1; 06AQANTXV_4/34-1; 06AQANTXV_4/35-1; 06AQANTXV_4/36-1; 06AQANTXV_4/37-1; 06AQANTXV_4/38-1; 06AQANTXV_4/39-1; 06AQANTXV_4/40-1; 06AQANTXV_4/41-1; 06AQANTXV_4/42-1; 06AQANTXV_4/4-3; 06AQANTXV_4/43-1; 06AQANTXV_4/44-1; 06AQANTXV_4/45-1; 06AQANTXV_4/46-1; 06AQANTXV_4/47-2; 06AQANTXV_4/48-1; 06AQANTXV_4/49-1; 06AQANTXV_4/50-1; 06AQANTXV_4/5-1; 06AQANTXV_4/51-1; 06AQANTXV_4/52-1; 06AQANTXV_4/53-1; 06AQANTXV_4/54-1; 06AQANTXV_4/55-1; 06AQANTXV_4/57-1; 06AQANTXV_4/58-1; 06AQANTXV_4/59-1; 06AQANTXV_4/60-1; 06AQANTXV_4/6-1; 06AQANTXV_4/61-1; 06AQANTXV_4/62-1; 06AQANTXV_4/63-1; 06AQANTXV_4/65-1; 06AQANTXV_4/66-1; 06AQANTXV_4/67-1; 06AQANTXV_4/68-1; 06AQANTXV_4/68-2; 06AQANTXV_4/69-1; 06AQANTXV_4/70-1; 06AQANTXV_4/71-1; 06AQANTXV_4/72-1; 06AQANTXV_4/7-3; 06AQANTXV_4/73-1; 06AQANTXV_4/74-1; 06AQANTXV_4/75-1; 06AQANTXV_4/76-1; 06AQANTXV_4/77-1; 06AQANTXV_4/78-2; 06AQANTXV_4/78-4; 06AQANTXV_4/79-1; 06AQANTXV_4/80-1; 06AQANTXV_4/8-1; 06AQANTXV_4/81-1; 06AQANTXV_4/82-1; 06AQANTXV_4/83-1; 06AQANTXV_4/84-1; 06AQANTXV_4/85-1; 06AQANTXV_4/86-1; 06AQANTXV_4/87-1; 06AQANTXV_4/88-2; 06AQANTXV_4/88-4; 06AQANTXV_4/89-1; 06AQANTXV_4/90-1; 06AQANTXV_4/9-1; 06AQANTXV_4/91-1; 06AQANTXV_4/92-1; 06AQANTXV_4/93-1; 06AQANTXV_4/94-1; 06AQANTXV_4/96-1; 06AQANTXV_4/97-1; 06AQANTXV_4/98-1; 06AQANTXV_4/99-2; 06AQANTXV_4/99-4; 06AQANTXV_4/99-5; ANT-XV/4; Bottle number; Carbon dioxide; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Freon-11 (trichorofluoromethane); Freon-113; Freon-12 (dichlorodifluoromethane); Helium; Helium, dHe-3; Helium, dHe-3, standard deviation; Helium, standard deviation; Latitude of event; Longitude of event; Neon; Neon, standard deviation; Nitrate; Nitrite; Oxygen; Phosphate; Polarstern; Pressure, water; PS49/001-1; PS49/003-2; PS49/004-3; PS49/005-1; PS49/006-1; PS49/007-3; PS49/008-1; PS49/009-1; PS49/010-1; PS49/011-6; PS49/012-1; PS49/013-1; PS49/014-1; PS49/015-1; PS49/015-2; PS49/016-1; PS49/017-1; PS49/018-1; PS49/019-1; PS49/020-1; PS49/020-2; PS49/021-1; PS49/022-1; PS49/023-1; PS49/024-1; PS49/025-1; PS49/026-1; PS49/027-1; PS49/028-1; PS49/029-1; PS49/030-1; PS49/030-2; PS49/031-1; PS49/032-1; PS49/033-1; PS49/034-1; PS49/035-1; PS49/036-1; PS49/037-1; PS49/038-1; PS49/039-1; PS49/040-1; PS49/041-1; PS49/042-1; PS49/043-1; PS49/044-1; PS49/045-1; PS49/046-1; PS49/047-2; PS49/048-1; PS49/049-1; PS49/050-1; PS49/051-1; PS49/052-1; PS49/053-1; PS49/054-1; PS49/055-1; PS49/057-1; PS49/058-1; PS49/059-1; PS49/060-1; PS49/061-1; PS49/062-1; PS49/063-1; PS49/065-1; PS49/066-1; PS49/067-1; PS49/068-1; PS49/068-2; PS49/069-1; PS49/070-1; PS49/071-1; PS49/072-1; PS49/073-1; PS49/074-1; PS49/075-1; PS49/076-1; PS49/077-1; PS49/078-2; PS49/078-4; PS49/079-1; PS49/080-1; PS49/081-1; PS49/082-1; PS49/083-1; PS49/084-1; PS49/085-1; PS49/086-1; PS49/087-1; PS49/088-2; PS49/088-4; PS49/089-1; PS49/090-1; PS49/091-1; PS49/092-1; PS49/093-1; PS49/094-1; PS49/096-1; PS49/097-1; PS49/098-1; PS49/099-2; PS49/099-4; PS49/099-5; PS49/100-1; PS49/101-1; PS49/102-1; PS49/103-1; PS49/104-1; PS49/105-1; PS49/106-1; PS49/107-2; PS49/107-4; PS49/108-1; PS49/109-1; PS49/110-1; PS49/111-1; PS49/112-1; PS49/113-1; PS49/114-2; PS49/114-4; PS49/115-1; PS49/116-1; PS49/117-1; PS49/118-1; PS49/119-1; PS49/120-1; PS49/121-1; PS49/122-2; PS49/123-1; PS49/124-1; PS49/125-1; PS49/126-1; PS49/127-1; PS49/128-1; PS49/129-1; PS49/130-1; PS49/131-1; PS49/132-1; PS49/133-1; PS49/134-1; PS49/135-1; PS49/136-1; PS49 06AQANTXV_4; Salinity; Salinometer, inductive; Silicate; Temperature, water; Temperature, water, potential; Tritium; Tritium, standard deviation; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 39988 data points
    Location Call Number Expected Availability
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  • 5
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-22
    Keywords: 06AQANTXIII_4/100-1; 06AQANTXIII_4/10-1; 06AQANTXIII_4/101-1; 06AQANTXIII_4/102-2; 06AQANTXIII_4/103-1; 06AQANTXIII_4/11-1; 06AQANTXIII_4/12-1; 06AQANTXIII_4/13-1; 06AQANTXIII_4/13-3; 06AQANTXIII_4/14-1; 06AQANTXIII_4/14-3; 06AQANTXIII_4/15-2; 06AQANTXIII_4/15-4; 06AQANTXIII_4/16-1; 06AQANTXIII_4/17-1; 06AQANTXIII_4/18-1; 06AQANTXIII_4/19-1; 06AQANTXIII_4/19-3; 06AQANTXIII_4/20-1; 06AQANTXIII_4/21-1; 06AQANTXIII_4/22-1; 06AQANTXIII_4/22-3; 06AQANTXIII_4/23-1; 06AQANTXIII_4/24-1; 06AQANTXIII_4/25-1; 06AQANTXIII_4/25-3; 06AQANTXIII_4/26-1; 06AQANTXIII_4/27-1; 06AQANTXIII_4/28-1; 06AQANTXIII_4/28-3; 06AQANTXIII_4/29-1; 06AQANTXIII_4/30-1; 06AQANTXIII_4/3-1; 06AQANTXIII_4/31-1; 06AQANTXIII_4/31-4; 06AQANTXIII_4/32-1; 06AQANTXIII_4/33-1; 06AQANTXIII_4/34-1; 06AQANTXIII_4/34-3; 06AQANTXIII_4/34-4; 06AQANTXIII_4/35-1; 06AQANTXIII_4/35-4; 06AQANTXIII_4/36-1; 06AQANTXIII_4/37-1; 06AQANTXIII_4/38-1; 06AQANTXIII_4/38-4; 06AQANTXIII_4/39-1; 06AQANTXIII_4/40-1; 06AQANTXIII_4/4-1; 06AQANTXIII_4/41-1; 06AQANTXIII_4/42-1; 06AQANTXIII_4/43-1; 06AQANTXIII_4/44-1; 06AQANTXIII_4/44-3; 06AQANTXIII_4/45-1; 06AQANTXIII_4/46-1; 06AQANTXIII_4/47-1; 06AQANTXIII_4/48-1; 06AQANTXIII_4/48-3; 06AQANTXIII_4/49-1; 06AQANTXIII_4/50-1; 06AQANTXIII_4/5-1; 06AQANTXIII_4/51-1; 06AQANTXIII_4/52-1; 06AQANTXIII_4/52-3; 06AQANTXIII_4/5-3; 06AQANTXIII_4/53-1; 06AQANTXIII_4/54-1; 06AQANTXIII_4/54-3; 06AQANTXIII_4/55-1; 06AQANTXIII_4/56-2; 06AQANTXIII_4/56-4; 06AQANTXIII_4/57-1; 06AQANTXIII_4/57-4; 06AQANTXIII_4/58-1; 06AQANTXIII_4/59-1; 06AQANTXIII_4/60-1; 06AQANTXIII_4/60-4; 06AQANTXIII_4/6-1; 06AQANTXIII_4/61-1; 06AQANTXIII_4/62-1; 06AQANTXIII_4/62-3; 06AQANTXIII_4/63-1; 06AQANTXIII_4/65-2; 06AQANTXIII_4/66-1; 06AQANTXIII_4/66-3; 06AQANTXIII_4/67-1; 06AQANTXIII_4/68-1; 06AQANTXIII_4/69-1; 06AQANTXIII_4/70-1; 06AQANTXIII_4/7-1; 06AQANTXIII_4/71-1; 06AQANTXIII_4/71-5; 06AQANTXIII_4/7-2; 06AQANTXIII_4/72-1; 06AQANTXIII_4/73-1; 06AQANTXIII_4/74-2; 06AQANTXIII_4/75-1; 06AQANTXIII_4/75-4; 06AQANTXIII_4/76-1; 06AQANTXIII_4/77-1; 06AQANTXIII_4/78-1; 06AQANTXIII_4/79-1; 06AQANTXIII_4/79-3; 