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1.
扬子板块北缘中段前陆褶皱逆冲带在中生代经历了多期的构造叠加和改造,其复杂的构造样式记录了早期扬子板块与秦岭-大别微板块拼贴碰撞作用以及晚期转入的陆内变形过程。本文在前人研究的基础上通过对扬子板块北缘中段保康-房县地区前陆带构造变形样式及运动学特征的分析,划分出扬子板块北缘前陆褶皱逆冲带的根部、前锋及其内部次级的逆冲推覆构造单元,同时识别出一条过保康-神农架-蒲溪一带近东西走向的左行走滑剪切带,分析表明该左行走滑带形成于扬子板块北缘全面转入陆内变形之后、大巴山大规模向南西逆冲推覆运动之前的中侏罗世到晚侏罗世期间。该左行走滑剪切带对扬子板块相对于华北板块发生顺时针旋转的过程起到了调节作用,对于扬子板块北缘中生代构造演化具有重要意义。  相似文献   

2.
编者按语:欧亚大陆东缘中生代构造演化主要受古太平洋板块俯冲历史所控制。然而,古太平洋板块在欧亚大陆下的俯冲作用是何时开始的?中生代期间,古太平洋板块在欧亚大陆下的俯冲历史如何?这些问题一直存在较多争论。  相似文献   

3.
扬子板块俯冲的构造加积楔   总被引:44,自引:2,他引:44  
在总结大洋板块俯冲形成加积楔的基础上,对大别-苏鲁造山带内部及北缘浅变质岩进行了系统的研究,指出它们是扬子大陆板块俯冲的构造加积楔,这些浅变质岩既有产出在造山带北缘,也有少量出露在超高压变质带的内部,它们均形成于前印支期扬子板块北缘,主体为低绿片岩相变质的复理石相沉积岩和少量侵入岩,并遭受了与造山带超高 为质岩相同的加里东-印支期构造热事件的改造,具有板块俯冲过程中被刮削下来的构造残睛-加积楔的形成机制和特征。垂向剖面上,这些浅变质岩原岩主要由表层浅海复理石相沉积岩系和下伏陆壳基底岩石(花岗质侵入体-变质中基性杂-岩大理岩组合)两部分组成,而超高压变质岩原岩主要为扬子板块北缘的俯冲击壳基底岩石,将构造加积楔形成理论纳入到印支期扬了变质岩及构造加积楔形成过程的时空耦合关系,确定子扬子板块俯冲加积楔不同构造部位浅变质岩的构造组合特点,探讨了扬子板块俯冲过程中构造加积楔形成的动力学过程。  相似文献   

4.
中国大别-苏鲁造山带为大陆板块俯冲形成的碰撞造山带,该带北缘和内部产有原岩时代为新元古代-晚古生代的浅变质岩。这些浅变质岩对应于扬子板块北缘前寒武变质基底和扬子板块北缘古生代大陆架沉积物,形成过程于印支期扬子板块向北俯冲过程中的刮削作用密切相关,与大洋板块俯冲过程中刮削形成的加积楔具有类似的动力学过程。对大别-苏鲁造山带浅变质岩的深入研究,不仅有助于揭示大陆板块俯冲过程中高压-超高压岩石形成与折返过程,而且确定了扬子板块与华北板块之间的缝合线位置位于大别造山带北淮阳带的北部和苏鲁造山带的五莲-蓬莱群的北侧。  相似文献   

5.
中、上扬子北部盆-山系统演化与动力学机制   总被引:5,自引:0,他引:5       下载免费PDF全文
中国南方中生代经历了中国大陆最终主体拼合的陆缘及其之后的陆内构造演化。晚古生代末期,在秦岭—大别山微板块与扬子板块之间存在向西张口的洋盆,即勉略古洋盆。中三叠世末期开始,扬子板块相对于华北板块发生自南东向北西的斜向俯冲碰撞作用,扬子北缘晚三叠世至中侏罗世发育陆缘前陆褶皱逆冲带与前陆盆地系统。晚侏罗世至早白垩世,中国东部的大地构造背景发生了重要的构造转变,中、上扬子地区处于三面围限会聚的大地构造背景。在这种大地构造格局下,中、上扬子地区晚侏罗世至早白垩世发育陆内联合、复合构造与具前渊沉降的克拉通内盆地系统。自中侏罗世末期开始,扬子北缘前陆带与雪峰山—幕阜山褶皱逆冲带经历了自东向西的会聚变形过程及盆地的自东向西的迁移过程和收缩过程。扬子北缘相对华北板块的斜向俯冲导致在中扬子北缘的深俯冲及超高压变质岩的形成。俯冲之后以郯庐断裂—襄广断裂围限的大别山超高压变质地块在晚侏罗世向南强逆冲,致使扬子北缘晚三叠世至中侏罗世前陆盆地被掩覆和改造。  相似文献   

