Ewart, Anthony; Griffin, William L (1994): (Table 5) Partition coefficients for olivine of ODP Leg 135 vitrophyric rhyolite samples [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.794506, In supplement to: Ewart, A; Griffin, WL (1994): Proton-microprobe trace element study of selected Leg 135 core samples. In: Hawkins, J; Parson, L; Allan, J; et al. (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 135, 533-542, https://doi.org/10.2973/odp.proc.sr.135.146.1994
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Project(s):
Ocean Drilling Program (ODP)
Coverage:
Median Latitude: -19.480000 * Median Longitude: -177.110000 * South-bound Latitude: -20.709000 * West-bound Longitude: -177.862000 * North-bound Latitude: -18.501000 * East-bound Longitude: -176.500000
Date/Time Start: 1990-12-23T20:39:00 * Date/Time End: 1991-01-24T00:40:00
Minimum Elevation: -2917.0 m * Maximum Elevation: -2452.0 m
Event(s):
135-834B * Latitude: -18.568000 * Longitude: -177.862000 * Date/Time Start: 1990-12-23T20:39:00 * Date/Time End: 1990-12-31T08:40:00 * Elevation: -2703.0 m * Penetration: 435.3 m * Recovery: 105.44 m * Location: South Pacific Ocean * Campaign: Leg135 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 59 cores; 375.5 m cored; 0 m drilled; 28.1 % recovery
135-835B * Latitude: -18.501000 * Longitude: -177.303000 * Date/Time: 1991-01-02T08:30:00 * Elevation: -2917.0 m * Penetration: 183 m * Recovery: 8.86 m * Location: South Pacific Ocean * Campaign: Leg135 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 8 cores; 49.8 m cored; 0 m drilled; 17.8 % recovery
135-836A * Latitude: -20.142000 * Longitude: -176.500000 * Date/Time Start: 1991-01-06T17:00:00 * Date/Time End: 1991-01-07T19:40:00 * Elevation: -2452.0 m * Penetration: 38.2 m * Recovery: 24.46 m * Location: South Pacific Ocean * Campaign: Leg135 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 9 cores; 38.2 m cored; 0 m drilled; 64 % recovery
Parameter(s):
# | Name | Short Name | Unit | Principal Investigator | Method/Device | Comment |
---|---|---|---|---|---|---|
1 | Event label | Event | ||||
2 | Latitude of event | Latitude | ||||
3 | Longitude of event | Longitude | ||||
4 | Elevation of event | Elevation | m | |||
5 | Sample code/label | Sample label | Ewart, Anthony | DSDP/ODP/IODP sample designation | ||
6 | Sample comment | Sample comment | Ewart, Anthony | |||
7 | Manganese, partition coefficient | Mn D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
8 | Manganese, partition coefficient | Mn D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
9 | Manganese, standard deviation | Mn std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
10 | Manganese, partition coefficient | Mn D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
11 | Manganese, partition coefficient | Mn D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
12 | Nickel, standard deviation | Ni std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
13 | Copper, partition coefficient | Cu D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
14 | Copper, partition coefficient | Cu D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
15 | Copper, standard deviation | Cu std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
16 | Zinc, partition coefficient | Zn D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
17 | Zinc, partition coefficient | Zn D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
18 | Zinc, standard deviation | Zn std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
19 | Gallium, partition coefficient | Ga D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
20 | Rubidium, partition coefficient | Rb D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
21 | Rubidium, partition coefficient | Rb D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
22 | Rubidium, standard deviation | Rb std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
23 | Strontium, partition coefficient | Sr D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
24 | Strontium, partition coefficient | Sr D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
25 | Strontium, standard deviation | Sr std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
26 | Yttrium, partition coefficient | Y D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
27 | Yttrium, partition coefficient | Y D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
28 | Yttrium, standard deviation | Y std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
29 | Zirconium, partition coefficient | Zr D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
30 | Zirconium, partition coefficient | Zr D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
31 | Zirconium, standard deviation | Zr std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
32 | Lead, partition coefficient | Pb D | Ewart, Anthony | Calculated | as C(solid)/C(liquid) | |
33 | Lead, partition coefficient | Pb D | Ewart, Anthony | Calculated | assuming Rayleigh fractionation | |
34 | Lead, standard deviation | Pb std dev | ± | Ewart, Anthony | Calculated | assuming Rayleigh fractionation |
35 | Forsterite | Fo | % | Ewart, Anthony | Calculated | minimum range [mol%] |
36 | Forsterite | Fo | % | Ewart, Anthony | Calculated | maximum range [mol%] |
37 | Magnesium | Mg | % | Ewart, Anthony | Calculated | predicted liquid |
38 | Magnesium | Mg | % | Ewart, Anthony | Calculated | glass |
39 | Magnesium | Mg | % | Ewart, Anthony | Calculated | whole rock |
License:
Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
Size:
221 data points