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内蒙古白乃庙铜矿区含矿中酸性侵入岩LA-ICP-MS锆石U-Pb年龄、地球化学特征及成矿时代

赵利刚, 李承东, 常青松, 高学生, 许雅雯, 樊建廷, 张阔

赵利刚, 李承东, 常青松, 高学生, 许雅雯, 樊建廷, 张阔. 2016: 内蒙古白乃庙铜矿区含矿中酸性侵入岩LA-ICP-MS锆石U-Pb年龄、地球化学特征及成矿时代. 地质通报, 35(4): 542-552.
引用本文: 赵利刚, 李承东, 常青松, 高学生, 许雅雯, 樊建廷, 张阔. 2016: 内蒙古白乃庙铜矿区含矿中酸性侵入岩LA-ICP-MS锆石U-Pb年龄、地球化学特征及成矿时代. 地质通报, 35(4): 542-552.
ZHAO Ligang, LI Chengdong, CHANG Qingsong, GAO Xuesheng, XU Yawen, FAN Jianting, ZHANG Kuo. 2016: A tentative discussion on zircon U-Pb geochronology and geochemistry of ore-bearing intermediate-acid intrusive rocks in the Bainaimiao copper ore district and the metallogenic epoch. Geological Bulletin of China, 35(4): 542-552.
Citation: ZHAO Ligang, LI Chengdong, CHANG Qingsong, GAO Xuesheng, XU Yawen, FAN Jianting, ZHANG Kuo. 2016: A tentative discussion on zircon U-Pb geochronology and geochemistry of ore-bearing intermediate-acid intrusive rocks in the Bainaimiao copper ore district and the metallogenic epoch. Geological Bulletin of China, 35(4): 542-552.

内蒙古白乃庙铜矿区含矿中酸性侵入岩LA-ICP-MS锆石U-Pb年龄、地球化学特征及成矿时代

基金项目: 

国家自然科学基金项目 41272065

中国地质调查局项目 1212010811004

中国地质调查局项目 1212010561510

中国地质调查局项目 1212010811061

中国地质调查局项目 1212011120330

详细信息
    作者简介:

    赵利刚(1981-),男,硕士,助理研究员,从事区域成矿规律研究。E-mail:zhaoligang981@126.com

  • 中图分类号: P618.41;P597+.3

A tentative discussion on zircon U-Pb geochronology and geochemistry of ore-bearing intermediate-acid intrusive rocks in the Bainaimiao copper ore district and the metallogenic epoch

  • 摘要:

    为了限定白乃庙铜矿的成矿时代和成矿环境,对含矿中酸性岩类进行同位素年龄和岩石地球化学研究。获得的3个含矿花岗闪长岩样品的LA-MC-ICP-MS锆石U-Pb年龄分别为421.5±1.8Ma、438.6±3.4Ma和459.3±3.6Ma。含矿中酸性岩类属于过铝质钙碱性系列岩石,稀土元素曲线显示为轻稀土元素富集型,具有弱正Eu异常,微量元素曲线表现为明显的Ta、Nb亏损。综合含矿中酸性岩类时代、地球化学特征及区域构造背景,认为白乃庙铜矿总体形成于早古生代,具有多期成矿的特点,成矿作用与古蒙古洋早古生代俯冲消减事件有关。

    Abstract:

    In order to determine the metallogenic epoch and ore-forming environment of the Bainaimiao copper deposit, the au-thors carried out research on isotope geochronology and geochemistry of ore-bearing intermediate-acid rocks. LA-MC-ICPMS zir-con U-Pb dating shows that the ages of three ore-bearing granodiorites samples are 421.5±1.8Ma, 438.6±3.4Ma and 459.3±3.6Ma respectively. These rocks have peraluminous calc-lkaline characteristics, and are enriched in LREE. There is a weak positive anomaly of Eu. The trace elements are obviously depleted in Ta and Nb. According to comprehensive ages and geochemical characteristics of ore-bearing granodiorites and the regional tectonic background, the authors consider that the Bainaimiao copper deposit was on the whole formed in the early Paleozoic and characterized by multi-period mineralization. In addition, the metallogenesis was related to the subduction event of ancient Mongolia Ocean in the Early Paleozoic.

