首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 62 毫秒
1.
内蒙古东乌旗索纳嘎铅锌银矿区赋矿侵入岩为一由中粗粒花岗岩、细粒黑云母花岗岩和似斑状钾长花岗岩组成的杂岩体.三种岩石的锆石U-Pb同位素年龄依次为(319.6±4.1)Ma、(172.5±1.4)Ma和(165.5±1.8)Ma.三者均以高钾、富碱、贫镁为特征,均属钙碱性、准铝质-弱过铝质岩石,分异程度较高.岩石稀土总量较高,轻稀土相对富集,均具负铕异常;均富集U、Th,Rb/Sr值大于壳源Rb/Sr值,应属S型花岗岩.根据花岗岩地球化学和区域地质特征分析认为,中粗粒花岗岩形成于晚石炭世后碰撞伸展构造环境;中侏罗世细粒黑云母花岗岩和似斑状钾长花岗岩产于板内伸展构造环境,为同源岩浆演化不同阶段的产物.似斑状钾长花岗岩富含成矿元素Pb和Zn,而且其成岩年龄与辉钼矿(163.4±2.4) Ma~(166.6±2.4) Ma的Re-Os同位素年龄基本一致,可能为成矿母岩.  相似文献   

2.
巴音呼都森中酸性花岗岩位于东昆仑西段祁漫塔格山,处于北昆仑岩浆弧中,岩石类型由灰白色中细粒花岗闪长岩、灰白色中细粒二长花岗岩、浅肉红色细中粒似斑状二长花岗岩和浅灰肉红色二长花岗斑岩组成。笔者分别选取该地区多登似斑状二长花岗岩和景忍二长花岗斑岩进行LA-ICP-MS锆石微区定年,获得时间为(217±2)Ma、(212±1)Ma,表明该岩体成岩年龄为晚三叠世。岩石地球化学特征具有高SiO_2含量(67.01%~76.61%)、K_2O含量(3.47%~5.52%)、Na2O含量(1.55%~4.52%),而贫MgO(0.12%~1.37%),低TiO_2(0.06%~0.84%)、P2O5(0.01%~0.36%)的特征,稀土元素特征具弱的Eu负异常(δEu值=0.17~0.72),A/CNK均小于1.1,岩石系列属过铝质的高钾钙碱性。综合分析认为该期花岗岩形成于后造山伸展环境。该型花岗岩的确定证明了祁漫塔格地区晚三叠世之前碰撞造山作用的存在。  相似文献   

3.
辽宁南部盖州万福-岫岩龙潭地区位于华北板块北缘东段,辽东-辽南中生代岩浆弧带上。该地区中生代早期侵入岩主要由黑砬沟岩体和前豹沟岩体两个岩体构成,其中黑砬沟岩体岩性为中细粒黑云母二长花岗岩,前豹沟岩体岩性为似斑状黑云母二长花岗岩。中细粒黑云母二长花岗岩和似斑状黑云母二长花岗岩LA-ICP-MS锆石206Pb/238U年龄加权平均值分别为(219.8±0.7)和(220.9±2.1)Ma,时代为晚三叠世。岩体均属于钙碱性、准铝质岩石系列,K、Rb、Sr质量分数较高,Ta、Yb、Y质量分数偏低,稀土配分曲线右倾,负Eu异常不明显,轻稀土较富集,重稀土相对亏损。通过岩石学、年代学、岩石地球化学、构造环境及就位机制的分析,并结合邻区构造演化研究,认为该地区侵入岩为扬子板块与华北板块碰撞,在挤压的环境下地壳硅铝层增厚重熔,产生的同碰撞S型花岗岩。  相似文献   

