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1.
四川盆地中二叠统茅口组存在丰富的热液流体活动。在野外剖面和岩心观察的基础上,利用多种分析测试方法,对四川盆地东部茅口组碳酸盐岩中的热液活动特征进行了探讨。研究区茅口组热液活动包括2类,一类为硅质热液,表现为薄层硅质岩或硅质团块;另一类为碳酸盐型热液,表现为粗晶方解石和白云石充填在张性构造裂缝中或呈“雪片状”集合体,偶见少量黄铁矿、闪锌矿等金属硫化物伴生。硅质岩主量元素之间的关系表明硅质来源具有多样性,是热液硅与壳源硅的混合;黄铁矿、闪锌矿原位S同位素 δ34S 介于-3.91‰~-6.87‰之间,推测可能受到了微生物和基性岩浆岩的双重影响;方解石脉和具鞍状双晶的白云石脉普遍具有CaO高于标准计量、相对富Sr和U、贫REE和Ti、Ce/Ce*明显负异常、Eu/Eu*主体正异常、Y正异常等特征,表明碳酸盐脉为热液活动的产物,流体来源也呈现出火山活动相关流体与富钙地下水混合的特点。闪锌矿富集Ge和Cd,Zn/Cd及Zn/Fe值反映了中等成矿温度。硅质岩和碳酸盐流体包裹体均一温度变化范围较大,介于54.7~294.3 ℃之间,与稀土元素和微量元素比值所揭示的特征吻合。研究结果表明,穿层状硅质结核和团块的首次出现往往标志着茅口组热液活动的开始,而张性构造裂缝和碳酸盐型热液活动带来的围岩白云化作用则有效地改善了白云岩储集层的物性。  相似文献   

2.
滇东北矿集区茂租铅锌矿床热液白云石稀土元素特征   总被引:1,自引:1,他引:0  
吴永涛  韩润生 《矿床地质》2018,37(3):656-666
茂租铅锌矿床位于扬子地台西南缘,是滇东北矿集区内的一个大型矿床,矿体呈似层状产于震旦系灯影组白云岩中。矿石矿物以闪锌矿为主,次为方铅矿。脉石矿物主要为白云石、萤石和方解石。矿床的矿化蚀变分带明显,从围岩到矿体,矿化蚀变分带分别为:斑点状白云石化带、脉状白云石化带、星点状矿化带、细脉浸染状矿化带和矿体。白云石是该矿床的重要脉石矿物,除了震旦系灯影组的微晶-细晶白云石外,与成矿热液活动有关的白云石主要有斑点状白云石、脉状白云石和团块状白云石。文章对茂租铅锌矿床3种热液白云石及围岩灯影组白云岩的稀土元素地球化学特征进行了对比研究。结果表明:3种热液白云石与灯影组白云岩的稀土元素配分模式比较接近,总体上具有稀土元素总量低、轻稀土元素富集和Ce元素负异常的特征,这些相似的稀土元素特征表明3种蚀变白云石与围岩之间存在着成因联系。灯影组白云岩ΣREE含量较低,具有Eu元素负异常,而脉状和团块状热液白云石具有明显的Eu元素正异常,反映了存在较高温度的流体活动,热液蚀变白云岩是由高温热液流体形成。斑点状热液白云石Eu元素异常不太明显,可能是由于蚀变强度较弱,继承了原岩Eu元素负异常的特征。团块状白云石ΣREE和w(Y)、w(Sm)较高,表明有其他REE富集流体的加入。3种热液白云石是由高温流体形成,流体主要来源于地层,并有其他富含REE流体加入。  相似文献   

3.
乐红铅锌矿床位于扬子地块西南缘,是滇东北铅锌(银)多金属矿集区中的典型代表。通过不同中段典型矿化-蚀变样品中白云石、方解石、重晶石及闪锌矿稀土元素地球化学研究,探讨了该矿床的成矿流体来源。灰黑色白云岩、脉状-团块状白云石、斑团状-脉状重晶石、脉状方解石和各世代闪锌矿的∑REE均较低,均值分别为6.44×10-6、5.62×10-6、4.66×10-6和8.88×10-6,S1:1.12×10-6,S2:0.35×10-6,S3:2.75×10-6;δEu分别为0.72、0.80、68.27和0.65,S1:2.08,S2:3.78,S3:0.75;稀土配分模式为LREE富集-HREE亏损的右倾型。白云石、方解石和闪锌矿在REE配分模式、Eu和Ce异常及La/Ho-Y/Ho图解上的分布等均与未蚀变白云岩接近,表明成矿流体主要来源于碳酸盐地层中的循环水;而早阶段重晶石稀土元素特征差别明显,可能与早期深部流体有关。综合研究表明成矿流体具多源性,可能为源自于深部流体沿构造带运移至有利部位与碳酸盐岩地层中循环水发生混合。Eu、Ce异常特征表明,从成矿早阶段到成矿晚阶段,成矿过程经历了早期高温、氧化→成矿期中高温、弱还原→晚期中低温、还原的演化过程。  相似文献   