06AQANTXIII_4/80-1; 06AQANTXIII_4/8-1; 06AQANTXIII_4/81-1; 06AQANTXIII_4/82-1; 06AQANTXIII_4/83-1; 06AQANTXIII_4/83-2; 06AQANTXIII_4/84-1; 06AQANTXIII_4/85-1; 06AQANTXIII_4/86-1; 06AQANTXIII_4/86-3; 06AQANTXIII_4/87-1; 06AQANTXIII_4/88-1; 06AQANTXIII_4/89-1; 06AQANTXIII_4/90-1; 06AQANTXIII_4/90-4; 06AQANTXIII_4/9-1; 06AQANTXIII_4/91-1; 06AQANTXIII_4/92-1; 06AQANTXIII_4/93-1; 06AQANTXIII_4/94-1; 06AQANTXIII_4/94-3; 06AQANTXIII_4/95-1; 06AQANTXIII_4/96-1; 06AQANTXIII_4/97-1; 06AQANTXIII_4/98-1; 06AQANTXIII_4/99-1; 06AQANTXIII_4/99-4; ANT-XIII/4; Bottle number; Carbon, total; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Freon-11 (trichorofluoromethane); Freon-113; Freon-12 (dichlorodifluoromethane); Helium; Helium, dHe-3; Helium, dHe-3, standard deviation; Helium, standard deviation; Latitude of event; Longitude of event; Neon; Neon, standard deviation; Nitrate; Oxygen; Phosphate; Polarstern; Pressure, water; PS40/003-1; PS40/004-1; PS40/005-1; PS40/005-3; PS40/006-1; PS40/007-1; PS40/007-2; PS40/008-1; PS40/009-1; PS40/010-1; PS40/011-1; PS40/012-1; PS40/013-1; PS40/013-3; PS40/014-1; PS40/014-3; PS40/015-2; PS40/015-4; PS40/016-1; PS40/017-1; PS40/018-1; PS40/019-1; PS40/019-3; PS40/020-1; PS40/021-1; PS40/022-1; PS40/022-3; PS40/023-1; PS40/024-1; PS40/025-1; PS40/025-3; PS40/026-1; PS40/027-1; PS40/028-1; PS40/028-3; PS40/029-1; PS40/030-1; PS40/031-1; PS40/031-4; PS40/032-1; PS40/033-1; PS40/034-1; PS40/034-3; PS40/034-4; PS40/035-1; PS40/035-4; PS40/036-1; PS40/037-1; PS40/038-1; PS40/038-4; PS40/039-1; PS40/040-1; PS40/041-1; PS40/042-1; PS40/043-1; PS40/044-1; PS40/044-3; PS40/045-1; PS40/046-1; PS40/047-1; PS40/048-1; PS40/048-3; PS40/049-1; PS40/050-1; PS40/051-1; PS40/052-1; PS40/052-3; PS40/053-1; PS40/054-1; PS40/054-3; PS40/055-1; PS40/056-2; PS40/056-4; PS40/057-1; PS40/057-4; PS40/058-1; PS40/059-1; PS40/060-1; PS40/060-4; PS40/061-1; PS40/062-1; PS40/062-3; PS40/063-1; PS40/065-2; PS40/066-1; PS40/066-3; PS40/067-1; PS40/068-1; PS40/069-1; PS40/070-1; PS40/071-1; PS40/071-5; PS40/072-1; PS40/073-1; PS40/074-2; PS40/075-1; PS40/075-4; PS40/076-1; PS40/077-1; PS40/078-1; PS40/079-1; PS40/079-3; PS40/080-1; PS40/081-1; PS40/082-1; PS40/083-1; PS40/083-2; PS40/084-1; PS40/085-1; PS40/086-1; PS40/086-3; PS40/087-1; PS40/088-1; PS40/089-1; PS40/090-1; PS40/090-4; PS40/091-1; PS40/092-1; PS40/093-1; PS40/094-1; PS40/094-3; PS40/095-1; PS40/096-1; PS40/097-1; PS40/098-1; PS40/099-1; PS40/099-4; PS40/100-1; PS40/101-1; PS40/102-2; PS40/103-1; PS40 06AQANTXIII_4; Salinity; Salinometer, inductive; Silicate; South Atlantic; Temperature, water; Temperature, water, potential; Tetrachloromethane; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 40971 data points
    Location Call Number Expected Availability
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  • 6
