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Glasby, Geoffrey P; Rankin, P C; Meylan, Maurice A (1979): (Tables 1-2, pages 107-108) Chemical composition of Hawaiian soil concretions and adjacent soil [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.862562, Supplement to: Glasby, GP et al. (1979): Manganiferous soil concretions from Hawaii. Pacific Science, 33(1), 103-115, hdl:10125/1458

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Abstract:
Manganiferous soil concretions have been located in pineapple and sugar cane plantations of the Schofield Plateau, Oahu, and black manganiferous coatings on the surface of soils have been observed on the crests of embankments next to pineapple plantations on Oahu, Molokai, and Lanai. The concretions and coatings are found inoxisols derived from volcanic parent material. The moisture regime of the soils is characterized by alternate wet and dry periods. This alternation facilitates remobilization and reprecipitation of manganese and to a much lesser extent iron and associated trace metals in the soils. Optimum conditions for manganiferous soil concretion development are encountered on the Schofield Plateau, where mean annual rainfall exceeds 1000 mm/year but where there is a net evaporation loss from the soils during the dry period (May through October). Remobilization of manganese is less pronounced in the oxisols of Molokai and Lanai, where mean annual rainfall is lower. Thin manganiferous coatings rather than concretions therefore form in these islands. The contents of Mn, Fe, Cu, and Ni of the soils on which Hawaiian concretions form are higher than those of New Zealand soils in which manganese soil concretions are found. This is reflected by the much redder color of the Hawaiian concretion-bearing soils compared with their New Zealand counterparts. Rare earths show an enrichment sequence: parent rock ---+ soil ---+ soil concretion. A small positive Ce anomaly is noted in the soil and is more marked in the concretions. This may be due to the increasing oxidation of Ce in the concretions relative to the soil, although contamination of the soil by concretionary material may also playa role. The parent rock shows no Ce anomaly. Barium and Pb are enriched in concretions relative to the surrounding soil, whereas D, Th, Hf, Nb, Zr, and As are present in similar or higher concentrations in the soil relative to the concretions. Arsenic may follow Fe in the soils. Todorokite is the predominant manganese mineral in the Hawaiian soil concretions, not pyrolusite as previously reported. Scanning electron microscope studies show the crystalline nature of the manganese oxide minerals in the concretions.
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:
Latitude: 21.555500 * Longitude: -158.065831
Minimum DEPTH, sediment/rock: 0.05 m * Maximum DEPTH, sediment/rock: 0.10 m
Event(s):
Oahu_K * Latitude: 21.555500 * Longitude: -158.065831 * Elevation: 223.0 m * Location: Hawaiian Islands, North Central Pacific
Comment:
LOI weight loss following ignition to 1000°C for 1 hour; Cu and Ni were determined on dried sample without ignition.
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
Sample IDSample IDGlasby, Geoffrey P
Latitude of eventLatitude
Longitude of eventLongitude
Elevation of eventElevationm
DEPTH, sediment/rockDepth sedmGlasby, Geoffrey PGeocode
Silicon dioxideSiO2%Glasby, Geoffrey PX-ray fluorescence (XRF)
Aluminium oxideAl2O3%Glasby, Geoffrey PX-ray fluorescence (XRF)
Iron oxide, Fe2O3Fe2O3%Glasby, Geoffrey PX-ray fluorescence (XRF)
Magnesium oxideMgO%Glasby, Geoffrey PX-ray fluorescence (XRF)
10 Calcium oxideCaO%Glasby, Geoffrey PX-ray fluorescence (XRF)
11 Potassium oxideK2O%Glasby, Geoffrey PX-ray fluorescence (XRF)
12 Manganese oxideMnO%Glasby, Geoffrey PX-ray fluorescence (XRF)
13 Titanium dioxideTiO2%Glasby, Geoffrey PX-ray fluorescence (XRF)
14 Phosphorus pentoxideP2O5%Glasby, Geoffrey PX-ray fluorescence (XRF)
15 Loss on ignitionLOI%Glasby, Geoffrey PWet chemistry
16 CopperCu%Glasby, Geoffrey PX-ray fluorescence (XRF)
17 NickelNi%Glasby, Geoffrey PX-ray fluorescence (XRF)
18 LanthanumLamg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
19 CeriumCemg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
20 PraseodymiumPrmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
21 NeodymiumNdmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
22 SamariumSmmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
23 EuropiumEumg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
24 GadoliniumGdmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
25 TerbiumTbmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
26 DysprosiumDymg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
27 HolmiumHomg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
28 ErbiumErmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
29 YtterbiumYbmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
30 UraniumUmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
31 ThoriumThmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
32 LeadPbmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
33 HafniumHfmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
34 BariumBamg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
35 NiobiumNbmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
36 ZirconiumZrmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
37 YttriumYmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
38 ArsenicAsmg/kgGlasby, Geoffrey PSpark Source Mass Spectrography
39 Deposit typeDeposit typeGlasby, Geoffrey P
40 Quantity of depositQuantityGlasby, Geoffrey P
41 SizeSizeGlasby, Geoffrey P
42 DescriptionDescriptionGlasby, Geoffrey P
Size:
111 data points

Data

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


Sample ID

Latitude

Longitude

Elevation [m]

Depth sed [m]

SiO2 [%]

Al2O3 [%]

Fe2O3 [%]

MgO [%]
10 
CaO [%]
11 
K2O [%]
12 
MnO [%]
13 
TiO2 [%]
14 
P2O5 [%]
15 
LOI [%]
16 
Cu [%]
17 
Ni [%]
18 
La [mg/kg]
19 
Ce [mg/kg]
20 
Pr [mg/kg]
21 
Nd [mg/kg]
22 
Sm [mg/kg]
23 
Eu [mg/kg]
24 
Gd [mg/kg]
25 
Tb [mg/kg]
26 
Dy [mg/kg]
27 
Ho [mg/kg]
28 
Er [mg/kg]
29 
Yb [mg/kg]
30 
U [mg/kg]
31 
Th [mg/kg]
32 
Pb [mg/kg]
33 
Hf [mg/kg]
34 
Ba [mg/kg]
35 
Nb [mg/kg]
36 
Zr [mg/kg]
37 
Y [mg/kg]
38 
As [mg/kg]
39 
Deposit type
40 
Quantity
41 
Size
42 
Description
Oahu_K-1G121.5555-158.06582230.0519.0726.439.210.660.231.1421.331.490.0217.330.330.2954>20021.091288.720.02.5013.02.06.04.62.910>1002.8>1000141603720Mn noduleSeveral selected from same site for composite analysis0.4-0.9 cmEllipsoidal to spheroidal with smooth surface texture, and found on or near the surface of the soils.
Oahu_K-1G221.5555-158.06582230.0518.8926.199.240.600.241.1421.531.510.0217.500.290.4353120019.082257.516.02.4012.01.84.43.52.910>1002.8>1000111303320Mn noduleSeveral selected from same site for composite analysis0.4-0.9 cmEllipsoidal to spheroidal with smooth surface texture, and found on or near the surface of the soils.
Oahu_K-1Soil21.5555-158.06582230.1031.8431.5415.870.550.121.681.332.720.0914.230.040.04231105.92351.64.10.522.81.92.912234.33202123019>35SoilOne sampleDark red (2.5YR 3/6) constitutes the upper 2 cm of the soil profile