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1.
香山含铜镍矿岩体位于东天山北部的土墩-图拉尔根镁铁-超镁铁岩带中段,受康古尔塔格-黄山深大断裂控制,为由辉长岩、辉橄岩、细粒辉长岩和钛铁辉长岩组成的复式岩体。香山铜镍矿床岩石铂族元素总量(∑PGE)变化范围为0.74×10-9~2.82×10-9,矿石∑PGE变化范围为20.64×10-9~148.99×10-9,PPGE(Pd、Pt)和IPGE(Ru、Ir、Os)之间分异均较弱,二者具有相似PGE原始地幔标准化配分曲线形式。香山铜镍矿床原生岩浆w(MgO)下限值为4.97%,源于亏损型地幔,PGE丰度较高,母岩浆为高镁玄武质岩浆,PGE处于亏损状态且亏损的原因是发生了硫化物熔体不混溶作用,引发硫饱和的机制为地壳物质同化混染作用,以及橄榄石、辉石和基性斜长石等矿物的结晶分离作用。  相似文献   

2.
东天山黄山东铜镍矿床铂族元素地球化学特征及其意义   总被引:15,自引:0,他引:15  
黄山东岩体位于东天山北部的土墩—黄山—镜儿泉—图拉尔根镁铁—超镁铁质岩带中段,受康古尔塔格—黄山深大断裂控制,是由二辉橄榄岩、橄榄辉长岩、辉长苏长岩和辉长闪长岩组成的复式岩体。黄山东铜镍硫化物矿床镁铁质岩石和矿石中的铂族元素(PGE)含量很低,其中IPGE(Os, Ir, Ru, Rh)与PPGE(Pt, Pd)含量相近,PPGE略高于IPGE。岩石平均2×10-9,矿石平均86×10-9。在矿石中,PGE含量与硫含量呈正相关关系。在原始地幔标准化图解上,岩石和矿石具有相似的分配模式,PPGE和IPGE之间分异很弱。Ni/Cu—Pd/Ir关系图以及岩石地球化学资料显示,形成黄山东岩体的原始岩浆为MgO含量较高的PGE不亏损的拉斑玄武质岩浆。岩浆在上升的过程中发生过早期硫化物深部熔离,带走了岩浆中大部分的PGE,可能是造成黄山东矿床母岩浆中PGE明显亏损的主要原因。矿石低的Pd/Ir比值(为4.22~17.24,平均值为849)及高的Ir含量(为2.04×10-9~21.45×10-9,平均值为8.79×10-9)显示黄山东矿床成矿过程中后期热液作用不明显。铂族元素地球化学特征和岩石地球化学资料显示了地壳物质的混染以及橄榄石、辉石等矿物的分离结晶是引起该矿床硫饱和并发生硫化物熔离作用而成矿的主要因素。  相似文献   

3.
报道了新疆三塘湖地区中二叠统基性火山岩的铂族元素(PGE)地球化学特征。采用镍锍火试金法结合ICP-MS测定了样品的PGE含量。三塘湖火山岩的PGE总含量低,其PGE原始地幔标准化曲线均向左倾斜,Pt呈正异常。整体上岩石的PGE含量随基性程度降低而减少。样品的Pd/Ir比值(5.8~15.5)、Cu/Pd比值(236×103~1 790×103)和Ni/Cu-Pd/Ir关系以及岩石地球化学特征显示,形成三塘湖中二叠统岩浆岩的初始岩浆为MgO含量较高、PGE无亏损的玄武质岩浆,并在源区发生硫化物熔离作用,促进硫饱和的机制为地壳物质的加入。三塘湖火山岩的各铂族元素含量之间均呈正相关,指示其经历过深部硫化物熔离的残余岩浆在进一步的演化过程中,发生了硫化物的分异作用,同时Pd/Ir与Ni/Cu呈负相关关系,表明残余岩浆还存在橄榄石的分离结晶作用。由于初始岩浆中的PGE在源区就随硫化物熔离出来,故三塘湖地区PGE成矿前景不大。  相似文献   

