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51.
In order to identify and characterise fluids associated with metamorphic rocks from the Chaves region (North Portugal), fluid inclusions were studied in quartz veinlets, concordant with the main foliation, in graphitic-rich and nongraphitic-rich lithologies from areas with distinct metamorphic grade. The study indicates multiple fluid circulation events with a variety of compositions, broadly within the C–H–O–N–salt system. Primary fluid inclusions in quartz contain low salinity aqueous–carbonic, H2O–CH4–N2–NaCl fluids that were trapped near the peak of regional metamorphism, which occurred during or immediately after D2. The calculated PT conditions for the western area of Chaves (CW) is P=300–350 MPa and T500 °C, and for the eastern area (CE), P=200–250 MPa and T=400–450 °C. A first generation of secondary fluid inclusions is restricted to discrete cracks at the grain boundaries of quartz and consists of low salinity aqueous–carbonic, H2O–CO2–CH4–N2–NaCl fluids. PT conditions from the fluid inclusions indicate that they were trapped during a thermal event, probably related with the emplacement of the two-mica granites.

A second generation of secondary inclusions occurs in intergranular fractures and is characterised by two types of aqueous inclusions. One type is a low salinity, H2O–NaCl fluid and the second consists of a high salinity, H2O–NaCl–CaCl2 fluid. These fluid inclusions are not related to the metamorphic process and have been trapped after D3 at relatively low P (hydrostatic)–T conditions (P<100 MPa and T<300 °C).

Both the early H2O–CH4–N2–NaCl fluids in quartz from the graphitic-rich lithologies and the later H2O–CO2–CH4–N2–NaCl carbonic fluid in quartz from graphitic-rich and nongraphitic-rich lithologies seem to have a common origin and evolution. They have low salinity, probably resulting from connate waters that were diluted by the water released from mineral dehydration during metamorphism. Their main component is water, but the early H2O–CH4–N2–NaCl fluids are enriched in CH4 due to interaction with the C-rich host rocks.

From the early H2O–CH4–N2–NaCl to the later aqueous–carbonic H2O–CO2–CH4–N2–NaCl fluids, there is an enrichment in CO2 that is more significant for the fluids associated with nongraphitic-rich lithologies.

The aqueous–carbonic fluids, enriched in H2O and CH4, are primarily associated with graphitic-rich lithologies. However, the aqueous–carbonic CO2-rich fluids were found in both graphitic and nongraphitic-rich units from both the CW and CE studied areas, which are of medium and low metamorphic grade, respectively.  相似文献   