  • 班公湖-怒江结合带(BNS)位于青藏高原北部, 西起班公湖, 向东经改则、东巧、丁青与昌宁-孟连带相连, 向西延伸向克什米尔, 与东地中海特提斯蛇绿岩相连, 在中国境内长达2000km, 是青藏高原一条重要的结合带[1]。班公湖-怒江结合带中存在规模巨大的蛇绿岩、增生杂岩, 以及夹持其中的残余弧或岛弧变质地块, 发育韧性剪切带、逆冲断层、构造混杂岩、复杂褶皱等多种构造行迹, 沿断裂还发育晚白垩世-新近纪陆相火山岩、新生代陆相走滑拉分盆地和第四纪谷地[2]。为更好地认识班公湖-怒江结合带内物质的形成机制及相关的构造背景, 需要对其开展深入的研究。

    通过对沉积岩中的碎屑锆石进行U-Pb定年分析, 可有效地探讨其源区并开展历史时期的古大陆重建。本文对该地区早白垩统多尼组(原1:25万区调划为上三叠统巫嘎组)砂岩的碎屑锆石开展了形态学及U-Pb年代学研究, 为揭示班公湖-怒江缝合带内该地层单元的物源区提供新的证据, 同时为探讨班公湖-怒江结合带的构造演化史提供一定的依据。

    多尼组出露于改则县南西的洞错一带(图 1), 呈近东西向带状分布, 区域上为一套灰色-深灰色含煤碎屑岩地层。岩性主要为泥岩、砂岩、板岩、页岩、粉砂岩、石英砂岩、长石石英砂岩, 局部含火山岩, 产植物、菊石、双壳类、腹足类、珊瑚、层孔虫、海胆、腕足类、介形类等化石。根据野外实测剖面特征, 研究区多尼组主要岩性为深灰色、灰色泥质粉砂岩、粉砂岩, 局部夹灰色钙质岩屑石英砂岩、长石石英砂岩及少量灰岩等, 在灰岩中局部可见生物碎屑, 未见完整化石。

    图  1  多尼组分布略图
    Figure  1.  Distribution of Duoni Formation

    样品采集于西藏改则县洞错乡南约15km处欧仁一带的PM009地层剖面上。样品岩性主要为灰色中细粒长石石英砂岩, 主要由石英(84%)、长石(13%)、岩屑(2%)、胶结物等组成, 颗粒大小以0.15~ 0.60mm为主, 分选性好, 磨圆度一般, 呈次棱角状, 次圆状。石英主要为单晶石英, 长石类以斜长石为主, 岩屑成分主要为灰岩、泥岩、粉砂岩等, 孔隙式胶结(图 2)。

    图  2  样品野外露头
    Figure  2.  The outcrop of the sample

    样品锆石的分离和挑选由廊坊市地岩矿物分选有限公司完成, 在双目镜下挑选出晶形和透明度好的锆石颗粒, 粘贴在环氧树脂表面, 抛光后将锆石进行透射光、放射光和阴极发光显微照相。锆石制靶及阴极发光图像制备由北京中美美科科技有限公司完成, LA-ICP-MS锆石U-Pb定年测试分析在中国地质大学(武汉)地质过程与矿产资源国家重点实验室完成。其中LA-ICP-MS锆石U-Pb同位素年龄分析仪器为Elan6100DRC型激光剥蚀系统, 激光器为193nmArF准分子激光器。激光剥蚀斑束直径为32μm, 激光剥蚀深度为20~40μm。实验中采用氦气为剥蚀物质的载气, 采用标准锆石91500为外标, 采用美国国家标准物质局人工合成硅酸盐玻璃NIST SRM610为内标。详细的实验原理、流程和仪器参数见Yuan等[3]的文献。

    多尼组砂岩碎屑锆石U-Pb年龄数据见表 1。在多尼组砂岩样品中, 随机挑选71粒锆石进行分析。从阴极发光(CL)图像(图 3)看出, 锆石颗粒大小在50~180μm之间。研究表明, 不同成因的锆石具有不同的Th/U值, 岩浆锆石的Th/U值较大(一般大于0.4);而变质锆石的Th/U值较小(一般小于0.1)[4]。多尼组砂岩碎屑锆石的Th/U值较大, 51颗锆石的Th/U值大于0.4, 平均值约为0.64, 说明锆石大部分为岩浆成因, 部分可能为变质成因。

    表  1  洞错地区多尼组砂岩碎屑锆石U-Th-Pb同位素年龄数据
    Table  1.  Detrital zircons U-Th-Pb data of sandstones in the Duoni Formation from Dongcuo area
    下载: 导出CSV 
    | 显示表格
    图  3  洞错地区多尼组砂岩碎屑锆石阴极发光图(年龄单位为Ma)
    Figure  3.  Cathodoluminescene images of detrital zircons of sandstones in the Duoni Formation from Dongcuo area