4.
为了研究云南东川奚家坪地区玄武岩的铂族元素地球化学特征,本文以奚家坪微量元素和铂族元素的实验数据为基础,首先分析了微量元素和PGE的组成特征及变化趋势,然后以此为依据进行了奚家坪玄武岩部分熔融、硫饱和程度及其对硫化物PGE矿床成矿作用的讨论.最后认为奚家坪玄武岩形成于较低程度的地幔部分熔融(熔融程度约10%),玄武岩中PGE的含量偏低是因为在结晶分异过程中Pd,Pt和Ir进入硫化物矿物相中,随硫化物分异离开了熔体,分异的硫化物可能在岩浆通道附近形成富集PGE的矿床.  相似文献   

5.
白鑫滩铜镍硫化物矿床位于东天山镁铁-超镁铁质岩带西段,受大草滩深大断裂控制,岩体由辉长岩、橄榄辉石岩、辉石橄榄岩组成。白鑫滩岩体的铂族元素(PGE)含量相对较低,其中IPGE(Os、Ir、Ru)与PPGE(Ru、Pt、Pd)含量相近,PPGE略高于IPGE。岩石∑PGE含量3.82×10~(-9)~5.36×10~(-9),平均4.53×10~(-9)。岩石具相似的原始地幔标准化分布型式,PPGE和IPGE之间分异很弱。通过铂族元素源区示踪分析认为,形成白鑫滩岩体的母岩浆为Mg O含量较高的PGE不亏损的拉斑玄武质岩浆,上升过程中遭地壳物质混染及橄榄石等矿物的分离结晶作用,引起该矿床硫饱和并发生硫化物熔离作用而成矿,深部岩浆通道仍具较好的找矿空间。  相似文献   

6.
东昆仑夏日哈木镍矿床地质特征与成因   总被引:10,自引:3,他引:7  
夏日哈木超大型镍矿床位于东昆仑造山带昆中岛弧带内。Ⅰ号含矿岩体主要由橄榄岩相、辉石岩相、辉长苏长岩相等多种岩石类型组成。其中,含矿岩石主要为橄榄岩相、辉石岩相和苏长岩相。矿石构造以准块状_块状、海绵陨铁状和浸染状为主,斑杂状次之,细脉状较少。岩石和矿石的铂族元素(PGE)丰度较低,岩石平均6.45×10-9,矿石平均456.91×10-9。岩石和矿石具有相似的PGE配分模式。矿石样品具有高的Ir丰度(0.284×10-9~1.198×10-9),低的Pd/Ir比值(9.12~22.34,平均值16.41),显示了岩浆型成矿作用特点。铂族元素(PGE)地球化学特征及岩石Ni/Cu_Pd/Ir关系表明,原生岩浆为高镁玄武质岩浆。母岩浆明显亏损PGE,而硫化物的深部熔离可能是导致母岩浆PGE亏损的主要原因。硫同位素特征显示有明显地壳硫的加入。根据铂族元素特征及矿相学、硫同位素特征分析,成矿母岩浆在深部岩浆房分异,为含少量硫化物的岩浆、含较多硫化物的岩浆和矿浆,分阶段脉动式上侵,在上侵过程中和进入终端岩浆房后硫化物继续熔离,是形成夏日哈木镍矿床的主导机制。  相似文献   

