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31.
新疆西天山超高压变质榴辉岩   总被引:14,自引:0,他引:14  
在新疆西天山3类榴辉岩中均发现了超高压变质矿物:在第Ⅰ类与蓝片岩互层的榴辉岩中发现了柯石英假像;在第Ⅱ类枕状榴辉岩的绿辉石中发现了石英出溶叶片;在第Ⅲ类产于大理岩中呈透镜状的方解石/白云石榴辉岩中发现了变质成因的菱镁矿。详细的岩石矿物学研究表明,第Ⅰ类榴辉岩3个阶段的变质演化温压条件为:UHP前变质阶段(356-433℃,0.8-1.0GPa)、峰期UHP榴辉岩相阶段(496-598℃,2.572-2.666GPa)和退变绿帘蓝片岩相阶段(500-530℃,1.0-1.2GPa),并建立了在NCMASCH(Na2O-CaO-MgO-Al2O3-SiO2-CO2-H2O)体系中出现蓝闪石、石榴石、绿辉石、菱镁矿、白云石、黝帘石、柯石英、CO2和H2O的相平衡关系。经变质反应分析和相平衡理论计算西天山含菱镁矿的蓝闪石榴辉岩的变质峰期温压条件为:2.7-2.8GPa和525-607℃,XCO2低于0.006。超高压变质矿物的发展表明西天山榴辉岩经历了超高压变质作用,所谓的南天山造山带可能是世界上规模最大的由洋壳俯冲形成的超高压变质带。  相似文献   
32.
华中高压变质柯石英的拉曼谱学研究   总被引:4,自引:0,他引:4  
采用光学显微镜、X衍射仪和拉曼分子探针对华中皖西南榴辉岩中的柯石英的晶体结构和分子配位体结构进行了研究,在中国自己的实验室中首次测定了自然柯石英的拉曼散射谱并获得下列结论:①通常高压变质柯石英是不可能结晶成大的颗粒,其大小为几个微米至几十微米。②根据因子群分析理论确定石英的465cm~(-1)峰为对称伸缩振动A_1,柯石英的521cm~(-1)峰为反对称伸缩振动Bg。③利用拉曼分子微探针鉴定SiO_2多形具有独特的效果,研究表明在α-方石英(CR)石英(QZ)和柯石英(CS)中Si-O键长基本不变,但是[SiO_4]配位体密度从CR、QZ至CS是递增的,并导致矿物密度及[SiO_4]架状结构振动频率的增加,这为研究分子结构与地质体温度、压力之关系提供了新的依据。  相似文献   
33.
本文对大别山地区的柯石英榴辉岩进行了详细全面的岩相学和矿物化学研究,确定了柯石英榴辉岩的变质条件,识别出了榴辉岩化前的矿物包体及其角闪岩化、绿帘角闪岩化和绿片岩化3期退变质作用,进而再塑了一个呈顺时针方向旋转的复杂P-T-t轨迹。由此讨论了柯石英榴辉岩的形成机制和地球动力学意义。  相似文献   
34.
Coesite relics were discovered as inclusions in clinopyroxene in eclogite and as inclusions in zircon in felsic and pelitic gneisses from Higher Himalayan Crystalline rocks in the upper Kaghan Valley, north‐west Himalaya. The metamorphic peak conditions of the coesite‐bearing eclogites are estimated to be 27–32 kbar and 700–770 °C, using garnet–pyroxene–phengite geobarometry and garnet–pyroxene geothermometry, respectively. Cathodoluminescence (CL) and backscattered electron (BSE) imaging distinguished three different domains in zircon: inner detrital core, widely spaced euhedral oscillatory zones, and thin, broadly zoned outermost rims. Each zircon domain contains a characteristic suite of micrometre‐sized mineral inclusions which were identified by in situ laser Raman microspectroscopy. Core and mantle domains contain quartz, apatite, plagioclase, muscovite and rutile. In contrast, the rim domains contain coesite and minor muscovite. Quartz inclusions were identified in all coesite‐bearing zircon grains, but not coexisting with coesite in the same growth domain (rim domain). 206Pb/238U zircon ages reveal that the quartz‐bearing mantle domains and the coesite‐bearing rim were formed at c. 50 Ma and 46.2 ± 0.7 Ma, respectively. These facts demonstrate that the continental materials were buried to 100 km within 7–9 Myr after initiation of the India–Asia collision (palaeomagnetic data from the Indian oceanic floor supports an initial India‐Asia contact at 55–53 Ma). Combination of the sinking rate of 1.1–1.4 cm year?1 with Indian plate velocity of 4.5 cm year?1 suggests that the Indian continent subducted to about 100 km depth at an average subduction angle of 14–19°.  相似文献   
35.
