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141.
韧性剪切带是在较高温条件下机械与化学作用高度耦合的系统。韧性剪切带普遍含有一种或多种流体,流体是韧性剪切变形高度局域化和剪切变形组构形成的主要影响因素。在强应变岩石中,可利用变形矿物的元素地球化学的变化特征来反演参与变形的流体的地球化学性质。苏鲁-大别超高压变质带中,多数榴辉岩经历了强烈的韧性剪切应变和流体作用,形成高度局域化、尺度不等的韧性剪切变形带,为研究在高压-超高压条件下,参与流体的性质,应变和流体相互作用提供了重要机会。样品DH-2G是一强烈剪切榴辉岩,由石榴石、绿辉石、金红石,及少量的多硅白云母、黝帘石、角闪石、斜长石、石英、锆石和磷灰石组成。在不同应变域,矿物的粒度变化明显。在类变斑晶域,石榴石粒度比剪切条带中的小2~4倍。在以下讨论中,与细粒石榴石(石榴石-I)共生的绿辉石称为绿辉石-I,与粗粒石榴石(石榴石-II)共生的绿辉石称为绿辉石-II。电子探针和原位LA-ICP-MS测试结果表明:(1)除Ni外,两类石榴石没有显著区别;(2)两类绿辉石在主量元素上也没有明显的差异,但微量元素特征,尤其是稀土元素上,存在明显的变化。与绿辉石-I相比,绿辉石-II具有以下特征:(1)轻稀土明显降低,达25~40倍左右;(2)重稀土明显富集,升高5~10倍;(3)Ni、Zn、Co、Sc、Ba、Zr、Y、Rb、Hf和HREE明显升高,而 V、Sr、U、Th、Pb和LREE明显降低;和(4)微弱的正Eu异常, Eu/Eu*=1.04~1.45,绿辉石-I基本上没有Eu异常。并且,剪切带域金红石的Nb/Ta比值从核部(<19.0)到边部(>20.0)显著增加。岩相学、元素和温压估计研究表明:在剪切过程中不存在外来流体,流体是由无水矿物(绿辉石、石榴石、金红石等)在超高压榴辉岩折返减压过程中通过压力降低出溶结构羟基或分子水,释放出流体,流体富含V、Sr、U、Th、Pb、Zr、Nb和LREE等微量元素。这些流体显著影响深俯冲地壳的流变学性质,是迁移活动元素(LILE和LREE)及保守元素(HFSE等)的重要载体,对超高压岩片的快速折返发挥关键作用。  相似文献   
142.
苏鲁超高压变质带胡家林超镁铁质岩成因及构造意义   总被引:1,自引:1,他引:0  
胡家林超镁铁质杂岩体产于苏鲁超高压变质带中部,纯橄岩和(石榴)单斜辉石岩呈不连续透镜体产于蛇纹石化橄榄岩中。纯橄岩遭受了部分蛇纹石化(烧失量=6.6%~13.2%),全岩富集强相容元素(Ni、Cr、Co)和Ir族PGE(IPGE;Ir、Os、Ru)及高IPGE/PPGE值,亏损Al、Ti、V,具高Mg~#橄榄石(Fo=91.7~92.4)和高Cr~#(0.68~0.76)尖晶石。纯橄岩高耐熔地球化学及矿物化学特征和古老的大陆岩石圈地幔相一致,表明其原岩来源于弧前地幔,代表了华北克拉通古老的大陆岩石圈地幔残留。(石榴)单斜辉石岩全岩呈相对低含量的强相容元素(Cr、Ni、Co)和IPGE,高含量的Al、Ti、V和流体迁移元素(Sr、Pb和Ba),球粒陨石标准化REE配分图呈明显"上凸"型,具低Mg~#橄榄石(Fo=76.6~76.8)和低Al_2O_3(2.76%)和高SiO_2(54.56%~56.87%)的单斜辉石。全岩组成和矿物化学表明其原岩为俯冲带内超镁铁质火成堆晶岩,最初岩浆由地幔岩高程度部分熔融的熔体和俯冲带中富H_2O流体和/或熔体构成。(石榴)单斜辉石岩原岩曾被地幔流带入扬子大陆俯冲板片和上覆地幔楔之间的俯冲通道,经历了超高压变质作用和生成大量石榴石。(石榴)单斜辉石岩在折返过程中,与大陆岩石圈地幔楔剥离的蛇纹石化橄榄岩及纯橄岩相结合,形成超镁铁质杂岩体,整体被低密度的俯冲板片(主要由花岗质片麻岩和变质沉积岩组成)裹挟,折返至地壳浅部。  相似文献   
143.