6.
大别造山带浅变质岩的地质-地球化学特征及成因机制   总被引:1,自引:0,他引:1  
大别造山带超高压变质带内部及其北缘,出露仅经过绿片岩相变质作用的浅变质岩系。通过对部分浅变质岩的区域分布、地质特征及地球化学的综合研究表明,这些浅变质岩系形成于新元古代扬子板块北缘的裂陷盆地中,并遭受新元古代岩浆侵位和以寒冷气候位特征的大气降水热液蚀变,共同经历了与扬子大陆板块俯冲-碰撞过程中有关的构造热事件;因此认为这些浅变质为扬子板块俯冲过程中被“刮”下来的构造残片,为大陆板块俯冲过程中形成的加积杂岩,并为扬子板块与华北板块的俯冲和碰撞的动力学过程提供有力的科学佐证。在此基础上,厘定了大别造山带浅变质岩的形成及其与扬子大陆板块俯冲的构造模型。  相似文献   

7.
郑洪伟  李廷栋  贺日政 《地球科学》2020,45(11):4187-4197
远震层析成像结果所揭示的华北板块东南向俯冲到扬子板块之下对于重新认识长江中下游地区成矿机制具有重要意义.利用来自中国地震台网中心,包括湖北、河南、安徽、江西、浙江、江苏等省级地震台网记录的波形数据对长江中下游地区深部结构进行了远震P波层析成像反演.综合研究结果显示,三叠纪华北与扬子板块俯冲碰撞,华北板块越过郯庐断裂带,向东南俯冲到扬子板块之下.推断板块碰撞的深部缝合线在郯庐断裂带以西位于大别造山带以南,在郯庐断裂带以东位于长江一线.经历后期的中生代构造转换过程,该带发生活化,成为中生代含矿岩浆和流体上升的通道,并形成著名的大型成矿带.   相似文献   

8.
太平洋板块俯冲与中国东部中生代地质事件   总被引:44,自引:0,他引:44  
中国东部至少自侏罗纪开始就一直处于俯冲大洋板块之上,但是有关俯冲板块对其影响程度一直有不同的认识。最近的研究表明,太平洋海山岛链的时空分布显示太平洋板块的漂移方向曾发生多次转折,这些转折与白垩纪中国东部的构造演化和岩浆事件有着密切的时空耦合关系。从时代和力学性质上看,太平洋板块俯冲方向的改变在很大程度上控制着中国东部中生代的盆地演化和郯庐断裂活动等重要地质事件。这些认识为理解中国东部构造演化提供了新的视角,包括岩石圈减薄的机制、郯庐断裂的演化,以及燕山期大规模岩浆活动等。本文重点分析了太平洋板块俯冲与中国东部中生代岩浆活动的对应关系。在125~140Ma太平洋板块向南西方向俯冲,造成中国东部岩石圈减薄,软流圈卸载上涌,发生减压部分熔融;约125Ma,太平洋板块漂移方向发生了大幅度转折,形成安第斯式的俯冲挤压,岩石圈停止减薄和减压部分熔融,出现岩浆宁静期。随着俯冲的深入,到110Ma前后俯冲板块后撤,形成弧后拉张,岩浆活动又重新开始。  相似文献   

9.
扬子板块北缘中段多期褶皱构造的变形特征及叠加关系   总被引:1,自引:0,他引:1  
扬子板块北缘在中生代期间经历多期构造变形,早期形成的构造样式多被后期的构造变形改造破坏,仅在大巴山弧形断裂和大洪山弧形带之间的南漳一带较好地保存了早期的构造变形样式。笔者通过对当阳复向斜北段发育的褶皱构造的构造要素测量统计和褶皱叠加关系的解析,在扬子板块北缘中段南漳一带识别出三期走向不同的褶皱叠加构造,按发育早晚顺序分别为NW-SE走向褶皱、NE-SW走向褶皱和近EW走向褶皱,分别对应扬子板块向北俯冲以及后期转入陆内变形、江南–雪峰褶皱逆冲带向NW逆冲推覆和晚侏罗世到早白垩世期间大巴山向SW推进等构造变形过程。  相似文献   