7.
糜梅  陈衍景  孙亚莉  王焰  江合中 《岩石学报》2009,25(11):2769-2775
河南周庵超基性岩体蕴含大型Ni-Cu-(PGE)硫化物矿床,矿化带位于超基性岩体边缘与围岩的接触带.周庵超基性岩体轻稀土富集,其La/Sm_N比值为1.3~4.7,Sm/Yb_N比值为1.9~4.4,显示一定程度的LREE/HREE分异.原始地幔标准化的微量元素配分型显示弱的负Nb异常.岩体的M含量为70×10~(-60~2120×10~(-6),Cu含量为15×10~(-6)~1056×10~(-6);矿石的Ni含量为2592×10~(-6)~6549×10~(-6),Cu含量为1147×10~(-6)~3239×10`(-6).矿石的Ni/Cu比值(2.0~2.3)低于岩石样品(5-83).强蚀变矿化样品的PGE元素含量高于弱蚀变样品约一个数量级,所有样品的Pd/Ir和Pt/Ir比值高,Pd/Ir=1.4~21,Pt/Ir=2.4~22,表明PPGE相对IPGE富集.上述特征显示周庵岩体是构造侵位的地幔岩,岩体与围岩发生了较强烈的物质交换,含水流体交代作用导致了岩体-围岩物质交换和岩体边缘矿化.  相似文献   

8.
采用ICP-MS分析方法研究烂泥塘浅成低温热液型Cu-Au矿床中黄铜矿铂族元素(PGE),结果显示黄铜矿的∑PCE较低,其值为5.46×109~19.0×10-9.原始地幔标准化PGE配分模式呈Ru、Pd相对于Ir、Pt富集的趋势.Pd/Ir、Ru/Ir、Pt/Ru、Pd/Pt比值分别变化在2.35~21.9、15.6~42.3、0.02~0.20和4.83~21.8之间.除Pt/Ru比值低于原始地幔外,其他比值均高于原始地幔,这表明黄铜矿的Ir、Ru、Pt和Pd之间发生了分异.黄铜矿中相对高的Ru和Pd含量可能是热液流体对早期矿化斑岩选择淋滤的结果.  相似文献   

9.
利用锍镍试金富集-等离子体质谱(ICP-MS)测定法较系统分析了云南白马寨主要Cu-Ni硫化物矿石和主要围岩的PGE、Au、Cu和Ni含量,发现PGE含量均较低,其中块状硫化物矿石的∑PGE为78.2×10-9~556×10-9,橄榄辉石岩为0.472×10-9~67.0 ×10-9,辉长岩为0.847×10-9,二辉岩为0.76×10-9~0.809 ×10-9.后期煌斑岩的PGE也很低(2.98×10-9~4.07×10-9).各类矿石和围岩中∑PGE与Au, Ni与Cu之间呈明显的正相关关系.各类矿石的PGE原始地幔标准化曲线和Pt/Pd和Cu/Pd值与其各主要围岩非常相似,说明该矿Cu-Ni硫化物矿石为岩浆成因,且与围岩有成因上的联系.矿石和围岩较高的Pt/Pd值(平均0.83)显示其主要形成于单独的硫化物饱和事件,矿石中较高的Ir (0.77×10-9~5.52×10-9, 平均2.35×10-9)和Pd/Ir值 (4.76~296,平均138)显示硫化物矿石可能受到后期强烈的热液蚀变.白马寨硫化物矿石较高的187Os/188Os 初始值(0.456± 0.026)显示地壳物质的加入是成矿的重要因素.计算显示该矿硫化物矿石中地壳来源Os超过30%.  相似文献   

10.
以红旗岭铜镍硫化物矿床茶尖矿区1号和9号岩体为研究对象,进行了岩石化学特征分析、微量元素分析和稀土元素(REE)分析,重点研究了其铂族元素(PGE)地球化学特征。REE分析结果表明,岩石富集轻稀土元素,且有微弱的铕负异常。PGE富集在硫化物含量高的岩石中,与硫化物含量呈正相关关系。岩石中PGE分异明显,富集Rh、Pt和Pd。推测该区的基性-超基性岩形成于硫不饱和玄武质岩浆的演化,岩浆有地壳物质混染的特征,其成矿物质来源于上地幔,主要成矿机制为深部熔离-贯入作用。  相似文献   

