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Hessler, Robert R; Jumars, Peter A (1974): Annotated record of the detailed examination of Mn deposits from the CLIMAX II (SCAN) Expedition stations aboard R/V Argo in the central North Pacific [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.861312, Supplement to: Hessler, RR; Jumars, PA (1974): Abyssal community analysis from replicate cores in the central North Pacific. Deep Sea Research and Oceanographic Abstracts, 21(3), 185-209, https://doi.org/10.1016/0011-7471(74)90058-8

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Abstract:
A 0.25 m US Naval Electronics Lab box corer was used to take replicate samples from an oligotrophic bottom under the North Pacific Central Water Mass (approx. 28 degrees N, 155 degrees W). The bottom is a red clay with manganese nodules at a depth of 5500-5800 m. Macrofaunal density ranges from 84 to 160 individuals per m super(2) and is therefore much the same as in Northwest Atlantic Gyre waters. Of the macrofaunal taxa, polychaetes dominate (55 per cent), followed by tanaids (18 per cent), bivalves (7 per cent), and isopods (6 per cent). Meiofaunal taxa were only partially retained by the 297 micrometer screen used in washing. Even then, they are 1.5-3.9 times as abundant as the microfaunal taxa, with nematodes being numerically dominant by far. Foraminifera seem to comprise an important portion of the community, but could not be assessed accurately because of the inability to discriminate living and dead tests. Remains of what are probably xenophyophoridans are also very important, but offer the same problem. Faunal diversity is extremely high, with deposit feeders comprising the overwhelming majority. Most spp are rare, being encountered only once. The distributions of only 3 spp show any significant deviation from randomness. The polychaete fauna from box cores collected from 90 m to the north was not significantly different from that of the principal study locality. Concordance appeared at several taxonomic levels, from spp through microfaunal/ meiofaunal relationships. As a result, the variation in total animal abundance shows aggregation among cores. The authors discuss Sokolova's concept of a deep-sea oligotrophic zone dominated by suspension feeders, and reconcile it with our present findings. The high diversity of the fauna combined with the low food level contradict theories that relate diversity directly with productivity.
Source:
Grant, John Bruce; Moore, Carla J; Alameddin, George; Chen, Kuiying; Barton, Mark (1992): The NOAA and MMS Marine Minerals Geochemical Database. National Geophysical Data Center, NOAA, https://doi.org/10.7289/V52Z13FT
Further details:
Warnken, Robin R; Virden, William T; Moore, Carla J (1992): The NOAA and MMS Marine Minerals Bibliography. National Geophysical Data Center, NOAA, https://doi.org/10.7289/V53X84KN
Coverage:
Median Latitude: 24.050828 * Median Longitude: -155.313619 * South-bound Latitude: -24.583031 * West-bound Longitude: -155.500021 * North-bound Latitude: 28.503588 * East-bound Longitude: -154.863355
Date/Time Start: 1969-08-21T00:00:00 * Date/Time End: 1969-10-08T00:00:00
Minimum DEPTH, sediment/rock: m * Maximum DEPTH, sediment/rock: m
Event(s):
H-03 (CLIMAXII-H3) * Latitude: 28.498578 * Longitude: -155.238312 * Date/Time: 1969-08-21T00:00:00 * Elevation: -5497.0 m * Location: Pacific Ocean * Campaign: SCAN * Basis: Argo * Method/Device: Box corer (BC)
H-05 (CLIMAXII-H5) * Latitude: 28.476902 * Longitude: -155.305011 * Date/Time: 1969-08-22T00:00:00 * Elevation: -5696.0 m * Location: Pacific Ocean * Campaign: SCAN * Basis: Argo * Method/Device: Box corer (BC)
H-06 (CLIMAXII-H6) * Latitude: 28.445302 * Longitude: -155.333344 * Date/Time: 1969-08-22T00:00:00 * Elevation: -5825.0 m * Location: Pacific Ocean * Campaign: SCAN * Basis: Argo * Method/Device: Box corer (BC)
Comment:
From 1983 until 1989 NOAA-NCEI compiled the NOAA-MMS Marine Minerals Geochemical Database from journal articles, technical reports and unpublished sources from other institutions. At the time it was the most extended data compilation on ferromanganese deposits world wide. Initially published in a proprietary format incompatible with present day standards it was jointly decided by AWI and NOAA to transcribe this legacy data into PANGAEA. This transfer is augmented by a careful checking of the original sources when available and the encoding of ancillary information (sample description, method of analysis...) not present in the NOAA-MMS database.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventHessler, Robert R
2Optional event labelEvent 2Hessler, Robert R
3Date/Time of eventDate/TimeHessler, Robert R
4Latitude of eventLatitudeHessler, Robert R
5Longitude of eventLongitudeHessler, Robert R
6Elevation of eventElevationmHessler, Robert R
7Sample IDSample IDHessler, Robert R
8DEPTH, sediment/rockDepth sedmHessler, Robert RGeocode
9PositionPositionHessler, Robert R
10Deposit typeDeposit typeHessler, Robert R
11Quantity of depositQuantityHessler, Robert R
12SizeSizeHessler, Robert R
13MassMassgHessler, Robert R
14Dry volumeVolumecm3Hessler, Robert R
15Substrate typeSubstrateHessler, Robert R
16Sediment typeSedimentHessler, Robert R
17CommentCommentHessler, Robert R
18DescriptionDescriptionHessler, Robert R
Size:
111 data points

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