10.
塔里木拼贴时代和方式以及塔里木板块与哥伦比亚超大陆联系是塔里木板块形成演化中的关键问题,也是前寒武纪超大陆重建的重要问题,对塔里木盆地基底性质研究和油气勘探具有重要的理论意义和应用价值。本文首先通过南、北塔里木差异性对比分析和拼合时间的地质年代统计分析,探讨了形成统一的塔里木板块的时间问题。进一步基于大地构造比较学分析,将塔里木板块和扬子板块与世界其他板块的地质亲缘性开展综合对比分析,并结合古地磁数据分析和造山带及俯冲带对比分析,探讨了塔里木板块与哥伦比亚超大陆的关系。本文认为19~20亿年北塔里木向南塔里木俯冲并发生陆陆碰撞,形成了统一的塔里木板块。9~19亿年前塔里木板块、扬子板块与印度板块有较强的地质亲缘性,都处于哥伦比亚超大陆的西部边缘,并在地块周缘存在俯冲带,与北美板块东南缘的俯冲带具一定的可对比性;而华北板块与西伯利亚板块、波罗的板块亲缘性较强,位于古赤道附近,处于哥伦比亚超大陆的东部边缘。构造热事件的地质亲缘性表明塔里木、扬子和华北克拉通都是哥伦比亚超大陆周缘的小型克拉通,共同参与了哥伦比亚超大陆的汇聚过程。  相似文献   

11.
山东鲁东碰撞造山型金矿成矿作用探讨   总被引:1,自引:0,他引:1  
碰撞造山成矿作用是大陆动力学研究的重要内容,大地构造相编图是研究山东大陆块体离散、会聚、碰撞、造山的大陆动力学过程的主要载体和具体表达形式.作者在编制1:50万山东省大地构造相图时发现,鲁东地区中生代有两次重要的碰撞造山事件——印支和燕山碰撞造山作用.印支造山作用主要表现为扬子板块向华北板块俯冲,形成苏鲁高压-超高压变...  相似文献   

12.
在编制1∶50万山东省大地构造相图基础上,通过对大地构造相研究显示:胶东微地块是经多期增生和碰撞而形成的,其漫长的板块构造演化明显具有阶段性。侏罗纪是该区板块构造演化史上的一个重要转换期,构造演化由原来的南、北分异转变为东、西分异,胶东地区NE向新生构造起了主要作用。胶东地区中生代有2次重要的碰撞造山事件,印支造山作用主要表现为扬子板块向华北板块俯冲,形成苏鲁高压-超高压变质带及同造山花岗岩及后造山高碱正长岩;燕山造山作用的大陆动力学环境起源于中亚-特提斯构造域向滨太平洋构造域转化和太平洋板块的俯冲,在胶东地区表现为3次造山和3次伸展。晚侏罗世造山早期玲珑片麻状花岗岩组合是区域构造挤压导致地壳增厚引起地壳重熔的产物,代表了大陆弧花岗岩特征;早白垩世造山中期郭家岭花岗闪长岩-花岗岩组合代表了造山期大陆弧花岗岩的特点;造山晚期伟德山闪长岩-花岗闪长岩-花岗岩组合表现为大陆弧花岗岩,后造山A型崂山晶洞过碱性碱长花岗岩-正长花岗岩组合为大陆造陆隆升花岗岩与后造山花岗岩,代表燕山构造的结束。胶东地区构造-岩浆事件和金矿成矿作用受控于特提斯、古亚洲洋和太平洋三大构造域的相互作用,金矿形成的动力学背景是中生代构造体制转折和岩石圈减薄,起因与太平洋板块向华北板块的俯冲机制有关。  相似文献   

13.
对分布于华北板块东缘的辽宁铁岭、瓦房店及山东蒙阴等3个金伯利岩区的地质构造特征进行了研究,利用地层时代、构造行迹、古地磁以及同位素资料,对该区域金伯利岩的侵位时间进行了综合约束,认为该区域金伯利岩的侵位时间应该在250-300 Ma 之间。在此基础上,结合华北板块与扬子板块在古生代时的相互运移特征,对华北板块东缘金刚石的成矿区域地质背景进行了分析,并结合构造形迹的研究,对该区域金刚石原生矿进行了成矿预测。  相似文献   