52.
Nineteen volcanic and magmatic rock samples were collectecd from the Jinding leadzinc deposit and its surrounding areas in Yunnan.The ICP and AES analyses,feferred to the previous results,show that the metal minerals and altered rocks in the Jinding lead-zinc deposit display a decreasing trend of ∑REE from the early to late stages of mineralization,and similarities in REE distribution patterns,indicating that the ore fluids are characterized by high LREE enrichment,markedly negative δCe anomaly and slight δEu anomaly.These REE distribution paterns exhibit striking similarities to those of the Pliocene trachyte in the study area,both of which are similar in ∑REE,LREE/HREE ratio,δEu and δCe.The ore fluids besides the basin fluids in the deposit are also closely related to those associated with Pliocene trachyte magmas.  相似文献   
53.
The gold showings at Bleida are hosted in Late Pan-African N50–80 °E quartz–hematite–chlorite 1 tension lenses that are related to the activity of major sinistral sub-east–west thrusts. Ores result from three superimposed stages of fluid migration. Gold occurs in microcracks offsetting the earlier minerals. Fluids evolved from COHN compositions with a saline component to boiling aqueous fluids. Pressure and temperature decreased from 50 MPa and 300 °C to less than 4 MPa and 150 °C. Thus, the gold showings at Bleida were formed in a typical geothermal (epithermal) setting, likely controlled by the Late Pan-African magmatism. To cite this article: A. Barakat et al., C. R. Geoscience 334 (2002) 35–41  相似文献   
54.
Quadrupole mass spectrometer (QMS) is an instrument for effectively determining gaseous composition of fluid inclusion. The gaseous component is extracted from inclusions with thermal decrepitation method and then determined with the sensitive QMS instrument. The method is characterized by high sensitivity and high accuracy with the relative standard deviation (RSD,n=6) of less than 3%. It has been successfully used for analyzing fluid inclusions. The analytical results meet the requirement of geological study.  相似文献   
55.
通过分析认为乌鲁木齐地区的年降雨、年气温对新 0 4号井、新 1 0号井水位和新 1 0号泉流量没有明显干扰。新 0 4号井、新 1 0号井和新 1 0号泉的震兆特征是 0 4号井水位为负异常 ,1 0号井水位、1 0号泉流量为正异常 ,产生差异的原因可能与观测点所处的构造环境有关。预测了新疆及邻近地区未来一年或稍长一段时间内有发生 7级左右地震的可能。  相似文献   
56.
57.
从流体包裹体研究探讨金属矿床成矿条件   总被引:29,自引:4,他引:29  
根据作者多年来对流体包裹体的研究成果,参考了国内外的研究结论,提出了一个新的成矿流体分类方案,并评述了我国若干典型金属矿床的研究状况,由此探讨了金属矿床的形成机制。  相似文献   
58.
徐启东  李建威 《矿床地质》2003,22(4):365-376
滇西兰坪盆地北部发育了一类受逆冲推覆构造控制的浅成热液Cu—Ag—Pb-Zn矿化,形成了白秧坪、富隆厂、吴底厂、麻栗坪及金满、科登涧等大-中型矿床和矿点,并存在矿化分带。文章利用这些矿化脉体的流体包裹体和热液方解石的碳氧同位素组成资料,研究成矿流体与矿化分带的关系。结果表明,成矿流体主要属于NaCl-H2O成分体系,盐度ω(NaCleq)为2%~11%,形成温度为170~300℃,形成于1.8~3.8km深度内,这些相似性说明这类矿化的发生具有相似的流体性质和沉淀机制。热液方解石在δ^13C-δ^18O图解中呈近水平线展布的型式,指示流体源自地壳浅部的地下水系统,与海相灰岩等围岩作用形成了溶解碳以[HCO3^]-为主的成矿流体,流体与岩石的相互作用可能是成矿流体沉淀的主要机理。从西到东,流体包裹体的盐度-温度由高到低变化与矿化分带和逆冲推覆构造的根带→中带→锋带相配套,显示重力驱动流动可能是主要的流体流动机制。成矿流体在不同构造部位流动的通畅及流体.岩石系统的封闭-开放程度等流体流动性质与矿化发生的强度和规模有关,兰坪北部逆冲推覆构造中带的流体通畅地流动及沉淀时处于相对开放状态,有利于该区形成较大规模的浅成热液多金属矿化。  相似文献   
59.
未熟-低熟油流体特征--以济阳坳陷古近系为例   总被引:1,自引:1,他引:1  
对济阳坳陷古近系储层中流体包裹体的研究进一步证明,其油气属未熟—低熟油气。除了油藏埋深浅、地层时代新、为自生自储同生油藏外,还具下列特征:油气生成温度低,包裹体均一温度范围为53~115℃;处于低演化阶段,储层中主要的包裹体类型是纯液态烃包裹体及纯液体盐水溶液包裹体。包裹体烃类成分中重烃及丁烷含量高,重烃平均占总烃的52.14%,丁烷平均占总烃的14.46%;流体压力高,估算的流体压力范围是10.0~40.5MPa;盐度较高;还原环境;古地温梯度高,为3.830℃/100m等流体特征。研究结果为该坳陷油气成因及识别未熟—低熟油成油物理化学条件等提供了信息。  相似文献   
60.
云南巍山—永平矿集区流体地质填图的理论与实践   总被引:6,自引:0,他引:6       下载免费PDF全文
流体地质填图是一种全新的地质调查及找矿方法。本次研究选择云南巍山-永平矿集区进行流体地质填图试验,研究了矿集区的控矿地质要素、各种主要的矿床(点)特征、成矿流体子系统及流域、流体的盐度与均一温度、流体的气液相成分、微量元素含量、稳定同位素特征及成矿流体的浓集中心。得到的流体地质图基本反映了本区成矿流体的性质与状态,反映了两个成矿流体子系统的基本特征,圈字了2个成矿流体子系统的流域范围及7个成矿流体浓集中心。这些浓集中心与已知矿化点分布、化探异常及有利的地质条件基本吻合,成为该区进一步找矿预测的重要依据之一。本项目的实践表明,流体地质填图不失为一种有效的找矿手段。  相似文献   
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