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1.
甘肃敦煌红柳峡石榴石斜长角闪岩原岩为岛弧拉斑玄武岩,形成于不成熟岛弧.其典型矿物组合为:石榴石(Grt)-角闪石(Amp)-透辉石(Di)-斜长石(Pl),其中较粗大的变斑晶石榴石中通常保存进变质生长环带.根据岩相学和矿物化学研究得出,该区石榴石斜长角闪岩经历了四个变质演化阶段:早期进变质阶段(M1)、变质高峰期阶段(M2)、近等温减压阶段(M3)和晚期降温退变质阶段(M4).M1阶段以石榴石核部成分及其核部包体矿物组合石榴石(Grt Ⅰ)+角闪石(AmpⅠ)+斜长石(Pl Ⅰ)+石英(Qtz)为特征,P-T估算结果为n=550 ~ 600℃,P=0.3 ~0.5GPa;M2阶段以变斑晶石榴石幔部成分(GrtⅡ)及基质中的矿物组合角闪石(AmpⅡ)+透辉石(Di)+斜长石(+PlⅡ)+石英(Qtz)为特征,P-T估算结果为T=650 ~ 780℃,P=0.8 ~0.9GPa;M3阶段的代表性结构为石榴石边缘(GrtⅢ)形成由绿色角闪石(AmpⅢ)和斜长石(PlⅢ)组成的“白眼圈”,该阶段温度估算结果为630 ~ 700℃,压力大幅降低;M4阶段透辉石(Di)开始向角闪石(AmpⅣ)和斜长石(PlⅣ)转化,该阶段压力变化不大,主要是温度的降低.温压估算结果表明,红柳峡石榴石斜长角闪岩完整记录了从早期升温升压的进变质到后来的近等温减压再到最后的降温退变质的一个顺时针的PTt演化轨迹,反映的构造演化历史为:板块俯冲到地壳深部遭受高温变质作用,然后该区出现拉张的构造体制,随之地壳减薄,但是原来处于地壳深部的岩石并未出现大幅度折返和抬升,而是仍然处于原来的深度,慢慢的冷却直至正常的地温梯度.锆石U-Pb定年结果表明,红柳峡石榴石斜长角闪岩原岩的结晶年龄为1611±6Ma,该期年龄代表的构造事件与哥伦比亚超大陆的裂解事件一致,结合前人的研究成果我们推断,塔里木板块可能与哥伦比亚超大陆的裂解有联系,且当时位于塔里木东北缘的敦煌地块还是岛弧的构造环境,后来在中元古代塔里木运动中有一次板块俯冲碰撞事件,引起了一次高级变质作用(高角闪岩相),使当时的基性火山岩变质形成如今含有石榴石的斜长角闪岩.  相似文献   

2.
大兴安岭北段塔河辉长岩的岩石学特征及其构造意义   总被引:9,自引:2,他引:9  
塔河辉长岩是大兴安岭北段塔河地区最具代表性的辉长岩体.该岩体主要由橄榄辉长岩、浅色橄榄辉长岩、淡色辉长岩(斜长岩)、橄长岩及辉长岩组成,以橄榄辉长岩和橄长岩为主.其主要造岩矿物由斜长石、橄榄石、单斜辉石及少量角闪石组成,具反应边结构和包含嵌晶结构.电子探针分析结果表明,其橄榄石Fo平均为77,属贵橄榄石.单斜辉石全部落入透辉石区.斜长石An平均为85,为倍长石.岩相学特征表明,该岩体为典型的堆晶辉长岩体.根据An-Fo及AlZ -TiO2 图解可以判别该岩体形成于活动大陆边缘/岛弧的构造环境中,属于I型弧堆晶辉长岩,其形成可能与古亚洲洋闭合过程中板块俯冲-流体交代作用有关,是研究古亚洲洋闭合历史的一个重要岩石学标志.  相似文献   

