Krey, Johannes; Boje, Rolf; Gillbricht, Max; Lenz, Jürgen (1971): Planktological-chemical observation in the water column at station M1_CTD181, Indian Ocean [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.610927, In supplement to: Krey, Johannes; Bole, R; Gillbricht, Max; Lenz, Jürgen (1971): Planktologisch-chemische Daten der "Meteor"- Expedition in den Indischen Ozean 1964/65. Meteor Forschungsergebnisse, Deutsche Forschungsgemeinschaft, Reihe D Biologie, Gebrüder Bornträger, Berlin, Stuttgart, D9, 1-120
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Project(s):
Leibniz-Institut für Meereswissenschaften, Kiel (IFM-GEOMAR)
Coverage:
Latitude: 7.400000 * Longitude: 70.833000
Date/Time Start: 1965-02-07T00:00:00 * Date/Time End: 1965-02-07T00:00:00
Minimum DEPTH, water: 2 m * Maximum DEPTH, water: 4105 m
Event(s):
M1_CTD181 (M1_181) * Latitude: 7.400000 * Longitude: 70.833000 * Date/Time: 1965-02-07T00:00:00 * Elevation: -4118.0 m * Location: Eastern Arabian Sea * Campaign: M1 (IIOE - International Indian Ocean Expedition) * Basis: Meteor (1964) * Method/Device: CTD/Rosette (CTD-RO)
Comment:
Sunrise: 06:19, sunset: 18:10. 14C-ampoule: batch no. D2, radio activity 10 µC
Parameter(s):
# | Name | Short Name | Unit | Principal Investigator | Method/Device | Comment |
---|---|---|---|---|---|---|
1 | DEPTH, water | Depth water | m | Geocode | ||
2 | Seston, dry mass | Sest dm | mg/l | Krey, Johannes | Weighted | |
3 | Proteins | Protein | µg/l | Krey, Johannes | Colorometric analysis, manual | |
4 | Carbon, organic, total per volume | TOC | µg/l | Krey, Johannes | Oxidation (alkaline) with borate buffered potassium persulphate | Oxidizable carbon in unfiltered water samples |
5 | Phytoplankton | Phytopl | #/l | Krey, Johannes | Inverted microscopy | |
6 | Phytoplankton, biomass as carbon | Phytopl C | µg/l | Krey, Johannes | Calculated | |
7 | Lithology/composition/facies | Lithology | Krey, Johannes | Main components of phytoplankton | ||
8 | Particle concentration | Part conc | #/l | Krey, Johannes | Inverted microscopy | 6-35 µm |
9 | Particle concentration | Part conc | #/l | Krey, Johannes | Inverted microscopy | 35-92 µm, |
10 | Particle concentration | Part conc | #/l | Krey, Johannes | Inverted microscopy | >92 µm |
11 | Particle total surface | Part tot surf | mm2/m3 | Krey, Johannes | Inverted microscopy | 6-35 µm |
12 | Particle total surface | Part tot surf | mm2/m3 | Krey, Johannes | Inverted microscopy | 35-92 µm |
13 | Particle total surface | Part tot surf | mm2/m3 | Krey, Johannes | Inverted microscopy | >92 µm |
14 | Particle volume | Part vol | mg/kg | Krey, Johannes | Inverted microscopy | 6-35 µm, total volume of particles on a spherical basis |
15 | Particle volume | Part vol | mg/kg | Krey, Johannes | Inverted microscopy | 35-92 µm, total volume of particles on a spherical basis |
16 | Particle volume | Part vol | mg/kg | Krey, Johannes | Inverted microscopy | >92 µm, total volume of particles on a spherical basis |
17 | Temperature, water | Temp | °C | Krey, Johannes | 14C-Productivity: constant light (7000 Lux). Temperature in situ | |
18 | Temperature, water | Temp | °C | Krey, Johannes | 14C-Productivity: constant light (7000 Lux). Temperature in incubator | |
19 | Temperature, water | Temp | °C | Krey, Johannes | 14C-Productivity: simulated in situ. Temperature in situ | |
20 | Temperature, water | Temp | °C | Krey, Johannes | 14C-Productivity: simulated in situ. Temperature in incubator | |
21 | Time of day | Time of day | Krey, Johannes | start, 14C-Productivity: constant light (7000 Lux) | ||
22 | Time of day | Time of day | Krey, Johannes | start, 14C-Productivity: simulated in situ | ||
23 | Duration | Duration | Krey, Johannes | 14C-Productivity: constant light (7000 Lux), in min | ||
24 | Duration | Duration | Krey, Johannes | 14C-Productivity: simulated in situ, in min | ||
25 | Primary production of carbon per hour | PP C | mg/m3/h | Krey, Johannes | 14C-Productivity: constant light (7000 Lux). Value of light bottle | |
