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1.
谢昕  邹海波等 《岩石学报》2001,17(4):617-628
本文对中国东南沿海不含幔源包体的中生代玄武岩和含幔源包体的新生代玄武岩进行了微量元素和Nd-Sr-Pb同位素对比研究。中生代玄武岩呈Ta,Nb和Hf负异常,低Ce/Pb,Nb/U比值和高La/Nb比值,与岛弧火山岩和陆壳岩石的微量元素特征相类似,说明在岩浆生成和上升过程中,幔源组分受到了陆壳组分的混染。新生代玄武岩呈Ta,Nb正异常和Pb负异常,高Ce/Pb,Nb/U比值和低La/Nb比值,与海岛玄武岩(OIB)相类似,Nd-Sr同位素成分与夏威夷玄武岩类似,因而它们未受明显的陆壳混染。^143Nd/^144Nd与^206Pb/^204Pb之间的负相关关系和^87Sr/^86Sr与^206Pb/^204Pb之间的正相关关系说明本区新生代玄武岩起源于中等亏损程度的软流圈地幔,并与EMII富集地幔组分发生了混合。  相似文献   

2.
梁华英  王秀璋 《矿物学报》2001,21(2):246-250
大沟谷金矿床产于震旦系乐晶峡群钠长石岩带底部陡倾斜钠长石岩中。金矿床铅同位素组成变化大^206Pb/^204Pb17.356-19.306,^207Pb/^204Pb15.330-15.862,^208Pb/^204Pb37.532-39.957。u值在8.23-10.6之间,黄铁矿δ^34S值在5.1‰-13.4‰之间,铅同位素组成具线性相关关系,^206Pb/^204Pb与^207Pb/^204Pb线性方程y=0.24x 11.19,r=0.83,^206Pb/^204Pb与^208Pb/^204Pb方程为y=1.3x 14.8,r=0.93,黄铁矿铅硫同位素组成具负相关关系,钠长石岩Rb、Sr含量较低,^87Sr/^86Sr值为0.72263-0.73150,平均0.72595。综合铅、锶、硫同位素特征,可以认为大沟谷金矿床成矿物质主要来自高u值基底碎屑沉积岩及钠化基性火成岩。  相似文献   

3.
五大连池火山岩是我国东部新生代最典型的钾质玄武岩。以富Ti、Na、K为特点,结晶分异使岩浆向富Si、富碱方向演化。岩石中Rb、Sr、Sin、Nd丰度与熔岩的碱质同步增长。Pb、Sr、Nd同位素组成很特殊,富放射成因Sr和Nd,但贫放射成因Pb,^37Sr/^34Sr,高于全球未分异现代值,^143Nd/^144Nd为0.512381-0.512433,低于全球未分异现代值;^206Pb/^204Pb,^207Pb/^204Pb,^208Pb/^204Pb分别对16.712-16.992,115,371-15.407,36.315-36.948,比许多大洋玄武岩和大陆玄武岩偏低。上述数据表明,其源区为无明显地壳物质混染的,未遭改造的原始富集地幔,同大洋玄武岩明显不同,暗示地幔的物质组成有区域性和不均匀性。  相似文献   

4.
通过对比研究新生代玄武岩Pb,Sr,Nd同位素组成及前寒武纪基底Nd同位素组成,本文将扬子板块东段划归为四个构造-岩石-同位素地球化学省,即苏沪省、嘉山省,北扬子省和南扬子省。其中,喜山省位于庐江-灌云断裂和庐断裂之间,以高^87Sr/^86Sr比(0.70435-0.70490),低^143Ndxx (0.512395-0.512615)和低放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb和^208Pb/^204Pb分别为16.594-17.266,15.317-15.437和37.352-37.782)为特点;苏沪省们于苏皖边界以东,以低^87Sr/^86Sr比(0.70341-0.70392),高^143Nd/^144Nd比(0.512838-0.513002)和较高放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb^和208Pb/^204Pb分别为17.789-18.275,15.489-15.552和37.831-38.369)为特点;北扬子省位于庐江-灌云断裂以南,富含放射成因铅(^206Pb/^204Pb为18.021-18.150,^207Pb/^204Pb为15.546-15.574,^208Pb/^204Pb为38.154-38.469),而^87Sr/^86Sr比和^143Nd/^144Nd比(分别为0.70464-0.70468和0.512748-0.512774)介于嘉山省和苏沪省之间。  相似文献   

