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  • 11
    Publication Date: 2024-01-09
    Keywords: 176-735B; Aluminium oxide; Amphibole; Anorthite; Apatite; Calcium oxide; Chromium(III) oxide; Clinopyroxene; Comment; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Electron microprobe JXA-733 SuperProbe, JEOL; Elements, total; Forsterite; Grain size description; Indian Ocean; Iron oxide, FeO; Joides Resolution; Leg176; Magnesium number; Magnesium oxide; Manganese oxide; Minerals; Number; Ocean Drilling Program; ODP; Olivine; Opaque minerals; Orthoclase; Orthopyroxene; Parameter; Piece; Plagioclase; Reference/source; Rock type; Sample code/label; Sample ID; Silicon dioxide; Sodium oxide; Titanium dioxide; Zircon
    Type: Dataset
    Format: text/tab-separated-values, 59748 data points
    Location Call Number Expected Availability
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  • 12
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    Unknown
    PANGAEA
    In:  Supplement to: Niu, Yaoling; Gilmore, Trinity; Mackie, Suzie; Greig, Alan; Bach, Wolfgang (2002): Mineral chemistry, whole-rock compositions, and petrogenesis of Leg 176 gabbros: data and discussion. In: Natland, JH; Dick, HJB; Miller, DJ; Von Herzen, RP (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 176, 1-60, https://doi.org/10.2973/odp.proc.sr.176.011.2002
    Publication Date: 2024-01-09
    Description: We report mineral chemistry, whole-rock major element compositions, and trace element analyses on Hole 735B samples drilled and selected during Leg 176. We discuss these data, together with Leg 176 shipboard data and Leg 118 sample data from the literature, in terms of primary igneous petrogenesis. Despite mineral compositional variation in a given sample, major constituent minerals in Hole 735B gabbroic rocks display good chemical equilibrium as shown by significant correlations among Mg# (= Mg/[Mg + Fe2+]) of olivine, clinopyroxene, and orthopyroxene and An (=Ca/[Ca + Na]) of plagioclase. This indicates that the mineral assemblages olivine + plagioclase in troctolite, plagioclase + clinopyroxene in gabbro, plagioclases + clinopyroxene + olivine in olivine gabbro, and plagioclase + clinopyroxene + olivine + orthopyroxene in gabbronorite, and so on, have all coprecipitated from their respective parental melts. Fe-Ti oxides (ilmenite and titanomagnetite), which are ubiquitous in most of these rocks, are not in chemical equilibrium with olivine, clinopyroxene, and plagioclase, but precipitated later at lower temperatures. Disseminated oxides in some samples may have precipitated from trapped Fe-Ti-rich melts. Oxides that concentrate along shear bands/zones may mark zones of melt coalescence/transport expelled from the cumulate sequence as a result of compaction or filter pressing. Bulk Hole 735B is of cumulate composition. The most primitive olivine, with Fo = 0.842, in Hole 735B suggests that the most primitive melt parental to Hole 735B lithologies must have Mg# 0.637, which is significantly less than Mg# = 0.714 of bulk Hole 735B. This suggests that a significant mass fraction of more evolved products is needed to balance the high Mg# of the bulk hole. Calculations show that 25%-45% of average Eastern Atlantis II Fracture Zone basalt is needed to combine with 55%-75% of bulk Hole 735B rocks to give a melt of Mg# 0.637, parental to the most primitive Hole 735B cumulate. On the other hand, the parental melt with Mg# 0.637 is far too evolved to be in equilibrium with residual mantle olivine of Fo 〉 0.89. Therefore, a significant mass fraction of more primitive cumulate (e.g., high Mg# dunite and troctolite) is yet to be sampled. This hidden cumulate could well be deep in the lower crust or simply in the mantle section. We favor the latter because of the thickened cold thermal boundary layer atop the mantle beneath slow-spreading ridges, where cooling and crystallization of ascending mantle melts is inevitable. These observations and data interpretation require reconsideration of the popular concept of primary mantle melts and relationships among the extent of mantle melting, melt production, and the composition and thickness of igneous crust.
    Keywords: 176-735B; DRILL; Drilling/drill rig; Indian Ocean; Joides Resolution; Leg176; Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 7 datasets
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  • 13
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Dick, Henry J B; Ozawa, Kazuhito; Meyer, Peter S; Niu, Yaoling; Robinson, Paul T; Constantin, Marc; Hébert, Rejean; Maeda, Jinichiro; Natland, James H; Hirth, James Gregory; Mackie, Suzie (2002): Primary silicate mineral chemistry of a 1.5-km section of very slow spreading lower ocean crust: ODP Hole 735B, Southwest Indian Ridge. In: Natland, JH; Dick, HJB; Miller, DJ; Von Herzen, RP (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 176, 1-61, https://doi.org/10.2973/odp.proc.sr.176.001.2002
    Publication Date: 2024-01-09
    Description: We present a synthesis of some 20,504 mineral analyses of ~500 Hole 735B gabbros, including 10,236 new analyses conducted for this paper. These are used to construct a mineral stratigraphy for 1.5-km-deep Hole 735B, the only long section of the lower crust drilled in situ in the oceans. At long wavelengths, generally 〉200 m, there is a good chemical correlation among the principal silicate phases, consistent with the in situ crystallization of three or four distinct olivine gabbro bodies, representing at least two major cycles of intrusion. Initial cooling and crystallization of these bodies must have been fairly rapid to form a crystal mush, followed by subsequent compaction and migration of late iron-titanium-rich liquids into shear zones and fractures through which they were emplaced to higher levels in the lower crust where they crystallized and reacted with the olivine gabbro host rock to form a wide variety of ferrogabbros. At the wave lengths of the individual intrusions, as represented by the several olivine gabbro sequences, there is a general upward trend of iron and sodium enrichment but a poor correlation between the compositions of the major silicate phases. This, together with a wide range in minor incompatible and compatible element concentrations in olivine and pyroxene at a given Mg#, is consistent with widespread permeable flow of late melt through these intrusions, in contrast to what has been documented for a 600-m section of reputedly fast-spreading ocean crust in the Oman Ophiolite. This unexpected finding could be related to enhanced compaction and deformation-controlled late-stage melt migration at the scale of intrusion at a slow-spreading ocean ridge, compared to the relatively static environment in the lower crust at fast-spreading ridges.
    Keywords: 176-735B; DRILL; Drilling/drill rig; Indian Ocean; Joides Resolution; Leg176; Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 14
    Publication Date: 2024-04-16
    Keywords: 176-735B; Albite; Aluminium oxide; Anorthite; Apatite; Calcium number; Calcium oxide; Calculated; Calculated based on oxygen number; Chromium; CIPW Norm; Cobalt; Copper; DEPTH, sediment/rock; Diopside; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Elements, total; Gallium; Hypersthene; Ilmenite; Indian Ocean; Inductively coupled plasma atomic emission spectroscope (ICP-AES); Iron oxide, FeO; Joides Resolution; Leg176; Lithium; Loss on ignition; Magnesium number; Magnesium oxide; Magnetite; Manganese oxide; Nepheline; Nickel; Niobium; Ocean Drilling Program; ODP; Olivine; Orthoclase; Phosphorus pentoxide; Potassium oxide; Quartz; Rubidium; Sample code/label; Sample ID; Scandium; Silicon dioxide; Sodium oxide; Strontium; Titanium dioxide; Vanadium; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 4015 data points
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