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Kurnosov, Victor B; Zolotarev, Boris P; Artamonov, Andrey V; Lyapunov, Sergey M; Kashintsev, Georgy L; Chudaev, Oleg V; Sokolova, Alla L; Garanina, Svetlana A (2008): (Table T48) Chemical composition of basalts of tholeiitic series from Hole 433C, Leg 55 (Suiko seamount, Emperor Seamount chain) [dataset]. Russian Academy of Sciences, PANGAEA, https://doi.org/10.1594/PANGAEA.729004, In supplement to: Kurnosov, VB et al. (2008): Alteration effects in the upper oceanic crust - data and comments (Technical Note). Geological Institute of the Russian Academy of Sciences, Transactions, vol. 581. Nauka Publ. (Moscow); Leonov, M.G. (Ed.), 1046 pp

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Project(s):
Coverage:
Latitude: 44.777200 * Longitude: 170.020500
Date/Time Start: 1977-08-16T00:00:00 * Date/Time End: 1977-08-16T00:00:00
Minimum DEPTH, sediment/rock: 207.27 m * Maximum DEPTH, sediment/rock: 547.12 m
Event(s):
55-433C * Latitude: 44.777200 * Longitude: 170.020500 * Date/Time: 1977-08-16T00:00:00 * Elevation: -1874.0 m * Penetration: 550.5 m * Recovery: 250 m * Location: North Pacific/SEAMOUNT * Campaign: Leg55 * Basis: Glomar Challenger * Method/Device: Drilling/drill rig (DRILL) * Comment: 48 cores; 381.5 m cored; 6 m drilled; 65.5 % recovery
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Sample code/labelSample labelKurnosov, Victor BDSDP/ODP/IODP sample designation
PiecePieceKurnosov, Victor B
Sample, optional label/labor noLab noKurnosov, Victor B
DEPTH, sediment/rockDepth sedmGeocode
Lithologic unit/sequenceUnitKurnosov, Victor B
Silicon dioxideSiO2%Kurnosov, Victor BWet chemistry
Titanium dioxideTiO2%Kurnosov, Victor BWet chemistry
Aluminium oxideAl2O3%Kurnosov, Victor BWet chemistry
Iron oxide, Fe2O3Fe2O3%Kurnosov, Victor BWet chemistry
10 Iron oxide, FeOFeO%Kurnosov, Victor BWet chemistry
11 Manganese oxideMnO%Kurnosov, Victor BWet chemistry
12 Magnesium oxideMgO%Kurnosov, Victor BWet chemistry
13 Calcium oxideCaO%Kurnosov, Victor BWet chemistry
14 Sodium oxideNa2O%Kurnosov, Victor BWet chemistry
15 Potassium oxideK2O%Kurnosov, Victor BWet chemistry
16 Phosphorus pentoxideP2O5%Kurnosov, Victor BWet chemistry
17 Water in rockH2O%Kurnosov, Victor BWet chemistryH2O+, structural part, similar to LOI
18 Water in rockH2O%Kurnosov, Victor BWet chemistryH2O-
19 Carbon dioxideCO2%Kurnosov, Victor BWet chemistry
20 Loss on ignitionLOI%Kurnosov, Victor BLoss of ignition analysis
21 SumSum%Kurnosov, Victor BCalculated
22 Loss on ignitionLOI%Kurnosov, Victor BLoss of ignition analysisso in the original
23 Water in rockH2O%Kurnosov, Victor BWet chemistryH2O+, structural part, similar to LOI
24 Water in rockH2O%Kurnosov, Victor BWet chemistryH2O- (so in the original)
25 Carbon dioxideCO2%Kurnosov, Victor BWet chemistryso in the original
26 Iron oxide, Fe2O3/Iron oxide, FeO ratioFe2O3/FeOKurnosov, Victor BCalculated
27 DensityDensityg/cm3Kurnosov, Victor BWeighted
28 LanthanumLamg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
29 CeriumCemg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
30 NeodymiumNdmg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
31 SamariumSmmg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
32 EuropiumEumg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
33 TerbiumTbmg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
34 YtterbiumYbmg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
35 LutetiumLumg/kgKurnosov, Victor BRadiochemical neutron activation analysis (RNAA)
36 ChromiumCrmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
37 NickelNimg/kgKurnosov, Victor BX-ray fluorescence (XRF)
38 CobaltComg/kgKurnosov, Victor BX-ray fluorescence (XRF)
39 VanadiumVmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
40 CopperCumg/kgKurnosov, Victor BX-ray fluorescence (XRF)
41 ZincZnmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
42 ZirconiumZrmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
43 YttriumYmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
44 NiobiumNbmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
45 RubidiumRbmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
46 StrontiumSrmg/kgKurnosov, Victor BX-ray fluorescence (XRF)
47 BariumBamg/kgKurnosov, Victor BX-ray fluorescence (XRF)
48 CommentCommentKurnosov, Victor B
Size:
2357 data points