3.
大青山-乌拉山变质杂岩中石拐地区富铝片麻岩出露于华北克拉通孔兹岩带中段,包括夕线石榴堇青二长片麻岩、紫苏石榴黑云二长片麻岩和夕线石榴黑云二长片麻岩,与基性麻粒岩彼此呈互层或夹层产出.根据岩相学观察、成因矿物学和变质反应结构的系统研究,结合地质温压计估算以及相平衡模拟的综合分析,揭示石拐地区富铝片麻岩的变质演化可划分为四个变质阶段.其中,早期进变质阶段(M1)矿物组合以石榴石核部及其包裹的细粒矿物黑云母+石英+斜长石±夕线石±钾长石±尖晶石为特征;峰期变质阶段(M2)的稳定的矿物组合为石榴石+基质中粗粒夕线石+黑云母+石英+斜长石+钾长石±磁铁矿±钛铁矿,形成的温压条件为T=840 ~ 860℃,P=10.0~10.5kbar;峰后近等温减压阶段(M3)以石榴石边部发育含堇青石的后成合晶为特征,并发生一系列典型的减压反应:Grt+ Sil+ Qz→Crd、Grt+ Melt→Crd+ Bt+ PI和Grt+ Melt→Crd+ Qz±P1,形成新的矿物组合为石榴石+堇青石+黑云母+斜长石+石英±夕线石±紫苏辉石,相应的温压条件为T=720~ 800℃和P=5.6 ~6.1kbar;晚期角闪岩相降温阶段(M4)的矿物组合是石榴石+石榴边部细粒黑云母+斜长石+石英+磁铁矿±钾长石±钛铁矿,记录的温压条件为T=616 ~661℃和P=3.4 ~5.2kbar.石拐地区富铝片麻岩及相关岩石具有典型的近等温减压的顺时针P-T轨迹,峰后经历了近等温减压和近等压降温的变质演化阶段.上述研究结果表明,石拐地区富铝片麻岩曾卷入到华北克拉通西部的阴山陆块和鄂尔多斯陆块间的俯冲-碰撞造山及随后的快速隆升的演化过程.  相似文献   

4.
胶北西留古元古代~2.1Ga变辉长岩岩石学与年代学初步研究   总被引:8,自引:7,他引:1  
刘平华  刘福来  王舫  刘建辉  蔡佳 《岩石学报》2013,29(7):2371-2390
胶北西留古元古代变辉长岩主要由二辉麻粒岩与辉石斜长角闪岩所组成,且以不规则透镜体的形式赋存于新太古代花岗质片麻岩与英云闪长质片麻岩之中.岩相学观察、矿物相转变分析、矿物化学研究、传统地质温压计计算与锆石LA-ICP-MS定年结果表明,胶北西留变辉长岩记录了十分复杂的演化历史,其中早期残留的原岩标志性岩浆结构以辉长辉绿结构为特征,早期残留的单斜辉石为高温低钙的普通辉石(M0),此阶段形成的岩浆锆石记录了其原岩形成时代为2102±3Ma.峰期麻粒岩相变质阶段(M1)的矿物组合以斜方辉石+单斜辉石+斜长石+石英为特征,记录的温压条件为T=800 ~ 850℃,P<0.65~0.75GPa;晚期角闪石的生长表明岩石又经历了降温冷却的过程(M2),其稳定的矿物组合为角闪石+斜长石+石英+单斜辉石,记录的温压条件为T=675~700℃,P=0.40 ~0.55GPa,变质阶段形成的变质锆石记录了其变质时代为1907±16Ma.胶北西留变辉长岩记录了含有近等压降温变质过程的顺时针P-T轨迹.结合本区其它研究资料,本文认为西留古元古代变辉长岩是胶北地区古元古代地层沉积之前一次地壳伸展作用的产物,并于古元古代晚期(1.95~1.80Ga)卷入了胶北碰撞造山作用过程.  相似文献   

5.
攀西白马岩体的矿物结晶顺序与钒钛磁铁矿成因   总被引:1,自引:0,他引:1  
距今约260 Ma的白马岩体位于上扬子板块西缘的攀西裂谷中,是一个大型的含钒钛磁铁矿镁铁质-超镁铁质杂岩体,是峨眉山大火成岩省的重要组成部分。含矿岩体主要由磁铁橄长岩和橄榄辉长岩组成,主要工业矿体赋存在下部的橄长岩岩相带中。显微镜下显示橄榄石和角闪石均存在2种不同的结构状态,岩浆具有多次脉动的侵位特点。矿物结构特点及磁铁矿、钛铁矿、橄榄石、角闪石及斜长石等矿物电子探针成分测定显示,矿物的结晶顺序大致为斜长石+橄榄石+辉石→角闪石+磁铁矿+钛铁矿→角闪石。根据角闪石和斜长石成分计算角闪石最低结晶温度为1090℃,斜长石的最高结晶温度是1120℃,推测磁铁矿的结晶温度介于1090~1120℃之间。橄榄石的Fo值由下部的磁铁橄长岩向上部的橄榄辉长岩呈逐渐降低的变化趋势,表明随着岩浆的结晶分异进程,系统的氧逸度是逐步变化的,暗示整个结晶分异过程系统处于封闭状态。磁铁矿中w(V2O3)变化于0.72%~1.37%之间,可近似看成是岩浆演化过程氧逸度较低的量化标志(FMQ+0.5),这种低氧逸度条件下硅酸盐矿物的结晶,会导致粒间熔体氧逸度逐步升高且成分向着富Fe的方向演化。岩浆的这种成分演化特点,是晚期形成不混溶熔浆及富Fe-Ti矿浆的主要原因。  相似文献   