苏鲁超高压变质带的形成时代究竟是印支期还是新元古代争议始终很大。对山东胶南地区超高压变质带中超镁铁岩和榴辉岩的锆石激光拉曼、阴极发光和离子探针原位定年的研究获得超高压变质作用发生的时代为印支期。其中超镁铁岩含柯石英锆石的年龄为221±12Ma,该深成岩侵位时代为新元古代(581±44Ma)。此外,锆石中另有约400Ma年龄记录,可能代表岩石形成后另有一期热事件。榴辉岩的下交点年龄为228±29 Ma,与超镁铁岩含柯石英锆石年龄一致,代表超高压变质时代;上交点为中元古代(1821±19Ma),代表原岩年龄,后者与其片麻岩围岩时代相一致,说明榴辉岩是原位俯冲。  相似文献   
36.
喜马拉雅造山带西构造结含柯石英榴辉岩的发现及其启示   总被引:18,自引:1,他引:17  
着重介绍了最近几年外国学者在喜马拉雅西北部发现高压榴辉岩和含柯石英超高压榴辉岩的新成果。这项重要发现,对于正确了印度板块与亚洲板块碰撞动力学过程,大陆俯冲,折返和鼓民拉雅造山带是变质演化历史有着重要意义,同时对我国学者从喜马拉雅东构造结下地壳高 为质岩和结晶基底升研究有着重要的启迪。  相似文献   
37.
超高压变质岩中柯石英-石英相变动力学研究的评述   总被引:2,自引:0,他引:2  
含柯石英超高压变质岩的发现是陆过 幔深部俯冲的岩石学语气也揭示了深部变质深种物折返地表的可能性。超高压变质岩的开 折返机制是当前地球科学中最有挑战性的前沿课题之一,具有深刻的大陆动力学意义。  相似文献   
38.
Silicon-bearing rutile has been found in chromitite from the Luobusa (罗布莎) ophiolite, Tibet. However, the extent of SiO2 solubility in rutile and the nature of its origin are still unclear. At high pressure, SiO2 takes a rutile structure with Si in 6-fold coordination. Thus, high pressures may enhance its solubility in rutile because of possible isovalent exchange in the oetabedral site. In this study, we report new experimental results on SiO2 solubility in rutile up to 23 GPa and 2 000 ℃. Starting materials were mixtures of powdered pure rutile and pure quartz, with compositions of (Ti0.5Si0.5)O2,(Ti0.93Si0.07)O2, and (Ti0.75Si0.25)O2. The mixtures were loaded into either platinum capsules (for a 10/5 assembly) or rhenium capsules (for an 8/3 assembly). The experiments were carried out using multi-anvil high-pressure apparatus with a rhenium resistance heater. Sample temperatures were measured with a W5%Re-W26%Re thermoeouple and were controlled within ±1 ℃ of the set temperature. TiO2-rich and SiO2-rich phases were produced in all the quenched samples. Microprobe analyses of the phases show that the solubility of SiO2 in rutile increases with increasing pressure, from 1.5 wt.% SiO2 at 10 GPa to 3.8 wt.% SiO2 at 23 GPa at a temperature of 1 800 ℃. The solubility also increases with increasing temperature from 0.5 wt.% SiO2 at 1 500 ℃ to 4.5 wt.% SiO2 at 2 000 ℃ at a pressure of 18 GPa. On the other hand, the solubility of TiO2 in coesite or stishovite is very limited, with an average of 0.6 wt.% TiO2 over the experimental P-T ranges. Temperature has a much larger effect on the solubility of SiO2 in rutile than pressure. At high pressure, the melting point of SiO2 is defmitely higher than that of TiO2 and the eutectic point moves towards SiO2 in the TiO2-SiO2 system. Lower oxygen fugacity decreases the solubility of SiO2 in rutile, whereas water has little effect on the solubility. Our experimental data are extremely useful for determining the depth of origin of the SiO2-bearing ruffle found in nature.  相似文献   
39.