4.
中川岩体位于秦岭造山带西段,岩体呈同心环状产出,由外向内岩性依次为似斑状黑云二长花岗岩→含斑黑云二长花岗岩→中细粒黑云二长花岗岩,岩体边部发育岩浆暗色包体,向内逐渐减少。LA-ICPMS锆石U-Pb定年结果显示,似斑状黑云二长花岗岩、含斑角闪黑云石英闪长岩(岩浆暗色包体)、细粒黑云二长花岗岩、岩浆暗色包体(无斑)和细粒花岗岩脉的年龄分别为:(221±1)Ma(MSDW=0.26)、(220±1)Ma(MSDW=0.11)、(217±1)Ma(MSDW=0.11)、(216±1)Ma(MSDW=0.26)、(207±1)Ma(MSDW=0.29),表明岩体从边部到中心年龄逐渐变新。寄主岩石与暗色包体的里特曼指数和A/CNK值分别为2.20~3.85、0.99~1.15和2.24~9.22、0.75~1.08,两者分别为准铝质-弱过铝质、高钾钙碱系列和钾玄岩-高钾钙碱系列;稀土元素和微量元素均显示出富集LREE、Rb、Ba、K等大离子亲石元素,亏损HREE、Zr、Hf、Ta、Nb、P、Ti等高场强元素的特征,具有弱的负铕异常(δEu=0.29~0.91),无Ce异常,寄主岩显示出I型花岗岩的特征,并且中心部位的细粒黑云二长花岗岩具高分异I型花岗岩的一些特征。在哈克图解上暗色包体和寄主岩石的主要氧化物具有良好的线性关系;在同位素组成上,寄主岩石与暗色包体的εNd(t)分别变化于-7.31~-8.73和-5.32~-5.69,TDM2分别变化于1.59~1.71 Ga和1.43~1.46 Ga,εHf(t)值分别为-7.02~-0.31和-3.0~0,TDM2为1.27~1.70 Ga和1.2~1.5 Ga,显示寄主花岗岩和岩浆暗色包体分别来源于不同源区,寄主岩石主要是古老地壳物质部分熔融的结果,岩浆暗色包体可能是来自岩石圈地幔,但与寄主花岗质岩浆已发生了一定程度的混合作用。岩体外围金矿床形成略晚于岩体,与花岗质脉岩年龄相近,空间上与岩体密切相关,结合前人成矿物质来源的研究,认为成矿物质与成岩物质具有相似性。表明该岩体与其周围的金矿具有成因联系,岩浆作用不仅提供了热能,也有物质贡献。  相似文献   

5.
折多山花岗岩时代、成因及其动力学意义   总被引:9,自引:3,他引:9  
沿鲜水河断裂分布的折多山花岗岩由早期的中细粒花岗闪长岩、二长花岗岩和略晚的主体似斑状二长花岗岩、少量的伟晶岩和细晶岩构成。早期中细粒二长花岗岩的SHRIMP锆石U-Pb同位素定年表明其侵位结晶于18±0.3Ma,使折多山花岗岩岩浆侵位结晶年龄和鲜水河断裂开始活动的时间提前近6Ma。岩石中保存有818±47Ma和156±8Ma的继承锆石.表明存在扬子西缘元古宙和中生代陆壳物质的再循环。在K_2O对SiO_2分类图上,早期的中细粒花岗闪长岩和二长花岗岩落在钙碱性系列区域,似斑状二长花岗岩落在橄榄玄粗岩系列区域,两个系列岩石总体上为铝饱和到过饱和。中细粒花岗闪长岩具有中等的稀土总量(162×10~(-6)~224×10~(-6))、高的(La/Yb)_N(74~118)和明显的正Eu异常,大离子亲石元素富集,Nb、Ta、P和Ti亏损,形成于岛弧钙碱性火山岩低度部分熔融。中细粒二长花岗岩与花岗闪长岩的地球化学特征相似,只是稀土总量和(La/Yb)n较低,形成于杂砂岩部分熔融。主体岩性粗粒似斑状二长花岗岩具有很宽的稀土总量(最高达533×10~(-6)),(La/Yb)_N随着稀土总量增加而增加(最高达523),明显负Eu异常,大粒子亲石元素强烈富集,Nb、Ta、Sr、P和Ti亏损,(~(87)Sr/~(86)Sr)_0=0.7084~0.7133,ε_(Nd)(t)=-5.67~-8.69,形成于元古代上部陆壳物质—砂页岩的较低程度的部分熔融。各类岩石的地球化学特征表明,部分熔融源区的物质组成继承了元古代大陆边缘的某些地球化学特性,经历了高压变质作用,部分熔融残留相主要为石榴石等。部分熔融过程发生于鲜水河断裂早期活动的剪切熔融过程,岩浆作用之前可能发生过强烈挤压而产生了高压变质作用。  相似文献   