6.
西南天山哈拉达拉岩体的锆石SHRIMP年代学及地球化学研究   总被引:15,自引:6,他引:9  
薛云兴  朱永峰 《岩石学报》2009,25(6):1353-1363
西南天山哈拉达拉侵入体由橄长岩、橄榄辉长岩和辉长岩组成,橄长岩和橄榄辉长岩具有典型的堆晶结构,堆晶矿物以斜长石和橄榄石为主。辉石、角闪石和金云母主要为堆晶间隙矿物。辉长岩发育辉长—辉绿结构。结晶分异作用在岩浆演化过程中起重要作用。对从辉长岩中分选出来的锆石进行的SHRIMP年代学研究表明,辉长岩形成于308.3±1.8Ma (MSWD=0.86,n=15)。哈拉达拉岩体稀土元素配分模式与E-MORB相似,具有高Rb、Cs、Ba及Sr的特点,87Sr/86Sr初始比值0.7040~0.7050。这些特征表明,岩浆源区具有富集地幔的特征(古南天山洋俯冲流体交代形成了富集地幔)。根据平坦的稀土元素配分模式以及Gd、Sm、Nb、Zr等微量元素的地球化学行为判别,岩浆源区岩石为含角闪石的尖晶石二辉橄榄岩。批式熔融模拟计算显示,地幔岩10%~15%的部分熔融能够形成哈拉达拉岩体的母岩浆。母岩浆通过48%~50%的结晶分异作用则能够形成哈拉达拉岩体。早期结晶的橄榄石和斜长石通过堆晶作用形成橄长岩和橄榄辉长岩,剩余岩浆结晶形成辉长岩。  相似文献   

7.
内蒙古中部太古代麻粒岩递增变质成因   总被引:7,自引:4,他引:7  
刘喜山 《岩石学报》1996,12(2):287-298
由早元古代造山运动早期自北西向南东推覆作用引起并使之得以保存的太古代变质作用强度逆转的剖面出露在内蒙古中部的固阳-武川地区。变质镁铁质岩石中矿物组合的变化在低级区为阳起石+绿帘石+绿泥石→普通角闪石+钠长石→普通角闪石+斜长石→石榴石(或透辉石)+普通角闪石+斜长石→无色角闪岩+钠长石;在高级区为普通角闪石+斜长石→紫苏辉石+透辉石+斜长石→石榴石+透辉石(2)+石英。这些变化已被用来恢复太古代时期从低绿片岩相到麻粒岩相的递增变质序列及尔后经历的近等压冷却的退变质作用过程。高级区变质表壳岩与低级区绿岩带的岩石组合、岩石化学、岩石地球化学和变质作用演化序列的对比研究结果表明,两者属于太古代同一火山-沉积单位。其变质程度的不同起因于在经受区域性递增变质作用时,两者处在地壳的不同位置  相似文献   

