Dünweber, Michael; Swalethorp, Rasmus; Kjellerup, Sanne; Nielsen, Torkel Gissel; Arendt, Kristine Engel; Hjorth, Morten; Tönnesson, Kajsa; Møller, Eva Friis (2010): (Table 2) Phytoplankton and copepod biomass and specific ingestion rates and grazing impact of Calanus spp. in Disko Bay [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.809458, In supplement to: Dünweber, M et al. (2010): Succession and fate of the spring diatom bloom in Disko Bay, western Greenland. Marine Ecology Progress Series, 419, 11-29, https://doi.org/10.3354/meps08813
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Coverage:
Latitude: 69.233300 * Longitude: -53.433300
Date/Time Start: 2008-04-23T00:00:00 * Date/Time End: 2008-05-28T00:00:00
Event(s):
Disko_Bay_Q08 (off Qeqertarsuaq) * Latitude: 69.233300 * Longitude: -53.433300 * Date/Time Start: 2008-04-23T00:00:00 * Date/Time End: 2008-06-09T00:00:00 * Location: Disko Bay, Greenland * Method/Device: Bottle, Niskin 10-L (NIS_10L)
Comment:
Integrated phytoplankton and copepod biomass in the upper 50 m and specific ingestion rates and corresponding grazing impact (% of phytoplankton biomass/day) estimated by 4 methods: (A) in situ faecal pellet production experiment, (B) average gut fluorescence in 3 Calanus spp., (C) average faecal pellet production from bottle incubations of 3 Calanus spp., and (D) egg production by C. finmarchicus and C. glacialis.
Parameter(s):
# | Name | Short Name | Unit | Principal Investigator | Method/Device | Comment |
---|---|---|---|---|---|---|
1 | Environment | Environment | Dünweber, Michael | bloom phase | ||
2 | DATE/TIME | Date/Time | Geocode | |||
3 | Date/time end | Date/time end | Dünweber, Michael | |||
4 | Phytoplankton, biomass as carbon, integrated | Phytopl C int | mg/m2 | Dünweber, Michael | ||
5 | Phytoplankton, biomass, standard deviation | Phytopl biom std dev | ± | Dünweber, Michael | ||
6 | Sample amount, subset | N subset | # | Dünweber, Michael | phytoplankton biomass | |
7 | Copepoda, biomass as carbon, integrated | Copepoda C | mg/m2 | Dünweber, Michael | ||
8 | Copepoda, biomass, standard deviation | Copepoda C std dev | ± | Dünweber, Michael | ||
9 | Sample amount, subset | N subset | # | Dünweber, Michael | copepod biomass | |
10 | Ingestion rate of phytoplankton biomass per day | IR phytopl biom | %/day | Dünweber, Michael | method (A) | |
11 | Ingestion rate, standard deviation | IR std dev | ± | Dünweber, Michael | method (A) | |
12 | Sample amount, subset | N subset | # | Dünweber, Michael | method (A) | |
13 | Grazing impact | Grazing imp | % | Dünweber, Michael | method (A); in % of phytoplankton biomass | |
14 | Ingestion rate of phytoplankton biomass per day | IR phytopl biom | %/day | Dünweber, Michael | method (B) | |
15 | Ingestion rate, standard deviation | IR std dev | ± | Dünweber, Michael | method (B) | |
16 | Sample amount, subset | N subset | # | Dünweber, Michael | method (B) | |
17 | Grazing impact | Grazing imp | % | Dünweber, Michael | method (B), in % of phytoplankton biomass | |
18 | Ingestion rate of phytoplankton biomass per day | IR phytopl biom | %/day | Dünweber, Michael | method (C) | |
19 | Ingestion rate, standard deviation | IR std dev | ± | Dünweber, Michael | method (C) | |
20 | Sample amount, subset | N subset | # | Dünweber, Michael | method (C) | |
21 | Grazing impact | Grazing imp | % | Dünweber, Michael | method (C), in % of phytoplankton biomass | |
22 | Ingestion rate of phytoplankton biomass per day | IR phytopl biom | %/day | Dünweber, Michael | method (D) | |
23 | Ingestion rate, standard deviation | IR std dev | ± | Dünweber, Michael | method (D) | |
24 | Sample amount, subset | N subset | # | Dünweber, Michael | method (D) | |
25 | Grazing impact | Grazing imp | % | Dünweber, Michael | method (D), in % of phytoplankton biomass | |
26 | Ingestion rate of phytoplankton biomass per day | IR phytopl biom | %/day | Dünweber, Michael | average over all methods | |
27 | Grazing impact | Grazing imp | % | Dünweber, Michael | average over all methods |
License:
Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
Size:
78 data points