11.
对北山地区坡一和罗东含铜镍的镁铁-超镁铁质岩体铂族元素研究表明,两个岩体的铂族元素(PGE)总量较低,PPGE较IPGE富集,原始地幔标准化模式呈正斜率,均较原始地幔亏损,具Ir和Rh的弱负异常。较低的Pd/Ir比值表明岩石主要受岩浆作用控制,后期热液作用影响不明显。两个岩体的原生岩浆均为MgO 含量较高的PGE不亏损的拉斑玄武质岩浆,较高的Cu/Pd、Ti/Pd比值表明岩浆在演化过程中发生了硫化物的熔离。罗东岩体早期矿物相(橄榄石、铬铁矿)的分离结晶作用对岩浆中的硫达到饱和具有重要的贡献,而坡一岩体该作用对硫化物熔离的贡献不明显。坡一和罗东岩体的R值表明两岩体均具有达到中型Ni矿床的潜力。  相似文献   

12.
张利  杨经绥  刘飞  连东洋  黄健  赵慧  杨艳 《岩石学报》2016,32(12):3649-3672
西藏阿里地区的南公珠错蛇绿岩产在公珠错的南侧,空间上属于雅鲁藏布江缝合带西段之南亚带蛇绿岩。该蛇绿岩主要由地幔橄榄岩和辉长岩等基性岩类组成。地幔橄榄岩中约80%为方辉橄榄岩,20%为二辉橄榄岩,纯橄岩较少。南公珠错地幔橄榄岩矿物化学特征表现为橄榄石具有较低的Fo(89.3~91.4)值、辉石具有较高的Al_2O_3含量(1.89%~6.06%)、尖晶石具有较低的Cr~#(12.7~28.3)值。与原始地幔相比南公珠错地幔橄榄岩的全岩地球化学特征具有较高的MgO含量和较低的Al_2O_3、CaO和TiO_2等易熔元素含量;方辉橄榄岩和二辉橄榄岩的稀土元素总含量分别介于0.66×10-6~1.10×10-6和0.90×10~(-6)~3.78×10~(-6)之间,明显低于原始地幔值,其稀土元素配分模式为轻稀土元素轻微富集型;在原始地幔标准化微量元素蜘蛛图中,南公珠错地幔橄榄岩显示出强烈的U正异常、Nd轻微正异常和强不相容元素Zr的负异常;方辉橄榄岩和二辉橄榄岩的铂族元素总量分别介于15.26×10~(-9)~25.23×10~(-9)和18.74×10~(-9)~26.86×10~(-9)之间,二者含量的变化较小,南公珠错地幔橄榄岩PGEs球粒陨石标准化图解显示其为接近于原始地幔的"平坦型"。南公珠错地幔橄榄岩的矿物化学和全岩地球化学特征与深海橄榄岩相似,指示它们可能形成于大洋扩张脊环境。定量模拟估算表明,南公珠错地幔橄榄岩可能来源于地幔中的尖晶石相二辉橄榄岩源区,系经历了至多16%部分熔融的残余。LREE的微富集和较高的Pd/Ir、Rh/Ir比值指示它们还经历了岩石-熔体反应作用。初步结论认为南公珠错地幔橄榄岩形成于大洋脊环境,为尖晶石相二辉橄榄岩地幔源区较低程度部分熔融的残余,但经历了后期岩石-熔体反应作用。  相似文献   