8.
青藏高原腹地羌塘地体中部猫耳山增生杂岩内保留有早古生代变质记录,对研究冈瓦纳大陆北缘的早古生代构造格架和演化具有重要意义。猫耳山石榴角闪岩呈透镜状产出于斜长角闪岩内,主要由石榴石、角闪石、单斜辉石、斜长石、白云母、黝帘石、绿泥石、榍石和钛铁矿组成。石榴角闪岩的全岩地球化学分析表明其具有俯冲带上(SSZ型)蛇绿岩特征,与区域内寒武-奥陶纪蛇绿岩残片一致。根据岩相学、矿物化学、相平衡模拟以及锆石定年结果,得出石榴角闪岩的成因及变质过程如下:(1)石榴角闪岩原岩为~477Ma的特提斯洋蛇绿岩残片;(2)在394~383Ma发生麻粒岩相变质过程,峰期变质温压条件为~900℃、~1.55GPa,矿物组合为石榴石+角闪石+透辉石;(3)早期的折返导致其降温降压至~800℃、~1.0GPa,矿物组合为石榴石+角闪石+透辉石+斜长石;(4)进一步的角闪岩相退变质发生于358~348Ma,矿物组合为角闪石+斜长石+透辉石+钛铁矿,在石榴石周围和港湾处形成斜长石+角闪石的后成合晶结构。石榴角闪岩的P-T-t演化轨迹结合区域蛇绿岩和岩浆岩记录,指示早古生代特提斯洋壳俯冲、泥盆纪特提斯洋弧后扩张和石炭纪特提斯...  相似文献   

9.
《地学前缘》2017,(3):276-287
攀枝花式铁矿赋存岩体顶部普遍发育有富角闪石细脉。本文报道了白马铁矿青杠坪剖面顶部细粒橄榄辉长岩中富角闪石细脉、蚀变带和寄主岩中代表性斜长石、磁铁矿、钛铁矿、角闪石、黑云母和磷灰石等矿物的电子探针分析。岩相学观察表明,细脉中矿物主要为大颗粒角闪石,其间充填钛铁矿、斜长石、方解石;蚀变带中矿物为角闪石、辉石、斜长石、黑云母、磁铁矿及钛铁矿,矿物普遍发生蚀变(如黑云母绿泥石化),斜长石边部也发生溶蚀;靠近蚀变带的寄主岩中矿物主要为斜长石、单斜辉石(二者含量相近),另含少量角闪石、黑云母、磁铁矿和钛铁矿,在钛铁氧化物周围还有黄铁矿、黄铜矿和磷灰石,矿物也发生了轻微的蚀变;而远离细脉的新鲜寄主岩中矿物主要为新鲜的斜长石、单斜辉石(二者含量相近),少量橄榄石、角闪石、黑云母、磁铁矿及钛铁矿。电子探针数据表明,寄主岩中的斜长石An比细脉及蚀变带中的斜长石An要高。新鲜寄主岩中的斜长石主要为拉长石,蚀变带中的斜长石主要为中长石,而细脉中出现了钠长石。运用角闪石全铝压力计对富角闪石细脉中的角闪石颗粒进行了压力和深度的计算,从中心到边部所估算的压力表现出先增大后减小的趋势:69MPa→121MPa→167MPa→128MPa;运用磁铁矿-钛铁矿共生的温度计和氧逸度计,计算了寄主岩中磁铁矿和钛铁矿平衡时的温度和氧逸度,结果表明,磁铁矿和钛铁矿平衡的温度较低为546~574℃,氧逸度(logfO2)为-20.41~-23.83。另外,根据黑云母的Ti-Mg/(Mg+Fe)温度估算图解,靠近蚀变带寄主岩中黑云母的结晶温度为700~720℃。通过讨论分析得出结论:(1)青杠坪镁铁质侵入体侵位后顶部及周围先固结形成顶部细粒橄榄辉长岩带,对底部的含矿流体成矿起到屏蔽层的作用。(2)细脉和蚀变带中斜长石更富Na;由角闪石核部电子探针数据计算出的侵位深度为岩石的真实侵位深度,而由边部电子探针数据计算的深度为流体高压导致的"假"侵位深度;从富角闪石细脉到蚀变带再到寄主岩,矿物的结晶温度逐渐降低,对应流体高温到低温的扩散特点。(3)这种富角闪石细脉可以作为深部矿床的浅部标志,对深部矿床的勘察找靶提供了一种方法。  相似文献   

10.
造山带环境中的东疆型镁铁—超镁铁杂岩   总被引:8,自引:5,他引:8  
顾连兴  王金珠 《岩石学报》1994,10(4):399-356
新疆东部黄山-镜儿泉一带产有大-中型铜镍矿床的镁铁-超镁铁岩体是中石炭统弧后盆地引张环境下的热侵位产物,主要岩石类型有橄榄岩、辉橄岩、橄辉岩、二辉岩、辉长苏长岩、苏长辉长岩、辉长岩、橄长岩、辉长岩和闪长岩等;其超镁铁岩相对富铁.不具变质组构,并具橄榄石+斜方辉石+单斜辉石+角闪石±斜长石矿物组合;岩石化学以富硅、贫碱、贫铝、贫钙为特征,并具拉斑玄武岩系演化趋势。这些岩体是造山带杂岩体的一种新类型,可称为东疆型。  相似文献   