刘利双  刘福来  冀磊  王伟  王舫  蔡佳  刘平华 《岩石学报》2018,34(6):1557-1580
变花岗质岩石是北苏鲁超高压变质带出露最广泛的岩石类型。本文通过锆石年代学和全岩地球化学的系统研究,查明该区变花岗质岩石具有成因类型多样性的特点,揭示其构造归属的复杂性,这对于解释扬子板块与华北板块之间的俯冲-碰撞-折返动力学过程具有重要科学意义。锆石U-Pb定年结果表明,区内的变花岗质岩石由新元古代(820~750Ma)花岗质片麻岩和新太古代-古元古代(2700~1870Ma)TTG-花岗质片麻岩共同组成,且二者经历了完全不同的构造演化历史。其中,新元古代花岗质片麻岩经历了晚三叠世(222~213Ma)的变质-深熔事件,而新太古代-古元古代的TTG-花岗质片麻岩则记录了晚古元古代(~1864Ma)的变质事件。全岩地球化学结果表明,新元古代花岗质片麻岩的原岩成分趋近于A型花岗岩,属于过铝质-准铝质的高钾钙碱性系列,主量元素(AlT_2O_3、MgO、FeO、TiO_2、CaO、P_2O_5)与SiO_2显示负相关性,具有轻、重稀土分异和负Eu异常特征,表明其源区有斜长石的残留。富集大离子亲石元素和强烈亏损高场强元素的特点,进一步表明它们可能是中-上地壳物质部分熔融的产物。新太古代-古元古代TTG-花岗质片麻岩的原岩成分主要落入TTG和IS型花岗岩区域,属于低钾-钙碱性系列,主量元素与SiO_2相关性不明显,多数样品的稀土总量比新元古代花岗质片麻岩略低,轻、重稀土分异相对较弱,具有正Eu或无Eu异常,表明其源区无斜长石而可能有角闪石的残留。它们的地球化学属性与新元古代花岗质片麻岩的成因特点存在显著差异。古元古代花岗质片麻岩的原岩可能为与造山有关的I型花岗岩,来自于太古宙基底岩石的重熔与再造。上述综合研究结果显示,北苏鲁超高压变质带内新元古代花岗质片麻岩的原岩具有亲扬子板块的属性,与扬子板块北缘罗迪尼亚超大陆裂解存在密切成因关系。而新太古代-古元古代TTG-花岗质片麻岩与华北板块变质基底、胶-辽-吉古元古构造带具有明显亲缘性。由此可见,在传统北苏鲁超高压变质带内的威海-乳山一带,由具有扬子板块属性和具有华北板块属性的变质基底,沿北东-南西方向共同组成了一条北苏鲁混杂岩带。这一新的研究成果充分表明,华北板块东南缘的新太古代-古元古代的陆壳物质普遍卷入到三叠纪时期扬子板块与华北板块之间的相向(双向)俯冲-折返造山过程中。  相似文献   
144.