13.
夏家店金矿床位于南秦岭造山带内,是一个受构造和地层控制的大型金矿床,矿石类型为角砾岩型、碎裂岩型和石英脉型3种类型,赋矿围岩主要为寒武系水沟口组的炭泥质板岩、炭硅质板岩、硅质岩及白云岩,次为泥盆系西岔河组的角砾岩。本文对夏家店金矿床中矿石(角砾状炭硅质板岩、碎裂硅化白云岩、碎裂炭泥质板岩和石英脉状矿化的硅质岩)和围岩(硅质岩、硅化白云岩和硅质板岩)的微量元素、铂族元素(PGE)质量分数进行测试,进而探讨成矿物质来源以及矿床成因。结果表明:不同类型的矿石与其各自的围岩具有高度的相似性,均富集Sr、Ga、Zr等元素;不同类型的矿石稀土总量均高于各类围岩,但是两者具有相似的稀土配分模式,轻稀土富集,重稀土亏损,均表现出负Eu异常(δEu值为0.51~0.63);不同类型的矿石PGE总量(7.71×10-9~38.30×10-9,平均值23.00×10-9)均明显大于各类围岩PGE总量(1.28×10-9~2.44×10-9,平均值1.86×10-9),相比上地壳,不同类型的矿石均明显富集Os、Ir、Pt和Pd,亏损Ru、Rh,而各类围岩均富集Os,亏损Pt、Ru、Rh、Pd,但两者的铂族元素配分曲线具有高度相似性,呈Ru亏损的V型,为地壳的(Os)-Pt-Pd型配分模式。以上特征表明不同类型的矿石和围岩具有明显的微量、稀土元素和PGE地球化学继承性,暗示夏家店下寒武统有可能是重要的矿源层之一。同时,所有矿石和围岩的Au/Ir值(分别为4 821~299 666)和406~8 050)及Pd/Ir值(分别为16.9~588.0和15.2~47.5)变化范围均较大,两者Au/Ir值远高于炭质球粒陨石和原始地幔值、Pd/Ir值远高于岩浆成因矿石值,且夏家店金矿床矿石和围岩的PGE配分曲线与典型热液成因矿床一致。这些特征显示夏家店金矿床具有明显的热液成因,是构造-热液流体成矿作用的产物。  相似文献   

14.
新疆东部葫芦岩体地表出露面积0.75km2,是由辉长闪长岩、辉长岩、辉石岩、辉橄岩、橄榄岩组成的复式岩体。LA-ICP-MS锆石U-Pb定年,岩体形成年龄为274.5±3.9Ma,是东天山后碰撞伸展环境的产物。岩石和矿石的PGE总量低,其中IPGE与PPGE含量相近,PPGE略高于IPGE。岩石平均7.90×10-9,矿石平均45.57×10-9。在原始地幔标准化图解上,岩石和矿石具有相似的分配模式,PPGE和IPGE之间分异较弱。Ni/Cu-Pd/Ir关系图显示母岩浆主要为高镁的玄武质岩浆。根据矿石Cu/Pd比值114.67×103~157.42×103(平均136.05×103)和岩石Cu/Pd比值11.07×103~294.35×103(平均125.48×103)推断,葫芦矿床成矿母岩浆演化过程中经历了深部硫化物部分熔离的过程,这可能是导致该矿床PGE明显亏损的原因之一。地壳物质的混染(SiO2、S等的加入)以及橄榄石、辉石等矿物的分离结晶,是引起该矿床硫饱和并发生硫化物熔离作用而成矿的主要因素。  相似文献   

15.
牛晓露  冯光英  刘飞  杨经绥 《岩石学报》2017,33(12):3897-3908
华北克拉通北缘中段大同地区发育呈岩墙形式产出的煌斑岩,该煌斑岩为超钾质碱性岩,极度低硅低钠高镁高钙高钾,且富H_2O和CO_2等流体组分。本文利用镍锍试金-电感耦合等离子体质谱法测定了这套煌斑岩的铂族元素组成,获得了其形成及演化过程的一些信息。大同煌斑岩铂族元素含量极低,∑PGE=2.14×10~(-9)~4.50×10~(-9),原始地幔标准化铂族元素配分型式为左倾型,亏损Ir亚组(IPGE),富集Pd亚组(PPGE),(Pd/Ir)_N=3.48~10.43。低铂族元素含量、高Cu/Ni比值(48101~90926)和高(Pd/Ir)_N比值指示大同煌斑岩形成于地幔低程度部分熔融(1%~13%),熔体形成时仍有部分硫化物残留于源区。岩浆演化过程中,未发生明显的结晶分异作用和地壳混染作用,硫未达到饱和-过饱和,未发生硫化物熔离作用。计算获得铂族元素在原始地幔与煌斑岩熔体间的分配系数分别为D_(Os)=35~124,D_(Ir)=13~35,D_(Ru)=34~91,D_(Rh)=5.8~10,D_(Pt)=3.1~9.7,D_(Pd)=2.2~4.5;PPGE较IPGE明显更不相容。与峨眉山大火成岩省玄武岩对比研究发现,岩浆岩中的铂族元素含量主要受源区地幔部分熔融程度和演化过程中硫化物熔离作用共同影响;而铂族元素之间的分异受源区部分熔融程度和岩浆分离结晶作用共同影响。  相似文献   