Data

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


Sample label
(DSDP/ODP/IODP sample designation)

Piece

Lab no

Depth sed [m]

Unit

SiO2 [%]
(Wet chemistry)

TiO2 [%]
(Wet chemistry)

Al2O3 [%]
(Wet chemistry)

Fe2O3 [%]
(Wet chemistry)
10 
FeO [%]
(Wet chemistry)
11 
MnO [%]
(Wet chemistry)
12 
MgO [%]
(Wet chemistry)
13 
CaO [%]
(Wet chemistry)
14 
Na2O [%]
(Wet chemistry)
15 
K2O [%]
(Wet chemistry)
16 
P2O5 [%]
(Wet chemistry)
17 
H2O [%]
(H2O+, structural part, simila...)
18 
H2O [%]
(H2O-, Wet chemistry)
19 
CO2 [%]
(Wet chemistry)
20 
LOI [%]
(Loss of ignition analysis)
21 
Sum [%]
(Calculated)
22 
LOI [%]
(so in the original, Loss of i...)
23 
H2O [%]
(H2O+, structural part, simila...)
24 
H2O [%]
(H2O- (so in the original), We...)
25 
CO2 [%]
(so in the original, Wet chemi...)
26 
Fe2O3/FeO
(Calculated)
27 
Density [g/cm3]
(Weighted)
28 
La [mg/kg]
(Radiochemical neutron activat...)
29 
Ce [mg/kg]
(Radiochemical neutron activat...)
30 
Nd [mg/kg]
(Radiochemical neutron activat...)
31 
Sm [mg/kg]
(Radiochemical neutron activat...)
32 
Eu [mg/kg]
(Radiochemical neutron activat...)
33 
Tb [mg/kg]
(Radiochemical neutron activat...)
34 
Yb [mg/kg]
(Radiochemical neutron activat...)
35 
Lu [mg/kg]
(Radiochemical neutron activat...)
36 
Cr [mg/kg]
(X-ray fluorescence (XRF))
37 
Ni [mg/kg]
(X-ray fluorescence (XRF))
38 
Co [mg/kg]
(X-ray fluorescence (XRF))
39 
V [mg/kg]
(X-ray fluorescence (XRF))
40 
Cu [mg/kg]
(X-ray fluorescence (XRF))
41 
Zn [mg/kg]
(X-ray fluorescence (XRF))
42 
Zr [mg/kg]
(X-ray fluorescence (XRF))
43 
Y [mg/kg]
(X-ray fluorescence (XRF))
44 
Nb [mg/kg]
(X-ray fluorescence (XRF))
45 
Rb [mg/kg]
(X-ray fluorescence (XRF))
46 
Sr [mg/kg]
(X-ray fluorescence (XRF))
47 
Ba [mg/kg]
(X-ray fluorescence (XRF))
48 
Comment
55-433C-10R-2,127-13319Z-1640207.274a43.322.1014.4011.833.780.188.987.223.000.790.244.263.983.9799.8114.003.973.135.113.08.12.20.480.350.90.1552534080355150861152210.07.217090
55-433C-10R-4,118-1218BZ-1115210.214h45.941.158.8114.103.070.1920.396.701.400.280.152.151.983.4699.115.521.764.162.3814.038.024.06.62.001.602.90.488657601152015710064115.24.58941major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-12R-1,75-808AZ-1116224.25942.942.2813.4612.785.580.078.254.152.461.640.261.801.663.0399.601.221.370.291.521.6210.026.017.05.11.300.801.90.3825514151250129921403511.024.018035major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-12R-2,32-372EZ-1644225.32943.962.6014.218.497.040.119.008.092.510.690.3099.671.601.36<0.200.842.4612.028.018.04.81.601.002.00.272701396236293961402512.01.027063same
55-433C-12R-2,136-1413CZ-1645226.36945.382.4514.355.907.160.079.488.992.580.300.27100.270.682.62245144553581141031302711.03.7275110same
55-433C-12R-3,54-571DZ-1117227.04947.332.4014.004.856.400.127.579.562.740.320.2599.760.952.51150774827573901402713.03.627071
55-433C-13R-2,69-721JZ-518232.191047.142.3112.876.060.227.7010.572.410.460.2799.442.85
55-433C-14R-1,2-71AZ-1658233.0211a42.842.4513.7814.821.900.166.895.522.561.230.122.414.892.6699.570.491.69<0.207.8084827738857631351811.013.09373major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-14R-1,33-381GZ-1656233.3311a44.023.0014.478.785.580.097.617.613.220.760.292.362.141.0699.931.061.57705763412120951603012.010.025573same