6.
苦子干钾质碱性杂岩体主要由正长岩类和花岗岩类组成,其中透辉石正长岩主要造岩矿物为钾长石和透辉石,透辉石花岗岩主要造岩矿物为钾长石、斜长石、石英和透辉石。杂岩体中赋存的透辉石和钙铁辉石,均属于钙质辉石。两种岩石均属于钾质碱性岩,具有富碱、高钾、富钙的特征;富集Rb、Ba、Th、U等大离子亲石元素和Pb,贫Nb、Ta、Zr、Hf、Ti等高场强元素;稀土元素含量高(ΣREE=372. 37×10 -6~1218. 07×10 -6),富集轻稀土(LREE/HREE=21~37),具有轻微的铕负异常(Eu/Eu*=0. 66~0. 84)。锆石U Pb定年显示,透辉石正长岩成岩年龄为11. 7±0. 1 Ma,透辉石花岗岩成岩年龄为11. 0±0. 3 Ma,均属于喜马拉雅期,相当于中新世末。两类岩石锆石εHf(t)范围在-9. 4~-5. 5之间,介于球粒陨石与下地壳之间。研究表明,印度大陆与欧亚大陆碰撞,导致西昆仑 喀喇昆仑地区岩石圈大幅度缩短并加厚,引发加厚岩石圈拆沉引起软流圈物质上涌底侵,使得加厚下地壳物质的重熔,伴随地壳的拉张和抬升,最终形成苦子干钾质碱性杂岩体。  相似文献   

7.
相山火山盆地主体岩石为一套由熔结凝灰岩、流纹英安岩、流纹英安斑岩、碎斑熔岩、粗斑花岗斑岩及似斑状花岗岩组成的酸性火山-侵入杂岩体, 构成了两个完整的喷发-溢流(侵出)-侵入的岩浆活动亚旋回。本文在野外地质调查的基础上, 采用SIMS、LA-ICP-MS技术对主要岩类进行了高精度的锆石U-Pb年代学研究, 并建立了火山-侵入杂岩体的演化序列。结果表明, 打鼓顶组熔结凝灰岩代表了相山火山-侵入活动的最早期产物, 其锆石U-Pb年龄为140.7±2.7 Ma、140.1±1.8 Ma和138.2±1.6 Ma, 第一亚旋回主体流纹英安岩的锆石U-Pb年龄135.0±1.8 Ma。鹅湖岭组熔结凝灰岩代表了火山-侵入活动的第二亚旋回的开始, 其U-Pb年龄为135.6±1.2 Ma, 第二亚旋回主体碎斑熔岩的锆石U-Pb年龄133.6±1.3 Ma, 沙洲单元的粗斑花岗斑岩和似斑状花岗岩属于该亚旋回最晚期的侵入岩, 其锆石U-Pb年龄代表了相山火山-侵入活动的结束时间(分别为133.4±1.2 Ma和133.9±1.1 Ma)。相山早白垩世火山-侵入活动延续时间较短, 整体上呈现一个连续的过程, 初始时间在141 Ma附近, 结束时间在132 Ma左右。概言之, 第一亚旋回(141~135 Ma)以形成熔结凝灰岩、流纹英安岩和流纹英安斑岩为主, 第二亚旋回(135~132 Ma)以熔结凝灰岩、碎斑熔岩、粗斑花岗斑岩和似斑状花岗岩为主。岩石地球化学和野外地质特征也与两个亚旋回火山-侵入岩浆活动相吻合。  相似文献   

