Chang Qing
Japan Agency for Marine-Earth Science and Technology
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Geosphere | 2011
U. Raye; Elizabeth Y. Anthony; Robert J. Stern; Jun-Ichi Kimura; Minghua Ren; Chang Qing; Kenichiro Tani
Mantle xenoliths in ∼83 Ma basanites from south-central Texas provide a rare opportunity to examine the lithospheric mantle beneath southern Laurentia. These peridotites represent lithosphere at the boundary between Mesoproterozoic continental lithosphere and transitional Gulf of Mexico passive margin. Here we report petrographic, mineral, and major element data for 29 spinel peridotite xenoliths from Knippa and use these to characterize the lithospheric mantle beneath south central Texas. The xenoliths comprise spinel-bearing lherzolites and harzburgites with coarse, equigranular textures. Some peridotites contain veins of lizardite. There are no pyroxenites or eclogites. The peridotites contain olivine (Fo89-92), orthopyroxene (En89-92), clinopyroxene (Wo40-45En45-49Fs3-5), and spinel. Spinel Cr# (Cr/(Cr+Al)) distinguishes lherzolites (Cr# = 0.14–0.21) and harzburgites (Cr# = 0.25–0.36). Mineral and major element compositions indicate that the lherzolites are residues after <10% melt extraction from primitive upper mantle and the harzburgites formed by <15% melt extraction. Calculated oxygen fugacities indicate equilibration of the harzburgites at –1 to +0.61 and lherzolites at 0 to –2.6 log units with respect to fayalite-magnetite-quartz (FMQ) buffer, similar to lightly metasomatized spinel peridotites elsewhere. The degree of melt depletion and oxidation of the Knippa peridotites are consistent with present data sets for slightly metasomatized lithospheric mantle and/or backarc samples rather than forearc settings. Equilibration temperatures range from 824 to 1058 °C (mean= 916 °C), calculated at reference pressure of 2.0 GPa. Calculated mean seismic velocities Vs = 4.44 km/sec and Vp =7.87 km/sec show no systematic difference between lherzolites and harzburgites, and agree with present geophysical measurements of upper mantle velocity beneath Texas. The seismic velocities calculated for these samples will provide important constraints for interpretation of EarthScope and other geophysical data sets.
日本地球惑星科学連合大会予稿集(Web) | 2016
Toyama Chiaki; Kimura Jun‐ichi; Chang Qing; S Vaglarov Bogdan; Kuroda Junichiro
日本地球惑星科学連合大会予稿集(Web) | 2016
Sato Tomoki; Miyazaki Takashi; Tamura Yoshihiko; Horie Kenji; B Gill James; Senda Ryoko; S Vaglarov Bogdan; Chang Qing; Kimura Jun‐ichi; Haraguchi Satoru
日本地球惑星科学連合大会予稿集(Web) | 2016
Chang Qing; Nakamura Hitomi; Chiba Kotona; Iwamori Hikaru
Japan Geoscience Union | 2016
Hanyu Takeshi; Shimizu Kenji; Ushikubo Takayuki; Ito Motoo; Kimura Jun‐ichi; Chang Qing; Hamada Morihisa; Ozawa Takahiro; Iwamori Hikaru; Ishikawa Tsuyoshi
Japan Geoscience Union | 2016
Sato Tomoki; Miyazaki Takashi; Tamura Yoshihiko; Horie Kenji; B Gill James; Senda Ryoko; S Vaglarov Bogdan; Chang Qing; Kimura Jun‐ichi; Haraguchi Satoru
Japan Geoscience Union | 2016
Toyama Chiaki; Kimura Jun‐ichi; Chang Qing; S Vaglarov Bogdan; Kuroda Junichiro
日本地球惑星科学連合大会予稿集(Web) | 2015
Kawabata Hiroshi; Sato Keiko; Kimura Jun‐ichi; Chang Qing; Senda Ryoko; Takahashi Toshiro; Hirahara Yuka; Miyazaki Takashi; W Scholl David
日本地球惑星科学連合大会予稿集(Web) | 2015
Miyazaki Takashi; Hanyu Takeshi; Senda Ryoko; Kimura Jun‐ichi; Chang Qing; Hirahara Yuka; Takahashi Toshiro
日本地球惑星科学連合大会予稿集(Web) | 2015
Schipper C Ian; Le Voyer Marion; Moussallam Yves; D L White James; P Jakobsson Sveinn; Kimura Jun‐ichi; Chang Qing