11.
G. Rebay  B. Messiga 《Lithos》2007,98(1-4):275-291
In the coronitic metagabbroic rocks of the Corio and Monastero metagabbro bodies in the continental Sesia–Lanzo zone of the western Italian Alps, a variety of mineral reactions that testify to prograde conditions from greenschist to eclogite-facies can be recognised. A microstructural and microchemical study of a series of samples characterized by coronitic textures and pseudomorphic replacement of the original igneous minerals has allowed the prograde reactions undergone by the rocks to be established.

In completely eclogitized coronitic samples, paragonite, blue amphibole, garnet, epidote, fine grained jadeite and chloritoid occur in plagioclase microdomains (former igneous plagioclase). The mafic mineral microdomains consist of glaucophane and garnet. Complexly-zoned amphiboles constrain changing metamorphic conditions: cores of pre-Alpine brown hornblende and/or tremolite are preserved inside rims of a sodic–calcic amphibole that are in turn surrounded by a sodic amphibole. The main high-pressure mineral assemblage, as seen in mylonites, involves glaucophane, chloritoid, epidote, garnet ± phengite, ± paragonite. Some layers within the gabbro contain garnet, omphacite, ± glaucophane, and acid dykes crosscutting the gabbro body contain jadeite, quartz, garnet, epidote and paragonite.

The presence of chloritoid-bearing high-pressure assemblages reflects hydration of the gabbros during their pre-Alpine exhumation prior to subduction, as well as the composition of the microdomains operating during subduction. The pressure and temperature conditions of gabbro transformation during subduction are inferred to be 450–550 °C at up to 2 GPa on the basis of the chloritoid-bearing assemblages. The factors controlling the reaction pathway to form chloritoid-bearing high-pressure assemblages in mafic rocks are inferred from these observations.  相似文献   


12.
阜平地区麻粒岩的P—T路径研究   总被引:3,自引:0,他引:3  
阜平麻粒岩分布于阜平大柳树和坊时一带的原阜平超群下亚群索家庄组花岗质片麻碉中,以不同规模的透镜体,似层状体产出。麻粒岩主要由石榴石、单斜辉石、斜方辉石、角闪石和斜长石等矿物组成,含有少量的石英。根据岩石的矿物组合和结构特征可将其变质作用演化上个阶段;①石榴石中的角闪石、斜长石、单斜辉石等变质矿物包体代表峰前阶段;②粗粒平衡共生的角闪石、单斜辉石、石榴石、斜长石±紫苏辉石±石英等代表了峰期变质阶段;③ 石榴石变斑晶后生合品反应边中外侧细粒斜方辉石、斜长石和石英集合体代表了峰后变质阶段;④ 后生合晶反应边中内侧角闪石、斜长石等,代表了晚期退化变质阶段。这四个变质阶段演化的P-T条件依次为:峰前阶段636℃、0.824GPa.峰期阶段751℃~ 833℃、0.854~ 1.085GPa,峰后阶段670℃~ 740℃、 0.55~0.70GPa,退化变质阶段665℃、0.727GPa.构成了一条顺时针的P-T路径,反映了该变质区从早期褶皱增厚到晚期构造抬升的地质动力学过程。  相似文献   