8.
为了解由早期(伟晶、巨晶)斑状二长花岗岩、中期(细粒)花岗岩和晚期花岗(斑)岩脉组成的马鞍山杂岩体的成因, 采用SHRIMP和LA-ICP-MS锆石U-Pb法厘定其侵入时代, 年龄显示伟晶斑状二长花岗岩为132.2±1.6 Ma, 巨晶斑状二长花岗岩为127. 7±1.2 Ma, 细粒花岗岩为128.3±1.1 Ma, 花岗斑岩脉为127.4±1.8 Ma.岩石地球化学研究结果表明岩体从早到晚具有从钾玄岩系列向高钾钙碱系列演变特征, 分异演化程度逐渐变高; 斑状二长花岗岩具有高REE含量, 轻重稀土分异较为明显, 具较强负铕异常和弱右倾的配分曲线特征, 富集K、Th、U、Rb等元素, 弱亏损Ba、Sr、P、Nb、Ta、Ti等元素; 细粒花岗岩及花岗(斑)岩脉具有较低REE含量, 轻重稀土分异不明显, 具强负铕异常和"V"型配分曲线特征, 富集K、Th、U、Rb等元素, 强亏损Ba、Sr、P、Nb、Ti等元素.马鞍山岩体为浙西北-皖南地区早白垩世俯冲造山后陆内拉张作用环境下下地壳部分熔融的同源岩浆侵位结晶分异作用形成的产物, 具有高分异I型花岗岩的特征.   相似文献   

9.
本文对出露在北阿尔金的喀腊大湾似斑状花岗岩、沟口泉似斑状二长花岗岩、卓尔布拉克花岗岩和木孜萨依白云母花岗岩进行了详细的岩相学、岩石地球化学、锆石U-Pb年代学和Hf同位素研究。地球化学特征显示喀腊大湾似斑状花岗岩具有高硅和钠,低铁、镁和钙的特征,铝饱和指数(A/CNK)为1.03~1.04,属弱过铝质I-S过渡型花岗岩;沟口泉似斑状二长花岗岩和卓尔布拉克花岗岩具有相对高的钠含量和准铝质-弱过铝质特征,表现为I型花岗岩;木孜萨依白云母花岗岩具有高硅、富碱、富集Rb、Th和LREE,亏损Ba、Sr、Ti和Eu特征,铝饱和指数大于1.1,属过铝质S型花岗岩。锆石U-Pb定年结果显示4个岩体的年龄分别为432.4±4.9Ma、432.8±4.1Ma、439.6±3.5Ma和437.3±2.4Ma。结合区域地质资料和构造判别图解,揭示这4个岩体均形成于同碰撞构造背景下,表明北阿尔金洋最终关闭以及洋陆转换的时间节点应为445~440Ma。锆石Hf同位素结果显示沟口泉似斑状二长花岗岩和卓尔布拉克花岗岩岩浆起源于新生地壳物质的部分熔融;喀腊大湾似斑状花岗岩起源于变杂砂岩部分熔融,木孜萨依白云母花岗岩起源于变泥质岩石的低程度部分熔融;但喀腊大湾似斑状花岗岩和木孜萨依白云母花岗岩ε_(Hf)(t)值分别为+0.18~+5.88和-6.47~+4.52,反映二者的岩浆源区也均有新生地壳物质的加入。上述这些特征与北祁连早古生代同碰撞花岗岩体具有良好的可对比性,进一步支持二者曾作为统一的整体经历了洋盆裂解-扩张-俯冲-闭合造山等构造演化过程。  相似文献   

10.
黑石山序列花岗岩位于甘肃金塔县以北,由粗中粒黑云二长花岗岩、中细粒斑状二长花岗和中细粒正长花岗岩岩类组成,其中,中细粒斑状二长花岗岩和粗中粒黑云二长花岗岩中分获(396. 8 ± 0. 71) Ma、(414. 2 ± 0. 69) Ma的锆石U-Pb年龄,成岩时代为早泥盆世。岩石地球化学显示其为高碱性强过铝质A型花岗岩,微量元素总体富集Rb、Th、Ta、Y,明显亏损Ba、Sr、P、Ti,轻稀土分馏较重稀土略强,具显著负Eu异常,反映岩浆源区斜长石的分离结晶良好。属于陆内壳源花岗岩,构造环境为早泥盆世造山后初始伸展体制下大陆地壳熔融的产物。  相似文献   

