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171.
Abstract. Denggezhuang gold deposit is an epithermal gold‐quartz vein deposit in northern Muru gold belt, eastern Shandong, China. The deposit occurs in the NNE‐striking faults within the Mesozoic granite. The deposit consists of four major veins with a general NNE‐strike. Based on crosscutting relationships and mineral parageneses, the veins appear to have been formed during the same mineralization epochs, and are further divided into three stages: (1) massive barren quartz veins; (2) quartz‐sulfides veins; (3) late, pure quartz or calcite veinlets. Most gold mineralization is associated with the second stage. The early stage is characterized by quartz, and small amounts of ore minerals (pyrite), the second stage is characterized by large amounts of ore minerals. Fluid inclusions in vein quartz contain C‐H‐O fluids of variable compositions. Three main types of fluid inclusions are recognized at room temperature: type I, two‐phase, aqueous vapor and an aqueous liquid phase (L+V); type II, aqueous‐carbonic inclusions, a CC2‐liquid with/without vapor and aqueous liquid (LCO2+VCC2+Laq.); type III, mono‐phase aqueous liquid (Laq.). Data from fluid inclusion distribution, microthermometry, and gas analysis indicate that fluids associated with Au mineralized quartz veins (stage 2) have moderate salinity ranging from 1.91 to 16.43 wt% NaCl equivalent (modeled salinity around 8–10 wt% NaCl equiv.). These veins formatted at temperatures from 80d? to 280d?C. Fluids associated with barren quartz veins (stage 3) have a low salinity of about 1.91 to 2.57 wt% NaCl equivalent and lower temperature. There is evidence of fluid immiscibility and boiling in ore‐forming stages. Stable isotope analyses of quartz indicate that the veins were deposited by waters with δO and δD values ranging from those of magmatic water to typical meteoric water. The gold metallogenesis of Muru gold belt has no relationship with the granite, and formed during the late stage of the crust thinning of North China.  相似文献   
172.
The Pering deposit on the Ghaap Plateau, Northwestern Province, South Africa, was the largest of several Zn–Pb occurrences hosted by Neoarchean platform dolostones of the Transvaal Supergroup. With a Paleoproterozoic mineralization age, these occurrences are widely regarded as the oldest representatives of Mississippi Valley-type Pb–Zn deposits. Hosting an initial resource of 18 Mt at an average grade of 3.6 wt% Zn and 0.6 wt% Pb, the Pering deposit was mined from 1984 until its final closure at the end of November 2002. In this study, available geological and grade distribution maps were evaluated and complemented by the examination of mining-related outcrops, drill core, and a large set of ore and host rock samples. Four different styles of brecciation can be distinguished at the Pering deposit: (1) pyritic rock matrix breccia; (2) chemical wear breccia; (3) mosaic breccia; and (4) crackle breccia. Geological and mineral paragenetic observations on these different breccia types suggest that the formation of the Pering deposit commenced with an initial stage of hydrothermal karstification. Large volumes of pyritic rock matrix breccia formed by wall rock collapsing into the open space attributed to carbonate dissolution. This stage of hydrothermal karstification acted as ground preparation for the subsequent mineralization event. By the upward advance of the hydrothermal karstification process, fluid reservoirs in the previously undisturbed dolostone host rock succession were tapped, ultimately leading to fluid mixing. Hydrothermal sulphides are the most abundant where fluid mixing was most effective, i.e. along the outer and upper margins of the breccia bodies, and in stratabound zones along permeable host rock units. Chemical wear brecciation and formation of large volumes of fine-grained replacive sphalerite mineralization mark the early stage of hydrothermal Zn–Pb mineralization associated with this fluid mixing. The fine-grained stage of sulphide mineralization was succeeded by very coarse-grained open-space-infill mineralization. The latter is very uniform across the entire deposit and typically cements mosaic and crackle breccia, but also fills remaining open space within chemical wear brecciated portions of the deposit.  相似文献   
173.
湖南船岭脚锡矿区矿化特征及成因探讨   总被引:2,自引:1,他引:2  
船岭脚锡矿为南岭锡多金属成矿带的一大型锡矿床。矿化类型较多,以构造蚀变带-矽卡岩复合型、接触带矽卡岩型锡矿为主,分布于中侏罗世姑婆山岩体接触带,且具分带性,自岩体内接触带往外依次为构造蚀变带-矽卡岩复合型、接触带矽卡岩型。矿化与成矿岩体及构造复合等因素密切相关,成矿物质主要来源于岩浆,为一与花岗岩有关的中高温矽卡岩型矿床。  相似文献   
174.