55-433C-14R-2,115-1203CZ-1657235.6511a45.522.9014.378.245.890.117.718.302.880.610.221.151.542.9499.440.691.74<0.201.40745972415561021602713.05.62607same
55-433C-14R-4,26-312AZ-1648237.7611c46.802.5813.387.866.000.147.439.073.120.230.261.7999.530.561.010.211.312.6464535434493981502811.01.428056
55-433C-14R-4,47-522BZ-1649237.9711c49.432.4414.525.207.490.146.479.612.440.270.3199.380.692.69835776425911001402711.0<1.0280120
55-433C-15R-1,0-41Z-1650242.5011c45.562.1912.6912.543.230.127.438.742.990.870.2699.563.882809155370205901302513.08.7280190
55-433C-15R-5,82-874BZ-1118249.321346.042.8314.979.994.760.126.677.893.250.900.3199.522.102.56585238272831261602710.04.728037
55-433C-15R-5,88-924BZ-519249.381347.222.7713.5610.664.080.126.799.252.880.620.310.330.342.02100.281.330.501.52<0.202.612.6912.028.021.06.32.201.202.70.37805546302781351603213.02.329072
55-433C-15R-6,31-321CZ-1119250.061347.912.5713.8714.5010.320.186.5010.772.500.240.281.861.864.2099.328.540.420.090.222.9511.029.021.06.32.101.402.30.36615142218701251503011.01.329582major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-17R-1,64-695AZ-1120256.141349.562.6013.422.234.800.196.1011.252.470.440.241.791.390.0299.492.671.37<0.201.632.998.222.015.04.51.200.872.00.32755346252581311603011.03.1280105major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-19R-1,48-544CZ-1655261.981346.702.8213.857.845.330.157.318.462.840.980.3199.783.280.251.322.4812.030.020.05.72.001.202.20.3178636034188881302411.05.923079same
55-433C-21R-3,20-232Z-520282.201746.182.1614.537.027.590.057.828.842.670.340.3099.440.652.6910.026.017.04.71.400.861.60.2419710848250531071502912.01.129071
55-433C-22R-5,48-523Z-521294.981846.312.7915.494.950.156.789.453.220.470.31100.712.90263225602667898130149.618.020052major element data from Kirkpatrick et al. (1980), doi:10.2973/dsdp.proc.55.120.1980
55-433C-23R-1,100-1045DZ-1121299.0019a48.452.3213.2716.000.089.615.012.601.080.0699.482.23major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-23R-2,12-171CZ-1661299.6219b43.481.8212.948.513.910.1412.282.591.900.740.095.705.755.3399.856.104.890.522.183.78.46.52.20.820.471.00.1567547879330559290136.18.910572major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-24R-1,12-152Z-1122307.6219b46.101.339.7614.247.220.1819.606.251.200.130.133.171.702.1198.924.312.642.110.450.762.784.412.013.02.70.840.481.20.19715640962266011870164.32.111077major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-24R-7,104-1083BZ-522317.2419b43.930.848.455.489.370.0820.914.351.530.980.104.591.400.0599.203.360.240.192.8763082090171318652143.312.030077
55-433C-24R-7,108-1143CZ-1662317.2819b42.961.327.601.738.760.1423.875.121.661.240.1199.990.451.34<0.200.382.9070568083128538162144.114.011084major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-24R-7,133-1393FZ-1123317.5319b43.301.239.003.366.540.1621.215.001.240.210.1199.621.212.908505701022227111867144.03.19154major element data from Kirkpatrick et al. (1980), doi:10.2973/dsdp.proc.55.120.1980
55-433C-24R-7,141-1443GZ-1124317.6119b44.731.248.8814.040.1722.005.331.601.080.1499.212.92830590902065311668144.715.012058major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-26R-1,87-922FZ-1663327.372146.602.1712.517.940.158.489.912.640.210.2199.472.8427690633408094120248.9<1.028