13.
Recent petrological studies on high‐pressure (HP)–ultrahigh‐pressure (UHP) metamorphic rocks in the Moldanubian Zone, mainly utilizing compositional zoning and solid phase inclusions in garnet from a variety of lithologies, have established a prograde history involving subduction and subsequent granulite facies metamorphism during the Variscan Orogeny. Two temporally separate metamorphic events are developed rather than a single P–T loop for the HP–UHP metamorphism and amphibolite–granulite facies overprint in the Moldanubian Zone. Here further evidence is presented that the granulite facies metamorphism occurred after the HP–UHP rocks had been exhumed to different levels of the middle or upper crust. A medium‐temperature eclogite that is part of a series of tectonic blocks and lenses within migmatites contains a well‐preserved eclogite facies assemblage with omphacite and prograde zoned garnet. Omphacite is partly replaced by a symplectite of diopside + plagioclase + amphibole. Garnet and omphacite equilibria and pseudosection calculations indicate that the HP metamorphism occurred at relatively low temperature conditions of ~600 °C at 2.0–2.2 GPa. The striking feature of the rocks is the presence of garnet porphyroblasts with veins filled by a granulite facies assemblage of olivine, spinel and Ca‐rich plagioclase. These minerals occur as a symplectite forming symmetric zones, a central zone rich in olivine that is separated from the host garnet by two marginal zones consisting of plagioclase with small amounts of spinel. Mineral textures in the veins show that they were first filled mostly by calcic amphibole, which was later transformed into granulite facies assemblages. The olivine‐spinel equilibria and pseudosection calculations indicate temperatures of ~850–900 °C at pressure below 0.7 GPa. The preservation of eclogite facies assemblages implies that the granulite facies overprint was a short‐lived process. The new results point to a geodynamic model where HP–UHP rocks are exhumed to amphibolite facies conditions with subsequent granulite facies heating by mantle‐derived magma in the middle and upper crust.  相似文献   

14.
Troctolitic gabbros from Valle Fértil and La Huerta Ranges, San Juan Province, NW‐Argentina exhibit multi‐layer corona textures between cumulus olivine and plagioclase. The corona mineral sequence, which varies in the total thickness from 0.5 to 1 mm, comprises either an anhydrous corona type I with olivine|orthopyroxene|clinopyroxene+spinel symplectite|plagioclase or a hydrous corona type II with olivine|orthopyroxene|amphibole|amphibole+spinel symplectite|plagioclase. The anhydrous corona type I formed by metamorphic replacement of primary olivine and plagioclase, in the absence of any fluid/melt phase at <840 °C. Diffusion controlled metamorphic solid‐state replacement is mainly governed by the chemical potential gradients at the interface of reactant olivine and plagioclase and orthopyroxene and plagioclase. Thus, the thermodynamic incompatibility of the reactant minerals at the gabbro–granulite transition and the phase equilibria of the coronitic assemblage during subsequent cooling were modelled using quantitative μMgO–μCaO phase diagrams. Mineral reaction textures of the anhydrous corona type I indicate an inward migration of orthopyroxene on the expense of olivine, while clinopyroxene+spinel symplectite grows outward to replace plagioclase. Mineral textures of the hydrous corona type II indicate the presence of an interstitial liquid trapped between cumulus olivine and plagioclase that reacts with olivine to produce a rim of peritectic orthopyroxene around olivine. Two amphibole types are distinguished: an inclusion free, brownish amphibole I is enriched in trace elements and REEs relative to green amphibole II. Amphibole I evolves from an intercumulus liquid between peritectic orthopyroxene and plagioclase. Discrete layers of green amphibole II occur as inclusion‐free rims and amphibole II+spinel symplectites. Mineral textures and geochemical patterns indicate a metamorphic origin for amphibole II, where orthopyroxene was replaced to form an inner inclusion‐free amphibole II layer, while clinopyroxene and plagioclase were replaced to form an outer amphibole+spinel symplectite layer, at <770 °C. Calculation of the possible net reactions by considering NCKFMASH components indicates that the layer bulk composition cannot be modelled as a ‘closed’ system although in all cases the gain and loss of elements within the multi‐layer coronas (except H2O, Na2O) is very small and the main uncertainties may arise from slight chemical zoning of the respective minerals. Local oxidizing conditions led to the formation of orthopyroxene+magnetite symplectite enveloping and/or replacing olivine. The sequence of corona reaction textures indicates a counter clockwise P–T path at the gabbro–granulite transition at 5–6.5 kbar and temperatures below 900 °C.  相似文献   

