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1.
先锋北山金矿区内侵入脉岩为花岗闪长斑岩和石英闪长玢岩。花岗闪长斑岩具有高硅、富碱、富钙和贫镁等特征;轻稀土元素(LREE)相对富集,重稀土元素(HREE)相对亏损,无明显铕异常;富集大离子亲石元素(LILE)Rb、Th、K,亏损高场强元素(HFSE)Nb、Ta、P、Ti等,地球化学特征显示其属于过铝质钙碱性I型花岗岩。矿区石英闪长玢岩具有富碱、富镁和贫磷等特征,轻稀土元素(LREE)相对富集,重稀土元素(HREE)相对亏损,无铕异常;富集大离子亲石元素(LILE)Rb、Th,K等,亏损高场强元素(HFSE)Nb、Ta、P、Ti等。地球化学特征显示其属于准铝质高钾钙碱性岩石。花岗闪长斑岩及石英闪长玢岩的La--ICP--MS U--Pb同位素测年结果分别为128.3±2.6 Ma和113.2±1.7 Ma,为早白垩世。结合完达山地区地质资料,认为先锋北山花岗闪长斑岩和石英闪长玢岩是古太平洋板块构造体制由挤压变为伸展背景下的产物。  相似文献   

2.
西天山乌孙山地区大哈拉军山组由玄武岩、安山岩、英安岩、流纹岩及相应的火山碎屑岩组成,安山岩和流纹岩分布最广。LA-ICP-MS锆石U-Pb定年结果表明,火山活动喷发的安山岩与安山质晶屑凝灰熔岩分别形成于353.9Ma±6.5Ma和356.3Ma±4.4Ma,属于早石炭世早期。通过区域对比,西天山大哈拉军山组的火山岩浆作用显示从伊犁中天山板块南北缘向伊犁盆地内部逐渐变年轻的特点,且火山岩喷发时代差别不大(约40Ma)。岩石地球化学研究表明,火山岩属钙碱性系列,富集轻稀土元素,相对亏损重稀土元素。中性火山岩富集大离子亲石元素(如Cs、Rb、Th、U),而相对亏损高场强元素,具有明显的Nb、Ta、Ti负异常,显示出岛弧火山岩的特征;酸性火山岩相对富集Rb、Th、U、Ta等元素,具有明显的Ba、Sr、P、Eu、Ti等元素的负异常。综合伊犁-中天山板块南缘的构造演化特征,认为大哈拉军山组形成于活动大陆边缘环境,产在板块俯冲-碰撞的最后阶段。  相似文献   

3.
特克斯东南大哈拉军山组玄武安山岩具有钙碱性火山岩的地球化学特征,Nb、Ta等高场强元素强烈亏损,强不相容元素比值明显不同于原始地幔、亏损地幔和富集地幔而倾向于地壳,具有岛弧火山岩的特点,与新源县南及其东部大哈拉军山组火山岩一起指示了西天山在早石炭世-晚石炭世处于汇聚而不是伸展的大地构造背景。与岛弧作用有关的俯冲沉积物的交代作用是其源区受改造的最主要方式,岩浆演化以包括橄榄石、单斜辉石在内的分离结晶作用为主。  相似文献   

4.
西天山乌孙山地区大哈拉军山组由玄武岩、安山岩、英安岩、流纹岩及相应的火山碎屑岩组成,安山岩和流纹岩分布最广。LA—IcP—Ms锆石U-Pb定年结果表明,火山活动喷发的安山岩与安山质晶屑凝灰熔岩分别形成于353.9Ma_6.5Ma和3563Ma±4.4Ma.属于早石炭世早期。通过区域对比,西天山大哈拉军山组的火山岩浆作用显示从伊犁中天山板块南北缘向伊犁盆地内部逐渐变年轻的特点,且火山岩喷发时代差别不大(约40Ma)。岩石地球化学研究表明,火山岩属钙碱性系列,富集轻稀土元素,相对亏损重稀土元素。中性火山岩富集大离子亲石元素(如Cs、Rb、Th、U),而相对亏损高场强元素,具有明显的Nb、Ta、Ti负异常,显示出岛弧火山岩的特征;酸性火山岩相对富集Rb、Th、u、Ta等元素,具有明显的Ba、sr、P、Eu、Ti等元素的负异常。综合伊犁一中天山板块南缘的构造演化特征,认为大哈拉军山组形成于活动大陆边缘环境,产在板块俯冲一碰撞的最后阶段。  相似文献   