55-433C-26R-2,65-681GZ-523328.652147.822.0713.957.145.040.067.3510.642.430.190.205.685.072.5699.455.890.991.220.341.422.809.023.016.04.71.701.002.00.30265904824285120120239.4<1.027050
55-433C-27R-2,131-1346BZ-1125338.8124a44.001.088.0414.671.980.1826.024.291.000.130.112.262.062.0699.521.114.460.346.202.799606901202067312267124.93.67135major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-27R-6,38-431HZ-1126343.882543.302.4214.2212.274.200.087.282.602.072.270.070.770.6799.310.520.890.491.801.7118821858365130118major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-27R-6,135-1405Z-1667344.842546.302.7515.617.575.210.136.807.802.801.480.2299.980.590.171.452.391667056340761051603112.02.628044same
55-433C-28R-1,42-472EZ-1668345.922546.842.6613.857.557.640.147.949.412.910.370.2799.210.652.691506246230881351502711.01.927072
55-433C-28R-2,19-211DZ-1127347.192549.002.5713.9713.240.166.8910.292.500.190.2599.062.731566344233831301502811.01.3270105major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-28R-2,66-734BZ-1128347.662548.702.5014.215.000.157.149.732.630.290.2699.692.73major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-28R-4,30-372CZ-1129350.302548.302.3714.195.755.660.158.797.872.631.160.271.321.441.8999.901.440.521.030.341.022.7114.035.024.07.12.201.402.80.411747250352631351502811.014.026081same
55-433C-28R-4,57-655AZ-1672350.572549.092.6714.254.867.540.185.7510.292.560.380.331.8999.790.590.100.642.3912.032.021.06.42.101.202.50.33168674034891961604111.039.022067
55-433C-28R-5,77-817BZ-524352.2726a49.352.7814.1113.717.800.166.5210.612.600.210.337.01100.381.240.54<0.200.762.891075943252781301803113.08.930082major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-28R-5,107-1096EZ-1130352.5726a46.032.5714.565.925.890.087.769.782.640.400.293.1899.725.061.12<0.201.342.831687152340851241703313.01.5290120
55-433C-31R-1,86-901LZ-525374.862739.220.935.937.903.030.1628.602.780.580.080.0999.173.183.192.82205150452251251081703113.04.632090
55-433C-32R-1,82-883CZ-1674384.3228c44.572.1314.669.670.1511.797.852.380.240.2299.872.94760840120182498256113.81.45320
55-433C-34R-2,41-461KZ-1131404.41332.555153306033093115110228.7<1.022081
55-433C-34R-3,60-641FZ-526406.003344.561.8211.906.105.920.2014.227.861.750.120.164.045.205.92100.533.971.380.571.032.826.416.011.03.41.100.701.50.23460515632027010297197.01.920066
55-433C-34R-7,103-1093LZ-1681412.533546.642.2712.647.515.100.2010.029.522.550.230.273.224.142.9499.891.071.120.621.472.7211.023.018.05.41.701.202.30.303502206726076961502811.01.325071
55-433C-35R-6,59-641EZ-1682420.093546.922.3712.837.425.680.189.059.302.520.370.292.3799.300.800.75<0.201.312.919.024.017.05.01.500.871.60.21353195622621161021602812.02.925094
55-433C-36R-3,90-951KZ-1683425.403845.002.1710.849.265.460.1711.647.732.310.320.234.6399.761.991.50<0.201.702.687.219.013.03.81.300.721.60.274403308032196921302410.02.2200100
55-433C-38R-5,90-941MZ-527447.4047a45.361.9814.355.447.240.188.289.332.330.170.244.7099.602.081.900.700.752.7426515053252731071402711.0<1.027059