Based on historical observations, ventilation of the Sulu Sea (SS) is investigated and, its interbasin exchange is also partly discussed. The results suggest that near the surface the water renewal process not only occurs through the Mindoro Strait (MS) and the Sibutu Passage, but also depends on the inflows through the Surigao Strait and the Bohol Sea from the Pacific and through the Balabac Strait from the South China Sea (SCS). Both inflows are likely persistent year round and their transports might not be negligible. Below the surface, the core layer of the Subtropical LowerWater (SLW) lies at about 200 m, which enters the SS through the Mindoro Strait not hampered by topography. Moreover, there is no indication of SLW inflow through the Sibutu Passage even though the channel is deep enough to allow its passage. The most significant ventilation process of the SS takes place in depths from 20a m to about 1200 m where intermediate convection driven by quasi-steady inflows through the Mindoro and Panay straits (MS-PS) dominates. Since the invaded water is drawn from the upper part of the North Pacific Intermediate Water (NPIW) of the SCS, it is normally not dense enough to sink to the bottom. Hence, the convective process generally can only reach some intermediate depths resulting in a layer of weak salinity minimum (about 34.45). Below that layer, there is the Sulu Sea Deep Water (SSDW) homogeneously distributed from 1200 m down to the sea floor, of which the salinity is only a bit higher (about 34.46) above the minimum. Observational evidence shows that hydrographic conditions near the entrance of the MS in the SCS vary significantly from season to season, which make it possi- ble to provide the MS-PS overflowwith denser water of higher salinity sporadically. It is hence proposed that the SSDW is derived from intermittent deed convection resulted from DroDertv changes of the MS-PS inflow.  相似文献   
145.
《International Geology Review》2012,54(16):1984-1999
The South Yellow Sea basin in eastern China has experienced a multi-stage tectonic evolution history. The major structures were created when the basin was a foreland basin during the Mesozoic. However the geological evolution of the basin has not yet been corroborated by direct evidence from the underlying basement rocks. Qianliyan Island in the southern Yellow Sea provides an opportunity to study the formation and evolution of the basin by means of direct geochronological and geochemical evidence. On Qianliyan Island, basement rocks are exposed that consist of granitic gneiss, felsic gneiss and minor mylonite, and lenses of eclogite. Major and trace element characteristics of these four types of gneiss indicate that they originated from crustal material, varying in composition from pelite to greywacke. SHRIMP U-Pb zircon dating results of a felsic gneiss sample show that this rock crystallized between 659 and 796 Ma and underwent a metamorphic overprint at 229 ± 4 Ma. This age pattern resembles that of gneisses from the ultra-high-pressure terrain in the Dabie–Sulu belt. We conclude that the study area was part of the northern margin of the Yangtze Block during the Neoproterozoic. Neoproterozoic magmatic activity occurred along this margin and the basement sequence underwent Triassic metamorphic overprint during the northward subduction of the Yangtze Block beneath the North China Block. We further conclude that the deformation associated with this metamorphic event led to the formation of the southern Yellow Sea foreland basin.  相似文献   
146.
通过对山东中生代侵入岩体的时空展布、岩石化学及同位素特征的综合分析研究,提出了扬子板块东北缘俯冲与回撤的演化机制,分析了在这种机制下的成岩、成矿演化规律。认为扬子板块东北缘的俯冲与回撤控制了山东中生代的地质演化过程,其回撤在岩石圈深部造成的真空,导致软流圈物质的隆升,是胶东金矿大规模成矿作用的内在控制因素。  相似文献   
147.
The timing of ultra-high pressure (UHP) metamorphism has been difficult to determine because of a lack of age constraints on crucial events, especially those occurring on the prograde path. New Sensitive High-Resolution Ion Microprobe (SHRIMP) U–Pb age and rare-earth element (REE) data of zircon are presented for UHP metamorphic rocks (eclogite, garnet peridotite, garnet pyroxenite, jadeite quartzite and garnet gneiss) along the Dabie–Sulu UHP complex of China. With multiphase metamorphic textures and index mineral inclusions within zircon, the Dabie data define three episodes of eclogite-facies metamorphism, best estimated at 242.1 ± 0.4 Ma, 227.2 ± 0.8 Ma and 219.8 ± 0.8 Ma. Eclogite-facies zircons of the Sulu UHP complex grew during two major episodes at 242.7 ± 1.2 and 227.5 ± 1.3 Ma, which are indistinguishable from corresponding events in the Dabie UHP complex. A pre-eclogite metamorphic phase at 244.0 ± 2.6 Ma was obtained from two Sulu zircon samples which contain low pressure–temperature (plagioclase, stable below the quartz/Ab transformation) and hydrous (e.g., amphibole, stable below  2.5 Gpa) mineral inclusions. In terms of Fe–Mg exchange of trapped garnet–clinopyroxene pairs within zircon domains, we are able to determine the Pressure–Temperature (PT) conditions for a specific episode of metamorphic zircon growth. We suggest that mineral phase transformations and associated dehydration led to episodic eclogite-facies zircon growth during UHP metamorphism ( 2.7 Gpa) began at 242.2 ± 0.4 Ma (n = 74, pooling the Dabie–Sulu data), followed by peak UHP metamorphism (>  4 Gpa) at 227.3 ± 0.7 Ma (n = 72), before exhumation (<  220 Ma) to quartz stability (~ 1.8 Gpa). The Dabie–Sulu UHP metamorphism lasted for about 15 Ma, equivalent to a minimum subduction rate of 6 mm/year for the descending continental crust.  相似文献   
148.