11.
Transport and transformation of nitrate was evaluated along a 1-km groundwater transect from an almond orchard to the Merced River, California, USA, within an irrigated agricultural setting. As indicated by measurements of pore-water nitrate and modeling using the root zone water quality model, about 63% of the applied nitrogen was transported through a 6.5-m unsaturated zone. Transport times from recharge locations to the edge of a riparian zone ranged from approximately 6 months to greater than 100 years. This allowed for partial denitrification in horizons having mildly reducing conditions, and essentially no denitrification in horizons with oxidizing conditions. Transport times across a 50–100-m-wide riparian zone of less than a year to over 6 years and more strongly reducing conditions resulted in greater rates of denitrification. Isotopic measurements and concentrations of excess N2 in water were indicative of denitrification with the highest rates below the Merced River. Discharge of water and nitrate into the river was dependent on gradients driven by irrigation or river stage. The results suggest that the assimilative capacity for nitrate of the groundwater system, and particularly the riverbed, is limiting the nitrate load to the Merced River in the study area.  相似文献   

12.
在野外地质调查的基础上,选取滹沱群豆村亚群底部四集庄组玄武岩、顶部青石村组玄武岩和东冶亚群中下部河边村组玄武岩,进行岩石学和地球化学研究。分析结果表明:玄武岩主量元素高TiO2、TFeO,低MgO,具有演化的基性岩浆的特征。稀土元素含量相对较高,具有弱—中等程度的轻稀土元素富集,中等程度的轻重稀土元素分异,轻微的Eu异常;玄武岩中Cr、Ni含量变化较大,但与Mg#具有很好的正相关性。微量元素配分图解中具有明显的Sr负异常,部分样品具有Nb、Ta和Ti负异常,无Zr、Hf负异常,与岛弧火山岩不同;同时Nb、Ta无分异,Zr/Hf值较高,具有板内玄武岩浆的特征。综合分析认为,滹沱群玄武岩可能形成于板内裂谷环境。在岩浆上升过程中发生橄榄石与尖晶石的分离结晶作用,同时不同程度地受到地壳的混染。  相似文献   

13.
岑巩县羊桥乡罗家塘杷榔组仅出露中-上部地层,岩性单一,均为青灰、灰绿色粉砂质泥、页岩.在其上部层位发现了俞氏贵州始海百合(Guizhoueocrinus yui Zhao,Parsley et Peng,2007),计有棘皮动物始海百合、腕足动物、软体动物-软舌螺、节肢动物-三叶虫等8属9种,包括了2个未定名的新种和1...  相似文献   

14.
填海工程使滨海地区的地下水物理化学条件改变,导致该区域地下水中重金属浓度升高。本文以深港西部通道填海区为例,采用实验室模拟填海条件的办法,初步探讨了影响填海区地下水重金属迁移的关键因素。模拟实验结果表明,填海区地下水中钨元素含量升高与地下水淡化、淤泥氧化过程以及填料风化有关;铜元素含量升高则与淤泥氧化过程以及填料风化有关;钒元素含量升高与地下水淡化和淤泥氧化过程有关,而其他元素含量升高则主要与填料风化释放有关。  相似文献   

