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121.
为了探测苏鲁超高压变质带的岩石圈结构实施了山东日照到滨洲剖面的宽频带地震探测,于2003~2005年使用REFTER130-01型和CMG-6TD型三分量地震仪(频宽50~60s).以10~25km间距布设了25个台站观测近三年时间.由远震地震层析反演结果得到了华北板块、超高压变质带、扬子板块清晰的P波速度图像.华北板块具有简单的低速体形态,越过郯庐断裂向超高压变质带扩张,并平稳地由郯庐断裂向北延伸直到黄河以北的古城镇.Moho面和岩石圈深度分别为30~35km,75~80km;扬子板块为高速体,界于两者之间的苏鲁超高压变质带地壳的平均速度大于两侧板块,剖面上从日照到五莲-烟台断裂范围内除地壳为高速体外,30~60km深度范围内有一个高速体和一个低速体拼会在一起,构成了超高压变质带岩石圈最突出的构造特征.此高速体应为榴辉橄榄岩等超基性岩组成,它可能属于折返回来又被移动的超高压变质岩组合体,并与华北板块基底直接接触,超高压变质带的下界面深度为60km.下界面平直,可能意味着正在消退的造山带的山根,或是造山带的下一层Moho面?郯庐断裂带地壳出露的共四条带,比较陡的产状向深部延伸,并逐步向南倾,TLF2~TLF4在岩石圈底界处合并.  相似文献   
122.
The Sawayaerdun gold deposit, located in Wuqia County, Southwest Tianshan, China, occurs in Upper Silurian and Lower Devonian low‐grade metamorphic carbonaceous turbidites. The orebodies are controlled by a series of NE‐NNE‐trending, brittle–ductile shear zones. Twenty‐four gold mineralized zones have been recognized in the Sawayaerdun ore deposit. Among these, the up to 4‐km‐long and 200‐m wide No. IV mineralized zone is economically the most important. The average gold grade is 1–6 g/t. Gold reserves of the Sawayaerdun deposit have been identified at approximately 37 tonnes and an inferred resource of 123 tonnes. Hydrothermal alteration is characterized by silicification, pyritization, arsenopyritization, sericitization, carbonatization and chloritization. On the basis of field evidence and petrographic analysis, five stages of vein emplacement and hydrothermal mineralization can be distinguished: stage 1, early quartz stage, characterized by the occurrence of quartz veins; stage 2, arsenopyrite–pyrite–quartz stage, characterized by the formation of auriferous quartz veinlets and stockworks; stage 3, polymetallic sulfide quartz stage, characterized by the presence of auriferous polymetallic sulfide quartz veinlets and stockworks; stage 4, antimony–quartz stage, characterized by the formation of stibnite–jamesonite quartz veins; and stage 5, quartz–carbonate vein stage. Stages 2 and 3 represent the main gold mineralization, with stage 4 representing a major antimony mineralization episode in the Sawayaerdun deposit. Two types of fluid inclusion, namely H2O–NaCl and H2O–CO2–NaCl types, have been recognized in quartz and calcite. Aqueous inclusions show a wide range of homogenization temperatures from 125 to 340°C, and can be correlated with the mineralization stage during which the inclusions formed. Similarly, salinities and densities of these fluids range for each stage of mineralization from 2.57 to 22 equivalent wt% NaCl and 0.76 to 1.05 g/cm3, respectively. The ore‐forming fluids thus are representative of a medium‐ to low‐temperature, low‐ to medium‐salinity H2O–NaCl–CO2–CH4–N2 system. The δ34SCDT values of sulfides associated with mineralization fall into a narrow range of ?3.0 to +2.6‰ with a mean of +0.1‰. The δ13CPDB values of dolomite and siderite from the Sawayaerdun gold deposit range from ?5.4 to ?0.6‰, possibly reflecting derivation of the carbonate carbon from a mixed magmatic/sedimentary source. Changes in physico‐chemical conditions and composition of the hydrothermal fluids, water–rock exchange and immiscibility of hydrothermal fluids are inferred to have played important roles in the ore‐forming process of the Sawayaerdun gold–antimony deposit.  相似文献   
123.