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Langdon, Chris; Broecker, Wallace S; Hammond, Douglas E; Glenn, Edward; Fitzsimmons, Kevin; Nelson, Steven G; Peng, Tsung-Hung; Hajdas, Irka; Bonani, Georges (2003): Effect of elevated CO2 on the community metabolism of an experimental coral reef. Global Biogeochemical Cycles, 17(1), 1011, https://doi.org/10.1029/2002GB001941
    Publication Date: 2024-05-22
    Description: The effect of elevated pCO2 on the metabolism of a coral reef community dominated by macroalgae has been investigated utilizing the large 2650 m3 coral reef mesocosm at the Biosphere-2 facility near Tucson, Arizona. The carbonate chemistry of the water was manipulated to simulate present-day and a doubled CO2 future condition. Each experiment consisted of a 1-2 month preconditioning period followed by a 7-9 day observational period. The pCO2 was 404 ± 63 ?atm during the present-day pCO2 experiment and 658 ± 59 ?atm during the elevated pCO2 experiment. Nutrient levels were low and typical of natural reefs waters (NO3? 0.5-0.9 ?M, NH4+ 0.4 ?M, PO43? 0.07-0.09 ?M). The temperature and salinity of the water were held constant at 26.5 ± 0.2°C and 34.4 ± 0.2 ppt. Photosynthetically available irradiance was 10 ± 2 during the present-day experiment and 7.4 ± 0.5 mol photons m?2 d?1 during the elevated pCO2 experiment. The primary producer biomass in the mesocosm was dominated by four species of macroalgae; Haptilon cubense, Amphiroa fragillisima, Gelidiopsis intricata and Chondria dasyphylla. Algal biomass was 10.4 mol C m?2 during the present-day and 8.7 mol C m?2 and during the elevated pCO2 experiments. As previously observed, the increase in pCO2 resulted in a decrease in calcification from 0.041 ± 0.007 to 0.006 ± 0.003 mol CaCO3 m?2 d?1. Net community production (NCP) and dark respiration did not change in response to elevated pCO2. Light respiration measured by a new radiocarbon isotope dilution method exceeded dark respiration by a factor of 1.2 ± 0.3 to 2.1 ± 0.4 on a daily basis and by 2.2 ± 0.6 to 3.9 ± 0.8 on an hourly basis. The 1.8-fold increase with increasing pCO2 indicates that the enhanced respiration in the light was not due to photorespiration. Gross production (GPP) computed as the sum of NCP plus daily respiration (light + dark) increased significantly (0.24 ± 0.03 vs. 0.32 ± 0.04 mol C m?2 d?1). However, the conventional calculation of GPP based on the assumption that respiration in the light proceeds at the same rate as the dark underestimated the true rate of GPP by 41-100% and completely missed the increased rate of carbon cycling due to elevated pCO2. We conclude that under natural, undisturbed, nutrient-limited conditions elevated CO2 depresses calcification, stimulates the rate of turnover of organic carbon, particularly in the light, but has no effect on net organic production. The hypothesis that an increase pCO2 would produce an increase in net production that would counterbalance the effect of decreasing saturation state on calcification is not supported by these data.