5.
林靓  钱青  王艳玲  高俊  江拓  刘新 《岩石学报》2015,31(6):1749-1760
西天山昭苏北部侵入于大哈拉军山组火山岩层上部的辉长岩体具有富集大离子亲石元素(Rb、Sr、Ba)、亏损高场强元素(Nb、Ta)、轻重稀土分馏等地球化学特征,与火山岩围岩具有相似的不相容元素和Sr-Nd同位素特征,其母岩浆可能由俯冲流体交代的富集岩石圈地幔部分熔融形成,晚石炭世之前南天山洋盆向伊犁-中天山板块之下的俯冲可能导致了岩石圈的富集作用。利用不相容元素进行地球化学模拟计算,结果表明辉长岩成分由50%~80%的堆晶矿物(单斜辉石、斜长石)与50%~20%的玄武质熔浆组成。辉长岩体的Cameca锆石U-Pb年龄为311.3±2.3Ma,与伊犁-中天山板块晚石炭世伊什基里克组火山岩的时代大致相当,略晚于西天山榴辉岩的峰期变质时间。辉长岩的时代进一步限定该地区大哈拉军山组火山活动应在早石炭世晚期结束,下石炭统阿克沙克组沉积岩应形成于320~311Ma之间。与辉长岩同时期的岩浆岩在伊犁-中天山板块广泛分布,形成于俯冲结束之后挤压环境向拉张环境过度的构造环境。  相似文献   

6.
新疆西天山智博铁矿床火山岩和侵入岩岩石地球化学   总被引:6,自引:3,他引:3  
新疆西天山阿吾拉勒山集中产出多个大、中型海相火山岩型富铁矿床,引起人们的广泛关注。这些铁矿的成因被认为与火山作用有关,但对其成岩成矿的大地构造背景尚不清楚。文章研究了智博铁矿区出露的火山岩和侵入岩的岩石学、岩石地球化学,尝试探讨该问题。智博铁矿体赋矿围岩为早石炭世大哈拉军山组玄武岩和安山岩,侵入岩有晚石炭世花岗岩、花岗岩脉和闪长岩脉。玄武岩和安山岩在构造环境判别图解中投影于火山弧范围内,在花岗岩类构造环境判别图解中,320 Ma的花岗岩脉和319 Ma的石英闪长岩投影于岛弧环境,304 Ma的花岗闪长岩则投影于同碰撞环境。结合前人研究成果,认为智博地区在早石炭世为岛弧环境,晚石炭世可能经历了岛弧俯冲向同碰撞环境的转变。玄武岩亏损Ta、Nb,相对亏损Th,富集Rb、U、Pb;安山岩亏损Ta、Nb,富集轻稀土元素和Rb、U、Th、Pb,结合Sr/Th-Th/Ce和Th-Ba/Th图解判别,推测智博铁矿床玄武岩和安山岩岩浆源区为受到了俯冲带流体交代的楔形地幔。  相似文献   

7.
为了解由早期(伟晶、巨晶)斑状二长花岗岩、中期(细粒)花岗岩和晚期花岗(斑)岩脉组成的马鞍山杂岩体的成因, 采用SHRIMP和LA-ICP-MS锆石U-Pb法厘定其侵入时代, 年龄显示伟晶斑状二长花岗岩为132.2±1.6 Ma, 巨晶斑状二长花岗岩为127. 7±1.2 Ma, 细粒花岗岩为128.3±1.1 Ma, 花岗斑岩脉为127.4±1.8 Ma.岩石地球化学研究结果表明岩体从早到晚具有从钾玄岩系列向高钾钙碱系列演变特征, 分异演化程度逐渐变高; 斑状二长花岗岩具有高REE含量, 轻重稀土分异较为明显, 具较强负铕异常和弱右倾的配分曲线特征, 富集K、Th、U、Rb等元素, 弱亏损Ba、Sr、P、Nb、Ta、Ti等元素; 细粒花岗岩及花岗(斑)岩脉具有较低REE含量, 轻重稀土分异不明显, 具强负铕异常和"V"型配分曲线特征, 富集K、Th、U、Rb等元素, 强亏损Ba、Sr、P、Nb、Ti等元素.马鞍山岩体为浙西北-皖南地区早白垩世俯冲造山后陆内拉张作用环境下下地壳部分熔融的同源岩浆侵位结晶分异作用形成的产物, 具有高分异I型花岗岩的特征.   相似文献   