4.
黔西北纳雍枝铅锌矿床位于扬子板块西南缘,是近年来贵州境内新发现大型的铅锌矿,其铅锌资源量超过135万吨。铅锌矿体呈层状、似层状和脉状产于下寒武统清虚洞组白云岩地层中,矿物主要为闪锌矿、方铅矿、白云石以及少量黄铁矿和方解石等。白云石是该矿床最为主要的脉石矿物,其形成贯穿整个成矿过程,对成矿期白云石的地球化学特征研究,可以为揭示成矿流体来源和演化提供重要信息。本次分析结果显示,成矿期白云石稀土元素含量介于61.79×10~(-6)~63.03×10~(-6)之间,以富集轻稀土,较明显Eu异常(δEu=0.63~0.66)和不明显Ce异常(δCe=1.28~1.33)为特征。成矿期热液白云石与赋矿围岩稀土含量虽不同,但均呈现轻稀土富集型。阴极发光下成矿期白云石呈亮暗相间的同心环带状,暗示在整个白云岩化过程中热液流体经历了至少8次的化学成分改变或脉动变化。结合成矿期白云石稀土元素分配模式、Y-REE和Y-Sm组成,我们认为本矿床成矿流体具有多源性特征,赋矿碳酸盐岩、下伏地层以及基底岩石均可能为成矿提供部分流体,白云石生长环带与赋矿白云岩溶解与/或硫化物沉淀有关。此外,成矿期白云石和期后热液白云石阴极发光图像和稀土元素地球化学特征明显不同,可作为在区内寻找经济性铅锌矿化的重要地球化学标志。  相似文献   

5.
黄琴  朱永峰 《新疆地质》2012,30(4):411-417
灰绿山金矿由热液脉型和浸染状矿石组成。围岩蚀变矿物为石英、黄铁矿、绿泥石和碳酸盐,其中黄铁矿和碳酸盐与成矿作用密切相关。其主要矿石矿物有黄铁矿、毒砂、黄铜矿、闪锌矿、方铅矿和自然金。热液成矿作用划分为石英-钠长石-碳酸盐、粗粒石英、黄铁矿-毒砂、黄铁矿-碳酸盐、石英-方解石5个阶段。不同蚀变围岩具相似稀土分布模式,大离子亲石元素、高场强元素和稀土元素在围岩与成矿流体反应中发生了迁移。  相似文献   