15.
The metamorphic evolution of a granulitized eclogite from the Phung Chu Valley (Eastern Himalaya) was reconstructed combining microstructural observations, conventional thermobarometry and quantitative pseudosection analysis. The granulitized eclogite consists of clinopyroxene, plagioclase, garnet, brown amphibole, and minor orthopyroxene, biotite, ilmenite and quartz. On the basis of microstructural observations and mineral relationships, four metamorphic stages and related mineral assemblages have been recognized: (i) M1 eclogite‐facies assemblage, consisting of garnet, omphacite (now replaced by a clinopyroxene + plagioclase symplectite) and phengite (replaced by biotite +plagioclase symplectite); (ii) M2 granulite‐facies assemblage, represented by clinopyroxene, orthopyroxene, garnet, plagioclase and accessory ilmenite; (iii) M3 plagioclase + orthopyroxene corona developed around garnet, and (iv) M4 brown amphibole + plagioclase assemblage in the rock matrix. Because of the nearly complete lack of eclogitic mineral relics, M1 conditions can be only loosely constrained at >1.5 GPa and >580 °C. In contrast, assemblage M2 tightly constrains the peak granulitic stage at 0.8–1.0 GPa and >750 °C. The second granulitic assemblage M3, represented by the plagioclase + orthopyroxene corona, formed at lower pressures (~0.4 GPa and ~750 °C). During the subsequent exhumation, the granulitized eclogite experienced significant cooling to nearly 700 °C, marked by the appearance of brown amphibole and plagioclase (M4) in the rock matrix. U‐Pb SHRIMP analyses on low‐U rims of zircon from an eclogite of the same locality suggest an age of 13–14 Ma for the M3 stage. The resulting decompressional clockwise P–T path of the Ama Drime eclogite is characterized by nearly isothermal decompression from >1.5 GPa to ~0.4 GPa, followed by nearly isobaric cooling from ~775 °C to ~710 °C. Modelling of phase equilibria by a calculated petrogenetic grid and conventional thermobarometry on a biotite‐garnet‐sillimanite metapelite hosted in the country rock granitic orthogneiss extends the inferred P–T trajectory down to ~630 °C and ~0.3 GPa.  相似文献   

16.
The basement of the central Qilian fold belt exposed along the Minhe-Ledu highway consists of psammitic schists, metabasitic rocks, and crystalline limestone. Migmatitic rocks occur sporadically among psammitic schist and metabasitic rocks. The mineral assemblage of psammitic schist is muscovite + biotite + feldspar + quartz ± tourmaline ± titanite ± sillimanite and that of metabasitic rocks is amphibole + plagioclase + biotite ± apatite ± magnetite ± pyroxene ± garnet ± quartz. The migmatitic rock consists of leucosome and restite of various volume proportions; the former consists of muscovite + alkaline feldspar + quartz ± garnet ± plagioclase while the latter is either fragments of psammitic schist or those of metabasitic rock. The crystalline limestone consists of calcite that has been partly replaced by olivine. The olivine was subsequently altered to serpentine. Weak deformations as indicated by cleavages and fractures were imposed prominently on the psammitic schists, occasionally on me  相似文献   

17.
大量来自于华北陆块的高压变质岩被发现发育于苏鲁构造杂岩带中,给俯冲带上盘物质如何卷入陆-陆俯冲碰撞作用的研究带来新的契机.通过对乳山地区(含榴)斜长角闪岩进行岩石学、矿物化学及相平衡模拟的研究,发现其保留有3个不同变质演化阶段的矿物组合,峰前矿物组合为粗粒石榴子石+斜长石+角闪石+石英+钛铁矿;峰期矿物组合由石榴子石+单斜辉石+斜长石+角闪石+石英+钛铁矿组成,为典型高角闪岩相矿物组合;峰后退变质阶段矿物组合为角闪石+斜长石+石英+石榴子石+钛铁矿,发育有典型的“白眼圈”结构.相平衡模拟与温压计算表明,乳山午极石榴斜长角闪岩峰前变质阶段的P-T条件分别为P=6.4~7.0 kbar、T=610~640℃,表明其俯冲至30 km左右的地壳深度;峰期变质阶段P-T条件分别为P=9.3~10.0 kbar、T=700~730℃,表明其已俯冲至36~40 km的地壳深度,峰后退变质阶段P-T条件分别为P=5.2~5.8 kbar、T=680~710℃.锆石U-Pb定年结果表明乳山午极石榴斜长角闪岩原岩时代为1 734±24 Ma,龙角山水库斜长角闪岩变质时代为1 849±28 Ma,研究表明二者均来源于华北构造岩片.结合前人研究资料,推测乳山地区石榴斜长角闪岩原岩可能经历三叠纪俯冲作用并发生变质;其与杂岩带中来自华南的构造岩片发生混杂,共同构成华北-华南板块间宽约80~100 km的构造杂岩带.   相似文献   