14.
《Gondwana Research》2014,25(3-4):1172-1202
The Shandong Province along the southeastern margin of the North China Craton is the largest gold producing region in China. The nature and extent of gold metallogeny between the Western Shandong (Luxi) and Eastern Shandong (Jiaodong) sectors display marked contrast. In this paper, we synthesize the information on mineralization and magmatism, S–Pb–H–O–C–He–Ar isotopic data of the ores and Sr–Nd–Pb–Hf isotopic data of the Mesozoic plutons from the Shandong region. Combined with the salient regional geophysical data, we discuss the geodynamic setting of the gold mineralization in Shandong. The age data converge to indicate that the peak of gold metallogeny in this region occurred at ca. 120 ± 10 Ma. The mineralization in Luxi area shows links with sources in the Tongjing and Yinan complexes. The ore-forming materials in the Jiaodong area were derived from multiple sources and show clear evidence for crust–mantle mixing. The Moho depth on both sides of the Tan–Lu fault is broadly similar with only a minor variation across the Tan–Lu fault. The LAB (lithosphere–asthenosphere boundary) in the Jiaodong region is shallower than that in the Luxi area. The Tan–Lu fault is identified as a major corridor for asthenosphere upwelling. Geochemical features show that the mantle beneath the Luxi area is mainly of EM1 type, whereas the mantle in the eastern part, close to the Tan–Lu fault shows mixed EM1 and EM2 features. In contrast, the mantle beneath the Jiaodong area is mainly of EM2 type, suggesting the existence of more ancient lithospheric mantle beneath the Luxi area, in comparison to the extensively modified lithospheric mantle and asthenosphere beneath the Jiaodong area. The gold metallogeny in Shandong Province occurred in the geodynamic setting of lithospheric thinning. The differences in the character and intensity of gold mineralization between the Western and Eastern Shandong regions might be a reflection of the contrasting tectonic histories. The Western Shandong region preserves imprints of destruction through the Yangtze plate collision which probably marks the prelude for gold metallogeny in Jiaodong area. Subsequent magmatic input and cratonic destruction through Pacific plate subduction provided the settings for the later widespread mineralization in multiple phases.  相似文献   

15.
中国东北部陆缘是我国内生金矿床较为发育的地区之一,以成矿作用复杂、蕴藏丰富的金资源量倍受国内外地质学家关注。通过对该区内生金矿的地质和成矿年代的系统研究,初步将该区内生金矿床划分为中温热液金矿床、接触交代-热液金矿床、斑岩型/类斑岩型金铜矿床和浅成低温热液金矿床4种主要成因类型和3个重要成矿期(170~160 Ma、130~110 Ma和110~90 Ma)。结合同位素地球化学特征,进一步确定中温热液金矿床的成矿物质主要来自下地壳源,成矿作用与中生代燕山早期古太平洋板块俯冲作用引发的中国东部大陆边缘岩石圈减薄及拆沉的动力学过程密切相关;接触交代-热液金矿床的成矿物质来源于年轻地壳,成矿作用与古太平洋板块俯冲引起的岩石圈减薄拆沉的伸展构造背景下的岩浆接触交代作用更为密切;而斑岩型/类斑岩型金铜矿床和浅成低温热液金矿床的成矿物质来源为壳幔混合源,其成矿发生在古太平洋板块向亚洲大陆正北向俯冲转入Izanagi Farallon板块西向俯冲的构造转换期。  相似文献   

16.
吉林夹皮沟断裂带动力系统碰撞,叠加及金矿床形成   总被引:10,自引:0,他引:10       下载免费PDF全文
动力系统是金成矿作用研究的关键,它控制金矿床产生的始终,运用成矿动力系统思想把夹皮沟区地壳演化和金成矿为三大阶段和三大构造带,(1)太古一元古宙克拉通隆-滑动力系统边缘矿化带,太古宙克拉通隆起,元古宙沉积物拉伸滑断,矿矿动力系统在克拉通周边形成韧性剪切带,金受到初步富集;(2)海西俯冲动力系统南缘矿化带,西伯利亚板块与中朝板块间大陆拉张和碰撞,正反动力系统产生超壳断裂和金矿化;(3)中生代叠加构造岩浆动力系统成矿带,中生代太平洋板块俯冲,反动力系统产生超壳断裂和金矿化;(3)中生代叠加构造岩浆动力系统成矿带,中生代太平洋板块俯冲,反动力系统产生超壳断裂和金矿化;(3)中生代叠加构造岩浆动力系统成矿带,中生代太平洋板块俯冲,郯庐断裂滑称及区域NNE与NW向共轭控矿等多级动力系统叠加,岩浆活动和幔源流体上升及金元素进一步富集等夹皮沟金矿床最终形成,成矿预测范围由原变质岩区进入夹皮沟断裂带上及两侧俯近中生代花岗岩区。  相似文献   