26 | Primary production of carbon per hour | PP C | mg/m3/h | Krey, Johannes | 14C-Productivity: constant light (7000 Lux). Value of dark bottle | |
27 | Primary production of carbon per hour | PP C | mg/m3/h | Krey, Johannes | 14C-Productivity: simulated in situ. Value of light bottle | |
28 | Primary production of carbon per hour | PP C | mg/m3/h | Krey, Johannes | 14C-Productivity: simulated in situ. Value of dark bottle | |
29 | Light intensity | Io | % | Krey, Johannes | 14C-Productivity: simulated in situ |
License:
Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
Size:
236 data points
Data
1 Depth water [m] | 2 Sest dm [mg/l] (Weighted) | 3 Protein [µg/l] (Colorometric analysis, manual) | 4 TOC [µg/l] (Oxidizable carbon in unfilter...) | 5 Phytopl [#/l] (Inverted microscopy) | 6 Phytopl C [µg/l] (Calculated) | 7 Lithology (Main components of phytoplankton) | 8 Part conc [#/l] (6-35 µm, Inverted microscopy) | 9 Part conc [#/l] (35-92 µm,, Inverted microscopy) | 10 Part conc [#/l] (>92 µm, Inverted microscopy) | 11 Part tot surf [mm2/m3] (6-35 µm, Inverted microscopy) | 12 Part tot surf [mm2/m3] (35-92 µm, Inverted microscopy) | 13 Part tot surf [mm2/m3] (>92 µm, Inverted microscopy) | 14 Part vol [mg/kg] (6-35 µm, total volume of part...) | 15 Part vol [mg/kg] (35-92 µm, total volume of par...) | 16 Part vol [mg/kg] (>92 µm, total volume of parti...) | 17 Temp [°C] (14C-Productivity: constant li...) | 18 Temp [°C] (14C-Productivity: constant li...) | 19 Temp [°C] (14C-Productivity: simulated i...) | 20 Temp [°C] (14C-Productivity: simulated i...) | 21 Time of day (start, 14C-Productivity: cons...) | 22 Time of day (start, 14C-Productivity: simu...) | 23 Duration (14C-Productivity: constant li...) | 24 Duration (14C-Productivity: simulated i...) | 25 PP C [mg/m3/h] (14C-Productivity: constant li...) | 26 PP C [mg/m3/h] (14C-Productivity: constant li...) | 27 PP C [mg/m3/h] (14C-Productivity: simulated i...) | 28 PP C [mg/m3/h] (14C-Productivity: simulated i...) | 29 Io [%] (14C-Productivity: simulated i...) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
2 | 27.5 | 27.7 | 27.5 | 29.3 | 07:08 | 06:53 | 360 | 370 | 48 | 1 | 42 | 32 | 100.0 | |||||||||||||||
10 | 0.085 | 9 | 440 | 339000 | 3000 | 0 | 325 | 39 | 0 | 0.032 | 0.011 | 0.000 | 27.5 | 27.7 | 27.5 | 29.3 | 45 | 20 | 36 | 30 | 32.0 | |||||||
20 | 0.139 | 16 | 450 | 6400 | 3.61 | Peridineae | 1320000 | 10000 | 0 | 930 | 122 | 0 | 0.075 | 0.032 | 0.000 | 27.5 | 27.7 | 27.5 | 29.3 | 29 | 25 | 20 | 25 | 12.0 | ||||
30 | 0.057 | 7 | 420 | 13000 | 2.93 | Peridineae | 358000 | 11000 | 0 | 394 | 235 | 0 | 0.037 | 0.086 | 0.000 | 27.5 | 27.7 | 27.5 | 29.3 | 32 | 1 | 25 | 33 | 3.8 | ||||
40 | 0.057 | 7 | 370 | 6000 | 2.41 | Peridineae | 786000 | 12000 | 1000 | 915 | 221 | 161 | 0.113 | 0.074 | 0.132 | 27.5 | 27.7 | 27.5 | 29.3 | 32 | 26 | 16 | 23 | 1.4 | ||||
50 | 0.107 | 9 | 470 | 0 | 0.00 | 1020000 | 5000 | 10000 | 741 | 102 | 519 | 0.061 | 0.034 | 0.383 | 27.5 | 27.7 | 27.5 | 29.3 | 26 | 45 | 17 | 22 | 0.3 | |||||
75 | 0.080 | 5 | 430 | 6000 | 0.29 | 882000 | 18000 | 0 | 592 | 413 | 0 | 0.044 | 0.167 | 0.000 | 27.3 | 27.7 | 43 | 10 | ||||||||||
100 | 0.048 | 12 | 300 | 6000 | 0.20 | 27.5 | 27.7 | 29 | 16 | |||||||||||||||||||
200 | 0.084 | 8 | 170 | 0 | 0.00 | 162000 | 0 | 0 | 188 | 0 | 0 | 0.022 | 0.000 | 0.000 | ||||||||||||||
300 | 0.092 | 6 | 150 | 200 | 0.08 | 805000 | 7000 | 3000 | 638 | 123 | 246 | 0.053 | 0.040 | 0.175 | ||||||||||||||
400 | 0.058 | 4 | 210 | 0 | 0.00 | 419000 | 5000 | 5000 | 475 | 140 | 544 | 0.054 | 0.061 | 0.415 | ||||||||||||||
500 | 0.115 | 3 | 70 | 3000 | 0.16 | 595000 | 4000 | 2000 | 444 | 63 | 397 | 0.038 | 0.019 | 0.362 | ||||||||||||||
600 | 0.129 | 0 | 310 | 200 | 0.02 | 363000 | 11000 | 0 | 368 | 215 | 6 | 0.036 | 0.074 | 0.000 | ||||||||||||||
784 | 260 | 0 | 0.00 | |||||||||||||||||||||||||
980 | 220 | |||||||||||||||||||||||||||
1100 | 0.065 | 0 | ||||||||||||||||||||||||||
1940 | 310 | |||||||||||||||||||||||||||
3977 | 270 | |||||||||||||||||||||||||||
4105 | 0.061 | 0 |