登录注册
Quick Links : Mindat手册The Rock H. Currier Digital LibraryMindat Newsletter [Free Download]
主页关于 MindatMindat手册Mindat的历史版权Who We Are联系我们于 Mindat.org刊登广告
捐赠给 MindatCorporate Sponsorship赞助板页已赞助的板页在 Mindat刊登 广告的广告商于 Mindat.org刊登广告
Learning CenterWhat is a mineral?The most common minerals on earthInformation for EducatorsMindat ArticlesThe ElementsThe Rock H. Currier Digital LibraryGeologic Time
搜索矿物的性质搜索矿物的化学Advanced Locality Search随意显示任何一 种矿物Random Locality使用minID搜索邻近产地Search Articles搜索词汇表更多搜索选项
搜索:
矿物名称:
地区产地名称:
关键字:
 
Mindat手册添加新照片Rate Photos产区编辑报告Coordinate Completion Report添加词汇表项目
Mining Companies统计会员列表Mineral MuseumsClubs & Organizations矿物展及活动The Mindat目录表设备设置The Mineral Quiz
照片搜索Photo GalleriesSearch by Color今天最新的照片昨天最新的照片用户照片相集过去每日精选照片相集Photography

Chromite from Antarctic Plate

Antarctica
 
  • Eastern Antarctica
    • American Highland
      • Grove Mountains
YT Lin, Lu Feng, Sen Hu (2011) High Pressure Mineral Assemblages in the Lherzolitic Shergottite Grove Mountains (GRV) 020090. Japan Geooscience Union Meeting Makuhari, Chiba Japan.
(n.d.) Meteoritical Bulletin Database, The Meteoritical Society.
Meyer, C. (2001) Mars Meteorite Compendium: XXIV-1-2.
    • Buckley Island quadrangle
      • Lewis Cliff
Day, J.M.D. & 5 others (2015) Differentiation process in FeO-rich asteroids revealed by the achondrite Lewis Cliff 88763 . Meteoritics & Planetary Science 50 (10): 1750-1766. (Oct 2015).
Swindle, T.D. & 4 others (2001) Noble gases, bulk chemistry, and petrography of olivine-rich meteorites: Comparison to Brachinites. Meteoritics & Planetary Science 33 (1): 31-48. (Jan 2001).
    • George V Land
Ramdohr, P. (1967) Chromite and chromite chondrules in meteorites—I : Geochimica et Cosmochimica Acta 31(10): 1961-1967. (Oct 1967).
    • Miller Range
Beck, A. W. & McSween, H. Y. (2010) Connections Between Dunite MIL 03443 and the Diogenite Meteorites: Lunar Planetary Science Conference XLI. LPI Contribution No. 1533: pdf.1104. (March 2010)
Beck, A. W. & McSween, H. Y. (2010) Diogenites as polymict breccias composed of orthopyroxene and harzburgite: Meteoritics & Planetary Science 45 (5): 850-872. (May 2010)
Krawczynski, M. J., Elkins-Tanton, L. T. & Grove, T. L. (2008) Petrology of Olivine-Diogenite MIL03443,9: Constraints on Eucrite Parent Body Bulk Composition and Magmatic Processes: Lunar and Planetary Science XXXIX. LPI Contribution No. 1391: pdf.1229. (March 2008)
Mittlefehldt, D. W. (2008) Meteorite Dunite Breccia MIL 03443: A Probable Crustal Cumulate Closely Related to Diogenites from the HED Parent Asteroid: Lunar and Planetary Science XXXIX. LPI Contribution No. 1391: pdf.1919. (March 2008)
    • Mount Howe
Meteoritics 25,357(1990)
    • Pecora Escarpment
      • LaPaz Ice Field
aaa.wustl.edu (2005) http://aaa.wustl.edu/Work/pub_files/lap02205.html
    • Queen Maud Land
Ikeda, Y. (1992). An overview of the research consortium, "Antarctic carbonaceous chondrites with CI affinities, Yamato-86720, Yamato-82162, and Belgica-7904". Proc. NIPR Symp. Antarct. Meteorites 5: 49-73. (March 1992)
Kimura, M. & Ikeda, Y. (1992). Mineralogy and Petrology of an unusual Belgica-7904 Carbonaceous Chondrite: Genetic Relationships among the Components. Proc. NIPR Symp. Antarct. Meteorites 5: 74-119. (March 1992)
      • Queen Fabiola Mts
Mukherjee, A. and Viswanath, T.A. (1986) On the thermal and redox history of the Yamato diogenite Y-74013. Proceedings of the Indian Academy of Sciences (Earth and Planetary Sciences), 95, 3 (November 1986), 381-395.
Yanai, K., Kojima, H., Matsumoto, Y. (1983) A Brachina-like inclusion in the Yamato-75097 L6 chondrite - A preliminary examination: Symposium on Antarctic Meteorites, 8th: National Institute of Polar Research, Memoirs, Special Issue 30: 29-35. (Dec 1983).