Paragonite- and garnet-bearing high-grade epidote-amphibolite (PGEA) in the Ise area of the Hida Mountains, Japan is characterized by the high-pressure (HP) epidote-amphibolite facies parageneses (M1), garnet + hornblende + clinozoisite + paragonite + quartz + rutile. Paragonite and garnet of the peak M1 stage are locally replaced by retrograde albite (+ oligoclase) and chlorite (M2), respectively. Phase equilibria constrain peak metamorphic conditions of P = 1.1–1.4 GPa and T = 530–570 °C, and a decompressional PT path for this rock. Mineral parageneses of prograde epidote-amphibolite facies are comparable to some HP rocks from the Hongan region of western Dabie, but differ from other HP mafic schists with cooling ages of c. 330 Ma in the Hida Mountains. New paragonite K–Ar dating for the PGEA yields a Triassic cooling event at 210 Ma that is coeval with regional cooling and exhumation of the Sulu–Dabie–Qinling (SDQ) belt. Both petrological and geochronological data of the Triassic HP epidote-amphibolite in Hida Mountains support our earlier hypothesis that the SDQ belt extends across the Korean Peninsula to SW Japan.  相似文献   
149.
南苏鲁中国大陆科学钻探主孔CCSD-MH及地表的榴辉岩Sm—Nd同位素年龄测试结果显示,每件样品中全岩(Wr)与石榴石(Grt)和绿辉石(Omp)点均在一条直线上。除样品B210R186以外,其余5件榴辉岩均给出十分相近的Sm—Nd等时线年龄,位于202.6-219Ma之间,这与榴辉岩围岩——片麻岩锆石边缘记录的近等温减压退变质年龄(200-220Ma)十分接近,表明测试的榴辉岩中石榴石的Sm—Nd同位素体系有可能在近等温减压退变质时重置,并在向角闪岩相退变质过渡时封闭。因此,笔者测定的202.6-219Ma的Sm-Nd全岩-矿物等时线年龄,应代表了南苏鲁榴辉岩在构造折返过程中近等温减压阶段的退变质年龄,而不能代表苏鲁地体的超高压变质年龄。  相似文献   
150.
在东海大陆超深钻(CCSD)的钻孔橄榄岩岩屑(孔深603-683米深部)中,分离出的矿物有硅酸盐、氧化物、硫化物、碳化物、自然元素、金属互化物和合金,计50-60种矿物。多种特征表明其中有一些不寻常矿物,并且有些矿物具有球状外形,如自然铁、镍纹石、铁镍合金、磁铁矿等。本文报道通过成分和结构分析鉴定出的铁磷合金矿物(Fe,P),成分中含少量Cr,Ni和Co,成分均一,分子式为(Fe1.80Ni0.05Cr0.02)P。EDXD数据表明该矿物的晶系属六方晶系;格子类型为P;空间群为P62m;晶胞参数a=b=5.877Ac=3.437A,a:c=1:0.5848。通过ICDDPDF-2x射线粉晶衍射数据库2004年公布的最新版本搜索查询,发现与人工合成的同种矿物Fe2P(ICDD83-2337,Barringerite.syn)十分接近,类似的矿物已在陨石中发现(FeNi)P,故确定本文报道的铁磷合金(Fe2P)为地球上首次发现的天然合金矿物。其成因和形成条件的研究正在进行中。  相似文献   
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