17.
中国北方中生代大规模成矿作用的期次及其地球动力学背景   总被引:170,自引:67,他引:170  
本文论述了中国北方(包括华北、东北及长江中下游地区)金属矿床的空间分布特点,分析和讨论了主要成矿区带(长江中下游、小秦岭-熊耳山、西秦岭、华北克拉通北缘和大兴安岭南段)及一些大型矿集区(胶东、鲁西和乌奴格吐-甲乌拉)中矿化组合和成矿期次以及地球动力学背景。提出中国北方大规模成矿作用出现在200-160Ma,140Ma左右和120Ma左右三个峰期。通过对中生代地球动力学演化的分析研究,认为三大成矿事件所对应的地球动力学背景分别为后碰撞造山过程、构造体制大转折晚期和岩石圈大规模快速减薄。在200-160Ma时期主要表现为大厚度岩石圈局部伸展有关的岩浆-热成矿,在140Ma左右时期成矿表现为与深源花岗质岩石有关的斑岩-夕卡岩矿床,而120Ma左右时期的成矿是在岩石圈快速减薄过程有大量地幔流体参与成矿作用。  相似文献   

18.
东海陆架盆地处于欧亚板块东南缘,其构造演化、动力学机制转换同太平洋板块与欧亚板块碰撞及印度-澳大利亚板块远程推挤效应有关。中生代以来,该盆地形成和演化过程受到古太平洋板块多期俯冲及多构造体系的叠加改造,地质构造和地球物理场复杂,盆地演化及动力学过程等一直是争论的焦点。本文利用最新调查资料,通过构造物理模拟实验、构造解析和平衡地质复原剖面等方法,结合区域构造背景,系统分析了东海陆架盆地中生代演化过程,探讨了其构造动力学转换过程。研究认为东海陆架盆地自中生代以来经历了晚三叠世前的被动大陆边缘和晚三叠世-中侏罗世活动大陆边缘挤压坳陷型盆地阶段,挤压应力来源于伊泽奈崎板块向欧亚大陆板块的低角度俯冲;早白垩世晚期-晚白垩世活动陆缘伸展断陷型盆地阶段,应力来源于太平洋板块向欧亚大陆板块俯冲后撤导致的岩石圈减薄作用;古近纪为弧后伸展断陷型盆地阶段。同时认为东海陆架盆地古特提斯构造域向古太平洋构造域转换的时间应该发生在中三叠世末期,古太平洋板块低角度俯冲和俯冲后撤代表华南中生代深部地质过程。  相似文献   

19.
山东胶东矿集区燕山期构造热事件与金矿成矿耦合探讨   总被引:3,自引:0,他引:3  
于学峰  李洪奎  单伟 《地质学报》2012,86(12):1946-1956
中生代胶东地区有2次重要的碰撞造山事件,印支造山作用主要表现为扬子板块向华北板块俯冲,形成苏鲁高压—超高压变质带,同造山花岗岩及后造山高碱正长岩;燕山造山作用的大陆动力学环境起源于中亚-特提斯构造域向滨太平洋构造域转化和太平洋板块的俯冲,在胶东地区表现为3次造山和2次伸展.本文基于汇集的71个SHRIMP锆石U-Pb同位素年龄,并参考前人已有划分方案,提出胶东地区燕山期花岗岩年代格架:160~150Ma玲珑-昆嵛山花岗岩侵位,130~126Ma郭家岭花岗闪长岩形成,120~110Ma伟德山花岗闪长岩-花岗岩侵位,110~100Ma崂山A型晶洞过碱性碱长花岗岩侵位,代表燕山运动的结束;区内3期金矿成矿事件(150Ma、120~110Ma和100Ma~90Ma)则与玲珑、郭家岭和伟德山岩体的构造-岩浆热事件相耦合.胶东地区构造-岩浆事件和金矿成矿作用受控于特提斯、古亚洲洋和太平洋3大构造域的相互作用,金矿形成的动力学背景是中生代构造体制转折和岩石圈减薄,起因与太平洋板块向华北板块的俯冲机制有关.  相似文献   

