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Eclogites from the North Qilian suture zone are high‐pressure low‐temperature metamorphic rocks of ocean crust protolith, and occur in both massive and foliated varieties as individual blocks of tens to hundreds of metres in size. The massive type is weakly deformed and shows granoblastic texture characterized by a coarse‐grained peak mineral assemblage of Grt1 + Omp1 + Ph + Rt ± Lws (or retrograde Cz). In contrast, the foliated type is strongly deformed and shows a fine‐grained retrograde mineral assemblage of Grt2 + Omp2 + Cz + Gln + Ph. Both total FeO and aegirine contents in omphacite, as well as XFe[=Fe3+/(Fe3+ + AlVI)] in clinozoisite/epidote, increase significantly from massive to foliated eclogites. Lattice preferred orientation (LPO) of omphacite, determined by electron back‐scatter diffraction analysis, is characterized by weak and strong SL‐type fabrics for massive and foliated eclogites, respectively. Clinozoisite/epidote also developed SL‐type fabric, but different from the LPOs of omphacite in <010> and <001> axes, owing to their opposite crystallographic long and short axis definitions. The transition of deformation mechanism from dislocation creep to diffusive mass transfer (DMT) creep in omphacite and the concomitant retrograde metamorphism both are efficiently facilitated when the original coarse‐grained Omp1 + Grt1 + Lws assemblage is dynamically recrystallized and retrogressed into the fine‐grained Fe3+‐rich assemblage of Omp2 + Grt2 + Cz + Gln. The DMT process with concomitant anisotropic growth assisted by fluids is considered to be an important deformation mechanism for most minerals in the foliated eclogite. P–T estimates yielded 2.3–2.6 GPa and 485?510 °C for the massive eclogite and 1.8–2.2 GPa and 450?480 °C for the foliated eclogite. The significant increase in total Fe and Fe3+ contents in omphacite and clinozoisite/epidote from massive to foliated eclogite suggests changes in mineral compositions accompanied by an increase in oxygen fugacity during ductile deformation associated with exhumation. The LPO transition of omphacite, clinozoisite and rutile from weak SL‐type in massive eclogites to strong SL‐type in foliated eclogites is interpreted to represent the increment of shear strain during exhumation along the ‘subduction channel’. 相似文献
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Makoto Yamada Shinji Ohsawa Kohei Kazahaya Masaya Yasuhara Hiroshi Takahashi Kazuhiro Amita Hideo Mawatari Shin Yoshikawa 《Journal of Geochemical Exploration》2011
To understand deep groundwater flow systems and their interaction with CO2 emanated from magma at depth in a volcanic edifice, deep groundwater samples were collected from hot spring wells in the Aso volcanic area for hydrogen, oxygen and carbon isotope analyses and measurements of the stable carbon isotope ratios and concentrations of dissolved inorganic carbon (DIC). Relations between the stable carbon isotope ratio (δ13CDIC) and DIC concentrations of the sampled waters show that magma-derived CO2 mixed into the deep groundwater. Furthermore, groundwaters of deeper areas, except samples from fumarolic areas, show higher δ13CDIC values. The waters' stable hydrogen and oxygen isotope ratios (δD and δ18O) reflect the meteoric-water origin of that region's deep groundwater. A negative correlation was found between the altitude of the well bottom and the altitude of groundwater recharge as calculated using the equation of the recharge-water line and δD value. This applies especially in the Aso-dani area, where deeper groundwater correlates with higher recharge. Groundwater recharged at high altitude has higher δ13CDIC of than groundwater recharged at low altitude, strongly suggesting that magmatic CO2 is present to a much greater degree in deeper groundwater. These results indicate that magmatic CO2 mixes into deeper groundwater flowing nearer the magma conduit or chamber. 相似文献
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福建云霄晶洞花岗岩及含石榴子石伟晶岩的硅氧同位素研究 总被引:1,自引:0,他引:1
在运用常规方法和激光烧蚀同位素分析方法分别对云霄晶洞花岗岩和伟晶岩(长石、石英和石榴子石)的硅、氧同位素组成进行研究的基础上,探讨了晶涧花岗岩及其含石榴子石伟晶岩的物质来源及形成条件.伟晶岩中的石英和长石的氧、硅同位素组成分别较之花岗岩中的石英和长石的氧、硅同位素组成,均未发生明显变化,表明二者岩浆来源一致.云霄县的乌... 相似文献
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广东凡口铅锌矿碳、氧同位素地球化学特征及其地质意义 总被引:3,自引:0,他引:3
广东凡口超大型铅锌矿床产于泥盆系台地碳酸盐岩中,矿床成因仍存在较大争议。通过含矿地层岩石以及矿石系统的碳、氧同位素分析研究,发现紫色砂岩的褪色蚀变和碳酸盐岩的白云石化与盆地卤水作用密切相关,褪色蚀变砂岩中的碳酸盐胶结物具有显著低的δ^13C和δ^18O值,与矿石中碳酸盐矿物相似,白云石化的碳酸盐岩之δ^13c和δ^18... 相似文献
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青藏高原东南缘哀牢山大坪金矿成矿流体演化 总被引:5,自引:2,他引:3
大坪金矿是青藏高原东南缘哀牢山构造带中的大型石英脉型金矿床,由北矿区和南矿区组成.北矿区和南矿区的成矿流体包裹体均一温度及其氢、氧、硫同位素、气液相成份的测试结果表明其成矿温度为:187~329℃(平均为281℃)和168~338℃(平均为264℃)、氢同位素组成(δDV-SMOW)为:-70‰~-81‰和-71‰~-86‰、氧同位素组成(δ18OH2o)为:2.9‰~9.8‰和3.5‰~5.1‰、硫同位素值(δ34S)为:0.7‰~15.5‰和10.6‰~15.8‰.在氢-氧同位素图解上,所有样品均落在岩浆水和地下水趋势线之间.其中,北矿区样品更靠近岩浆水区域,部分样品落在岩浆水区域内,南矿区相时靠近地下水区域.流体包裹体成份分析表明,气相成份主要为H2O和CO2,其次为N2,并含有少量CH4、C2H2、C2H4、C2H6和CO;离子成份主要为K+、Na+、Ca2+、Cl-和SO42-,及少量NO3-、Mg2+、F-和Br-.含金石英脉ESR定年数据揭示了北矿区成矿时代为27.2~29.1Ma,南矿区为17.3~22.1Ma.总体来看,北矿区成矿时代要早于南矿区;北矿区成矿流体是以岩浆流体为主,并有少量地下水混入,而南矿区成矿流体中地下水的参与程度要大于北矿区;成矿流体具有从北矿区向南矿区、从早到晚以及从深部向浅部,岩浆流体组分相对减少,地下水组分逐渐增加的演化趋势. 相似文献