18.
浙西南八都群泥质麻粒岩的变质演化与pT轨迹   总被引:2,自引:0,他引:2  
浙西南古元古界八都群是目前华夏地块最古老的变质基底,以往研究认为其变质程度仅达角闪岩相。近来在对遂昌地区八都群富铝片麻岩的研究过程中,发现了具有"石榴石+夕线石+正/反条纹长石+黑云母"特征组合的泥质麻粒岩,表明该地体曾经历麻粒岩相变质改造。通过岩相学与矿物化学分析,确定该岩石经历了3个阶段的演化过程,即:早期进变质阶段(M1),形成"石榴石+黑云母+白云母+夕线石+斜长石+石英"的矿物组合;变质峰期阶段(M2-3),形成"石榴石+夕线石+三元长石+黑云母+石英"的矿物组合;峰期后降压冷却阶段(M4),形成"黑云母+白云母+新生斜长石+石英"的矿物组合。岩石中石榴石普遍发育与降温过程有关的扩散成分环带和与降压过程有关的斜长石后生合晶。通过石榴石-黑云母温度计和GASP压力计估算变质峰期的温压条件为800~850℃、0.6~0.7 GPa,峰期后退变质阶段的温压条件为560~590℃、0.25~0.33 GPa,具有顺时针样式的pT演化轨迹,反映一种陆壳碰撞增厚、后又拉伸减薄的动力学过程。  相似文献   

19.
柴北缘都兰高压麻粒岩的变质演化及形成的动力学背景   总被引:7,自引:5,他引:2  
于胜尧  张建新  李金平 《岩石学报》2009,25(9):2224-2234
在柴北缘-阿尔金HP/UHP变质带东端,新识别出一个高压麻粒岩单元.高压基性麻粒岩是高压麻粒岩单元的主体,还包括少量高压中酸性麻粒岩.高压基性麻粒岩主要由平衡共生的石榴子石、单斜辉石、斜长石组成,还含有不等量的蓝晶石、角闪石、石英、金红石、黝帘石/斜黝帘石、钛铁矿、方柱石等矿物.高压长英质麻粒岩主要包括石榴子石、蓝晶石、钾长石、斜长石、石英等矿物,并具有少量的单斜辉石和角闪石.岩石学和矿物学数据显示高压麻粒岩经历了多阶段的变质演化,温压计算获得峰期高压麻粒岩相的变质条件为1.40~1.85GPa和800~925℃.退变质高角闪岩相的变质条件为P=0.80~1.05GPa和T=580~695℃:进一步的退变质作用发生在低角闪岩相/绿片岩相条件下(<0.8GPa和<550℃).岩石学、矿物学及年代学资料研究表明都兰地区的高压麻粒岩具有与相邻榴辉岩不同的变质演化历史,而不是榴辉岩在抬升过程中热松弛作用所致.高压麻粒岩可能形成于与陆壳俯冲相关的造山带增厚的陆壳根部环境,形成的深度为50~70km.  相似文献   

20.
定结(Dinggye)位于藏南高喜马拉雅结晶岩系的中部,研究该区域麻粒岩的变质P-T轨迹对于理解青藏高原的碰撞和抬升过程至关重要.通过对该地区的高压基性麻粒岩(退变榴辉岩)的岩相学观察,确定了4期矿物组合:(1)峰期榴辉岩相矿物组合(M1)由石榴子石(核部)+绿辉石(假象)+石英+金红石组成;(2)高压麻粒岩相矿物组合(M2)主要由石榴子石(幔部)+单斜辉石+斜长石+钛铁矿+角闪石+黑云母组成;(3)中压麻粒岩相矿物组合(M3)由石榴子石(边缘)+斜方辉石+斜长石+钛铁矿+黑云母组成;(4)角闪岩相矿物组合(M4)主要由角闪石+斜长石组成.在NCFMASHTO体系下,用THERMOCALC软件对该高压基性麻粒岩进行了热力学模拟.结合传统温压计和平均温压计计算结果,求得M2、M3、M4阶段的温压条件分别为786~826 ℃、0.78~0.96 GPa;798~850 ℃、0.71~0.75 GPa;610~666 ℃、0.51~0.60 GPa,这指示了一条以峰期后近等温降压(ITD)为特征的顺时针P-T轨迹.结合已有地质资料,表明定结高压基性麻粒岩(退变榴辉岩)是喜马拉雅碰撞造山的产物,峰期后经历了近等温降压的构造抬升过程.   相似文献   

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