首页> 外文学位 >The geochemistry of carbonate-hosted lead-zinc-silver mineralization in the Lavrion District, Attica, Greece: Fluid inclusion, stable isotope, and rare earth element studies.
【24h】

The geochemistry of carbonate-hosted lead-zinc-silver mineralization in the Lavrion District, Attica, Greece: Fluid inclusion, stable isotope, and rare earth element studies.

机译:希腊阿提卡Lavrion区碳酸盐岩中铅锌银矿化的地球化学:流体包裹体,稳定同位素和稀土元素研究。

获取原文
获取原文并翻译 | 示例

摘要

Carbonate-replacement Pb-Zn-Ag deposits in the Lavrion district, Greece, are spatially related to a 7 to 10 Ma granodiorite intrusion and various sills and dikes of mafic to acid composition. The Plaka granodiorite contains porphyry molybdenite mineralization and is spatially associated with a Cu-Fe skarn. Carbonate-replacement deposits occur predominantly in marbles (Upper and Lower marble of the Basal Unit), Kaesariani schists, and along a major detachment fault. Orebodies are mainly manto-style, but mineralization also occurs in veins. The mineralogy of carbonate-replacement deposits is dominated by base metal sulfides and sulfosalts of Ag, Bi, Sn, Sb, As, and Pb, particularly at Plaka and Kamariza. Carbonates are intergrown with earlier sulfide and sulfosalt mineralization, but are more abundant late in the paragenetic sequence with fluorite and barite. Fluid inclusion studies of sphalerite, fluorite, calcite, and quartz in carbonate-replacement deposits suggest that they were deposited in thermal pulses (132°-365°C) from CO2-poor, low- to moderately-saline (1 to 20 wt% NaCl equiv) fluids.;Carbon and oxygen isotope compositions of calcite (delta13C = -15.6 to -1.5‰ and delta18O = -9.2 to 17.3‰) intergrown with sulfides reflect variable exchange of the ore-bearing fluid with the Upper and Lower marbles and proximity to the Plaka granodiorite. Post Archean Australian Shale (PAAS)-normalized rare earth and yttrium (REY) patterns of the Upper and Lower marbles, and calcite intergrown with sulfides show positive Eu and negative Ce anomalies as well as Y/Ho ratios between 40 and 80. Normalized REY patterns of fluorite also have positive Eu and negative Ce anomalies. Such anomalies for both the carbonates and fluorite reflect the high pH or low fO2 conditions of the late-stage hydrothermal fluids and the likely derivation of Ca for these minerals from marine carbonates (precursors of the Upper and Lower marbles).;The range of sulfur isotope compositions for sulfides (delta 34S = -4.9 to 5.3‰, with one outlier of 9.4‰) is due to a magmatic sulfur source and a possible contribution of reduced seawater sulfate). Assuming an average temperature of 250°C, as based on fluid studies, sulfides in carbonate replacement deposits were deposited at values of log fO2 = -41 to -36, and a pH = 5.8 to 9.1. Sulfur isotope compositions of barite (delta34S = 17.2 to 23.7‰) reflect a seawater source. The carbonate replacement deposits resemble manto-type sulfide deposits in Mexico, central Colorado, Nevada, and northern Greece.
机译:希腊Lavrion地区的碳酸盐替代Pb-Zn-Ag矿床在空间上与7至10 Ma的花岗闪长岩侵入以及各种基岩和黑铁矿对酸组成的关系有关。普拉卡花岗闪长岩含有斑岩状辉钼矿化矿,并且在空间上与铜铁矽卡岩有关。碳酸盐置换沉积物主要发生在大理石(基底单元的上,下大理石),Kaesariani片岩和主要的松动断层中。矿体主要是manto型的,但矿化也发生在静脉中。碳酸盐替代沉积物的矿物学主要由贱金属硫化物和Ag,Bi,Sn,Sb,As和Pb的硫酸盐组成,特别是在Plaka和Kamariza。碳酸盐岩与较早的硫化物和亚硫酸盐矿化共生,但在共生序列后期与萤石和重晶石更为丰富。闪锌矿,萤石,方解石和石英在碳酸盐置换矿床中的流体包裹体研究表明,它们以热脉冲(132°-365°C)从贫二氧化碳,低盐至中盐(1至20 wt%与硫化物共生的方解石(δ13C= -15.6至-1.5‰和δ18O= -9.2至17.3‰)的碳和氧同位素组成反映了含矿流体与上,下大理石和下大理石的可变交换靠近普拉卡花岗闪长岩。后太古代澳大利亚页岩(PAAS)规格化的上部和下部大理石的稀土和钇(REY)模式,以及与硫化物共生的方解石显示出正Eu和负Ce异常,以及Y / Ho比在40至80之间。归一化REY萤石的形态也具有正Eu和负Ce异常。碳酸盐和萤石的这种异常反映了后期热液的高pH值或低fO2条件,以及这些矿物可能从海洋碳酸盐(上,下大理石的前体)中衍生出Ca的可能性。硫化物的同位素组成(δ34S = -4.9至5.3‰,一个异常值为9.4‰)是由于岩浆硫源和海水中硫酸盐还原的可能造成的。根据流体研究,假设平均温度为250°C,则碳酸盐置换沉积物中的硫化物沉积为log fO2 = -41至-36,pH = 5.8至9.1。重晶石的硫同位素组成(δ34S= 17.2至23.7‰)反映了海水的来源。碳酸盐替代矿床类似于墨西哥,科罗拉多州中部,内华达州和希腊北部的曼托型硫化物矿床。

著录项

  • 作者

    Bonsall, Todd Andrew.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Geology.;Geochemistry.
  • 学位 M.S.
  • 年度 2008
  • 页码 82 p.
  • 总页数 82
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地质学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号