8.
内蒙古狼山山脉西侧分布有大面积的晚古生代岩浆岩,时代集中在早石炭世—晚二叠世,早石炭世角闪辉长岩、花岗闪长岩体出露于潮格温都尔镇西侧。角闪辉长岩体呈岩滴状产出,被花岗闪长岩体侵入,LA-ICP-MS锆石U-Pb年龄显示,角闪辉长岩的~(206)Pb/~(238)U加权平均年龄为329.0±2.3 Ma,花岗闪长岩的~(206)Pb/~(238)U加权平均年龄为331.1±0.9 Ma~330.0±4.2 Ma。花岗闪长岩暗色矿物以角闪石为主,富钠(Na2O=3.48%~4.46%),高钠钾比值(Na2O/K2O=1.03~2.39),钙碱性系列,P2O5-SiO_2之间存在较好的负相关性,岩石地球化学特征具Ⅰ型花岗岩的特点。Hf同位素及元素地球化学特征指示了角闪辉长岩及花岗闪长岩均来自于受地壳混染的亏损地幔,为同源岩浆演化的产物。角闪辉长岩及花岗闪长岩稀土元素配分型式一致,均为轻稀土元素富集,重稀土元素亏损,具弱的负Eu异常;角闪辉长岩富集Ba、Sr,亏损Nb、Ta、Zr、Hf;花岗闪长岩富集大离子亲石元素Rb、K、Pb、Sr,不同程度地亏损高场强元素Nb、Ta、P、Ti,总体反映了岩浆弧的地球化学特征。结合区域地质背景,早石炭世狼山地区侵入岩岩石组合为角闪辉长岩(闪长岩)+石英闪长岩+花岗闪长岩,认为狼山地区早石炭世处于大陆边缘弧构造背景。  相似文献   

9.
备战铁矿是西天山阿吾拉勒成矿带新近发现的大型铁矿之一,矿区广泛发育下石炭统火山岩。本文对矿区火山岩进行了主量元素、微量元素、稀土元素地球化学特征分析、LA-ICP-MS锆石U-Pb测年以及锆石Lu-Hf同位素组成研究,以探讨矿区大哈拉军山组火山岩产出的构造环境、备战铁矿的成岩成矿时代和火山岩的来源。矿区火山岩主要由玄武岩、玄武安山岩、安山岩、流纹岩组成,以中基性岩为主,大多为高钾钙碱性系列;微量元素和稀土元素表明矿区火山岩产出构造环境为活动陆缘火山岛弧;锆石U-Pb测试结果显示矿区南部斜长花岗斑岩的形成时代为晚石炭世早期(301±0.93Ma),成矿时代为早石炭世晚期。结合地质背景认为该铁矿至少有两期成矿期,在成因上为火山沉积后期叠加矽卡岩化的磁铁矿矿床。锆石Lu-Hf同位素组成特征表明备战铁矿的岩石来源于元古代、太古代地壳物质的部分熔融,并且源区物质在地壳中存在较长的时间。  相似文献   

10.
董越  刘畅  曹伟伟  关力伟  段星星  刘珉 《地质通报》2023,(12):2060-2083
在东昆仑西段工作程度较低的阿克苏河地区,首次识别出石炭纪侵入岩浆活动。阿克苏复式岩体位于昆中断裂带西段,锆石LA-ICP-MS定年显示,花岗闪长斑岩结晶年龄为361±2.4 Ma,二长花岗岩结晶年龄为357.5±2.8 Ma,花岗闪长岩结晶年龄为354±4.3 Ma,代表这些岩体侵位于晚泥盆世—早石炭世(临近昆中缝合带西部),该阶段岩浆事件此前未见公开报道。主量元素分析显示,此套花岗闪长斑岩、二长花岗岩和花岗闪长岩具有富Si、Al、K的特征,为高钾钙碱性过铝质系列;微量和稀土元素分析显示,岩石具有轻、重稀土元素分馏和轻稀土元素富集及负Eu异常特征,富集大离子亲石元素(LILE)Th、U、Rb、K;亏损高场强元素(HFSE)Nb、P、Ti等。锶同位素分析显示,87Sr/86Sr初始值为0.70612~0.71009,εNd(t)为-7.1~-5.1,TDM2为1.51~1.69 Ga。综合岩石-矿物特征和地球化学分析,这些岩石应该属于I型花岗岩,主要为受幔源岩浆作用后地壳物质重熔的结果,指示东昆仑昆中...  相似文献   

