Not logged in
PANGAEA.
Data Publisher for Earth & Environmental Science

Johnson, David A; Ledbetter, Michael T; Burckle, Lloyd H (1977): Observation of manganese nodules and crusts recovered during the CHAIN 115 cruise from Nov 1973 until June 1974 in the Atlantic Ocean [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.857913, Supplement to: Johnson, DA et al. (1977): Vema Channel Paleo-Oceanography: Pleistocene Dissolution Cycles and Episodic Bottom Water Flow. In: Influence of Abyssal Circulation on Sedimentary Accumulations in Space and Time, Developments in Sedimentology, Elsevier, 23, 1-33, https://doi.org/10.1016/S0070-4571(08)70548-X

Always quote citation above when using data! You can download the citation in several formats below.

RIS CitationBibTeX CitationShow MapGoogle Earth

Abstract:
Investigations of piston cores from the Vema Channel and lower flanks of the Rio Grande Rise suggest the presence of episodic flow of deep and bottom water during the Late Pleistocene. Cores from below the present-day foraminiferal lysocline (at ~4000 m) contain an incomplete depositional record consisting of Mn nodules and encrustations, hemipelagic clay, displaced high-latitude diatoms, and poorly preserved heterogeneous microfossil assemblages. Cores from the depth range between 2900 m and 4000 m contain an essentially complete Late Pleistocene record, and consist of well-defined carbonate dissolution cycles with periodicities of ~100,000 years. Low carbonate content and increased dissolution correspond to glacial episodes, as interpreted by oxygen isotopic analysis of bulk foraminiferal assemblages. The absence of diagnostic high-latitude indicators (Antarctic diatoms) within the dissolution cyclss, however, suggests that AABW may not have extended to significantly shallower elevations on the lower flanks of the Rio Grande Rise during the Late Pleistocene. Therefore episodic AABW flow may not necessarily be the mechanism responsible for producing these cyclic events. This interpretation is also supported by the presence of an apparently complete Brunhes depositional record in the same cores, suggesting current velocities insufficient for significant erosion. Fluctuations in the properties and flow characteristics of another water mass, such as NADW, may be involved. The geologic evidence in core-top samples near the present-day AABW/NADW transition zone is consistent with either of two possible interpretations of the upper limit of AABW on the east flank of the channel. The foraminiferal lysocline, at ~4000 m, is near the top of the benthic thermocline and nepheloid layer, and may therefore correspond to the upper limit of relatively corrosive AABW. On the other hand, the carbonate compensation depth (CDD) at ~4250 m, which corresponds to the maximum gradient in the benthic thermocline, is characterized by rapid deposition of relatively fine-grained sediment. Such a zone of convergence and preferential sediment accumulation would be expected near the level of no motion in the AABW/NADW transition zone as a consequence of Ekman-layer veering of the mean velocity vector in the bottom boundary layer. It is possible that both of these interpretations are in part correct. The "level of no motion'' may in fact correspond to the CCD, while at the same time relatively corrosive water of Antarctic origin may mix with overlying NADW and therefore elevate the foraminifera] lysocline to depths above the level of no motion. Closely spaced observations of the hydrography and flow characteristics within the benthic thermocline will be required in order to use sediment parameters as more precise indicators of paleo-circulation.
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: -15.008077 * Median Longitude: -29.248538 * South-bound Latitude: -34.078000 * West-bound Longitude: -67.135000 * North-bound Latitude: 39.335000 * East-bound Longitude: 7.790000
Date/Time Start: 1973-11-21T00:00:00 * Date/Time End: 1974-06-17T00:00:00
Minimum DEPTH, sediment/rock: 0.000 m * Maximum DEPTH, sediment/rock: 7.100 m
Event(s):
CH115-4PC  * Latitude: 39.335000 * Longitude: -67.135000 * Date/Time: 1973-11-21T00:00:00 * Elevation: -2536.0 m * Recovery: 213 cm * Location: Atlantic Ocean * Campaign: Chain115 (CH115) * Basis: Chain * Method/Device: Piston corer (PC) * Comment: Institute: WHOI
CH115-6PG  * Latitude: 9.500000 * Longitude: -22.017000 * Date/Time: 1973-12-06T00:00:00 * Elevation: -4800.0 m * Recovery: 153 cm * Location: Atlantic Ocean * Campaign: Chain115 (CH115) * Basis: Chain * Method/Device: Trigger corer (TC) * Comment: Institute: WHOI
CH115-9D  * Latitude: -30.213000 * Longitude: -39.358000 * Date/Time: 1974-05-11T00:00:00 * Elevation: -4789.0 m * Location: Atlantic Ocean * Campaign: Chain115 (CH115) * Basis: Chain * Method/Device: Dredge (DRG) * Comment: Institute: WHOI
Comment:
The CHAIN 115 dredges are described in: hdl:10013/epic.46769.d011.
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
Event labelEventJohnson, David A
Date/Time of eventDate/TimeJohnson, David A
Latitude of eventLatitudeJohnson, David A
Longitude of eventLongitudeJohnson, David A
Elevation of eventElevationmJohnson, David A
Method/Device of eventMethod/DeviceJohnson, David A
Sample IDSample IDJohnson, David A
DEPTH, sediment/rockDepth sedmJohnson, David AGeocode
Depth, top/minDepth topmJohnson, David A
10 Depth, bottom/maxDepth botmJohnson, David A
11 PositionPositionJohnson, David A
12 Deposit typeDeposit typeJohnson, David A
13 Quantity of depositQuantityJohnson, David A
14 SizeSizeJohnson, David A
15 Substrate typeSubstrateJohnson, David A
16 Sediment typeSedimentJohnson, David A
17 CommentCommentJohnson, David A
18 DescriptionDescriptionJohnson, David A
19 Uniform resource locator/link to imageURL imageJohnson, David APhotographs of cores and samples
Size:
163 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Event