通过对邯郸市某车间地基的勘察.分析和探讨了新近沉积粉细砂地层的勘察手段、其物理力学性质,及其利用载荷试验确定承载力的标准取得了较为满意的结果,提出的一些分析方法,对新近沉积的粉细砂地层的勘察具有一定的借鉴作用。  相似文献   
175.
贵州东部石英脉型金矿地质特征和成矿作用   总被引:7,自引:3,他引:7  
贵州东部以晚元古代地层为容矿地层的金矿,主要是石英脉型金矿。它们主要分布在从江地区、天柱—锦屏—黎平地区和梵净山地区。前2者处于南华褶皱带西缘,后者处于南华褶皱带与扬子陆块的过渡带。矿体分布在断裂(带)和背斜核部。共伴生矿物为石英、黄铁矿、毒砂、闪锌矿、方铅矿、黝铜矿,黄铜矿,辉锑矿、绿泥石等。矿化蚀变以硅化、黄铁矿化、毒砂化、绿泥石化为主。形成温度主要集中在100℃~350℃,是中低温热液矿床,呈现100~150℃和200~300℃两个区段。金有来源于围岩的、也有来源于深部岩浆的;流体有来源于地层和深部的,也有大气降水的混入。金矿的形成是多时代多阶段形成的:雪峰期提供原始物质;加里东期是一次主要成矿期;燕山时期也是一个重要的金矿形成时期,不但形成新金矿,还改造加里东期形成的金矿  相似文献   
176.
从流体包裹体特征探讨泥堡金矿成因   总被引:5,自引:1,他引:5  
泥堡金矿床据脉石矿物和萤石的包裹体研究,包裹少而小,类型较为简单。综合包裹体各项参数和气液成分分析认为,成矿流体属NaCl-H_2O体系的富K~ 的、弱酸性溶液,具有较高密度、较低盐度和中-低温度的特点。结合硫和氢氧同位素测定结果,成矿流体是燕山运动阶段的地表水沿断裂深循环,特别是在富K、富Au的凝灰岩中往复循环作用形成的。当各种条件具备时即可卸载成矿,成矿的最佳位置就是沿P_(2-3)β_1与P_2m~(dc)之间沉积间断面发生的层间滑动构造带。  相似文献   
177.
伊吾县阿克萨依金矿是在伊吾县马依当阿克萨依地区发现的一种新型矿床。文章通过对区域成矿地质背景的调查和研究,结合马依当阿克萨依金矿的地质特征,总结该地区的成矿规律与控矿因素。据已有资料初步认为:早期发生脆韧剪切,金初始富集,为金成矿矿源之一,华力西中期石英闪长岩及后期变质作用为金成矿提供深部矿源和热源。近北西西向的一系列叠瓦状断裂构造和岩体与围岩接触带附近的空隙,构成矿物迁移和聚集场所。该矿在东天山造山带地区具有代表性,初步预测在阿克萨依及其外围地区有3个靶区。该类型金矿的发现,对今后在该区找矿具有一定的指导意义。  相似文献   
178.
华南扬子地块是我国古热水沉积成矿作用最为发育的地区之一,其热水沉积特性最早引起我国学者的关注。华南下寒武统黑色岩系中赋存多个与热水沉积成矿作用相关的大型、超大型重晶石矿床与N i-Mo-U-V多金属富集层。进一步研究分布在华南扬子地块黑色岩系中的金属、非金属矿床成因及其地球化学特征,对认识华南乃至全球晚震旦—早寒武世生物与环境演化有着十分重要的意义。本文对华南下寒武统镍-钼富集层矿石进行电子探针研究,识别出黄铜矿、黝铜矿等铜的独立矿物;闪锌矿等锌的独立矿物;方铅矿、白铅矿等铅的独立矿物。研究表明,在镍-钼矿石中这些矿物的发现为镍-钼矿层是热水沉积作用产物提供了直接的矿物学证据。  相似文献   
179.
1 Introduction The association of massive Fe-Ni-Cu sulfides andchromite is a very unusual feature of podiformchromitites occurring in mantle tectonites of ophioliticcomplexes. It has only been described in theSoutheastern Desert, Egypt, where sulfides a…  相似文献   
180.
1 Introduction The Ordos Basin is the second largest sedimentary basin in China. During the last 10 years, a great progress has been achieved in the aspects of tectonic evolution, dynamics process, inner and outer geological processes during Mesozoic-Cen…  相似文献   
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