Superdeep diamonds from the Juina area, Mato Grosso State, Brazil

被引:187
作者
Kaminsky, FV
Zakharchenko, OD
Davies, R
Griffin, WL
Khachatryan-Blinova, GK
Shiryaev, AA
机构
[1] 1KM Diamond Explorat, W Vancouver, BC V7T 1J1, Canada
[2] Inst Diamonds Ltd, Moscow 117593, Russia
[3] Macquarie Univ, Dept Earth & Planetary Sci, GEMOC Key Ctr, Sydney, NSW 2109, Australia
[4] CSIRO, N Ryde, NSW 1609, Australia
[5] VI Vernadskii Inst Geochem & Analyt Chem, Moscow 117975, Russia
关键词
D O I
10.1007/s004100000221
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Alluvial diamonds from the Juina area in Mato Grosso, Brazil, have been characterized in terms of their morphology, syngenetic mineral inclusions, carbon isotopes and nitrogen contents, Morphologically, they are similar to other Brazilian diamonds, showing a strong predominance of rounded dodecahedral crystals. However, other characteristics of the Juina diamonds make them unique. The inclusion parageneses of Juina diamonds are dominated by ultra-high-pressure ("superdeep") phases that differ both from "traditional" syngenetic minerals associated with diamonds and, in detail, from most other superdeep assemblages. Ferro-periclase is the dominant inclusion in the Juina diamonds. It coexists with ilmenite, Cr-Ti spinel, a phase with the major-element composition of olivine, and SiO2. CaSi-perovskite inclusions coexist with titanite (sphene), "olivine" and native Ni. MgSi-perovskite coexists with TAPP (tetragonal almandine-pyrope phase). Majoritic garnet occurs in one diamond, associated with CaTi-perovskite, Mn-ilmenite and an unidentified Si-Mg phase. Neither Cr-pyrope nor Mg-chromite was found as inclusions. The spinel inclusions are low in Cr and Mg, and high in Ti (Cr2O3 < 36.5 wt%, and TiO2 > 10 wt%) Most ilmenite inclusions have low MgO contents, and some have very high (up to 11.5 wt%) MnO contents. The rare "olivine" inclusions coexisting with ferropericlase have low Mg# (87-59), and higher Ca, Cr and Zn contents than typical diamond-inclusion olivines. They are interpreted as inverted from spinel-structured (Mg, Fe)(2)Si2O4 This suite of inclusions is consistent with derivation of most of the diamonds from depths near 670 km, and adds ilmenite and relatively low-Cr, high-Ti spinel to the known phases of the superdeep paragenesis. Diamonds from the Juina area are characterized by a narrow range of carbon isotopic composition (delta C-13, -7.8 to -2.5 parts per thousand), except for the one majorite-bearing diamond (delta C-13 = -11.4 parts per thousand). There are high proportions of nitrogen-free and low-nitrogen diamonds, and the aggregated B center is predominant in nitrogen-containing diamonds. These observations have practical consequences for diamond exploration: Low-ME olivine: low-Mg and high-Mn ilmenite, and low-Cr spinel should be included in the list of diamond indicator minerals, and the role of high-Cr, low-Ti spinel as the only spinel associated with diamond, and hence as a criterion of diamond grade in kimberlites, should be reconsidered.
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页码:734 / 753
页数:20
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