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 476 毫秒
1.
白云鄂博群尖山组H4岩性段石英砂岩中的碎屑锆石年龄纪录了华北克拉通北缘两期重要的构造岩浆事件,一组年龄集中在新太古代—古元古代初期(2379~2596Ma),另一组年龄集中在古元古代晚期(1761~1946Ma),该结果与白云鄂博地区基底岩石的锆石年龄相吻合。白云鄂博群沉积碳酸盐岩的全岩207Pb-206Pb等时线年龄1649±45Ma,代表了白云鄂博群的沉积时代。白云鄂博地区沉积灰岩、白云岩与含矿白云岩的Pb同位素组成存在非常大的差异,在Pb同位素组成和构造图解中,含矿白云岩都集中在地幔演化线附近,靠近亏损地幔端元[(206Pb/204Pb)i=15.04~16.49,(207Pb/204Pb)i=15.17~15.28,(208Pb/204Pb)i=31.20~36.40],而白云鄂博群中的灰岩、白云岩则位于造山带演化线附近,靠近深海沉积物端元[(206Pb/204Pb)i=17.28~19.35,(207Pb/204Pb)i=15.47~15.69,(208Pb/204Pb)i=36.62~37.12]。  相似文献   

2.
The Bainiuchang deposit in Yunnan Province, China, is located geographically between the Gejiu ore field and the Dulong ore field. In addition to the 〉7000 t Ag reserves, the deposit also boasts of large-scale Pb, Zn and Sn reserves with a lot of dispersed elements (In, Cd, Ge, Ga, etc.). We have determined systematically the Pb isotope composition of the deposit. The Pb isotope ratios of the ores that are of sea-floor exhalative sedimentary origin in the northwest of the mining district, are 206pb/204pb = 17.758-18.537, 207pb/204pb = 15.175-15.862 and 206pb/204pb = 37.289-39.424, while those of ores that are of magmatic hydrothermal superimposition origin in the southeast of the mining district, are 206pb/204pb = 17.264-18.359, 207pb/204pb = 14.843-15.683 and 208pb/204pb = 36.481-38.838, respectively. In terms of the Pb isotope composition of feldspar in magmatic rocks or magmatic whole- rock samples from the mining district, we have determined the Pb isotope composition and acquired the Pb isotope ratios as: 206pb/204pb -- 18.224-18.700, 207pb/204pb -- 15.595-15.797 and 208pb/204pb -- 38.193-39.608. Then, in the light of the Pb isotope composition of metamorphic rock samples from the Proterozoic basement exposed in the Dulong ore field, we have determined the Pb isotope composition and obtained the isotope ratios as: 206pb/204pb -- 18.434-19.119, 207pb/204pb -- 15.644-15.693, and 208pb/204pb = 38.514-38.832. And the Pb isotope ratios of Cambrian sedimentary rocks, which are exposed in the Bainiuchang mining district, are 206pb/204pb = 18.307-19.206, 207pb/204pb = 15.622-15.809, and 208pb/204pb = 38.436-39.932. By comparing the two types of ores with respect to their Pb isotope compositions, it is indicated that lead in the Bainiuchang deposit was derived largely from the lower-crust granulite which is earlier than Neoproterozoic in age, but the Yanshanian magmatic hydrothermal fluids probably provided a part of ore-forming elements such as Sn for the ore blocks in the south of the mining district.  相似文献   

3.
对新疆可可塔勒铅锌矿床物理化学条件和硫铅同位素研究,获得矿床形成温度为300℃;logfo2为-32.75~-33.91; logf2为-6.75~-10.00;pH值为5.3~7.0.矿石和脉石的206 Pb/204Pb比值为18.001~18.200,207pb/204 Pb比值为15.480~15.705,208Pb/204 Pb比值为37.605~38.861.硫化物的206Pb/204Pb比值为18.001~18.176,207pb/204 Pb比值为15.480~15.634,208Pb/204 Pb比值为37.605~38.027;铁帽的206Pb/204Pb比值为18.017~18.200,207pb/204Pb比值为15.509~15.617,208pb/204 Pb比值为37.833~38.283;重晶石和石英的206 pb/204 Pb比值为18.014~18.027,207pb/204 Pb比值为15.482~15.495,208Pb/204Pb比值为37.632~37.675.硫化物的δ34S值为-15.8‰~+5.1‰,其中黄铁矿的δ34S值为-14.3‰~+5.1‰,方铅矿的δ34S值为-15.8‰~-1.0‰,磁黄铁矿的δ34S值为-14.6‰~-1.4‰,闪锌矿的δ34S值为-14.5‰~-11.3‰.硫同位素指示硫来源于岩浆,铅同位素指示铅是多来源.  相似文献   