6.
以碳酸盐岩为容矿岩石的后生热液铅锌矿床(Mississippi Valley-type,MVT矿床)是世界上一种重要的铅锌矿床类型,也是锗的重要工业来源之一。热液碳酸盐矿物是MVT矿床中最主要的脉石矿物,其形成贯穿整个MVT矿床成矿过程。因此,碳酸盐矿物携带丰富的成矿信息,是认识MVT矿床成因的重要补充。位于贵州省贵定县境内的竹林沟锗锌矿床,是近年来新发现的富锗锌矿床(平均品位97.9×10~(-6)Ge,6.54%Zn),赋存于泥盆系碳酸盐岩中。本次工作发现该矿床不同期次热液白云石的矿物学和微量元素地球化学特征存在明显差异:成矿期前白云石(Dol1)主要呈细脉状穿插围岩,被成矿期白云石和硫化物脉穿插,部分呈细粒状被后期白云石包裹;成矿早期白云石(Dol2)主要呈粗粒状,与闪锌矿共生;主成矿期白云石(Dol3)主要呈脉状、团块状,与闪锌矿和黄铁矿共生;成矿晚期白云石(Dol4)呈团块状充填于闪锌矿矿石或者围岩中;成矿期后白云石(Dol5)呈脉状穿插或包裹其它期次白云石/闪锌矿-黄铁矿条带。C-O同位素研究表明,成矿期白云石主要来源于碳酸盐围岩的溶解,成矿流体中的C来源于围岩,而较低的δ~(18)O值可能是亏损~(18)O的成矿流体和围岩间水/岩反应过程中O同位素发生交换的结果。激光剥蚀电感耦合等离子体质谱(LA-ICPMS)白云石原位微量元素分析结果表明,Dol2-Dol4的Y/Ho比值相对稳定(30.5~47.9),结合区域成矿特征,认为形成成矿期白云石的流体主要为盆地卤水,与该矿床属于MVT矿床事实吻合。Dol1和Dol5具有相对较低的稀土总量(∑REE=3.97×10~(-6)~29.7×10~(-6)),很可能与白云岩围岩(∑REE=25.2×10~(-6)~61.3×10~(-6))溶解作用有关,直接继承围岩的稀土元素组成特征;成矿期Dol2-Dol4的∑REE较高(∑REE=39.2×10~(-6)~117×10~(-6)),暗示成矿流体本身也携带了部分稀土元素。成矿各期次白云石均具有明显的Eu负异常(δEu=0.38~0.72)特征,指示成矿温度可能较高( 200℃),Ce正异常相对稳定(δCe=1.10~1.28),暗示其成矿流体pH值保持弱酸性。综上,本文认为竹林沟锗锌矿床的形成经历如下过程:在伸展背景下,深循环盆地卤水萃取下伏地层和基底岩石中的Zn、Ge和REE等元素,形成富金属流体,受构造作用驱动沿区域性断裂不断向上运移,在赋矿层位与富硫流体发生混合作用,导致闪锌矿等硫化物沉淀;在整个成矿过程,成矿环境经历了还原→氧化的转变,成矿元素发生了共生分异,在竹林沟形成富锗锌矿体,在牛角塘形成富镉锌矿体,而pH始终保持弱酸性,直至被围岩碳酸盐岩中和。  相似文献   

7.
大梁子铅锌矿床位于扬子地台西南缘,是川滇黔多金属成矿带中大型铅锌矿床之一,其金属储量(Pb+Zn)为180万吨,平均品位11.45%。本文在闪锌矿微量元素地球化学和系统总结S、H、O、C、Sr同位素研究结果的基础上,分析了成矿流体、金属的来源,并探讨了成矿机制。研究结果表明:大梁子矿区闪锌矿Ge/In、Ga/In的比值较大(远大于100),并富集As、Sb和Ag等元素,指示出了成矿温度属于中-低温范畴,有别于矽卡岩型、岩浆热液型铅锌矿床。成矿流体中δ18O水的变化范围为-6.02‰~3.31‰,δD的变化范围为-74.6‰~-40.3‰,推测成矿流体可能起源于大气降水和变质水(建造水)混合。主要脉石矿物热液方解石、白云石δ13C V-PDB值介于-3.5‰~+1.4‰之间,平均值为-1.23‰;δ18O V-SMOW值介于+11.6‰~+18.1‰之间,平均值为14.88‰;表明成矿流体中的CO2为震旦系碳酸盐岩的溶解成因,但受围岩有机碳及大气降水影响强烈。研究区矿石矿物方铅矿、闪锌矿、黄铁矿的δ34S众值出现在10‰~20‰之间;硫酸盐矿物的δ34S为20.2‰~38.7‰,表明还原硫主要来自地层中海相硫酸盐的还原。闪锌矿87Sr/86Sr i的变化范围为0.707137~0.714588,均值0.711951,高于赋矿围岩震旦系灯影组白云岩锶同位素比值(0.70834~0.70861),表明成矿流体可能流经了围岩碳酸盐岩层与基底地层,并与之进行了水岩反应及同位素交换。  相似文献   

8.
陕西南郑马元层控型铅锌矿床位于扬子板块北部碑坝穹隆构造的南缘,呈似层状产于震旦系灯影组角砾状白云岩构造带中。矿石矿物为闪锌矿、方铅矿,脉石矿物有白云石、石英、重晶石、方解石和固体沥青。矿区明显发育早期微晶脉状和晚期(成矿期)粗晶团斑状热液白云石。本文对马元铅锌矿床两类热液白云石及围岩的C、O、Sr同位素及稀土元素(REE)地球化学特征进行了对比研究。结果表明:早期脉状白云石的δ~(13)C(0.18‰)、δ~(18)O(-7.39‰)及~(87)Sr/~(86)Sr(0.70967)值与围岩震旦系白云岩大致一致,表明成矿流体中C、O、Sr来源于震旦系白云岩的溶解,稀土元素具明显的Eu正异常(δEu=1.78),可能反映了其形成于较强的还原环境。成矿期团斑状白云石δ~(13)C值(-2.51‰~0.93‰)与围岩震旦系白云岩(-3.2‰~1.33‰)一致,δ~(18)O值(-12.91‰~-10.95‰)较围岩(-9.2‰~-3.85‰)平均偏低5.7‰,且团斑状白云石具有较围岩白云岩高的稀土总量和~(87)Sr/~(86)Sr值,表明流体可能流经了具有高87Sr/86Sr值和高稀土总量的基底或上覆碎屑岩系,其较围岩偏低δ~(18)O值和Eu正异常(δEu=1.42)可能与流体具有较高的温度有关。早期脉状白云石可能与震旦系地层中封存的低温压实作用流体有关,晚期(成矿期)与团斑状白云石有关的成矿期流体可能主要与循环达基底的深部中低温流体有关。  相似文献   