5.
赣南龙南—寻邬地区余田群菖蒲组底部的玄武岩形成于中侏罗世(172.6~175.6Ma),其Pb,Nd,Sr同位素组成的特征为:富放射性成因铅((^206Ph/^206Ph)i=17.872~18.653,(^207Pb/^204Pb)i=15.434~16.131,(^208pb/^204pb)i=37.837~39.194),中等的εNd(t)(-0.4~+1.1,平均值为0.1)及较高的ISr(0.70835~0.71115)。玄武岩在Ph-Ph图解上均投影于NHRL上方,A7/4Pb值为0.19—61.7(平均值为22.1),AS/4Pb值为59.2~101.5(平均值为71.03),△Sr值为80.0~111.5(平均值为91.5),表明存在典型的Dupal同位素异常。根据Sr-Nd,Sr-Ph,Nd-Pb和Pb-Pb相关特征,判明赣南玄武岩是由亏损地幔端元(DMM)和EMⅡ型富集地幔端元在源区混合形成的。按Sr-Nd双变量二元混合模型计算得出源区物质中亏损地幔端元和EMⅡ富集地幔端元所占份额分别为58%~64%和42%~36%。赣南地区呈东西向展布的中侏罗世双峰式火山岩带反映了华南板块内部在燕山早期发生的一起重要伸展构造事件。根据Ph-Nd-Sr同位素地球化学及构造特征,推测赣南中生代地幔源区中的EMⅡ富集地幔端元组分可能源自冈瓦纳古陆。  相似文献   

6.
相山火山—侵入杂岩Nd—Sr—Pb同位素地球化学特征   总被引:8,自引:6,他引:8  
对相山火山-侵入杂岩Nd,Sr,Pb同位素组成及其底变质岩Pb同位素组成的研究表明,相山两旋回火山岩及火山期后的次火山岩具有较低的εNd(t)值(-7.46-9.40),较高的Isr值(0.70801-0.71201)和较古老的Nd模式年龄(1.54-1.70Ga),且相对富集放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb,^208Pb/^204Pb分别为17.686-18.323,15.523-15.730,38.143-38.936)。相山火山-侵入杂岩与该区出露的基底变质沉积岩在Nd,Pb同位素组成上既有明显的相似性,又有一定差别,因此,相山火山-侵入杂岩的源区主要为地壳岩石,但并不排除有部分幔源组分介入。ε  相似文献   

7.
滇黔交界地区玄武岩铜矿同位素地球化学特征   总被引:31,自引:3,他引:31  
对滇黔交界地区玄武岩铜矿进行了同位素地球化学示踪。铜矿石中沥青艿δ^13CPDB为-33.1‰~-30.9‰,炭质δ^13CPDB为-23.2‰~-20.2‰;方解石的δ^13CPDB一般为-13.5‰~-19.4‰,δ^13CPDB一般为19.0‰~23.5‰;石英流体包裹体水泐为-69‰~-89‰,δ^18O石英SMOW为15.7‰~17.4‰,与其平衡的流体的δ^18O水SMOW为2.2‰~3.9‰;各种矿物的铅同位素组成一般为^206Pb/^204 17.855~18.923,^207Pb/^204 Pb 15.503~15.694,^208Pb/^204Pb 38.293~39.036;辉铜矿δ^34SCDT为19.2‰和20.7‰。这些特征综合显示峨眉山玄武岩铜矿的成矿作用与盆地流体的对流循环及从玄武岩中萃取成矿物质有关,有机质对成矿流体的还原和对成矿物质的吸附作用可能是成矿的重要机制。  相似文献   