    Keywords: Accelerator mass spectrometry (AMS); Alkalinity, Gran titration (Gran, 1950); Alkalinity, total; Ammonium; Aragonite saturation state; Benthos; Bicarbonate ion; Calcite saturation state; Calcium; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Coast and continental shelf; CTD, Sea-Bird; Date; Entire community; EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; EXP; Experiment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Gross photosynthesis; Infrared gas analyzer (LI-COR LI-6252); Integrated net community production of oxygen; Laboratory experiment; Langdon_etal_03; Mesocosm or benthocosm; Net community production of carbon; Nitrate; Not applicable; OA-ICC; Ocean Acidification International Coordination Centre; Oxygen; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); pH; Phosphate; Primary production/Photosynthesis; Respiration; Respiration rate, community; Rocky-shore community; Salinity; Temperature, water; Tropical
    Type: Dataset
    Format: text/tab-separated-values, 442 data points
    Location Call Number Expected Availability
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  • 7
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-05-22
    Keywords: Ammonium; ANT-X/7; Bottle number; Calculated; Carbon, total; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Nitrate; Nitrite; Oxygen; Phosphate; Polarstern; Pressure, water; PS23/003-1; PS23/005-1; PS23/008-1; PS23/011-1; PS23/012-2; PS23/013-3; PS23/014-1; PS23/015-1; PS23/017-2; PS23/019-1; PS23/020-1; PS23/021-1; PS23/022-1; PS23/023-1; PS23/024-1; PS23/025-5; PS23/026-1; PS23/027-2; PS23/029-1; PS23/030-1; PS23/031-2; PS23/032-1; PS23/033-1; PS23/034-1; PS23/035-1; PS23/036-6; PS23/037-1; PS23/038-4; PS23/039-1; PS23/040-2; PS23/041-5; PS23/042-1; PS23/043-1; PS23/044-5; PS23/045-1; PS23/046-1; PS23/047-9; PS23/048-2; PS23/049-1; PS23/050-1; PS23/051-7; PS23/052-1; PS23/053-1; PS23/054-9; PS23/055-1; PS23/056-1; PS23/057-4; PS23/058-1; PS23/059-4; PS23/060-1; PS23/061-1; PS23/062-4; PS23/063-3; PS23/064-1; PS23/065-1; PS23/068-4; PS23/069-4; PS23/070-2; PS23/071-4; PS23/072-1; PS23/073-4; PS23/074-2; PS23/075-1; PS23/076-3; PS23/077-1; PS23/078-1; PS23/079-1; PS23/080-4; PS23/081-1; PS23/082-1; PS23/083-1; PS23/084-4; PS23/085-1; PS23/086-1; PS23/087-1; PS23/088-1; PS23/089-1; PS23/090-1; PS23/091-1; PS23 06AQANTX_7; Salinity; Salinometer, inductive; Silicate; Temperature, water; Temperature, water, potential; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 21036 data points
    Location Call Number Expected Availability
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  • 8
    Publication Date: 2024-05-18
    Keywords: 177-1090; AGE; COMPCORE; Composite Core; Joides Resolution; Leg177; Mass spectrometer Micromass Sector 54; Ocean Drilling Program; ODP; South Atlantic Ocean; Strontium-87/Strontium-86 ratio
    Type: Dataset
    Format: text/tab-separated-values, 85 data points
    Location Call Number Expected Availability
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  • 9
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Channell, James E T; Stoner, Joseph S (2002): Plio-Pleistocene magnetic polarity stratigraphies and diagenetic magnetite dissolution at ODP Leg 177 Sites (1089, 1091, 1093 and 1094). Marine Micropaleontology, 45(3-4), 269-290, https://doi.org/10.1016/S0377-8398(02)00032-4
    Publication Date: 2024-05-18