4.
对鲁西晚中生代济南和邹平辉长岩的Pb-Sr-Nd同位素和元素组成的研究,给出(87Sr/86Sr)i=0.7041~0.7056,εNd(t )=-6.0~-13.0,( 206Pb/204Pb)i=16.545~16.998,(207Pb/204Pb)i=15.242~15.350,(208Pb/204Pb)i=36.488~36.944(除SD792表现出高放射成因Pb外)。由于辉长岩的堆晶性质,其微量元素组成不能用于指示其物质来源。与EMⅠ型大洋和大陆玄武岩对比,表明济南和邹平辉长岩的源区具有与EMⅠ地幔端元一致的同位素特征,但在Pb同位素图解上有明显的下地壳物质的贡献。下地壳物质的参与可能与拆沉有关。  相似文献   

5.
黔西北福来厂铅锌矿床Pb同位素研究及地质意义   总被引:1,自引:0,他引:1  
单阶段演化正常铅用H-H法可获得高准确性的模式年龄,在黔西北福来厂铅锌矿床中采集16件矿脉和围岩样品,测定它们的Pb同位素组成,206 pb/204 Pb为18.5346 ~ 18.7294(均值18.5935),207pb/204 Pb为15.7408~15.7603(均值15.7519),208 pb/204 Pb...  相似文献   

6.
莒县早白垩世火山岩沿郯庐断裂带分布,由粗安岩、粗面岩和流纹岩组成,属高钾钙碱性-钾玄岩系列.岩石富集Rb、K、Ba等大离子亲石元素和轻稀土元素,相对亏损Nb、Ta、Ti等高场强元素和重稀土元素,Sr-Nd同位素组成((87Sr/86Sr)t=0.7082~0.7095,ENd(t)=-16.4~-19.8)与区内基性岩的相类似,而Pb同位素组成((206pb/204Pb)t=16.523~17.038,(207pb/204Pb)t=15.414~15.468,(208pb/204Pb)t=37.058~37.427)类似于EM1型富集地幔.(87Sr/86Sr)t和εNd(t)与SiO2没有明显的相关性,且较高的Th/U、Ce/Pb值和较低的Nb/La、Nb/U值均暗示岩浆在上升过程中未遭受明显的地壳混染.粗安岩具有高的Cr、Ni、MgO含量及Mg#值和古老Nd同位素模式年龄,暗示其起源于富集的岩石圈地幔.粗面岩与粗安岩的主要氧化物、微量元素与SiO2呈明显的相关性,这暗示可能为同源岩浆结晶分异而来.研究表明,莒县地区中酸性火山岩形成于岩石圈伸展减薄背景下,由曾遭受俯冲扬子陆壳熔体改造的华北岩石圈地幔部分熔融形成的岩浆分离结晶作用而成.郯庐断裂带的伸展活动控制着火山岩的分布,为岩浆的形成和运移提供了有利的场所,在华北克拉通破坏中可能起到了重要的作用.  相似文献   

7.
南太行山平顺闪长岩锆石SHRIMP测年表明闪长岩体形成于(125.5±2.3)Ma,与太行山其他地区乃至整个华北地区侵入杂岩体具有相近的形成年代,表明在晚中生代(115~135Ma)太行山地区与华北地区经历了相同的构造岩浆事件。平顺闪长岩w(SiO2)=48.57%~63.54%,w(Al2O3)=13.53%~19.15%,w(MgO)=1.20%~9.31%,w(TiO2)=0.34%~1.07%,w(CaO)=3.13%~10.39%,w(K2O+Na2O)=4.78%~7.99%,Mg#=0.37~0.72,LREE富集HREE亏损,略显微弱的正Eu异常,以富集LILE、LREE元素和亏损Nb-Ta等高场强元素为特征。闪长岩(206Pb/204Pb)i=17.775~18.857,(207Pb/204Pb)i=15.522~15.602,(208Pb/204Pb)i=38.044~38.502,εNd(125Ma)=-17.009 56~-9.606 32,ISr=0.705 85~0.707 53,表明起源于EMI富集地幔,并受到地壳物质和EMII型富集地幔混染,可能说明在晚白垩世太行山地区与整个华北克拉通都发生了岩石圈减薄事件。  相似文献   

