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Xu, Haijun, Zhang, Junfeng, Zong, Keqing, Liu, Liang (2015) Quartz exsolution topotaxy in clinopyroxene from the UHP eclogite of Weihai, China. Lithos, 226. 17-30 doi:10.1016/j.lithos.2015.02.010

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Reference TypeJournal (article/letter/editorial)
TitleQuartz exsolution topotaxy in clinopyroxene from the UHP eclogite of Weihai, China
JournalLithos
AuthorsXu, HaijunAuthor
Zhang, JunfengAuthor
Zong, KeqingAuthor
Liu, LiangAuthor
Year2015 (June)Volume226
Page(s)17-30
PublisherElsevier BV
DOIdoi:10.1016/j.lithos.2015.02.010Search in ResearchGate
Mindat Ref. ID275296Long-form Identifiermindat:1:5:275296:3
GUIDa2ad2bf5-baba-4ff9-9010-7df25ac458e3
Full ReferenceXu, Haijun, Zhang, Junfeng, Zong, Keqing, Liu, Liang (2015) Quartz exsolution topotaxy in clinopyroxene from the UHP eclogite of Weihai, China. Lithos, 226. 17-30 doi:10.1016/j.lithos.2015.02.010
Plain TextXu, Haijun, Zhang, Junfeng, Zong, Keqing, Liu, Liang (2015) Quartz exsolution topotaxy in clinopyroxene from the UHP eclogite of Weihai, China. Lithos, 226. 17-30 doi:10.1016/j.lithos.2015.02.010
In(2015) Lithos Vol. 226. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Bakun-Czubarow (1992) Archiwum Mineralogiczne Quartz pseudomorphs after coesite and quartz exsolutions in eclogitic omphacites of the Zlote Mountains in the Sudetes (SW Poland) 49, 3
Cawthorn (1974) American Mineralogist The recalculation of pyroxene end-member parameters and estimation of ferrous and ferric iron content from electron microprobe analyses 59, 1203
Dobrzhinetskaya (2011) Frontiers of ultrahigh-pressure metamorphism: view from field and laboratory , 1
Fleet (1982) American Mineralogist Orientation of phase and domain boundaries in crystalline solids 67, 926
Gasparik (1986) American Mineralogist Experimental study of subsolidus phase relations and mixing properties of clinopyroxene in the silica-saturated system CaO–MgO–Al2O3–SiO2 71, 686
Harlow (1999) Interpretation of Kcpx and CaEs components in clinopyroxene from diamond inclusions and mantle samples , 321
Khanukhova (1976) Transactions (Doklady) of the USSR Academy of Sciences, Earth Science Sections Excess silica in solid-solution of high-pressure clinopyroxenes as shown by experimental study of the system CaMgSi2O6–CaAl2SiO6 at 35kilobars and 1200°C 229, 170
Kihle (2010) Journal of Metamorphic Geology Epitaxial quartz inclusions in corundum from a sapphirine–garnet boudin, Bamble Sector, SE Norway: SiO2–Al2O3 miscibility at high P–T dry granulite facies conditions 28, 769
Klemd (2003) American Mineralogist Ultrahigh-pressure metamorphism in eclogites from the western Tianshan high-pressure belt (Xinjiang, Western China)—Comment 88, 1153
Liang (2006) Acta Geologica Sinica Quartz exsolution in omphacite of ultrahigh pressure metamorphic rocks from CCSD 80, 1904
Liou (1998) High-pressure minerals from deeply subducted metamorphic rocks 37, 33
Liu (2009) Chinese Science Bulletin Exsolution microstructures in ultrahigh-pressure rocks: progress, controversies and challenges 54, 1983
Mao (1971) The system jadeite (NaAlSi2O6) — Anorthite (CaAl2Si2O8) at high pressures 69, 163
McCormick (1986) American Mineralogist Crystal-chemical aspects of nonstoichiometric pyroxenes 71, 1434
Papike (1969) Mineralogical Society of America Special Paper Crystal chemical characterization of amphiboles based on five new structure determinations 2, 117
Raudsepp (1987) American Mineralogist Characterization of synthetic pargasitic amphiboles (NaCa2Mg4M3+Si6Al2O22(OH,F)2; M3+=Al, Cr, Ga, Sc, In) by infrared spectroscopy, Rietveld structure refinement and 27Al, 29Si, and 19F MAS NMR spectroscopy 72, 580
Schwartz (2009)
Shau (2005) Transmission electron microscopic study of quartz rods with intergrown amphibole within omphacite in eclogites from the Sulu ultrahigh-pressure metamorphic terrane, eastern China 150, 139
Smith (1988) A review of the peculiar mineralogy of the “Norwegian coesite–eclogite province”, with crystal-chemical, petrological, geochemical and geodynamical notes and an extensive bibliography 12, 1
Smith (1980) Oriented needles of quartz in clinopyroxene: evidence for exsolution of SiO2 from a non-stoichiometric supersilicic “clinopyroxene” , 145
Smyth (1980) American Mineralogist Cation vacancies and the crystal chemistry of breakdown reactions in kimberlitic omphacite 65, 1185
Sunagawa (2005)
Wang (2003) Earth Science—Journal of China University of Geosciences Raman spectrum study on quartz exsolution in omphacite from eclogite and its tectonic significances 28, 143
Wood (1978) American Mineralogist Composition and unit-cell parameters of synthetic non-stoichiometric tschermakitic clinopyroxenes 63, 66
Yang (1989) Evidence for a former sanidine–coesite–eclogite at Lanshantou, Eastern China, and the recognition of the Chinese “Su-Lu Coesite-Eclogite Province” 1, 26
Zharikov (1984) Geologiya i Geofizika High pressure clinopyroxenes and the eclogite barrier 25, 54
Zheng (2008) Chinese Science Bulletin A perspective view on ultrahigh-pressure metamorphism and continental collision in the Dabie–Sulu orogenic belt 53, 3081


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