8.
济阳拗陷第三纪玄武岩的Nd—Sr同位素研究   总被引:9,自引:2,他引:9  
本文报道了济阳拗陷29个第三纪玄武岩的Nd,Sr同位素组成。结果表明,该区早、晚第三纪玄武岩的Nd-Sr同位素组成变化且具有一定的区别:早经三纪玄武岩的εNd值为0.70481-0.70830;晚第三纪玄武央的εNd值为0.1-2.3,^87Sr/^86Sr比值为0.70421-0.70530。鉴于εNd与1/Nd有^87Sr/^86Sr与1/Sr之间不存在相关特征,Nb正异常以及SiO2与MgO,Fe2O3 FeO,P2O5呈负相关,与Al2O3呈正相关,但与K2I为不存在相关特征,因此,地壳混染作用并不是第三纪玄武岩同位素组成变化的主要原因。玄武岩^87Sr/^86Sr比值的升高是由热液蚀变造成的,而εNd值的变化而归因于源区混合。如果热液蚀变作用没有发生,这些玄武岩的所有数据点在Nd-Sr相关图上将可能位于地幔系列内部。这表明第三纪玄武岩主要是由DMM和EMI两个端员组分不同程度混合形成,EMII的贡献是次要的。  相似文献   

9.
吉黑东部花岗岩类的稳定同位素组成   总被引:7,自引:2,他引:7       下载免费PDF全文
吉黑东部花岗岩类分布广泛,形成历史漫长,岩石类型齐全。按成因类型划分,以I型为主,A型次之,S型很少,M型极少。其稳定同位素组成独特,大多数岩体锶初始值低,氧同位素正常或低,铅同位素以低^204Pb和高^206Pb/^204Pb、^207Pb/^204Pb、^208Pb/^204Pb为主,钕初始值高,说明其基底岩石成熟度低,地幔物质混入量较多。这些特点明显区别于华北和华南的花岗岩。  相似文献   

10.
滇西地区上地幔铅同位素组成的确定及其应用   总被引:6,自引:0,他引:6  
滇西地区基性-超基性岩、碱性岩中的长石、石榴子石、橄榄石等单矿物及羊拉铜矿区二叠世海相玄武岩的铜铅同位素组成可以代表原始地幔的铅同位素组成,由此确定的该区上地幔铅同位素组成变化范围为^206Pb/^204Pb=17.877-18.506,平均18.108,^207Pb/^204Pb=15.470-15.587,平均15.479,^208Pb/^204Pb=37.797-38.567,平均38.177。研究发现,由于受地壳物质的混染和成岩后U、Th衰变产生的放射成因铅的影响,这些幔源岩石全岩铅同位素组成已不能代表原始上地幔的铅同位素组成;金顶铅锌矿床的铅并非上地幔来源,而是相当于下地壳来源的铅与兰坪盆地沉积岩铅二者的混合铅。  相似文献   

11.
浙闽沿海大面积出露的中生代酸性火山岩区有少量早白垩世玄武岩分布,它们具典型钾富集和铌等元素亏损特征,其同位素组成表现为较高ISr(0.7055-0.7106)、低的εNd(1.2--10.6,大多介于-3.2--10.6之间)及富放射性成因铅(206Pb/204Pb=18.355-18.726,207Pb/204Pb=15.455-15.799,208Pb/204Pb=38.530-39.319).这些特征表明玄武岩源区为一富集型的陆下岩石圈地幔,由古老的俯冲地壳物质再循环进入并交代地幔而形成。没有证据表明本区早白垩世基性和酸性岩浆之间发生过大规模的化学混合,但不排除同位素之间的交换以及局部的化学和机械混合。壳-幔混合与地壳混染仅在少数玄武岩的形成过程中起着较重要的作用。  相似文献   

12.
Sr, Nd and Pb isotopic compositions of the Cenozoic basalts were analyzed from Baengnyeongdo Island, Jeongok, Ganseong, and Jejudo Island of Korea. They reveal relatively enriched Sr and Nd isotopic compositions (87Sr/86Sr = 0.703300.70555, 143Nd/144Nd = 0.512980.51256) compared with MORB.207Pb/204Pb and 208Pb/204Pb values of all the analyzed Korean basalts lie above the Northern Hemisphere Reference Line (NHRL) defined by Hart (1984). Pb isotopic compositions of basalts from Jejudo Islands (206Pb/204Pb = 18.6119.12, 207Pb/204Pb = 15.5415.69, 208Pb/204Pb = 38.9839.72) are significantly more radiogenic than the rest (206Pb/204Pb = 17.7218.03, 207Pb/204Pb = 15.4415.58, 208Pb/204Pb = 37.7738.64). The Cenozoic Korean basalts thus can be divided into two groups based on their Sr, Nd and Pb isotopic compositions. The north group reveals mixing between DMM and EM1 while the south group displays DMM-EM2 mixing. Such a distribution is the same as Chinese Cenozoic basalts and it can be interpreted that the subcontinental lithospheric mantle under Korea represents simple lateral continuation of the South and North China Blocks. We suggest that Korean continental collision zone cross the Korean Peninsula through the region between the north and south basalt groups of Korea.  相似文献   