8.
对新疆霍什布拉克铅锌矿床硫化物硫、铅同位素测定,获得成矿早期黄铁矿的δ34S值为-12.1‰~-8.5‰,闪锌矿的δ34S值为-17.6‰,方铅矿的δ34S值为-18.8‰;晚期黄铁矿的δ34S值为+12.8‰~+22.2‰,闪锌矿的δ34S值为+20.0‰~+24.2‰,方铅矿的δ34S值为+14.4‰+22.2‰.成矿从早到晚,硫同位素由大的负值变化到大的正值,方铅矿的206 Pb/204 Pb比值为17.900-18.086,207Pb/204Pb比值为15.586-15.732,208Pb/204Pb比值为37.997-38.381;黄铁矿的206Pb/204Pb比值为17.950,207 pb/204Pb比值为15.633,208 pb/204 Pb比值为38.144.灰岩的206pb/204 Pb比值为18.156-18.875,207Pb/204Pb比值为15.396-15.855,208Pb/204Pb比值为37.631-38.967.硫同位素指示硫来源于海水硫酸盐还原硫.铅同位素指示至少有两上以上来源.  相似文献   

9.
The Bainiuchang deposit in Yunnan Province,China,is located geographically between the Gejiu ore field and the Dulong ore field.In addition to the>7000 t Ag reserves,the deposit also boasts of large-scale Pb,Zn and Sn reserves with a lot of dispersed elements(In,Cd,Ge,Ga,etc.).We have determined systematically the Pb isotope composition of the deposit.The Pb isotope ratios of the ores that are of sea-floor exhalative sedimentary origin in the northwest of the mining district,are ~(206)Pb/~(204)Pb=17.758-18.537,~(207)pb/~(204)pb=15.175-15.862 and ~(208)pb/~(204)pb=37.289-39.424,while those of ores that are of magmatic hydrothermal superimposition origin in the southeast of the mining district, are ~(206)Pb/~(204)Pb=17.264-18.359,~(207)Pb/~(204)Pb=14.843-15.683 and ~(208)Pb/~(204)Pb=36.481-38.838, respectively.In terms of the Pb isotope composition of feldspar in magmatic rocks or magmatic whole- rock samples from the mining district,we have determined the Pb isotope composition and acquired the Pb isotope ratios as:~(206)Pb/~(204)Pb=18.224-18.700,~(207)Tpb/~(204)Pb=15.595-15.797 and ~(208)Pb/~(204)Pb= 38.193-39.608.Then,in the light of the Pb isotope composition of metamorphic rock samples from the Proterozoic basement exposed in the Dulong ore field,we have determined the Pb isotope composition and obtained the isotope ratios as:~(206)Pb/~(204)Pb=18.434-19.119,~(207)Pb/~(204)Pb=15.644-15.693,and ~(208)Pb/~(204)Pb=38.514-38.832.And the Pb isotope ratios of Cambrian sedimentary rocks,which are exposed in the Bainiuchang mining district,are ~(206)Pb/~(204)Pb=18.307-19.206,~(207)Pb/~(204)Pb= 15.622-15.809,and ~(206)Pb/~(204)Pb=38.436-39.932.By comparing the two types of ores with respect to their Pb isotope compositions,it is indicated that lead in the Bainiuchang deposit was derived largely from the lower-crust granulite which is earlier than Neoproterozoic in age,but the Yanshanian magmatic hydrothermal fluids probably provided a part of ore-forming elements such as Sn for the ore blocks in the south of the mining district.  相似文献   