Coesite inclusions in garnet have been found in eclogite boudins enclosed in coesite‐bearing garnet micaschist in the Habutengsu Valley, Chinese western Tianshan, which are distinguished from their retrograde quartz by means of optical characteristics, CL imaging and Raman spectrum. The coesite‐bearing eclogite is mainly composed of porphyroblastic garnet, omphacite, paragonite, glaucophane and barroisite, minor amounts of rutile and dotted (or banded) graphite. In addition to coesite and quartz, the zoned porphyroblastic garnet contains inclusions of omphacite, Na‐Ca amphibole, calcite, albite, chlorite, rutile, ilmenite and graphite. Multi‐phase inclusions (e.g. Czo + Pg ± Qtz, Grt II + Qtz and Chl + Pg) can be interpreted as breakdown products of former lawsonite and possibly chloritoid. Coesite occurs scattered within a compositionally homogenous but narrow domain of garnet (outer core), indicative of equilibrium at the UHP stage. The estimate by garnet‐clinopyroxene thermometry yields peak temperatures of 420–520 °C at 2.7 GPa. Phase equilibrium calculations further constrain the P–T conditions for the UHP mineral assemblage Grt + Omp + Lws + Gln + Coe to 2.4–2.7 GPa and 470–510 °C. Modelled modal abundances of major minerals along a 5 °C km?1 geothermal gradient suggests two critical dehydration processes at ~430 and ~510 °C respectively. Computed garnet composition patterns are in good agreement with measured core‐rim profiles. The petrological study of coesite‐bearing eclogite in this paper provides insight into the metamorphic evolution in a cold subduction zone. Together with other reported localities of UHP rocks from the entire orogen of Chinese western Tianshan, it is concluded that the regional extent of UHP‐LT metamorphism in Chinese western Tianshan is extensive and considerably larger than previously thought, although intensive retrogression has erased UHP‐LT assemblages at most localities.  相似文献   
40.
岫岩陨石坑石英的冲击变质特征   总被引:3,自引:0,他引:3  
陈鸣 《矿物学报》2011,31(2):161-165
直径1.8 km的岫岩陨石坑位于辽宁省岫岩县苏子沟镇。坑区基岩为下元古界变质岩,由变粒岩、片麻岩、角闪岩、透闪岩和大理岩等岩石组成。坑内充填的撞击角砾岩石英颗粒呈现典型的冲击变质特征,其中包括沿着石英(0001)、{10 11}、{10 12}和{10 13}等方向发育的多组面状变形页理,以及石英发生相转变形成二氧化硅玻璃和柯石英。产出在二氧化硅玻璃中的针状和粒状柯石英表明从二氧化硅熔体中结晶形成。石英面状变形页理的发育特点限定冲击压力高达35 GPa,而二氧化硅熔体玻璃的存在表明冲击压力高达50 GPa。当压力释放和温度升高,二氧化硅熔体首先被形成。随着压力进一步释放到2.5~13 GPa,柯石英从二氧化硅熔体中结晶析出。岫岩陨石坑中石英面状变形页理和柯石英的存在提供了矿物冲击变质的诊断性证据。  相似文献   
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