    对于年轻锆石而言, 207Pb/206Pb年龄误差较大, 而对于古老锆石而言, 206Pb/238U年龄的误差较大。本文在年龄选取时, 对小于1000Ma的锆石, 选取206Pb/238U计算年龄值; 年龄大于1000Ma的锆石, 选取207Pb/206Pb计算年龄值[5]。从碎屑锆石年龄分布频率直方图(图 4)可以看出, 多尼组砂岩碎屑锆石年龄值分布在125~3261Ma之间。其中125~1000Ma的锆石有37粒, 最年轻年龄值为125Ma(测点号为PM009/26-17, 和谐度为97%); 大于1000Ma的年龄值为34个, 最老年龄值为3261Ma(测点号为PM009/26-35, 和谐度为96%)。碎屑锆石主要年龄区间(或峰值)为3261Ma、2739~2335Ma、1880~ 1750Ma、1006~657Ma、577~510Ma、456~409Ma和252~202Ma(表 1)。

    图  4  青藏高原碎屑锆石U-Pb年龄频率图(据参考文献[15]修改)
    Figure  4.  Age distributions of detrital zircons from the Tibetan Plateau

    多尼组的碎屑锆石年龄数据跨度较大, 不同的年龄峰值代表不同的地质意义。

    (1) 3261Ma, 大于3000Ma的碎屑锆石在样品中仅出现1粒, 表明物源区存在古老地壳的残留[6], 为研究班怒带物源区的形成和演化奠定了物质基础。

    (2) 2739~2335Ma年龄组包含10颗碎屑锆石, 代表物源区可能存在构造-岩浆事件。从全球地质背景看, 华北、北美、瑞芬及其他克拉通在2.5Ga左右发生了大规模的拼合事件(如Grenville事件、Pan-Afriean事件等), 形成有记载的最古老的超级大陆[7]。近年来, 众多学者在羌塘盆地发现1.8~ 2.7Ga的锆石, 如盆地中央隆起带差桑-茶布一带的戈木日群[8], 盆地西南部龙木错-双湖缝合带南侧荣玛温泉地区石英岩[9], 以及羌塘盆地北部唐古拉山温泉地区雁石坪群[10]。暗示羌塘盆地有太古宙的地壳物质, 支持羌塘盆地存在前寒武纪结晶基底的可能性。这也说明, 研究区多尼组的物源很可能为北部的南羌塘地块。

    (3) 1880~1750Ma年龄组包含16颗碎屑锆石, 指示源区存在古元古代早期的构造热事件。研究表明[11-12], Columbia超级大陆各个组成陆块是在2.1~ 1.8Ga碰撞事件中拼合在一起的, 并在中元古代早-中期Columbia超级大陆边缘向外增生, 随后开始裂解, 1880~1750Ma可能也是羌塘结晶基底的主期变质年龄。

    (4) 1006~657Ma年龄组包含13颗碎屑锆石, 该期是全球构造运动演化的一系列重大热事件时期, Grenvillian碰撞造山期(1000~900Ma)形成了罗迪尼亚超大陆, 在850~750Ma开始隆升、裂解[13]。在700Ma发生分解, 反映了早期的泛非碰撞, 中国大陆主要的构造表现为普遍存在张裂, 在羌塘结晶基底的戈木日群中发现1016~929Ma的热事件, 说明此时羌塘地块存在构造热事件[1]

    (5) 577~510Ma年龄组包含5颗碎屑锆石, 指示了新元古代晚期的一次构造热事件, 该组年龄值可能是泛非造山运动(550±100Ma)在物源区的记录。

    (6) 456~409Ma年龄组包含8颗碎屑锆石, 可能指示了冈瓦纳大陆北缘在早泥盆世-奥陶纪的增生过程[14]