11.
卡拉盖雷火山岩型热液铜金矿床位于新疆西天山那拉提构造带境内西段, 赋矿地层为下石炭统大哈拉军山组, 含矿岩石主要为玄武质凝灰岩、浅变质岩及隐爆角砾岩。矿体产于隐爆角砾岩筒及构造破碎带裂隙或片理、劈理微裂隙中。硅化、绿泥石化和电气石化是高品位矿石的蚀变标志。岩石地球化学研究表明, 区内大哈拉军山组火山岩以钙碱性系列为主, 含部分拉斑玄武岩系列, 富集LREE和大离子亲石元素(Rb、Ba、Th、K), 相对亏损HREE和高场强元素(Nb、Ta、Ti、P), 具有大陆火山弧亲缘性。综合伊犁—中天山板块南缘的构造演化特征, 认为矿区大哈拉军山组火山岩产于板块俯冲-碰撞后期较成熟的大陆火山弧环境。  相似文献   

12.
The Carboniferous–Early Permian rift-related volcanic successions, covering large areas in the Chinese Tianshan and its adjacent areas, make up an important phanerozoic large igneous province in the word, which can be further divided into two sub-provinces: Tianshan and Tarim. The Early Permian volcanic rocks have been considered to be the products of an intraplate volcanism by most researchers. However, there is still strong controversy about the nature and geological setting of the Carboniferous volcanic rocks. The regional angular unconformity of Lower Carboniferous upon basement or pre-Carboniferous rocks, the ages (360–351 Ma) of the youngest ophiolite and the peak of subduction metamorphism of high pressure-low temperature metamorphic belt and the occurrence of Ni-Cu-bearing mafic-ultramafic intrusion with age of ~352 Ma and A-type granite with age of ~358 Ma reveal that the final closure of the Paleo-Asian Ocean might take place in the Early Mississippian. Our studies reveal that although contamination by continental crust or lithosphere can impart subduction-like signature (e.g., low Nb, low Ta and low Ti) and lead to misidentification of contaminated Carboniferous basaltic lavas from the Chinese Tianshan and its neighboring areas as arc related, there are still some essential differences between the Carboniferous basaltic lavas and arc related ones; such as: uncontaminated Carboniferous basaltic lavas have higher Nb concentrations (9–22 ppm), Nb/La > 1, “hump-shaped” OIB-like trace element patterns and moderate positive ɛNd values that distinguish them from the arc related ones; whereas, the contaminated Carboniferous basaltic lavas are characterized by pronounced negative Nb, Ta and Ti anomalies, but, their concentrations of incompatible trace elements are conspicuously higher than those of subduction-zone basalts that also distinguishes them from the arc related ones. Our summation suggests that the Carboniferous volcanic successions did indeed erupt in an intracontinental rift setting and their generation is likely confined to mantle plume.  相似文献   

13.
通过对新疆卡拉麦里姜巴斯套组火山岩野外地质特征、岩石学和高精度同位素年代学的研究,发现姜巴斯套组火山岩具典型双峰式组合,岩石类型包括玄武岩-酸性火山碎屑岩-玄武粗面安山岩;得到玄武粗面安山岩LA-ICP-MS锆石U-Pb年龄为(319.8±2)Ma(加权均方偏差值为3),表明姜巴斯套组火山岩形成于早石炭世谢尔普霍夫阶。对火山岩地球化学特征的研究表明,姜巴斯套组火山岩钙碱性系列、高钾钙碱性系列和钾玄岩系列岩石兼而有之,岩石的稀土元素配分曲线均为轻稀土元素富集型,无明显Eu异常,玄武岩和玄武粗面安山岩具有K正异常和Sr负异常,酸性火山碎屑岩表现出Nb、Ta和Ti显著亏损。总体来说,姜巴斯套组火山岩富集大离子亲石元素,相对亏损高场强元素。玄武岩和玄武粗面安山岩表现出大陆裂谷(大陆板内拉张区域)岩石特征;酸性火山碎屑岩表现出岛弧或者活动大陆边缘岩石属性。总之,姜巴斯套组火山岩形成于卡拉麦里洋盆闭合碰撞造山后的拉张伸展环境,卡拉麦里地区在早石炭世末期就进入了碰撞后的陆内伸展拉伸阶段。  相似文献   