Orogenic Gold Mineralization in the Qolqoleh Deposit, Northwestern Iran   总被引:1,自引:1,他引:1  
The Qolqoleh gold deposit is located in the northwestern part of the Sanandai‐Sirjan Zone, northwest of Iran. Gold mineralization in the Qolqoleh deposit is almost entirely confined to a series of steeply dipping ductile–brittle shear zones generated during Late Cretaceous–Tertiary continental collision between the Afro‐Arabian and the Iranian microcontinent. The host rocks are Mesozoic volcano‐sedimentary sequences consisting of felsic to mafic metavolcanics, which are metamorphosed to greenschist facies, sericite and chlorite schists. The gold orebodies were found within strong ductile deformation to late brittle deformation. Ore‐controlling structure is NE–SW‐trending oblique thrust with vergence toward south ductile–brittle shear zone. The highly strained host rocks show a combination of mylonitic and cataclastic microstructures, including crystal–plastic deformation and grain size reduction by recrystalization of quartz and mica. The gold orebodies are composed of Au‐bearing highly deformed and altered mylonitic host rocks and cross‐cutting Au‐ and sulfide‐bearing quartz veins. Approximately half of the mineralization is in the form of dissemination in the mylonite and the remainder was clearly emplaced as a result of brittle deformation in quartz–sulfide microfractures, microveins and veins. Only low volumes of gold concentration was introduced during ductile deformation, whereas, during the evident brittle deformation phase, competence contrasts allowed fracturing to focus on the quartz–sericite domain boundaries of the mylonitic foliation, thus permitting the introduction of auriferous fluid to create disseminated and cross‐cutting Au‐quartz veins. According to mineral assemblages and alteration intensity, hydrothermal alteration could be divided into three zones: silicification and sulfidation zone (major ore body); sericite and carbonate alteration zone; and sericite–chlorite alteration zone that may be taken to imply wall‐rock interaction with near neutral fluids (pH 5–6). Silicified and sulfide alteration zone is observed in the inner parts of alteration zones. High gold grades belong to silicified highly deformed mylonitic and ultramylonitic domains and silicified sulfide‐bearing microveins. Based on paragenetic relationships, three main stages of mineralization are recognized in the Qolqoleh gold deposit. Stage I encompasses deposition of large volumes of milky quartz and pyrite. Stage II includes gray and buck quartz, pyrite and minor calcite, sphalerite, subordinate chalcopyrite and gold ores. Stage III consists of comb quartz and calcite, magnetite, sphalerite, chalcopyrite, arsenopyrite, pyrrhotite and gold ores. Studies on regional geology, ore geology and ore‐forming stages have proved that the Qolqoleh deposit was formed in the compression–extension stage during the Late Cretaceous–Tertiary continental collision in a ductile–brittle shear zone, and is characterized by orogenic gold deposits.  相似文献   
124.
额尔古纳造山带构造演化与成矿作用   总被引:18,自引:0,他引:18       下载免费PDF全文
额尔古纳造山带属加里东期造山带。因该造山带发育了一系列燕山期铜多金属矿床,并且它位于着名的得尔布干深断裂带的西北侧,故也称为得尔布干成矿带。额尔古纳造山带属西伯利亚板块东南缘加里东期陆缘增生带。形成之后又经历了多期构造运动的改造,特别是燕山期沿得尔布干等北东向深断裂发生了大陆裂谷作用和强烈构造岩浆活动,使之最终形成了一系列不同类型的铜钼矿床和银多金属矿床。这些矿床在空间上构成“三层楼”结构。本文阐明了额尔古纳造山带成矿作用的重要地质因素,表明成矿作用是多期复杂地质构造作用的综合结果。  相似文献   
125.
中国南方中新生代大地构造属性和南华造山带褶皱过程   总被引:35,自引:3,他引:32  
郭福祥 《地质学报》1998,72(1):22-23
笔者阐述了中国南方中新生代大地构造属性是陆上三向造山带,是在陆上无海侵的大地构造环境下,由特提斯,北西太平洋和昆仑-秦岭三大构造域相互作用形成的具有NW、NE、WNW三向优徒选大地构造线的造山带 ,是由晚二叠世以来多期次继承性造山运动累积辍  相似文献   
126.
准噶尔盆地结构及其圈闭类型   总被引:12,自引:0,他引:12  
准噶尔盆地是复合叠加前陆盆地 ,其原型分别形成于板块俯冲、碰撞、造山带后期复活、拗拉槽回返和板内皱陷作用有关的大地构造环境。其古生代盆地的形成与相邻的阿尔泰山和东、西准噶尔山、天山及博格达山的造山作用相关。中新生代盆地的形成和改造与其南部特提斯域板块俯冲碰撞造山引起的盆地相邻造山带的复活有关。相邻造山带时空上不均一的造山作用对盆地的影响不同 ,形成了盆地独特的结构。各坳陷均由与其形成有关的造山带前缘冲断带、陡坡带、山前凹陷、缓坡带和前隆及前缘皱陷等构成 ,前隆之间的叠加构成了盆地的大型隆起 ,皱陷叠加构成了盆地的中央坳陷。不同类型的圈闭在坳陷中有规律地分布着  相似文献   
127.
RayequationmigrationofwideanglereflectionsinDabieorogeniczoneXU-YAOZHENG1)(郑需要)CHUN-YONGWANG2)(王椿镛)XIAO-LINGLAI1)(赖晓玲)XIAN...  相似文献   
128.
129.
新疆阿尔泰造山带矿床成矿系列   总被引:3,自引:0,他引:3  
在系统分析阿尔泰造山带成矿区(带)地质构造演化和成矿特点基础上,划分了4个矿床成矿系列、4个矿床成矿亚系列和6个矿床式。矿床成矿系列和亚系列的形成和分布受区域构造岩浆演化制约。阿尔泰造山带矿床成矿系列具有鲜明的晚古生代成矿作用特点。区域构造演化的规律和后期构造对早期构造的叠加,决定了矿床成矿系列的规律分布和局部复合。  相似文献   
130.
大别山造山带核部九资河-天堂寨花岗岩的成因和时代   总被引:5,自引:0,他引:5  
近十余年来,众多国内外著名学者、专家对大别山造山带进行了深入研究,一些长期争论不休的问题逐渐取得了一致意见。如大别山造山带是华北地块与扬子地块于印支期陆—陆碰撞的产物[1~3],但是,仍有相当多的重大地质问题还未取得共识。如伴随造山带形成的“天堂寨混...  相似文献   
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