    (7) 252~202Ma年龄组包含5颗碎屑锆石, 指示拉萨地块与羌塘地块之间发生了俯冲消减及碰撞与缝合作用。

    (8) 最小年龄125Ma和126Ma, 可能代表该套地层的沉积时代, 说明该套地层于早白垩世沉积形成。

    班公湖地区中生代沙木罗组和日松组碎屑锆石显示, 其沉积物的物源区可能为北部的羌塘地块[1]。商旭地区中生代沉积物中含有部分来自其北部南羌塘地块中的物质, 暗示班公湖-怒江洋壳在中生代向北俯冲[15]。南羌塘与特提斯喜马拉雅沉积变质岩的碎屑锆石年龄具有相似的频率分布特征, 且二者的主要年龄峰值为530Ma、950Ma, 其与高喜马拉雅新元古代沉积变质岩碎屑锆石的年龄主峰一致, 表明其在古生代与高喜马拉雅相邻; 同时, 拉萨地块与澳大利亚西部的碎屑锆石具有一致的年龄峰值1170Ma, 表明拉萨地块可能在石炭纪-二叠纪与澳大利亚西北部毗邻[16]。从锆石年龄分布频率图可见, 研究区碎屑锆石年龄分布直方图与南羌塘更具相似性, 西藏洞错地区班公湖-怒江结合带早白垩世沉积物的物源可能来自北部的南羌塘地块。

    (1) 班公湖地区早白垩世多尼组砂岩碎屑锆石LA-ICP-MS U-Pb测年结果显示, 碎屑锆石最年轻颗粒的年龄值为125Ma, 说明其形成时代晚于早白垩世; 最老碎屑锆石年龄值为3261Ma, 表明物源区存在古老地壳的残留。

    (2) 将研究区早白垩世碎屑锆石的年龄分布频率图与南部的拉萨地块及北部的南羌塘地块对比, 其与南羌塘地块更具相似性, 说明研究区的早白垩世沉积物的物源可能来自北部的南羌塘地块。

    致谢: 成文过程中天津地质矿产研究所李俊建、周红英研究员提出了宝贵意见,耿建珍、张建工程师在实验测试方面给予了帮助,在此表示衷心感谢。
  • 图  1   内蒙古中部地区早古生代构造格局图(a)及白乃庙铜矿地质简图(b)(a据参考文献①修改,b据参考文献[7-8,12]修改)

    Figure  1.   The Early Paleozoic tectonic framework of the central part of Inner Mongolia (a) and geological sketch map of the Bainaimiao copper deposit (b)

    图  2   白乃庙铜矿含矿中酸性侵入岩岩石特征

    a—花岗闪长岩中的白乃庙群绿片岩捕虏体;b—片理化孔雀石化花岗闪长岩;c、d—正交偏光。Pl—斜长石;Mc—微斜长石;Q—石英;Ms—黑云母

    Figure  2.   Petrology features of intermediate-acid rocks in Bainaimiao copper deposit

    图  3   白乃庙铜矿含矿中酸性侵入岩代表性锆石CL图像及测点位置

    Figure  3.   Representative CL images and dating spots of zircons from intermediate-acid rocks in the Bainaimiao copper deposit

    图  4   白乃庙铜矿含矿中酸性侵入岩锆石U-Pb谐和图

    Figure  4.   U-Pb concordant curves of zircons from intermediateacid rocks in the Bainaimiao copper deposit

    图  5   白乃庙铜矿中酸性岩类A/CNK-A/NK判别图(a)和TAS分类图解(b)

    Figure  5.   A/CNK-A/NK discrimination diagram (a) and TAS diagram (b) of intermediate-acid rocks in the Bainaimiao copper deposit

    图  6   白乃庙铜矿中酸性岩类稀土元素配分模式图(a)及微量元素蛛网图(b)(球粒陨石和原始地幔标准化值均据参考文献[20]

    Figure  6.   Chondrite-normalized REE patterns (a) and primitive mantle-normalized spidergrams (b) for intermediate-acid rocks in the Bainaimiao copper deposit

    图  7   白乃庙铜矿中酸性岩类Y-Nb(a)及(Yb+Nb)-Rb(b)图解[23]

    WPG—板内花岗岩;ORG—洋脊花岗岩;VAG—火山弧花岗;syn-COLG—同碰撞花岗岩

    Figure  7.   Y-Nb (a) and (Yb+Nb)-Rb (b) diagrams for intermediateacid rocks in the Bainaimiao copper deposit

    表  1   白乃庙铜矿中酸性岩类LA-MC-ICP-MS锆石U-Th-Pb同位素分析结果

    Table  1   LA-MC-ICP-MS zircon U-Th-Pb dating results of intermediate-acid rocks in the Bainaimiao copper deposit