55-433C-39R-1,119-12239Z-1132451.194843.001.9312.4910.144.050.1313.021.832.391.290.1699.672.501.62435270592725383120239.712.013062major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-39R-2,35-401HZ-1133451.854843.722.3015.258.763.940.1511.133.732.590.730.1699.822.222.1748531560358601251401510.011.019049same
55-433C-39R-3,88-931FZ-1134453.884845.282.1013.034.677.820.1612.367.202.190.260.212.212.343.6699.832.161.580.180.602.659.125.017.05.11.600.881.90.284803006033873122130239.51.2220100same
55-433C-39R-5,2-81AZ-1135456.024845.682.1213.494.248.130.2211.728.461.910.380.231.462.32100.362.890.421.810.610.522.829.822.016.05.11.701.202.50.344102485522673118120239.51.122556same
55-433C-39R-5,87-941DZ-1136456.874848.162.2213.2013.158.470.1610.509.712.100.220.252.340.9899.671.020.220.442.924252656225278121120239.31.424077major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-39R-6,38-431BZ-1137457.884846.622.1013.413.766.750.2111.308.781.930.310.213.042.18100.420.742.843552505421892124120249.62.223063
55-433C-41R-1,20-231CZ-528469.205147.922.2714.414.964.410.066.779.392.580.250.2499.262.152.81225824828578108130309.61.226074
55-433C-42R-1,2-61GZ-1138478.525249.262.3713.8912.910.137.6810.142.700.250.2699.592.67240835939085126130259.31.625080major element data from Cambon et al. (1980), doi:10.2973/dsdp.proc.55.123.1980
55-433C-42R-3,83-886BZ-1695482.335444.462.2214.759.490.088.146.542.771.200.2799.5521666503487082115309.26.620056major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-43R-1,118-1234BZ-1698489.185446.442.2716.548.184.230.126.807.782.960.780.242.521.366.01100.221.733.21<0.201.937.721.015.04.50.940.771.90.30208814935573126130248.45.925077same
55-433C-45R-3,61-653BZ-1139510.616046.882.3913.4512.282.290.076.455.792.941.210.131.511.161.4799.890.780.69<0.205.366.620.014.04.11.600.961.70.23230150653927799130249.012.019061
55-433C-45R-3,119-1244DZ-1140511.196046.642.3815.039.124.380.127.548.482.750.430.251.730.502.6999.790.511.45<0.202.082.207.019.015.04.41.200.742.20.35192745738853124130268.53.525054major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-45R-4,109-1144JZ-1704512.596047.222.2514.847.606.050.156.209.932.500.960.251.000.50100.181.262.758.518.015.04.61.601.002.30.3420784703759389120258.411.025074same
55-433C-45R-5,39-441CZ-1141513.296048.142.3814.954.208.040.196.3711.042.500.430.2299.960.522.867.420.014.04.71.400.942.00.302408663375125122120258.43.926087same
55-433C-45R-5,119-1223DZ-529514.096048.852.3513.114.797.300.108.7310.462.500.370.24100.270.662.872056544265125125120288.75.827074
55-433C-45R-6,24-311AZ-1142514.746048.792.2214.494.426.760.196.7410.052.700.170.2099.420.652.742188055338119138120278.2<1.026554
55-433C-45R-6,97-1021GZ-1707515.476047.702.1915.534.946.110.197.599.702.610.480.211.420.893.0599.560.561.33<0.200.812.66219817726280116120249.06.625082major element data from Avdeiko et al. (1980), doi:10.2973/dsdp.proc.55.122.1980
55-433C-46R-3,78-832DZ-1709520.2862a45.822.2213.589.184.960.137.728.992.870.500.242.4799.260.411.31<0.201.852.6919976683569698140299.53.724085
55-433C-47R-1,8-132AZ-1710526.0863a47.462.3412.697.746.400.156.999.632.820.300.283.9899.271.821.50<0.201.212.771817160270841161503110.01.825076
55-433C-49R-2,62-681JZ-1712547.126644.262.7813.669.505.240.197.358.962.950.360.3199.541.812.721609744188125981703013.02.127084