Kato, Y., Sekine, T., Kayama, M., Miyahara, M., & Yamaguchi, A. (2017). High‐pressure polymorphs in Yamato‐790729 L6 chondrite and their significance for collisional conditions. Meteoritics & Planetary Science, 52(12), 2570-2585.
      • Roberts Massif
Usui, T., Sanborn, M., Wadhwa, M. & McSween Jr, H.Y. (2010) Petrology and trace element geochemistry of Robert Massif 04261 and 04262 meteorites, the first examples of geochemically enriched lherzolitic shergottites: Geochimica et Cosmochimica Acta 74(24): 7283-7306. (Dec 2010)
      • Steingarden Nunataks site
Brandstätter, F., Koeberl, C., and Topa, D. (2014) The Steingarden Nunataks L6 chondrites STG 07002, 07003 and 07004: Relationships to type 7 chondrites. 7th Annual Meeting of the Meteoritical Society, held September 7-12, 2014 in Casablanca, Morocco. LPI Contribution No. 1800, id. 5047, https://www.hou.usra.edu/meetings/metsoc2014/pdf/5047.pdf
Brandstätter, F., Koeberl, C., and Topa, D. (2014) The Steingarden Nunataks L6 chondrites STG 07002, 07003 and 07004: Relationships to type 7 chondrites. 7th Annual Meeting of the Meteoritical Society, held September 7-12, 2014 in Casablanca, Morocco. LPI Contribution No. 1800, id. 5047, https://www.hou.usra.edu/meetings/metsoc2014/pdf/5047.pdf
Brandstätter, F., Koeberl, C., and Topa, D. (2014) The Steingarden Nunataks L6 chondrites STG 07002, 07003 and 07004: Relationships to type 7 chondrites. 7th Annual Meeting of the Meteoritical Society, held September 7-12, 2014 in Casablanca, Morocco. LPI Contribution No. 1800, id. 5047, https://www.hou.usra.edu/meetings/metsoc2014/pdf/5047.pdf
    • Victoria Land
      • Allan Hills
Grady, M.M., Pratesi, G. & Moggi-Cecchi, V. (2015) Atlas of Meteorites. Cambridge University Press: Cambridge, United Kingdom. 373 pages.
Nehru, C. E., Weisberg, M. K., & Prinz, M. (1997) Chromites in unequilibrated ordinary chondrites: Lunar and Planetary Science Conference XXVIII: p. 9
Nehru, C. E., Weisberg, M. K., Prinz, M. (1997) Chromites in unequilibrated ordinary chondrites. Lunar and Planetary Science Conference XXVIII 1651.
Meteorite Working Group (1985) Antarctic Meteorite Newsletter 8(1). Johnson Space Center, Houston, (Feb 1985).
Mittlefehldt, D. W. (1994). ALH84001, a cumulate orthopyroxenite member of the martian meteorite clan. Meteoritics, vol. 29, #3, 214-221. (March 1994).
Makoto Kimura & Ahmed El Goresy (1989). Discovery of E-Chondrite Assemblages and Silica-Bearing Objects in ALH85085:- Link Between E- and C-Chondrites (Abstract). Abstracts and Program for the 52nd Annual Meeting of the Meteoritical Society. LPI Contribution 712, p. 112.
Brearley, A.J. & Jones, R.H. (1998) Chondritic Meteorites. In: Planetary Materials (Papike, JJ - Ed.), Chapter 3: 1-398: Mineralogical Society of America, Washington, DC, USA.
Olsen, E. et al. (1978). Eleven new meteorites from Antarctica, 1976-1977, Meteoritics 3( 2): 209-225.
Cirlin, E.-H. (1984) SEM Studies of Whitlockite and Chromite in Metal-Sulfide Droplets in a C3 Allan Hills Meteorite and Their Implications (Abstract.): Lunar and Planetary Science XV: 162-163. (Mar 1984).
Housley, R. M. (1984) An SEM study of preterrestrial alteration effects in ALHA 77003. Meteoritics 19( 4): 242 - 243. (Dec 1984).
Goodrich, C. A., Herd, C. D. K. & Taylor, L. A. (2003) Spinels and oxygen fugacity in olivine-phyric and lherzolitic shergottites: Meteoritics & Planetary Science 38 (12): 1773-1792. (Dec 2003)
Ikeda, Y (1994) Petrography and petrology of the ALH-77005 shergottite: Proc. NIPR Symposium Antarctic Meteorites 7: 9-29.
Tsuchiyama, A., Fujita, T. & Morimoto (1988) Fe-Mg heterogeneity in the low-Ca pyroxenes during metamorphism of the ordinary chondrites. Proc. NIPR Symposium Antarctic Meteorites 1: 173-184.