    点号同位素含量/10-6232Th/238U同位素比值年龄/Ma
    PbU207Pb/206Pb207Pb/235U206Pb/238U207Pb/206Pb207Pb/235U206Pb/238U
    测值测值测值测值测值测值
    09NM401
    1222200.460.05530.00180.5240.0170.06870.000442673428144283
    2383330.320.05450.00160.5030.0140.06690.000539464414124173
    3403900.420.05490.00150.5100.0140.06730.000440860418114203
    4424240.440.05330.00140.4960.0130.06740.000434359409114213
    5423800.340.05520.00150.5120.0140.06730.000442159420114203
    6333340.440.05330.00150.4870.0140.06630.000434063403114142
    7484850.460.05520.00140.5070.0130.06670.000441957416114162
    8393590.370.05500.00150.5160.0140.06800.000441361422124242
    9363260.350.05520.00150.5080.0140.06680.000441862417124172
    10363430.410.05460.00140.5050.0130.06710.000439459415114192
    11403840.410.05500.00150.5100.0140.06730.000441359419114203
    12484110.330.05480.00170.5160.0160.06830.000440369423134262
    13293110.530.05530.00180.5140.0170.06730.000542671421144213
    14393660.400.05540.00150.5200.0140.06810.000442861425124253
    15343560.510.05410.00160.5090.0150.06830.000437466418124263
    16353360.430.05540.00160.5220.0150.06840.000542763427124273
    17393380.340.05530.00170.5230.0160.06850.000442668427134273
    18494020.300.05540.00150.5240.0150.06860.000442961428124283
    19353830.530.05530.00140.5180.0140.06800.000442358424114242
    20433630.320.05340.00150.5020.0150.06820.000434565413124252
    21353180.370.05460.00170.5040.0160.06690.000539668414134183
    22404000.420.05340.00140.4920.0140.06690.000434560406114172
    23631830.060.05540.00220.5220.0210.06830.000542888426174263
    24393980.460.05460.00140.5030.0130.06680.000439858414114172
    25302660.370.05430.00160.5040.0160.06730.000438567415134203
    09NM401
    1365030.650.05370.00100.4940.0100.06610.00083594140884135
    2273650.500.05560.00130.5510.0130.07120.000743551446114444
    3212880.390.05560.00170.5510.0180.07110.000843769446144435
    4273540.640.05560.00140.5420.0140.07000.000443857440124363
    51549630.120.07550.00051.7750.0160.16880.001410821410361010068
    6415621.490.05670.00300.5060.0270.06400.0012481115416224007
    7141860.470.05580.00220.5520.0230.07100.000844590446184425
    8314030.590.05530.00110.5450.0120.07080.00064254544294414
    9324280.610.05540.00110.5430.0120.07030.000743046440104384
    10222810.610.05490.00150.5480.0150.07170.000840759444124465
    11273690.630.05590.00130.5350.0120.06870.000444851435104282
    12273720.630.05680.00140.5310.0140.06720.000848454433114195
    13385000.700.05550.00080.5500.0110.07110.00124333444594438
    14202600.520.05530.00180.5490.0180.07120.000842672444154445
    09NM401
    15293860.550.05420.00110.5390.0120.07130.00073814543894445
    16324150.630.05510.00100.5440.0100.07090.00064164144184424
    17212730.520.05660.00160.5650.0170.07180.000847462455134475
    18233040.630.05600.00140.5590.0150.07160.000745356451124464
    19222880.620.05460.00140.5510.0160.07240.001239657445134517
    20182330.560.05490.00210.5470.0210.07150.001140984443174457
    21374751.180.05470.00080.5420.0130.07110.0018401344401044311
    22273410.640.05440.00120.5530.0140.07300.001438848447114549
    23192500.660.05330.00240.5360.0260.07210.00163431034362144910
    24263370.530.05440.00150.5500.0190.07270.0021388634451545213
    25263350.670.05500.00190.5500.0200.07190.001241078445164477
    26334360.790.05720.00190.5510.0160.06920.0034499734461343121
    27455951.210.06040.00090.5350.0080.06350.00036193143563972
    28243110.580.05460.00140.5500.0160.07240.001439457445134519
    29354690.720.05900.00110.5600.0110.06820.00065664145294254
    30404990.890.05540.00100.5550.0110.07190.00104294044894486
    09NM41
    1212750.580.05380.00180.5440.0200.07330.001036275441164566
    2263330.520.05460.00110.5650.0140.07510.000939547455114675
    3303610.730.05710.00090.6040.0120.07660.00094963448094765
    4293460.820.05710.00140.5850.0160.07430.001049453468134626
    5354210.730.05750.00090.6050.0120.07630.00095093548094745
    6121490.520.05860.00220.6170.0260.07640.000855082488214745
    7415290.600.05620.00070.5800.0090.07480.00064612946474654
    8131670.590.05430.00210.5630.0230.07510.000738688453184674
    9455620.850.05640.00060.5720.0080.07350.00074702345964574
    10384790.700.05510.00080.5630.0080.07420.00074153245464614
    11293690.730.05690.00100.5720.0100.07290.00074893745984534
    12334160.810.05650.00080.5660.0080.07260.00074733145574524
    13384930.630.05620.00070.5640.0070.07280.00064582745464534
    14405180.620.05630.00070.5670.0070.07300.00074642945664544
    15405280.700.05680.00070.5540.0070.07070.00074842844764404
    16465800.760.05730.00060.5690.0060.07200.00075042345754484
    17384670.780.05580.00080.5730.0100.07450.00074443146084634
    18222710.740.05490.00130.5570.0140.07350.000641052450114574
    19323700.970.05550.00090.5780.0100.07550.00064343546384694
    20374790.640.05540.00070.5650.0090.07400.00084272745574605
    21394880.820.05720.00080.5760.0130.07300.001349931462104548
    22425480.590.05590.00060.5680.0080.07380.00074462245764594
    23425640.580.05600.00050.5520.0080.07150.00084532144674455
    24243120.640.05570.00120.5660.0140.07360.000844147455114585
    25151940.540.05660.00200.5860.0220.07500.000947778468174666
    26586800.900.05590.00060.5820.0100.07540.00104502246684696
    下载: 导出CSV