15.
马元铅锌矿床是近年扬子陆块北缘铅锌找矿的新突破。矿体呈层状、似层状产于碑坝隆起翼部震旦系灯影组角砾状白云岩层间构造带中,围岩蚀变很弱。矿石中硫化物以闪锌矿、方铅矿为主,中粗粒晶质结构,充填于白云岩角砾间。闪锌矿富集Cd、Ge、Ag,贫In、Tl、Se,Ga/In为6~132,Ge/In多1000,成矿温度以中-低温为主。金属硫化物ε~(34)S值相对集中,为12.9‰~19.4‰,平均为17.4‰,来自于海相硫酸盐的还原。铅同位素组成稳定,~(206)Pb/~(204)Pb为17.858~17.918:~(207)Pb/~(204)Pb为15.603~15.694;~(208)Pb/~(204)Pb为37.756~38.046,具有造山带和上地壳铅的特征,震旦系可能提供了金属成矿物质。闪锌矿中流体包裹体的~3He/~4He为0.03Ra~1.05Ra,~(40)Ar/~(36)Ar为326.1~765.1,~(38)Ar/~(36)Ar为0.183~0.204,表明成矿流体主要为地壳流体和饱和大气水(大气降水或海水)的混合。闪锌矿内流体包裹体挥发分δ~(13)C_(CH_4)值为-36.01‰~-28.80‰,δ~(13)C_(C_2H_6)值为-27.72‰~-22.44‰,δ~(13)C_(CO_2)值为-23.24‰~-9.68‰,表明有机流体参与了成矿作用。石英、方解石的H-O同位素结果表明具有海水和有机水混合的特征。可见,成矿流体具有两种流体混合的特征,一为蒸发海水与围岩反应所形成的盆地卤水,二为有机流体。推测矿区可能存在一个古油气藏,由于TSR生成一高硫气藏,为区内还原性有机流体的主要来源。当富含Pb、Zn等成矿物质的成矿流体运移至富含CH_4和H_2S的还原性流体的矿区角砾岩带时,两种流体混合,Pb、Zn等遇到H_2S发生反应而沉淀成矿,并伴生热液白云石等,形成了马元铅锌矿床。综上所述,我们认为马元矿床属MVT型铅锌矿床。  相似文献   

16.
魏启荣  赵闪  王健  张敏  许欢  欧波  徐长君  金磊 《地学前缘》2018,25(6):136-151
以出露在西藏南木林县秦马弄地区二长花岗岩体为研究对象,从野外地质调查、岩石学、LA-ICP-MS锆石U-Pb定年、元素和Lu-Hf同位素地球化学等方面对其进行了分析研究。结果显示:秦马弄地区二长花岗岩体类似于A型花岗岩,形成于古近纪(E1),其LA-ICP-MS锆石U-Pb年龄为(62.0±0.5)~(63.0±0.5) Ma;岩体形成的温度较高(锆石饱和温度为745~805 ℃,平均766 ℃);岩石富SiO2(72.6%~75.0%)、Na2O(2.86%~3.59%)和K2O(4.12%~5.25%),贫CaO(0.72%~1.39%)和MgO(0.26%~0.36%),高FeOT/MgO值(7.26~10.3),属高钾钙碱性系列,弱过铝质;岩石具明显的负Eu异常(Eu/Eu*=0.40~0.70),普遍表现出Ba、Sr、P、Ti元素的亏损和Rb、Th、K、Zr、Hf元素的富集。εHf(t)值为-4.7~-1.8,其两阶段地壳Hf模式年龄tDM2为(1.1~1.3) Ga。秦马弄A型花岗岩体是冈底斯基底地壳物质部分熔融的岩浆产物,形成于古近纪印度板块与欧亚板块俯冲碰撞引起的总体为岛弧背景下的局部拉张构造环境。  相似文献   

17.
This paper reports the first results of a study of 11 isotope systems (3He/4He, 40Ar/36Ar, 34S/32S, 65Cu/63Cu, 62Ni/60Ni, 87Sr/86Sr, 143Nd/144Nd, 206–208Pb/204Pb, Hf–Nd, U–Pb, and Re–Os) in the rocks and ores of the Cu–Ni–PGE deposits of the Norilsk ore district. Almost all the results were obtained at the Center of Isotopic Research of the Karpinskii All-Russia Research Institute of Geology. The use of a number of independent genetic isotopic signatures and comprehensive isotopic knowledge provided a methodic basis for the interpretation of approximately 5000 isotopic analyses of various elements. The presence of materials from two sources, crust and mantle, was detected in the composition of the rocks and ores. The contribution of the crustal source is especially significant in the paleofluids (gas–liquid microinclusions) of the ore-forming medium. Crustal solutions were probably a transport medium during ore formation. Air argon is dominant in the ores, which indicates a connection between the paleofluids and the atmosphere. This suggests intense groundwater circulation during the crystallization of ore minerals. The age of the rocks and ores of the Norilsk deposits was determined. The stage of orebody formation is restricted to a narrow age interval of 250 ± 10 Ma. An isotopic criterion was proposed for the ore-bearing potential of mafic intrusions in the Norilsk–Taimyr region. It includes several interrelated isotopic ratios of various elements: He, Ar, S, and others.  相似文献   