Shibata, Y. (1996) Opaque minerals in Antarctic CO3 carbonaceous chondrites, Yamato-74135 -790992, -791717, -81020, -81025, -82050 and Allan Hills-77307: Twentieth Symposium on Antarctic Meteorites: Proceedings of the NIPR Symposium, No. 9 [Editor in Chief, Hideyasu Kojima]: pp. 79-93-108. (1996).
Goodrich, C. A., Taylor, G. J., Keil, K., Boynton, W. V., & Hill, D. H. (1984). Petrology and chemistry of hyperferroan anorthosites and other clasts from lunar meteorite ALHA81005. Journal of Geophysical Research: Solid Earth, 89(S01), C87-C94.
      • Elephant Moraine
Wlotzka, F. (2005) Cr spinel and chromite as petrogenetic indictors in ordinary chondrites: Equilibrium temperatures of petrologic type 3.7 to 6. Meteoritics & Planetary Science 40 (11): 1673-1702. (Nov 2005).
Downes, H., Mittlefehldt, D.W., Hita, N.T. & Valley J.W. (2008) Evidence from polymict ureilites for a disrupted and re-accreted single parent body gardened by several distinct impactors: Geochimica et Cosmochimica Acta 72 (19): 4825 -4844. (1 Oct 2008).
curator.jsc.nasa.gov (2013) http://curator.jsc.nasa.gov/antmet/mmc/EETA79001.pdf
McSween Jr., HY & Treiman, AH (1998) Martian Meteorites. In: Planetary Materials (Papike, JJ - Ed.), Chapter 6: 1-53: Mineralogical Society of America, Washington, DC, USA.
Antarctic Meteorite Newsletter 3(3) (1980), Johnson Space Center, Houston.
Rochette, P., Folco, L., Suavet, C., van Ginneken, M., Gattacceca, J., Perchiazzi, N., ... & Harvey, R. P. (2008). Micrometeorites from the transantarctic mountains. Proceedings of the National Academy of Sciences, 105(47), 18206-18211.
Meteoritical Bulletin, 84 (Aug. 2000)
Burroni, A., & Folco, L. (2008). Frontier Mountain meteorite specimens of the acapulcoite‐lodranite clan: Petrography, pairing, and parent‐rock lithology of an unusual intrusive rock. Meteoritics & Planetary Science, 43(4), 731-744.
      • Grosvenor Mountains
Rubin, A. E., & Moore, W. B. (2011). What’s up? Preservation of gravitational direction in the Larkman Nunatak 06299 LL impact melt breccia. Meteoritics & Planetary Science, 46(5), 737-747.
      • Queen Alexandra Range
Mikouchi, T., Miyamoto, M. & McKay, G. A. (1998) Mineralogy of Antarctic basaltic shergottite QUE94201: Similarities to EETA7900 1 (Lithology B) martian meteorite. Meteoritics & Planetary Science 33 (2): 181-189. (March 1998).
    • Wisconsin Range
Floss, Christine (1999) Fe,Mg,Mn-bearing phosphates in the GRA 95209 meteorite: Occurrences and mineral chemistry. American Mineralogist: 84(9): 1354-1359.
Anzures, Brendan A., McCubbin, Francis M., Erickson, Timmons M., Jakubek, Ryan S., Fries, Marc D., Le, Loan (2024) First widespread occurrence of rare phosphate chladniite in a meteorite, winonaite Graves Nunataks (GRA) 12510: implications for phosphide – phosphate redox buffered genesis in meteorites. American Mineralogist. doi:10.2138/am-2023-9195
McCoy, T.J., Carlson, W.D., Nittler, L.R., Stroud, R.M., Bogard, D.D., Garrison, D.H. (2006) Graves Nunataks 95209: A snapshot of metal segregation and core formation. Geochimica et Cosmochimica Acta: 70(2): 516-531.
  • Western Antarctica
    • Cumulus Ridge
Danielson, L.R., Righter, K. & Humayun, M. (2009) Trace element chemistry of Cumulus Ridge 04071 pallasite with implications for main group pallasites: Meteoritics & Planetary Science 44 (7):1019-1032. (July 2009)
McCoy, T. et al. (2005) Antarctic Meteorite Newsletter 28 (2).
 
矿物 and/or 产地  
Mindat Discussions Facebook Logo Instagram Logo Discord Logo
版权所有© mindat.org1993年至2024年,除了规定的地方。 Mindat.org全赖于全球数千个以上成员和支持者们的参与。
隐私政策 - 条款和条款细则 - 联络我们 - Report a bug/vulnerability Current server date and time: 2024.4.26 08:53:00
Go to top of page