    表  2   白乃庙铜矿中酸性岩类主量元素成分

    Table  2   Major element composition of intermediateacid rocks in the Bainaimiao copper deposit

    %
    样品号
    岩性
    08MD10108MD10209NM401-109NM401-209NM401-3
    花岗闪长岩花岗闪长岩
    SiO266.9365.5663.9065.7063.70
    AI2O315.0315.1216.115.4516.1
    Fe2O32.592.823.082.453.82
    FeO1.091.392.382.681.78
    CaO2.943.613.351.943.28
    MgO1.521.621.981.941.94
    K2O3.693.562.784.223.34
    Na2O2.442.143.482.743.06
    TiO20.380.420.490.440.52
    P2O50.130.130.170.150.2
    MnO0.040.060.0460.0360.058
    烧失量2.983.001.761.841.91
    total99.7799.4399.5299.5999.71
    A/CNK1.121.081.081.221.10
    δ1.571.441.882.131.98
    下载: 导出CSV

    表  3   白乃庙铜矿中酸性岩类微量元素成分

    Table  3   Trace element composition of intermediateacid rocks in the Bainaimiao copper deposit

    10-6
    样品号08MD
    101-1
    08MD
    101-2
    09NM
    401-1
    09NM
    401-2
    09NM
    401-3
    岩性花岗闪长岩花岗闪长岩
    La28.8221.7745.2038.8045.00
    Ce59.9339.2967.6068.0069.60
    Pr4.723.958.007.458.16
    Nd16.5813.8327.4026.4028.20
    Sm2.872.534.905.005.10
    Eu0.910.811.721.621.90
    Gd2.342.034.364.284.50
    Tb0.320.270.560.590.58
    Dy1.781.522.533.022.72
    Ho0.360.300.500.600.52
    Er1.040.921.381.631.46
    Tm0.170.170.220.270.24
    Yb1.311.231.561.921.67
    Lu0.210.190.260.310.26
    ZREE121.3688.80166.19159.89169.91
    LREE/HREE15.1312.3913.6211.6713.22
    (La/Sm)N6.485.555.965.015.70
    (La/Yb)N15.7512.6820.7814.5019.33
    δEu1.041.051.111.041.19
    Sr635.59547.04614.00473.00578.00
    Rb80.2856.1997.50114.50102.55
    Ba1053.45864.15684.501290.00953.00
    Th21.8314.7011.8013.2013.80
    U3.111.892.562.902.49
    Ta0.660.600.640.620.58
    Nb9.258.388.459.098.58
    Ta0.660.600.640.620.58
    Zr136.78116.72108.00122.00108.00
    Hf3.623.143.393.703.40
    Y10.308.1814.7016.6014.40
    Sr/Y61.7366.8841.7728.4940.14
    下载: 导出CSV
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  • 收稿日期:  2015-10-22
  • 修回日期:  2016-03-06
  • 网络出版日期:  2023-08-16
  • 刊出日期:  2016-03-31

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