14.
滇西南昌宁-孟连缝合带东侧出露的澜沧岩群是重建原特提斯构造演化的关键,但其物质组成、时代和属性长期存在争议。近期地质调查表明,惠民地区的澜沧岩群惠民岩组主要由玄武岩、玄武安山岩、凝灰岩、砂岩、泥岩及灰岩组成,普遍经历了强烈构造变形和绿片岩相变质作用。岩石地球化学特征显示,玄武安山岩属于钙碱性系列,富集轻稀土元素和大离子亲石元素,具Nb、Ta和Ti的负异常,具有与俯冲相关火山弧的地球化学属性。其玄武安山岩锆石LA-ICP-MS^(206)Pb/^(238)U加权平均年龄为461.8±5.5Ma(MSWD=1.19,n=25);3件变质碎屑岩夹层的最年轻碎屑锆石U-Pb年龄峰值分别为469Ma、470Ma和475Ma,且同时期火山岩锆石占主导,指示其形成于汇聚板块边缘环境。结合本区东侧兰坪-思茅盆地西缘发育的同时期裂谷型双峰式火山岩分析,澜沧岩群惠民岩组变质火山-沉积岩组合可能是原特提斯洋沿扬子地块西缘向东俯冲过程(现今地理方位)形成的产物。研究表明古特提斯与原特提斯构造演化是连续的。  相似文献   

15.
Zircon U–Pb ages, geochemical and Sr–Nd isotopic data are presented for the late Carboniferous Baoligaomiao Formation (BG Fm.) and Delewula Formation (DW Fm.) volcanic rocks, widely distributed in northern Inner Mongolia, in the northern part of the Xing'an–Mongolia Orogenic Belt (XMOB). The BG Fm. rocks mainly consist of basaltic andesites and andesites while the DW Fm. rocks include dacites, trachytes, rhyolites, pyroclastic rocks and minor andesites. New LA-ICPMS zircon U–Pb analyses constrain their eruption to late Carboniferous (317–322 Ma and 300–310 Ma, respectively). The BG Fm. volcanic rocks are characterized by enriched large ion lithophile elements (LILE) and depleted high field strength elements (HFSE), with initial 87Sr/86Sr ratios of 0.70854–0.70869 and negative εNd(t) (− 2.1 to − 2.4) values. They have low La/Ba (0.03–0.05), high La/Nb (2.05–3.70) ratios and variable Ba/Th (59.5–211) ratios. Such features suggest that they are derived from melting of heterogeneous sources including a metasomatized mantle wedge and Precambrian crustal material. The DW Fm. volcanic rocks are more depleted in HFSE with significant Nb, Ta, P, Ti anomalies. They have high initial 87Sr/86Sr ratios (0.72037–0.72234) and strong negative εNd(t) (− 11 to − 11.6) values which indicate those igneous rocks were mainly derived from reworking of the Paleoproterozoic crust. The late Carboniferous volcanic rocks have geochemical characteristics similar to those of the continental arc rocks which indicate the northward subduction of the Paleo Asian Ocean may have continued to the late Carboniferous. The volcanic association of this study together with the early Permian post-collisional magmatic rocks suggests that a tectonic transition from subduction-related continental margin arc volcanism to post-collisional magmatism occurred in the northern XMOB between the late Carboniferous and the early Permian.  相似文献   

16.
Late Miocene–Pliocene to Quaternary calc-alkaline lava flows and domes are exposed in southeast of Isfahan in the Urumieh Dokhtar magmatic belt in the Central Iran structural zone. These volcanic rocks have compositions ranging from basaltic andesites, andesites to dacites. Geochemical studies show these rocks are a medium to high K calc-alkaline suite and meta-aluminous. Major element variations are typical for calc-alkaline rocks. The volcanic rocks have SiO2 contents ranging between 53.8% and 65.3%. Harker diagrams clearly show that the dacitic rocks did not form from the basaltic andesites by normal differentiation processes. They show large ion lithophile elements- and light rare earth elements (LREE)-enriched normalized multielement patterns and negative Nb, Ti, Ta, and P. Condrite-normalized REE patterns display a steep decrease from LREE to light rare earth elements without any Eu anomaly. These characteristics are consistent with ratios obtained from subduction-related volcanic rocks and in collision setting. The melting of a heterogeneous source is possible mechanism for their magma genesis, which was enriched in incompatible elements situated at the upper continental lithospheric mantle or lower crust. The geochemical characteristics of these volcanic rocks suggested that these volcanic rocks evolved by contamination of a parental magma derived from metasomatized upper lithospheric mantle and crustal melts.  相似文献   

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