13.
《Gondwana Research》2006,9(4):529-538
Sr, Nd and Pb isotopic compositions of the Cenozoic basalts were analyzed from Baengnyeongdo Island, Jeongok, Ganseong, and Jejudo Island of Korea. They reveal relatively enriched Sr and Nd isotopic compositions (87Sr/86Sr = 0.70330∼0.70555, 143Nd/144Nd = 0.51298∼0.51256) compared with MORB.207Pb/204Pb and 208Pb/204Pb values of all the analyzed Korean basalts lie above the Northern Hemisphere Reference Line (NHRL) defined by Hart (1984). Pb isotopic compositions of basalts from Jejudo Islands (206Pb/204Pb = 18.61∼19.12, 207Pb/204Pb = 15.54∼15.69, 208Pb/204Pb = 38.98∼39.72) are significantly more radiogenic than the rest (206Pb/204Pb = 17.72∼18.03, 207Pb/204Pb = 15.44∼15.58, 208Pb/204Pb = 37.77∼38.64). The Cenozoic Korean basalts thus can be divided into two groups based on their Sr, Nd and Pb isotopic compositions. The north group reveals mixing between DMM and EM1 while the south group displays DMM-EM2 mixing. Such a distribution is the same as Chinese Cenozoic basalts and it can be interpreted that the subcontinental lithospheric mantle under Korea represents simple lateral continuation of the South and North China Blocks. We suggest that Korean continental collision zone cross the Korean Peninsula through the region between the north and south basalt groups of Korea.  相似文献   

14.
The Emeishan flood basalts can be divided into high-Ti (HT) basalt (Ti/Y>500) and low-Ti (LT) basalt (Ti/Y<500). Sr, Nd isotopic characteristics of the lavas indicate that the LT- and the HT-type magmas originated from distinct mantle sources and parental magmas. The LT-type magma was derived from a shallower lithospheric mantle, whereas the HT-type magma was derived from a deeper mantle source that may be possibly a mantle plume. However, few studies on the Emeishan flood basalts involved their Pb isotopes, especially the Ertan basalts. In this paper, the authors investigated basalt samples from the Ertan area in terms of Pb isotopes, in order to constrain the source of the Emeishan flood basalts. The ratios of 206Pb/204Pb (18.31–18.41), 207Pb/204Pb (15.55–15.56) and 208Pb/204Pb (38.81–38.94) are significantly higher than those of the depleted mantle, just lying between EM I and EM II. This indicates that the Emeishan HT basalts (in the Ertan area) are the result of mixing of EMI end-member and EMII end-member.  相似文献   

15.
济阳凹陷火山岩的岩石学与地球化学   总被引:4,自引:1,他引:3  
赵国连 《矿物学报》2006,26(3):335-345
对济阳凹陷的第三系火山岩、基性侵入岩进行了岩石学和地球化学研究,分别总结了火山岩、基性侵入岩岩石类型及其特征。碱性系列玄武岩主要为钠质系列,具上地幔来源的特征。从古新统到渐新统,玄武岩熔融程度降低,岩浆地幔源深度增加。微量元素和同位素的数据表明,第三纪火山岩源区存在不协调现象。稀土元素分析表明,本区玄武岩为大陆裂谷成因。钐-钕、铷-锶及铅同位素的数据表明,火山岩与侵入岩同源,都来自上地幔。玄武岩浆在形成过程中有过不同程度的混合作用,Rb/Sr相关性表明早、晚第三纪的幔源类型上存在差别。第三纪火山岩数据点分布于DMM,EMIH和EMII三个端元之间,反映第三纪火山岩成因与这三个端元不同程度混合有关。本区火山岩成因与幔源有关,地幔不相容成分的特征表明有沉积物混入的可能,不排除是陆壳物质混入,不同深度岩浆的混合也是一种解释。  相似文献   