9.
江彪  张通  陈毓川  黄凡  武广  孙洪军  李治远  李雪娇  闫洁 《地质学报》2019,93(12):3166-3182
双尖子山超大型银多金属矿床是大兴安岭成矿带最具代表性的热液型银矿床,也是目前亚洲最大银矿。该矿床热液作用可划分为Ⅰ、Ⅱ两期,第Ⅰ期又可划分三个成矿阶段,依次为成矿阶段(Ⅰ-1)(主要为黄铁矿+方铅矿+闪锌矿+银矿物+石英组合,分布在北西走向矿脉)→成矿阶段(Ⅰ-2)(主要为方铅矿+银矿物+闪锌矿+石英+方解石组合,分布在北北东走向矿脉)→成矿阶段(Ⅰ-3)(含金石英+方解石脉组合,分布在近东西走向矿脉)。第Ⅱ期为胶结硫化物脉的无矿石英脉,主要是石英+少量方解石组合。该矿床流体包裹体以L型和V型为主,总体属于中低温-低盐度流体。成矿阶段(Ⅰ-1)流体包裹体均一温度介于171℃~280℃之间,平均228℃,盐度介于0.53%~12.73%(NaCl_(eqv))之间,平均3.48%(NaCl_(eqv));成矿阶段(Ⅰ-2)流体包裹体均一温度介于109.3℃~258.0℃之间,平均193.3℃,盐度介于0.18%~22.38%(NaCl_(eqv))之间,平均4.20%(NaCl_(eqv));第Ⅱ期热液流体包裹体均一温度介于238.7℃~362.9℃之间,平均275.9℃,盐度介于0.35%~2.24%(NaCl_(eqv))之间,平均1.05%(NaCl_(eqv))。方解石δ~(13)C介于-11‰~-7.4‰,δ~(18)O_(SMOW)介于1‰~4.5‰;石英和方解石δD_(H_2O)变化于-145‰~-65‰,δ~(18)O_(H_2O)变化于-12.5‰~4.6‰,表明流体为岩浆水和大气降水的混合来源;金属硫化物~(40)Ar/~(36)Ar值介于294.75~303.92,~3He/~4He值介于0.25~0.81Ra,显示壳源流体特征。双尖子山矿床成矿流体具有脉冲式活动、多阶段演化和多来源特点,成矿流体具有从相对的高温高盐度向低温低盐度演化规律。岩浆水与循环大气降水的混合作用可能是本矿床金属沉淀的主要机制。双尖子山矿床属于与壳源岩浆活动有关的中浅成-中低温热液型银多金属矿床。  相似文献   

10.
热液环境在碳酸盐岩成岩作用中十分重要,MVT铅锌矿床和热液白云岩储层都与之有关。四川盆地西部中二叠统栖霞组普遍发育厘米级大小的晶洞,其充填物主要为晶体粗大的非平直晶面鞍形白云石,这些鞍形白云石经历了广泛的溶解作用,次生方解石充填于鞍形白云石溶解空间及其晶间孔隙中。本文在碳酸盐岩岩石学特征研究的基础上,测试了晶洞充填物的碳氧同位素组成、元素构成和包裹体均一化温度,结合川西中二叠统埋藏历史和二叠纪以来的非地热增温热事件,研究了晶洞充填物中鞍形白云石的沉淀与溶解流体,以及充填于鞍形白云石溶解空间和晶间孔隙中次生方解石的沉淀流体。研究表明:在作为晶洞充填物的碳酸盐矿物中,鞍形白云石和沉淀于白云石晶间、晶内的次生方解石具有显著不同的氧同位素组成和包裹体均一化温度,前者δ18O值-5.94‰~-4.35‰,包裹体均一化温度主要为110~210℃,后者δ18O值-10.34‰~-8.75‰,包裹体均一化温度主要为70~110℃,据此反演的鞍形白云石沉淀流体的δ18O值为+4‰~+14‰(SMOW),方解石相应值为-4‰~+5‰(SMOW),显示白云石是在高盐度和高温流体中沉淀的,方解石是在相对低盐度和低温流体中沉淀的;晶洞充填物的碳同位素分析表明,鞍形白云石和沉淀于白云石晶间和晶内的次生方解石的δ13C值大致分布在0.7‰~2.6‰的范围内,显著低于同期海水的δ13C值,两种碳酸盐矿物中的碳具有同期海水和深部CO2混合碳源的特征;中二叠世末东吴运动期间峨眉山玄武岩喷发时岩浆活动的热效应导致了当时处于浅埋藏环境的栖霞组地层中鞍形白云石的沉淀,而热事件后流体温度和盐度的同时降低则使得鞍形白云石溶解,同时伴随方解石沉淀在鞍形白云石溶解后的孔隙和晶间孔隙中。  相似文献   