16.
ABUNDANCE AND DISTRIBUTION OF PLATINUM-GROUP ELEMENTS (PGE) IN PERIDOTITE FROM THE DAGZHUKA OPHIOLITE IN TIBET:IMPLICATIONS FOR MANTLE METASOMATISM  相似文献   

17.
The Mesoarchean Nuasahi chromite deposits of the Singhbhum Craton in eastern India consist of a lower chromite-bearing ultramafic unit and an upper magnetite-bearing gabbroic unit. The ultramafic unit is a ∼5 km long and ∼400 m wide linear belt trending NNW-SSE with a general north-easterly dip. The chromitite ore bodies are hosted in the dunite that is flanked by the orthopyroxenite. The rocks of the ultramafic unit including the chromitite crystallized from a primitive boninitic magma, whereas the gabbro unit formed from an evolved boninitic magma. A shear zone (10–75 m wide) is present at the upper contact of the ultramafic unit. This shear zone consists of a breccia comprising millimeter- to meter-sized fragments of chromitite and serpentinized rocks of the ultramafic unit enclosed in a pegmatitic and hybridized gabbroic matrix. The shear zone was formed late synkinematically with respect to the main gabbroic intrusion and intruded by a hydrous mafic magma comagmatic with the evolved boninitic magma that formed the gabbro unit. Both sulfide-free and sulfide-bearing zones with platinum group element (PGE) enrichment are present in the breccia zone. The PGE mineralogy in sulfide-rich assemblages is dominated by minerals containing Pd, Pt, Sb, Bi, Te, S, and/or As. Samples from the gabbro unit and the breccia zone have total PGE concentrations ranging from 3 to 116 ppb and 258 to 24,100 ppb, respectively. The sulfide-rich assemblages of the breccia zone are Pd-rich and have Pd/Ir ratios of 13–1,750 and Pd/Pt ratios of 1–73. The PGE-enriched sulfide-bearing assemblages of the breccia zone are characterized by (1) extensive development of secondary hydrous minerals in the altered parts of fragments and in the matrix of the breccia, (2) coarsening of grain size in the altered parts of the chromitite fragments, and (3) extensive alteration of primary chromite to more Fe-rich chromite with inclusions of chlorite, rutile, ilmenite, magnetite, chalcopyrite, and PGE-bearing chalcogenides. Unaltered parts of the massive chromitite fragments from the breccia zone show PGE ratios (Pd/Ir = 2.5) similar to massive chromitite (Pd/Ir = 0.4–6.6) of the ultramafic unit. The Ir-group PGE (IPGE: Ir, Os, Ru) of the sulfide-rich breccia assemblages were contributed from the ultramafic–chromitite breccia. Samples of the gabbro unit have fractionated primitive mantle-normalized patterns, IPGE depletion (Pd/Ir = 24–1,227) and Ni-depletion due to early removal of olivine and chromite from the primitive boninitic magma that formed the ultramafic unit. Samples of the gabbro and the breccia zone have negative Nb, Th, Zr, and Hf anomalies, indicating derivation from a depleted mantle source. The Cu/Pd ratios of the PGE-mineralized samples of the breccia zone (2.0 × 103–3.2 × 103) are lower than mantle (6.2 × 103) suggesting that the parental boninitic magma (Archean high-Mg lava: Cu/Pd ratio ∼1.3 × 103; komatiite: Cu/Pd ratio ∼8 × 103) was sulfur-undersaturated. Samples of the ultramafic unit, gabbro and the mineralized breccia zone, have a narrow range of incompatible trace element ratios indicating a cogenetic relationship. The ultramafic rocks and the gabbros have relatively constant subchondritic Nb/Ta ratios (ultramafic rocks: Nb/Ta = 4.1–8.8; gabbro unit: Nb/Ta = 11.5–13.2), whereas samples of the breccia zone are characterized by highly variable Nb/Ta ratios (Nb/Ta = 2.5–16.6) and show evidence of metasomatism. The enrichment of light rare earth element and mobile incompatible elements in the mineralized samples provides supporting evidence for metasomatism. The interaction of the ultramafic fragments with the evolved fluid-rich mafic magma was key to the formation of the PGE mineralization in the Nuasahi massif.  相似文献   