10.
大别造山带中生代岩浆岩的物质来源和成因机制,是大陆碰撞造山带研究的热点和前沿问题之一.本文通过对北大别椒子岩和沙村岩体的早白垩世基性岩进行全岩的主量、微量元素特别是Pb-Sr-Nd同位素研究,探讨了北大别基性岩的岩浆源区性质及下地壳的贡献.椒子岩基性岩的(87Sr/86Sr);的范围为0.7072~0.7075,εNd(t)范围为-10.4~11.9;椒子岩和沙村基性岩的(206Pb/204Pb)i为16.464~17.394,(207Pb/204Pb)i为15.349~15.453,(208Pb/204Pb)i为37.338~37.976.这样的同位素组成显示岩浆源区中下地壳物质的贡献显著;尤其Pb同位素特征表明下地壳贡献来自大别造山带自身的下地壳.下地壳物质的参与可能与拆沉有关.  相似文献   

11.
12.
张玉成  杨光华  姜燕  姚捷  史永胜 《岩土力学》2010,31(Z1):349-356
结合爆破数值模拟中爆破荷载的特点,分析了各种荷载施加方法的特点及爆破震动场模拟的要求,基于圣维南荷载等效原理,提出了爆破荷载的等效施加方法,即将作用在炮孔壁上的爆破荷载等效后,施加在同排炮孔中心线或者面上来模拟爆破荷载的作用。结果表明,等效施加方法在近区存在一定差异,但在中远区吻合得较好。利用该等效荷载施加方法,采用三维实体模型计算分析了某沉管隧道基槽爆破施工对既有堤岸稳定性影响,计算了周围不同位置、不同深度位置处的振动响应,并在此基础上,分析研究了减小爆破振动对既有结构物影响的减振措施,可为类似工程提供借鉴。  相似文献   

13.
李建民  滕延京 《岩土力学》2011,32(Z2):463-468
结合大量不同土性土体的回弹再压缩试验、模型试验,提出再加荷比、再压缩比率的概念,并在此基础上得出了土体再压缩变形的基本规律:当再加荷量为卸荷量的20%时,土样产生的再压缩变形量已接近回弹变形量的40%~50%;当再加荷量为卸荷量的80%时,再压缩变形量与回弹变形量大致相等,则此时回弹变形完全被压缩;当再加荷量与卸荷量相等时,再压缩变形量大于回弹变形量,且再压缩变形的增大程度与土性有关。可见在土样的再压缩过程中,在初始阶段再压缩变形增长速率较大,之后增长速率随着加荷量的增加反而逐渐降低。由此得出土体的再压缩变形发展规律为两阶段线性规律,这一规律具有工程实用意义:基底以下土体的回弹再压缩变形对于减小主群楼之间的差异沉降是一种有利因素;再压缩变形的发展规律为建筑物基底以下土体的回弹再压缩变形而产生的沉降计算提供了依据  相似文献   

14.
Geochemistry of Thermal Waters of Continental Margin of Far East of Russia   总被引:2,自引:0,他引:2  
Studied waters belong to warm(T=30-50℃),alkaline(pH=8.9-9.3),low mineralized(TDS235 mg/1)Na-HCO_3 or Na-SO_4-HCO_3 thermal waters with high content of SiO_2(up to 81 mg/l)and F(up to 3.9 mg/1),occur on modern volcano-tectonic rejuvenated areas of Eastern Sikhote-Alin orogenic belt.Low~3He concentration as well as N_2/O_2 and N_2/Ar ratios exclude influence of deep mantle fluid.New rare earth element data constrain our understandmg of water-rock interaction occurring in the water source region.Meteoric origin of waters is proved by stable isotope values varying from-71‰to-136.1‰and from-10.8‰to-18.8‰forδ~2U andδ~(18)O respectively.REE patterns reflect high pH,resultfing from water-rock interaction and oxidative conditions.Calculations of deep aquifer temperature using Na-K and quartz geothermometers show 116.8-131.1°C and 82.2-125.8℃respectively.Presence of deep faults both with abnormal thermal gradient(~45-50 K/km)define unique geochemical shape of thermal waters of Sikhote-Alin,area,where no present volcanic activity is registered.  相似文献   