11.
茂租铅锌矿床位于扬子地台西南缘,是滇东北矿集区内的一个大型矿床,矿体主要呈似层状产于震旦系灯影组白云岩中;矿石矿物以闪锌矿为主,次为方铅矿;脉石矿物主要为白云石、方解石和萤石。本文对该矿床中与铅锌矿密切共生的团块状白云石、方解石和萤石以及围岩灯影组白云岩的REE地球化学特征和C、O、Sr同位素进行了对比研究。结果表明:团块状白云石和方解石的稀土配分模式、C同位素和Sr同位素比值与围岩灯影组白云岩比较接近,表明形成团块状白云石和方解石的成矿流体主要来源于围岩灯影组白云岩的溶解;但这两种矿物的稀土总量ΣREE高于灯影组白云岩,说明成矿流体除了主要由围岩提供REE外,还有部分其他富含REE流体的加入。萤石则具有LREE亏损和分配曲线相对平缓的稀土配分模式特征,表明萤石形成于成矿的晚阶段,有更多的外部流体的加入。团块状白云石、方解石和萤石表现出明显的Eu正异常,且团块状白云石和方解石的O同位素低于灯影组白云岩,反映了存在较高温度的流体活动,这3种脉石矿物是由高温热液流体形成的。灯影组白云岩和3种脉石矿物都具有明显的Ce负异常,说明成矿流体可能主要来源于地层循环水,继承了围岩的Ce负异常特征。方解石和萤石的Sr同位素比值高于围岩震旦系灯影组白云岩和峨眉山玄武岩,但小于基底岩石昆阳群和会理群,说明成矿流体主要由赋矿围岩等沉积地层中的循环流体与流经了基底岩石的深部流体混合形成。  相似文献   

12.
川北元坝气田二叠系长兴组49个碳酸盐岩样品的稀土元素(REE)和钇(Y)含量的测试结果表明:稀土元素总量(ΣREE)普遍较低(平均1.50×10-6),说明岩石样品几乎无陆源碎屑的混入,且未受到深部热液的影响。页岩标准化后的白云岩REE特征表现为轻稀土(LREE)亏损、正La异常、负Ce异常(0.49~1.08,平均0.75)、普遍的正Eu异常(0.89~46.00,平均4.68)及较高的Y/Ho值(28.82~63.47,平均43.04),总体表现出与海水的REE配分特征类似,表明白云化流体为还原性的海源流体,白云岩形成环境为埋藏环境。元坝气田长兴组构造平缓,白云岩横向上连续分布,碳酸盐岩δ18O(-7.07‰~-2.92‰,平均-4.95‰)相对较重,岩心与岩石薄片未观察到角砾状或条带状的热液白云岩典型构造,均说明元坝气田长兴组未受到深部热液流体的影响,白云岩较高的正Eu异常与深部热液流体无关;电子扫描显微镜下观察到大量的热化学硫酸盐还原反应(TSR)的产物单质硫和富硫沥青,表明元坝气田长兴组基质白云岩形成之后的TSR作用导致了地层水极度还原的环境,从而造成了白云岩较高程度的正Eu异常,反过来说明了TSR作用对白云岩储集层具有一定的改造作用。  相似文献   