16.
浙江东南部晚中生代上、下火山岩系(以下简称上、下岩系)中均有玄武岩产出,本文对这些玄武岩分别进行了元 素地球化学和Sr-Nd-Pb同位素研究。不同岩系玄武岩的主量元素均表现出富碱、富Al等特征。但微量元素存在差异,下岩 系天台和青田样品具有轻稀土富集以及Ba, Pb和Sr富集,Eu负异常,Nb, Ta, Zr和Hf亏损的特征。上岩系玄武岩的元素特征 也有差别,永嘉花坦、宁波玄坛地、新昌镜岭和永嘉镜架山等地样品的元素特征表现出的性质与下岩系样品相似,武义玄 武岩样品没有Ta, Nb亏损特征,金衢盆地玄武岩的元素特征则介于两者之间。对应的,这些玄武岩样品的同位素组成也有 明显差异,下岩系玄武岩的初始同位素组成范围为 I Sr=0.70850~0.70897,εN(d t) = -5.6~-4.1,(206Pb/204Pb) i =18.21~18.38,(207Pb/204Pb) i =15.55~15.58,(208Pb/204Pb) i =38.26~38.49,接近下岩系中酸性岩浆岩的范围,反映了下地壳物质对其岩浆源区的显著影响。上岩系玄武岩有明显差异,表现出与元素特征对应的分组现象。其中永嘉花坦、宁波玄坛地、新昌镜岭和永嘉镜架山样品 I Sr = 0.70734~0.70936, εN(d t)= -7.1~-2.1,( 206Pb/204Pb) i =18.01~18.40,( 207Pb/204Pb) i = 15.54~15.62,( 208Pb/204Pb) i=37.99~38.62, 具有富集特征, 可能来自活动大陆边缘; 而武义和金衢盆地样品的 I Sr=0.70533~0.70589, εNd( t) =0.4~3.3,(206Pb/204Pb) i =17.23~18.11,( 207Pb/204Pb) i =15.46~15.53,( 208Pb/204Pb) i =36.91~38.43,具有类似OIB特征,趋向亏损地幔端元。上下岩系玄武岩的元素和同位素组成的研究表明,玄武岩的物质来源有较明显的差别,且表现出随时间变化的特征。其中下岩系玄武岩源区中可能有古老岩石圈地幔、下地壳物质和俯冲蚀变洋壳物质的贡献,而上岩系中玄武岩源区有可能是类似下岩系玄武岩性质的岩石圈、软流圈地幔和下地壳物质等的贡献。浙东南晚中生代岩石圈演化的动力学过程可能与太平洋板块俯冲有关,但不能排除岩石圈地幔拆沉的影响,具体的讨论还需要更多的岩石学和/或地幔包体资料的补充。  相似文献   

17.
韩江伟  熊小林  朱照宇 《岩石学报》2009,25(12):3208-3220
对雷琼地区21个晚新生代玄武岩样品的主量、微量元素和Sr、Nd、Pb同位素分别用湿化学法、ICP-MS和MC-ICPMS进行了测定.这些玄武岩主要为石英拉斑玄武岩,其次为橄榄拉斑玄武岩和碱性玄武岩.大多数样品的微量元素和同位素成分与洋岛玄武岩(OIBs)相似,而且随着SiO_2不饱和度增加,不相容元素含量也增加.除R4-1可能受到地壳混染外,其他样品相对均一的Nd同位素(ε_(Nd)=2.5-6.0)以及变化明显但范围有限的Sr同位素(0.703106~0.704481),可能继承了地幔源区的特征.~(87)Sr/~(86)Sr与~(206)Pb/~(204)Pb的正相关和~(143)Nd/~(144)Nd与~(206)Pb/~(204)Pb的负相关特征暗示DM(软流圈地幔)与EM2(岩石圈地幔)的混合.地幔捕虏体的同位素特征暗示EM2成分不可能存在于尖晶石橄榄岩地幔,而La/Yb和Sm/Yb系统表明岩浆由石榴石橄榄岩部分熔融产生,这意味着EM2成分可能存在于石榴石橄榄岩地幔.雷琼地区玄武岩的地球化学变化可以用软流圈地幔为主的熔体加入不同比例石榴石橄榄岩地幔不同程度熔融产生的熔体来解释:碱性玄武岩和橄榄拉斑玄武岩是软流圈熔体与石榴石橄榄岩地幔较低程度(7%~9%)熔融体混合,而石英拉斑玄武岩是软流圈熔体与石榴石橄榄岩地幔较高程度(10%~20%)熔融体的混合.  相似文献   