18.
The Xigaze ophiolite in the central part of the Yarlung–Zangbo suture zone, southern Tibet, has a well-preserved sequence of sheeted dykes, basalts, cumulates and mantle peridotites at Jiding and Luqu. Both the basalts and diabases at Jiding have similar compositions with SiO2 ranging from 45.9 to 53.5 wt%, MgO from 3.1 to 6.8 wt% and TiO2 from 0.87 to 1.21 wt%. Their Mg#s [100Mg/(Mg + Fe)] range from 40 to 60, indicating crystallization from relatively evolved magmas. They have LREE-depleted, chondrite-normalized REE diagrams, suggesting a depleted mantle source. These basaltic rocks have slightly negative Nb- and Ti-anomalies, suggesting that the Xigaze ophiolite represents a fragment of mature MORB lithosphere modified in a suprasubduction zone environment. The mantle peridotites at Luqu are high depleted with low CaO (0.3–1.2 wt%) and Al2O3 (0.04–0.42 wt%). They display V-shaped, chondrite-normalized REE patterns with (La/Gd)N ratios ranging from 3.17 to 64.6 and (Gd/Yb)N from 0.02 to 0.20, features reflecting secondary metasomatism by melts derived from the underlying subducted slab. Thus, the geochemistry of both the basaltic rocks and mantle peridotites suggests that the Xigaze ophiolite formed in a suprasubduction zone.Both the diabases and basalts have Pd/Ir ratios ranging from 7 to 77, similar to MORB. However, they have very low PGE abundances, closely approximating the predicted concentration in a silicate melt that has fully equilibrated with a fractionated immiscible sulfide melt, indicating that the rocks originated from magmas that were S-saturated before eruption. Moderate degrees of partial melting and early precipitation of PGE alloys explain their high Pd/Ir ratios and negative Pt-anomalies. The mantle peridotites contain variable amounts of Pd (5.99–13.5 ppb) and Pt (7.92–20.5 ppb), and have a relatively narrow range of Ir (3.47–5.01 ppb). In the mantle-normalized Ni, PGE, Au and Cu diagram, they are relatively rich in Pd and depleted in Cu. There is a positive correlation between CaO and Pd. The Pd enrichment is possibly due to secondary enrichment by metasomatism. Al2O3 and Hf do not correlate with Ir, but show positive variations with Pt, Pd and Au, indicating that some noble metals can be enriched by metasomatic fluids or melts carrying a little Al and Hf. We propose a model in which the low PGE contents and high Pd/Ir ratios of the basaltic rocks reflect precipitation of sulfides and moderate degrees of partial melting. The high Pd mantle peridotites of Xigaze ophiolites were formed by secondary metasomatism by a boninitic melt above a subduction zone.  相似文献   