20.
We present a review of major gold mineralization events in China and a summary of metallogenic provinces, deposit types, metallogenic epochs and tectonic settings. Over 200 investigated gold deposits are grouped into 16 Au-metallogenic provinces within five tectonic units such as the Central Asian orogenic belt comprising provinces of Northeast China and Tianshan-Altay; North China Craton comprising the northern margin, Jiaodong, and Xiaoqinling; the Qinling-Qilian-Kunlun orogenic belt consisting of the West Qingling, North Qilian, and East Kunlun; the Tibet and Sanjiang orogenic belts consisting of Lhasa, Garzê-Litang, Ailaoshan, and Daduhe-Jinpingshan; and the South China block comprising Youjiang basin, Jiangnan orogenic belt, Middle and Lower Yangtze River, and SE coast. The gold deposits are classified as orogenic, Jiaodong-, porphyry–skarn, Carlin-like, and epithermal-types, among which the first three types are dominant.The orogenic gold deposits formed in various tectonic settings related to oceanic subduction and subsequent crustal extension in the Qinling-Qilian-Kunlun, Tianshan-Altay, northern margin of North China Craton, and Xiaoqinling, and related to the Eocene–Miocene continental collision in the Tibet and Sanjiang orogenic belts. The tectonic periods such as from slab subduction to block amalgamation, from continental soft to hard collision, from intracontinental compression to shearing or extension, are important for the formation of the orogenic gold deposits. The orogenic gold deposits are the products of metamorphic fluids released during regional metamorphism associated with oceanic subduction or continental collision, or related to magma emplacement and associated hydrothermal activity during lithospheric extension after ocean closure. The Jiaodong-type, clustered around Jiaodong, Xiaoqinling, and the northern margin of the North China Craton, is characterized by the involvement of mantle-derived fluids and a temporal link to the remote subduction of the Pacific oceanic plate concomitant with the episodic destruction of North China Craton. The Carlin-like gold metallogenesis is related to the activity of connate fluid, metamorphic fluid, and meteoric water in different degrees in the Youjiang basin and West Qinling; the former Au province is temporally related to the remote subduction of the Tethyan oceanic plate and the later formed in a syn-collision setting. Porphyry–skarn Au deposits are distributed in the Tianshan-Altay, the Middle and Lower Yangtze River region, and Tibet and Sanjiang orogenic belts in both subduction and continental collision settings. The magma for the porphyry–skarn Au deposits commonly formed by melting of a thickened juvenile crust. The epithermal Au deposits, dominated by the low-sulfidation type, plus a few high-sulfidation ones, were produced during the Carboniferous oceaic plate subduction in Tianshan-Altay, during Early Cretaceous and Quaternary oceanic plate subduction in SEt coast of South China Block, and during the Pliocene continental collision in Tibet. The available data of different isotopic systems, especially fluid D–O isotopes and carbonate C–O systems, reveal that the isotopic compositions are largely overlapping for different genetic types and different for the same genetic type in different Au belts. The isotopic compositions are thus not good indicators of various genetic types of gold deposit, perhaps due to overprinting of post-ore alteration or the complex evolution of the fluids.Although gold metallogeny in China was initiated in Cambrian and lasted until Cenozoic, it is mainly concentrated in four main periods. The first is Carboniferous when the Central Asian orogenic belt formed by welding of micro-continental blocks and arcs in Tianshan-Altay, generating a series of porphyry–epithermal–orogenic deposits. The second period is from Triassic to Early Jurassic when the current tectonic mainframe of China started to take shape. In central and southern China, the North China Craton, South China Block and Simao block were amalgamated after the closure of Paleo-Tethys Ocean in Triassic, forming orogenic and Carlin-like gold deposits. The third period is Early Cretaceous when the subduction of the Pacific oceanic plate to the east and that of Neo-Tethyan oceanic plate to the west were taking place. The subduction in eastern China produced the Jiaodong-type deposits in the North China Craton, the skarn-type deposits in the northern margin (Middle to lower reaches of Yangtze River) and the epithermal-type deposits in the southeastern margin in the South China Block. The subduction in western China produced the Carlin-like gold deposits in the Youjiang basin and orogenic ones in the Garzê-Litang orogenic belt. The Cenozoic is the last major phase, during which southwestern China experienced continental collision, generating orogenic and porphyry–skarn gold deposits in the Tibetan and Sanjiang orogenic belts. Due to the spatial overlap of the second and third periods in a single gold province, the Xiaoqinling, West Qinling, and northern margin of the North China Craton have two or more episodes of gold metallogeny.  相似文献   

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