globalchange  > 气候变化事实与影响
CSCD记录号: CSCD:5086247
论文题名:
康滇地区燕山期岩石圈演化-来自东川基性岩脉SHIRMP锆石U-Pb年龄和地球化学制约
其他题名: The Yanshanian Lithospheric Evolution in the Kangdian Area: Restriction from SHRIMP Zircons U-Pb Age and Geochemistry of Mafic Dykes in Dongchuan,Yunan Province,SW China
作者: 王生伟1; 廖震文1; 孙晓明2; 周清1; 王彪3; 王子正1; 郭阳1; 蒋小芳1; 杨波1; 陆生林1
刊名: 地质学报
ISSN: 0001-5717
出版年: 2014
卷: 88, 期:3, 页码:299-317
语种: 中文
中文关键词: 锆石SHRIMP U-Pb定年 ; 基性岩脉 ; 燕山期 ; 地幔柱 ; 播卡金矿 ; 东川铜矿
英文关键词: SHRIMP ; U-Pb dating for zircons ; mafic dykes ; Yanshanian ; mantle plume ; Boka gold deposit ; Dongchuan copper deposit
WOS学科分类: MULTIDISCIPLINARY SCIENCES
WOS研究方向: Science & Technology - Other Topics
中文摘要: 中生代是全球岩浆活动的高峰期,也是最近研究的热点,但在我国西南的康滇地区,鲜有报道。近年来,通过野外地质填图和综合研究工作,在康滇地区中部,云南省东川地区识别出一系列燕山期基性岩脉,SHRIMP锆石U-Pb年龄为128.21.5Ma(MSWD=2.0,n=16),与长江中下游、华北地区早白垩世大规模岩浆活动及同期全球性太平洋超级地幔热柱事件高度一致。基性岩脉岩石化学显示为低SiO_2(44.3%~47.28%,平均值为45.68%)、高MgO含量(6.8%~9.64%,平均值为7.99%)和高Mg~# 值(65.3~70.4,平均值为67.9),Na_2O/K_2O>1,总体上与拉斑玄武岩的岩石化学相似。原始岩浆为石榴子石二辉橄榄岩较低部分熔融(~2.2%)与尖晶石二辉橄榄岩较高部分熔融(15%~20%)混合形成,岩浆演化过程中发生过轻度的橄榄石、斜方辉石和铬铁矿结晶分异。基性岩脉的轻/重稀土元素分异不明显,原始地幔标准化配分模式呈向右平缓倾斜的曲线;微量元素地球化学参数与OIB相似,MORB标准化配分模式图中没有明显的高场强元素,如Nb、Ta、Zr和Hf的异常,但Ba、K相对富集。基性岩脉具有较高的(~(87)Sr/~(86)Sr)i初始比值,且变化较明显,为0.71003~0.71499,可能为后期较强的热液蚀变作用所致,根据锆石年龄计算出来的epsilon_(Nd)(t)值为-1.5~3.1(均值为2.4),反映了其初始岩浆的同位素组成。原始岩浆演化过程中没有明显的岩石圈物质混染,但可能有较多相对亏损的软流圈地幔物质加入,导致较高的epsilon_(Nd)(t)值和平缓的稀土元素配分模式。康滇中部地区白垩纪基性岩脉的成因可能与大尺度的岩石圈减薄无关,可能是白垩纪全球性太平洋超级地幔柱的分支(幔枝构造-地幔柱的第三级或更高级构造单元)。由于其规模较小,且岩石圈较厚,未能形成大规模的大陆溢流玄武岩,仅能选择构造薄弱部位快速侵位冷却,形成具有独特细晶结构的基性岩脉。
英文摘要: Mesozoic era is the period during which intensive magmatic activities occurred,and has become the research focus for years.But few had been reported in Kangdian area,Southwest of China.Through geological mapping in field and laboratory test in central Kangdian area in recent years,a series of Yanshanian mafic dykes were identified in the Dongchuan area,Yunnan Province.The SHRIMP U-Pb age for zircons is 128.21.5Ma(MSWD=2.0,n=16),which are highly in accordance with the large scale magmatic activities in the middle and lower reaches of Yangtze River,north China craton,and the global pacific superplume events for early Cretaceous.The petrochemistry of Cretaceous mafic dykes are characterized by low SiO_2(44.3%~47.28%,mean value for 45.68%)and high MgO (6.8%~9.64%, average for 7.99%)contents,and high values of Mg~#(65.3~70.4,average for 67.9),and Na_2O/K_2O> 1,which are similar to the petrochemistry of tholeiitic basalts.The primitive magma reprresents small melt fractions(~2.2%)from garnet-facies combined with large melt fractions(15%~20%)from spinelfacies, and experienced slightly crystallization and differentiation of olivine,orthopyroxene and chromite during the evolution.The differentiation of LREE and HREE is not obviously,and the primitive mantle normalized patterns exhibit gently right-dipping curves.The geochemical parameters of trace elements are similar to that of the OIB,and the MORB normalized patterns have no obviously anomaly of high fieldstrength elements,such as Nb,Ta,Zr,and Hf except the enrichment of Ba and K.The mafic dykes have relatively highly and frequently variational initial(~(87) Sr/~(86) Sr)iratio(0.71003~0.71499)which may be resulted from the relatively intensively hydrothermal alteration,and the epsilon_(Nd)t values calculated according to the U-Pb Age vary from -1.5to 3.1(average for 2.4)reflecting the actually isotopic composition of primitive magma.The original magma may be contaminated without significant lithospheric material,but probably mixed in more relatively depleted asthenospheric mantle material resulting in high values of epsilon_(Nd)(t) and gentle REE distribution patterns.The genesis of Cretaceous mafic dykes in central Kangdian area maybe have no relationship with the large scale thinning of lithosphere,but may be a branch(the third of more advanced level tectonic unit of mantle plume)of global contemporaneously pacific superplume.Large scale continental flood basalt could not come into being because of the small-scale mantle branch and thick and heavy lithosphere,and the original magma could just only select the tectonic weak belts intruding and then cooling quickly,forming the unique mafic dykes with fine grained texture.
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/156595
Appears in Collections:气候变化事实与影响

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作者单位: 1.中国地质调查局成都地质矿产研究所, 成都, 四川 610081, 中国
2.中山大学海洋学院, 广州, 广东 510275, 中国
3.云南金山矿业有限公司, 昆明, 云南 654100, 中国

Recommended Citation:
王生伟,廖震文,孙晓明,等. 康滇地区燕山期岩石圈演化-来自东川基性岩脉SHIRMP锆石U-Pb年龄和地球化学制约[J]. 地质学报,2014-01-01,88(3):299-317
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