19.
卢宜冠  和文言 《地学前缘》2018,25(6):196-208
金宝山杂岩体位于扬子板块西缘,毗邻哀牢山造山带北段,岩体中蕴含丰富的铂钯资源,是峨眉山大火成岩省(ELIP)中大型岩浆型铂族元素矿床。岩体的主要组成为辉石橄榄岩,矿体以似层状、透镜状产出于辉石橄榄岩中。地幔是镍矿床和铂族元素矿床最重要的源区,因而对Ni、Cu及PGE等元素行为的研究,是剖析岩浆型Ni-Cu-PGE矿床源区特征的一个重要研究方向。该研究获得金宝山岩体中辉橄岩铂族元素及Sr-Nd同位素数据,结合前人对ELIP中不同类型岩石系列PGE成分研究及Ni、Cu、PGE等元素在岩浆和硫化物中的分配系数,半定量模拟得到金宝山原始岩浆的形成源于地幔中高度部分熔融(25%~40%)形成的富PGE岩浆(含12.8×10-9 Pd,9.8×10-9 Pt,0.6×10-9 Rh和0.7×10-9 Ir),其铂族元素成分与ELIP苦橄岩成分相当,并且岩浆在演化的过程中遭受了10%~20%地壳混染作用。利用批式部分熔融公式及各铂族元素在硅酸盐矿物和熔体之间的分配系数反演计算得到产生金宝山熔体的地幔约含有5.3×10-9 Pd,7.5×10-9 Pt,0.75×10-9 Rh和1.5×10-9 Ir,相比原始地幔而言并没有表现出明显富集PGE的特征。这表明地幔中高度部分熔融+大量岩浆与硫化物的充分反应是形成大型岩浆型铂族元素矿床的一种可具备的条件。  相似文献   

20.
Fourteen peridotite xenoliths collected in the Massif Central neogene volcanic province (France) have been analyzed for platinum-group elements (PGE), Au, Cu, S, and Se. Their total PGE contents range between 3 and 30 ppb and their PGE relative abundances from 0.01 to 0.001 × CI-chondrites, respectively. Positive correlations between total PGE contents and Se suggest that all of the PGE are hosted mainly in base metal sulfides (monosulfide solid solution [Mss], pentlandite, and Cu-rich sulfides [chalcopyrite/isocubanite]). Laser ablation microprobe-inductively coupled plasma mass spectrometry analyses support this conclusion while suggesting that, as observed in experiments on the Cu-Fe-Ni-S system, the Mss preferentially accommodate refractory PGEs (Os, Ir, Ru, and Rh) and Cu-rich sulfides concentrate Pd and Au. Poikiloblastic peridotites pervasively percolated by large silicate melt fractions at high temperature (1200°C) display the lowest Se (<2.3 ppb) and the lowest PGE contents (0.001 × CI-chondrites). In these rocks, the total PGE budget inherited from the primitive mantle was reduced by 80%, probably because intergranular sulfides were completely removed by the silicate melt. In contrast, protogranular peridotites metasomatized by small fractions of volatile-rich melts are enriched in Pt, Pd, and Au and display suprachondritic Pd/Ir ratios (1.9). The palladium-group PGE (PPGE) enrichment is consistent with precipitation of Cu-Ni-rich sulfides from the metasomatic melts. In spite of strong light rare earth element (LREE) enrichments (Ce/YbN < 10), the three harzburgites analyzed still display chondrite-normalized PGE patterns typical of partial melting residues, i.e., depleted in Pd and Pt relative to Ir and Ru. Likewise, coarse-granular lherzolites, a common rock type in Massif Central xenoliths, display Pd/Ir, Ru/Ir, Rh/Ir, and Pt/Ir within the 15% uncertainty range of chondritic meteorites. These rocks do not contradict the late-veneer hypothesis that ascribes the PGE budget of the Earth to a late-accreting chondritic component; however, speculations about this component from the Pd/Ir and Pt/Ir ratios of basalt-borne xenoliths may be premature.  相似文献   

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