15.
考虑核电厂地基-基础的动力相互作用,应用显式动力有限差分法分析了地震作用下极软岩、较软岩、坚硬岩上核电厂建筑结构基础的地震响应特征,比较了岩石坚硬程度对基础加速度反应谱的影响。研究表明:随着岩石坚硬程度的提高,核电厂建筑物结构基础的地震响应有增加的趋势;在周期轴上,基础处的加速度反应谱曲线会随着岩石坚硬程度的提高逐渐向短周期(高频段)方向移动。在高频段,建造于较坚硬岩石上基础结构的加速度反应谱值偏大;在中等频段,建造于较软岩石上基础结构的加速度反应谱值偏大;在低频段,岩石坚硬程度对加速度反应谱的影响不显著。  相似文献   

16.
Three dimensional scattering of near-field is studied for dilatation and rotation in the time domain. The perturbation method is applied to solve the equation of motion for the first order scattering from a weak inhomogeneity in an otherwise homogeneous medium. The inhomogeneity is assumed close enough to the point source so that the near-field intermediate wave is dominating over the far-field sphericalP andS pulses. The integral expressions are derived to relate dilatation and rotation of scattering to the radial fluctuations of velocities and density in the inhomogeneity. These integrals are solved to calculate the strains of scattering from (a part of) an inhomogeneous spherical shell of arbitrary curvature. Variable curvature may allow the shape of inhomogeneity volume element to change uniformly from spherical to rectangular. Rotation of scattering from a spherical shell is independent ofP wave velocity inhomogeneity. Dilatation of scattering does not involveS wave velocity inhomogeneity but its gradient. The back scattering results are obtained as a special case. Strains are computed numerically, for hypothetical models to study the effects of various parameters viz., velocity inhomogeneity, distance of source from inhomogeneity and from receiver, and thickness of inhomogeneity. The curvature of the spherical shell is varied to study the effects of the shape of inhomogeneous volume element on scattering.  相似文献   

17.
长石矿物的三维热释光谱图研究   总被引:2,自引:0,他引:2  
通过最新研制的三维热释光光谱测量仪器,对长石热释光光谱的分析,,可以寻找其各个波段热释光信号的响应灵敏度差异。测试结果表明,长石矿物不同波长段的热释光量随辐照剂量的增加,呈现不同的增长特性;同时,长石热释光谱图显示出热释光信号光谱的红光/红外光波段的能量释放比相应蓝/紫光波段的能量的释放,提前大约10℃产生,但是各自能量释放的峰值几乎发生在同一温度处。样品发出的热释光中红光部分的峰峰值与紫光部分的峰峰值相比较,有明显的差别,三维谱图显示出该样品分布在从绿光波段直到红光/远红外光波段(500-850nm)的热释光量,明显比分布在紫光波段附近的相应热释光量要大的多。  相似文献   

18.
朱俊高  翁厚洋  王俊杰 《岩土力学》2006,27(Z2):475-479
简要分析了水力劈裂的发生条件、力学机理。基于水压楔劈机理,利用有限元方法建立了一种水力劈裂的发生判定方法。该方法假定心墙预先存在局部渗透弱面(裂缝),通过将裂缝位置的单元材料改为裂缝软材料,考虑库水进入裂缝后对裂缝周围土体的作用,建立水力劈裂分析的平面有限元模型,确定裂缝端部垂直于裂缝面的正应力,进而依据该正应力判断水力劈裂发生的可能性,该方法同时可模拟水力劈裂的发展过程。  相似文献   

19.
土压缩模量预测回归分析方法   总被引:1,自引:0,他引:1  
在土压缩模量Es的分析计算中,常用的分析方法是根据土的e-p曲线试验资料建立公式求解,本文引入了数学上的回归分析方法来探讨Es与其它各项物理力学指标参数之间的相关关系,旨在找出对Es影响最显著的指标参数,并建立最优回归方程式,以此来预测Es。研究结果表明:该方法通用性强,应用范围广,亦可推广应用于其它相关领域。  相似文献   

20.
土钉支护失稳分析   总被引:2,自引:0,他引:2  
某基坑采用复合土钉墙支护,开挖至坑底后,基坑北侧发生失稳事故。本文就其事故发生原因作一探讨。  相似文献   

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