13.
The Pb-Zn metallogenic district in NW Guizhou Province is an important part of the Yun-nan-Sichuan-Guizhou Pb-Zn metallogenic province, and also is one of the most important Pb-Zn producers in China. The hosting rocks of the Pb-Zn deposits are Devonian to Permian carbonate rocks, and the basement rocks are meta-sedimentary and igneous rocks of the Proterozoic Kunyang and Huili groups. The ore minerals are composed of sphalerite, galena and pyrite, and the gangue minerals are include calcite and dolomite. Geology and C-O isotope of these deposits were studied in this paper. The results show that δ13C and δ18O values of hydrothermal calcite, altered wall rocks-dolostone, sedimentary calcite and hosting carbonate rocks range from -5.3‰ to -0.6 ‰ (mean -3.4‰) and +11.3‰ to +20.9 ‰ (mean +17.2‰), -3.0‰ to +0.9 ‰ (mean -1.3‰) and +17.0‰ to +20.8‰ (mean +19.7‰), +0.6‰ to +2.5 ‰ (mean +1.4‰) and +23.4‰ to +26.5 ‰ (mean +24.6‰), and -1.8‰ to +3.9‰ (mean +0.7‰) and +21.0‰ to +26.8‰ (mean +22.9‰), respectively, implying that CO2 in the ore-forming fluids was mainly a result of dissolution of Devonian and Carboniferous carbonate rocks. However, it is difficult to evaluate the contribution of sediment de-hydroxylation. Based on the integrated analysis of geology, C and O isotopes, it is believed that the ore-forming fluids of these carbonate-hosted Pb-Zn deposits in this area were derived from multiple sources, including hosting carbonate rocks, Devonian to Permian sedimentary rocks and basement rocks (the Kun-yang and Huili groups). Therefore, the fluids mixing is the main precipitation mechanism of the Pb-Zn deposit in this province.  相似文献   

14.
Located in the western Yangtze Block, the Qingshan Pb–Zn deposit, part of the Sichuan–Yunnan–Guizhou Pb–Zn metallogenic province, contains 0.3 million tonnes of 9.86 wt.% Pb and 22.27 wt.% Zn. Ore bodies are hosted in Carboniferous and Permian carbonate rocks, structurally controlled by the Weining–Shuicheng anticline and its intraformational faults. Ores composed of sphalerite, galena, pyrite, dolomite, and calcite occur as massive, brecciated, veinlets, and disseminations in dolomitic limestones.

The C–O isotope compositions of hydrothermal calcite and S–Pb–Sr isotope compositions of Qingshan sulphide minerals were analysed in order to trace the sources of reduced sulphur and metals for the Pb–Zn deposit. δ13CPDB and δ18OSMOW values of calcite range from –5.0‰ to –3.4‰ and +18.9‰ to +19.6‰, respectively, and fall in the field between mantle and marine carbonate rocks. They display a negative correlation, suggesting that CO2 in the hydrothermal fluid had a mixed origin of mantle, marine carbonate rocks, and sedimentary organic matter. δ34S values of sulphide minerals range from +10.7‰ to +19.6‰, similar to Devonian-to-Permian seawater sulphate (+20‰ to +35‰) and evaporite rocks (+23‰ to +28‰) in Carboniferous-to-Permian strata, suggesting that the reduced sulphur in hydrothermal fluids was derived from host-strata evaporites. Ores and sulphide minerals have homogeneous and low radiogenic Pb isotope compositions (206Pb/204Pb = 18.561 to 18.768, 207Pb/204Pb = 15.701 to 15.920, and 208Pb/204Pb = 38.831 to 39.641) that plot in the upper crust Pb evolution curve, and are similar to those of Devonian-to-Permian carbonate rocks. Pb isotope compositions suggest derivation of Pb metal from the host rocks. 87Sr/86Sr ratios of sphalerite range from 0.7107 to 0.7136 and (87Sr/86Sr)200Ma ratios range from 0.7099 to 0.7126, higher than Sinian-to-Permian sedimentary rocks and Permian Emeishan flood basalts, but lower than Proterozoic basement rocks. This indicates that the ore strontium has a mixture source of the older basement rocks and the younger cover sequence. C–O–S–Pb–Sr isotope compositions of the Qingshan Pb–Zn deposit indicate a mixed origin of the ore-forming fluids and metals.  相似文献   