18.
The geology and mineralogy of host metamorphic rocks, the mineralogy of sulfide ores, and the distribution of PGE mineralization were studied in detail for the Kvinum-1 and Kvinum-2 copper-nickel occurrences of the Kvinum ore field, which are the most promising targets for the copper-nickel-PGE mineralization of the Sredinny Range of Kamchatka. It was established that stringer-disseminated and massive copper-nickel ores are localized in amphibole peridotites, cortlandites, and form ore bodies varying from tens of centimeters to 5–20 m thick among the layered cortlandite-gabbroid massifs. The massive sulfide ores were found only at the bottom of cortlandite bodies and upsection grade into stringer-disseminated and disseminated ores. Pyrrhotite, chalcopyrite, and pentlandite are the major ore minerals with a sharply subordinate amount of pyrite, sphalerite, galena, arsenopyrite, and löllingite. Besides pentlandite, the Ni-bearing minerals include sulforasenides (gersdorffite), arsenides (nickeline), and tellurides (melonite) of nickel. It was found that PGE mineralization represented by antimonides (sudburyite) and tellurobismuthides (michenerite) of Pd with sharply subordinate platinum arsenide (sperrylite) is confined to the apical parts of massive sulfide zones and the transition zone to the stringer-disseminated ores. Ore intervals enriched in arsenides and tellurides of Ni, Pd, and Bi contain high-purity gold. In the central parts of the orebodies, the contents of PGE and native gold are insignificant. It is suggested that the contents of major sulfide minerals and the productivity of PGE mineralization in the cortlandites are defined by combined differentiation and sulfurization of ultramafic derivatives under the effect of fluids, which are accumulated at the crystallization front and cause layering of parental magmas with different sulfur contents. The fluid-assisted layering of mafic-ultramafic massifs resulted in the contrasting distribution of PGM in response to uneven distribution of sulfur (as well as As, Te, and Bi) during liquid immiscibility. The productivity of PGE mineralization significantly increases with increasing contents of S, As, Te, and Bi (elements to which Pt and, especially, Pd have high affinity) in fluids.  相似文献   

19.
 A geophysical survey was conducted to determine the depth of the base of the water-table aquifer in the southern part of Jackson Hole, Wyoming, USA. Audio-magnetotellurics (AMT) measurements at 77 sites in the study area yielded electrical-resistivity logs of the subsurface, and these were used to infer lithologic changes with depth. A 100–600 ohm-m geoelectric layer, designated the Jackson aquifer, was used to represent surficial saturated, unconsolidated deposits of Quaternary age. The median depth of the base of the Jackson aquifer is estimated to be 200 ft (61 m), based on 62 sites that had sufficient resistivity data. AMT-measured values were kriged to predict the depth to the base of the aquifer throughout the southern part of Jackson Hole. Contour maps of the kriging predictions indicate that the depth of the base of the Jackson aquifer is shallow in the central part of the study area near the East and West Gros Ventre Buttes, deeper in the west near the Teton fault system, and shallow at the southern edge of Jackson Hole. Predicted, contoured depths range from 100 ft (30 m) in the south, near the confluences of Spring Creek and Flat Creek with the Snake River, to 700 ft (210 m) in the west, near the town of Wilson, Wyoming. Received, May 1997 · Revised, February 1998 · Accepted, April 1998  相似文献   

20.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号