18.
本文对中国东南沿海不含幔源包体的中生代玄武岩和含幔源包体的新生代玄武岩进行了微量元素和Nd-Sr-Pb同位素对比研究。中生代玄武岩呈Ta、Nb和Hf负异常,低Ce/Pb、Nb/U比值和高La/Nb比值,与岛弧火山岩和陆壳岩石的微量元素特征相类似,说明在岩浆生成和上升过程中,幔源组分受到了陆壳组分的混染。新生代玄武岩呈Ta、Nb正异常和Pb负异常,高Ce/Pb、Nb/U比值和低La/Nb比值,与海岛玄武岩(OIB)相类似,Nd-Sr同位素成分与夏威夷玄武岩类似,因而它们未受明显的陆壳混染。143Nd/144Nd与206Pb/204Pb之间的负相关关系和87Sr/86Sr与206Pb/204Pb之间的正相关关系说明本区新生代玄武岩起源于中等亏损程度的软流圈地幔,并与EMII富集地幔组分发生了混合。  相似文献   

19.
A comparison of new and published geochemical characteristics of magmatism in the western and eastern Indian Ocean at the initial and recent stages of its evolution revealed several important differences between the mantle sources of basaltic melts from this ocean.
  1. The sources of basalts, from ancient rises and from flanks of the modern Central Indian Ridge within the western Indian Ocean contain an enriched component similar in composition to the source of the Réunion basalts (with radiogenic Pb and Sr and unradiogenic Nd), except for basalts from the Comores Islands, which exhibit a contribution from an enriched HIMU-like component.
  2. The modern rift lavas of spreading ridges display generally similar geochemical compositions. Several local isotopic anomalies are characterized by the presence of an EM2-like component. However, two anomalous areas with distinctly different enriched mantle sources were recognized in the westernmost part of the Southwestern Indian Ridge (SWIR). The enriched mantle source of the western SWIR tholeiites in the vicinity of the Bouvet Triple Junction has the isotopic ratios indicating a mixture of HIMU + EM2 in the source. The rift anomaly distinguished at 40° E displays the EM1 signature in the mantle source, which is characterized by relatively low 206Pb/204Pb (up to 17.0) and high 207Pb/204Pb, 208Pb/204Pb and 87Sr/86Sr. This source may be due to mixing with material from the continental lithosphere of the ancient continent Gondwana. The material from this source can be distinguished in magmas related to the Mesozoic plume activity in Antarctica, as well as in basalts from the eastern Indian Ocean rises, which were formed by the Kerguelen plume at 100–90 Ma.
  3. The geochemical heterogeneities identified in the ancient and present-day magmatic products from the western and eastern Indian Ocean are thought to reflect the geodynamic evolution of the region. In the eastern part of the ocean, the interaction of the evolving Kerguelen plume with the rift zones produced magmas with specific geochemical characteristics during the early opening of the ocean; such a dispersion of magma composition was not recognized in the western part of the ocean.
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20.
西藏浦桑果铜铅锌多金属矿床位于南冈底斯成矿带火山岩浆弧内,矿区矽卡岩型铜铅锌矿体主要呈透镜状和似层状近东西向赋存于白垩系塔克那组第四岩性段矽卡岩化大理岩中。基于野外地质调查和成矿地质条件,对矿床主要金属硫化物闪锌矿、方铅矿、黄铜矿等的S、Pb同位素特征进行研究,并结合前人数据,综合探讨矿床的成矿物质来源。结果表明,浦桑果矿床矿石金属硫化物的δ34S值介于-24‰~10‰之间,平均值为-040‰,硫同位素频率直方图具明显的塔式分布特征,指示硫可能与岩浆作用有关,硫同位素具岩浆硫特征,主要与闪长玢岩有关。矿石硫化物中206Pb/204Pb变化于18344~18625之间,平均值为18555; 207Pb/204Pb变化于15549~15794之间,平均值为15716; 208Pb/204Pb变化于3812~3934之间,平均值为39044;矿石铅同位素组成稳定,为正常普通铅。结合铅同位素μ值特征(937~982)及铅同位素构造环境演化图投图结果,综合表明浦桑果矿床的矿石铅主要来源于上地壳物质且伴有地幔物质的混染,铅同位素具壳幔混源的特征。  相似文献   

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