15.
霍什布拉克铅锌矿床是新疆西南天山地区晚古生代碳酸盐岩容矿的重要矿床。本文采用高精度电感耦合等离子质谱(ICP-MS)对主要矿石矿物(黄铁矿、方铅矿、闪锌矿)和热液脉石矿物方解石进行了微量元素地球化学研究。研究表明,黄铁矿、方铅矿、闪锌矿、方解石具有较为相似的稀土元素特征,Eu正异常明显,弱负或弱正Ce异常指示成矿流体最初由相对氧化的条件演化为还原条件。与霍什布拉克岩体、容矿围岩的稀土元素组成进行对比后发现,硫化物及热液方解石稀土元素配分曲线部分与重结晶泥晶灰岩重合,结合前人同位素地球化学研究,认为容矿坦盖塔尔组碳酸盐岩为成矿提供了必要的成矿物质及成矿流体组分。Ga/In值显示闪锌矿为低温成矿;硫化物明显富集LREE,Hf/Sm、Nb/La和Th/La值小于1,显示铅锌成矿过程中成矿流体主体以富Cl为特征;Y/Ho、Zr/Hf和Nb/Ta值变化范围相对较小,表明成矿期流体性质相对较为稳定,基本未混入外来流体。  相似文献   

16.
白云岩储层是茅口组一种重要的储层类型,其成因是研究重点。为此,以川中-川东地区茅口组白云岩为例,通过露头观测、岩心观察、岩石薄片鉴定及岩石地球化学分析的方法,分析了茅口组白云岩(石)的成因。结果表明:茅口组白云岩(石)可划分为层状粉晶白云岩、层状细-中晶白云岩、灰岩中零散分布的白云石、透镜状中-粗晶白云岩和鞍形白云石胶结物5种类型。其中,层状粉晶白云岩原始结构保存较好,地球化学特征与原始灰岩相似,是早期埋藏环境下形成的产物;层状细-中晶白云岩与层状粉晶白云岩相伴生,δ18O值较灰岩偏负,包裹体均一温度大于正常地层埋藏温度,部分样品可见Eu正异常,是由层状粉晶白云岩在热液作用下重结晶形成;灰岩中零散分布的白云石则与矿物的稳定化有关;透镜状中-粗晶白云岩和鞍形白云石胶结物镜下可见白云石晶面弯曲和波状消光,其δ18O值可达-10‰,包裹体均一温度高于正常地层埋藏温度,Eu正异常明显,是典型的热液白云岩(石)。  相似文献   

17.
准噶尔盆地东部中二叠统平地泉组(相当于芦草沟组)发育一套陆内裂谷背景下的湖泊相砂岩、泥岩、灰岩、白云岩、凝灰岩互层以及它们的过渡岩石,是区内最主要的烃源岩和储集层。近年来,在帐北断褶带、石树沟凹陷和吉木萨尔凹陷中二叠统平地泉组暗色泥岩、泥晶白云岩中发现了一类特殊的沉积岩,该类岩石发育类似火山岩的斑状结构。“斑晶”主要为粗晶白云石、方解石、黄铁矿及方沸石等,在岩心标本上呈“树枝状”或“雪花状”散布于基质中;基质则主要由泥晶白云石或泥质沉积物构成,富含有机质,发育水平层理及小型变形层理等。岩石学和矿物学分析表明,“斑晶”往往为粗晶方解石或白云石的集合体,也常见黄铁矿、方沸石与碳酸盐矿物共生,“斑晶”方解石发育环带,而白云石未见明显环带。电子探针分析表明“斑晶”方解石具有低镁、低铁及锶分布不均匀的特点,而“斑晶”白云石(FeO含量介于7.272%~11.086%之间)与“基质”泥晶白云石(FeO含量为1.027%)相比具有明显富铁的特点。流体包裹体分析表明“斑晶”方解石均一温度平均为180.68,℃,“斑晶”白云石均一温度平均为320.95,℃。这种特殊 “斑状”白云岩和“斑状”泥质岩很可能是湖底热液喷流作用的结果。当湖水沿深大断裂下渗至地下深处,与围岩发生物质交换并被加热后再沿断裂返回地表喷涌而出,热液流体携带的离子达到过饱和后就会析出方解石、白云石及黄铁矿等集合体,随热液的喷涌作用上升并破碎散落于湖底细粒沉积物内。“斑状”白云岩的发现对新疆北部中二叠统热水喷流沉积作用及该区油气的成因研究具有重要的意义。  相似文献   