    Description: Magnetic polarity stratigraphies from ODP Leg 177 'high resolution' sites indicate Brunhes sedimentation rates in the 12-25 cm/kyr range, with a trend of decreasing sedimentation rates with increasing age. Magnetite is the principal remanence-carrying mineral. Downcore alteration of magnetite and authigenic growth of iron sulfides introduces a high coercivity diagenetic remanence carrier (pyrrhotite). The change in pore water sulfate with depth in the sediment tends to be in step with the decrease in magnetization intensity, indicating the link between sulfate reduction and magnetite dissolution. Shipboard pass-through magnetometer data are generally very noisy due to a combination of weak magnetization intensities, drilling-related core deformation, and the influence of authigenic iron sulfides. Post-cruise progressive demagnetization of discrete samples aids the magnetostratigraphic interpretation, as these measurements are less influenced by low magnetization intensities and drilling-related deformation. The magnetostratigraphic interpretations provide much-needed calibration for biostratigraphic events in the high latitude southern oceans. Apart from the ODP Hole 745B (Kerguelen Plateau), published Plio-Pleistocene magnetostratigraphies from ODP sites in the Southern Ocean are poorly constrained. For this reason, we compare interpolated ages of 11 radiolarian events and one diatom event that occur at Hole 745B and Leg 177 sites.
    Keywords: 177-1089; 177-1091; 177-1093; 177-1094; COMPCORE; Composite Core; Joides Resolution; Leg177; Ocean Drilling Program; ODP; South Atlantic Ocean
    Type: Dataset
    Format: application/zip, 4 datasets
    Location Call Number Expected Availability
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  • 10
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    PANGAEA
    In:  Supplement to: Channell, James E T; Galeotti, Simone; Martin, Ellen E; Billups, Katharina; Scher, Howie D; Hawthorne, Teresa B (2003): Eocene to Miocene magnetostratigraphy, biostratigraphy, and chemostratigraphy at ODP Site 1090 (sub-Antarctic South Atlantic). Geological Society of America Bulletin, 115(5), 607-623, https://doi.org/10.1130/0016-7606(2003)115%3C0607:ETMMBA%3E2.0.CO;2
    Publication Date: 2024-05-18
    Description: At Ocean Drilling Program (ODP) Site 1090 (lat 42°54.8'S, long 8°54.0'E) located in a water depth of 3702 m on the Agulhas Ridge in the sub-Antarctic South Atlantic, ~300 m of middle Eocene to middle Miocene sediments were recovered with the advanced piston corer (APC) and the extended core barrel (XCB). U-channel samples from the 70-230 meters composite depth (mcd) interval provide a magnetic polarity stratigraphy that is extended to 380 mcd by shipboard whole-core and discrete sample data. The magnetostratigraphy can be interpreted by the fit of the polarity-zone pattern to the geomagnetic polarity time scale (GPTS) augmented by isotope data and bioevents with documented correlation to the GPTS. Three normal-polarity subchrons (C5Dr.1n, C7Ar.1n, and C13r.1n), not included in the standard GPTS, are recorded at Site 1090. The base of the sampled section is correlated to C19n (middle Eocene), although the interpretation is unclear beyond C17r. The top of the sampled section is correlated to C5Cn (late early Miocene), although, in the uppermost 10 m of the sampled section, a foraminifer (Globorotalia sphericomiozea) usually associated with the Messinian and early Pliocene has been identified. 87Sr/86Sr, d13C, and d18O values measured on foraminifera, including the d18O and d13C shifts close to the Eocene/Oligocene boundary, support the correlation to the GPTS. For the interval spanning the Oligocene/Miocene boundary, benthic d13C, d18O, and 87Sr/86Sr records from Site 1090 can be correlated to isotope records from ODP Site 929 (Ceara Rise), providing support for the recently-published Oligocene/Miocene boundary age (22.92 Ma) of Shackleton et al.
    Keywords: 177-1090; COMPCORE; Composite Core; Joides Resolution; Leg177; Ocean Drilling Program; ODP; South Atlantic Ocean
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Expected Availability
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