Date/Time

Latitude

Longitude

Elevation [m]

Method/Device

Sample ID

Depth sed [m]

Depth top [m]
10 
Depth bot [m]
11 
Position
12 
Deposit type
13 
Quantity
14 
Size
15 
Substrate
16 
Sediment
17 
Comment
18 
Description
19 
URL image
CH115-4PC 1973-11-2139.3350-67.1350-2536Piston corerCH115-4PC-10.1000.10.10BuriedMn nodule12.0 cmTerrigenous oozeTerrigenous mud or ooze, calcareous, nannofossilsManganese crustshdl:10013/epic.46769.d003
CH115-6PG 1973-12-069.5000-22.0170-4800Trigger corerCH115-6PG-10.7550.01.51In sedimentMn grainSeveralCalcareous oozeCalcareous mud or ooze, calcareous, nannofossils, siliceousManganesehdl:10013/epic.46769.d004
CH115-20PC 1974-01-04-25.04007.7900-4738Piston corerCH115-20PC-11.6050.03.21In sedimentMn grainSeveralTerrigenous oozeTerrigenous, mud or ooze, calcareous, nannofossilsManganesehdl:10013/epic.46769.d005
CH115-20PG 1974-01-04-25.04007.7900-4738Trigger corerCH115-20PG-10.0650.00.13In sedimentMn rich layerTerrigenous oozeTerrigenous, mud or ooze, calcareous, nannofossilsManganesehdl:10013/epic.46769.d005
CH115-38PC 1974-03-27-34.07806.9170-5260Piston corerCH115-38PC-14.2504.24.30In sedimentMn rich layerTerrigenous oozeTerrigenous sandy mud or ooze, calcareous, biogenicManganesehdl:10013/epic.46769.d006
CH115-9D 1974-05-11-30.2130-39.3580-4789DredgeCH115-9D-10.0000.00.00SurfaceMn slabManyUp to 47 kgConsolidated clayTerrigenous oozeTerrigenous mud or ooze, siliceous, sponge spicules.Non-calcareous, semi-consolidated clay lumps with Mn crust and lumps of early stages of Mn pavement (47 kg). Large stages of Mn pavement (175 kg)
CH115-59PC 1974-04-24-29.3470-40.0970-4188Piston corerCH115-59PC-10.0000.00.00SurfaceMn noduleSeveralClayNannofossil clay, manganese , pyrite or marcasiteMn nodules on tophdl:10013/epic.46769.d007
CH115-59PC1974-04-24-29.3470-40.0970-4188Piston corerCH115-59PC-20.0000.00.00SurfaceMn slab1ClayNannofossil clay, manganese , pyrite or marcasiteMn nodules on top, 5-5 Mn pavement, 710-710 Mn nodule.hdl:10013/epic.46769.d007
CH115-59PC1974-04-24-29.3470-40.0970-4188Piston corerCH115-59PC-37.1007.17.10BuriedMn nodule1ClayNannofossil clay, manganese , pyrite or marcasite710-710 Mn nodulehdl:10013/epic.46769.d007
CH115-60PC 1974-04-26-30.2300-39.2430-4310Piston corerCH115-60PC-10.0000.00.00SurfaceMn nodule15.0 cmTerrigenous oozeTerrigenous mud or oozeMn nodules on top.hdl:10013/epic.46769.d008
CH115-62PC 1974-04-26-30.4100-38.9730-4065Piston corerCH115-62PC-10.0000.00.00SurfaceMn slab1Calcareous oozeMn pavement on top of clay.hdl:10013/epic.46769.d009
CH115-87PC 1974-05-07-29.7720-35.6000-3302Piston corerCH115-87PC-10.0000.00.00SurfaceMn noduleUp to 2.0 cm0-2 cm Manganese nodules
CH115-11D 1974-05-24-8.0970-33.9080-2052DredgeCH115-11D-10.0000.00.00SurfaceMn noduleManyCalcareous clayCalcareous oozeNumerous small to large Mn nodules
CH115-11D1974-05-24-8.0970-33.9080-2052DredgeCH115-11D-20.0000.00.00SurfaceMn slabManyCalcareous clayCalcareous oozeNumerous small to large Mn pavements
CH115-11D1974-05-24-8.0970-33.9080-2052DredgeCH115-11D-30.0000.00.00SurfaceMn crust1BoulderCalcareous clayCalcareous oozeOne very large Mn nodule with boulder as nucleus (35 kg)
CH115-16D 1974-06-03-3.3380-37.3800-806DredgeCH115-16D-10.0000.00.00SurfaceP2O5-Mn slabManyRock; dolomiticNumerous slabs of phosphorite with dolomitic cement with Mn coating on one surface. Castings of coral heads.hdl:10013/epic.46769.d012
CH115-94PG 1974-06-171.6250-49.0170-10Gravity corerCH115-94PG-10.3900.00.78In sedimentMn rich layerTerrigenous oozeTerrigenous sandy mud or ooze, sandy mud or ooze,Volcanics and manganesehdl:10013/epic.46769.d010