18.
Well-developed dissolution pores occur in the dolomites of the Sinian Dengying Formation, which is an important oil and gas reservoir layer in the Sichuan Basin and adjacent areas in southern China. The pores are often filled with quartz, and some dolomites have been metasomatically altered to siliceous chert. Few studies have documented the characteristics, source or origin of silica-rich fluids and their effects on the dolomite reservoir. The peak homogenisation temperatures(T_h) of fluid inclusions in pore-filling quartz are between 150℃ and 190℃, with an average of 173.7℃. Gases in the inclusions are mainly composed of CO_2, CH_4 and N_2. Compared with host dolomite, pore-filling quartz and metasomatic chert contain higher amounts of Cr, Co, Mo, W and Fe, with average concentrations of 461.58, 3.99, 5.05, 31.43 and 6666.83 ppm in quartz and 308.98, 0.99, 1.04, 13.81 and 4703.50 ppm in chert, respectively. Strontium levels are lower than that in the host dolomite, with average concentrations in quartz and chert of 4.81 and 11.06 ppm, respectively. Rare earth element compositions in quartz and chert display positive Eu anomalies with a maximum δEu of 5.72. The δD_(SMOW) values of hydrogen isotopes in water from quartz inclusions vary from-85.1‰ to-53.1‰ with an average of-64.3‰, whereas the δ~(18)O_(SMOW) values range from 7.2‰ to 8.5‰ with an average of 8.2‰. The average ~(87)Sr/~(86)Sr ratios in quartz and chert are 0.711586 and 0.709917, respectively, which are higher than that in the host dolomite. The fluid inclusions, elemental and isotopic compositions demonstrate that the formation of quartz and chert was related to silica-rich hydrothermal fluid and that the fluid was the deep circulation of meteoric water along basement faults. Interactions with silica-rich hydrothermal fluids resulted in densification of dolomite reservoirs in the Dengying Formation through quartz precipitation and siliceous metasomatism. However, it increased the resistance of the host dolomite to compaction, improving the ability to maintain reservoir spaces during deep burial. Evidence for silica-rich hydrothermal activity is common in the Yangtze Platform and Tarim Basin and its influence on deep dolomite reservoirs should be thoroughly considered.  相似文献   

19.
《International Geology Review》2012,54(10):1300-1310
The Tianbaoshan Pb–Zn deposit, part of the Sichuan–Yunnan–Guizhou (SYG) Pb–Zn metallogenic province, is located in the western Yangtze Block and contains 2.6 million tonnes of 10–15 wt.% Pb + Zn metals. Ore bodies occur as vein or tubular types and are hosted in Sinian (late Proterozoic) carbonate rocks and are structurally controlled by the SN-trending Anninghe tectonic belt and NW-trending concealed fractures. The deposits are simple in mineralogy, with sphalerite, galena, pyrite, chalcopyrite, arsenopyrite, freibergite, and pyrargyrite as ore minerals and dolomite, calcite, and quartz as gangue minerals. These phases occur as massive, brecciated, veinlet, and dissemination in dolostone of the upper Sinian Dengying Formation. Hydrogen and oxygen isotope compositions of hydrothermal fluids range from –47.6 to –51.2‰ and –1.7 to +3.7‰, respectively. These data suggest that H2O in hydrothermal fluids had a mixed origin of metamorphic and meteoric waters. Carbon and oxygen isotope compositions range from –6.5 to –4.9‰ and +19.3 to +20.2‰, respectively. These compositions plot in the field between mantle and marine carbonate rocks with a negative correlation, suggesting that CO2 in the ore-forming fluids had multiple sources, including the Permian Emeishan flood basalts, Sinian-to-Permian marine carbonate rocks, and organic matters in Cambrian-to-Permian sedimentary rocks. Sulphur isotope compositions range from –0.4 to +9.6‰, significantly lower than Cambrian-to-Permian seawater sulphate (+15 to +35‰) and sulphate (+15 to +28‰) from evaporates in Cambrian-to-Permian strata, implicating that the S was derived from host-strata evaporates by thermal–chemical sulphate reduction. 206Pb/204Pb, 207Pb/204Pb, and 208Pb/204Pb ratios range from 18.110 to 18.596, 15.514 to 15.878, and 38.032 to 39.221, respectively, which plot in field of the upper crust Pb evolution curve, unlike those of Proterozoic basement rocks, Sinian dolostone, Devonian-to-Permian carbonate rocks, and the Permian Emeishan flood basalts, implying complex derivation of Pb metal in the ore-forming fluids. Geological and isotopic studies of the Tianbaoshan Pb–Zn deposit reveal that constituents in the hydrothermal fluids were derived from multiple sources and that fluid mixing was a possible metallogenic mechanism. The studied deposit is not distal magmatic–hydrothermal, sedimentary exhalative (SEDEX), or Mississippi Valley (MVT) types, rather, it represents a unique ore deposit type, named in this article the SYG type.  相似文献   

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