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141.
勐野井钾盐矿床的成因,众说纷纭.笔者将此矿床和兰坪思茅坳陷沉积盆地的演化与板块构造活动相结合,提出侏罗纪古钾盐矿经再溶蚀、再沉积、再改造的成因假说.认为今后在兰坪思茅坳陷探盐找钾的新方向是深埋在地下的中侏罗统和平乡组及下侏罗统,有可能在此层位找到大型或超大型的海相固体古钾盐矿床. 相似文献
142.
钾盐矿床的物质来源和成矿机制 总被引:4,自引:0,他引:4
讨论钾及其有关物质的理化性质和地化行为,钾盐的物质来源,盐卤的变质、结晶分异、成矿条件和机制。富钾热液是形成钾盐矿床的重要物质来源之一。矿物岩石流体包裹体的富钾成分、富钾热泉、富钾盐湖均是寻找钾盐矿床的重要指示。 相似文献
143.
芒亨河断裂的次级断裂是主要控矿构造,含矿围岩为上三叠统小定西组(T3xd)富钠质安山岩、玄武岩。受构造、层位、碎屑粒度的制约。 相似文献
144.
145.
宝兴厂矿区地质构造复杂,成矿条件有利。区内北东向响水断裂带是主要的控岩和控矿构造。三类金矿床分别在斑岩成矿期、热液成矿期和表生成矿期成生。文中建立相应的成矿模式。 相似文献
146.
对本省钽铌矿床根据矿床成因采取四级划分原则进行了详细分类,按成矿作用分内生矿床和外生矿床二大类,按矿床成因及成矿地质条件分二个亚类,根据成矿阶段分七种矿床类型,根据与矿化有关的母岩体的标型矿物分十四种矿体类型,其中蚀变的花岗岩型钽铌矿床是主要类型,其次是伟晶岩型钽铌矿床,细晶岩型矿床因矿物细小,目前尚难利用.各种类型钽铌矿床(点)主要是位于构造隆起带内,分布于怀玉山、武功山、武夷山、于山和九岭等5个钽铌成矿带中.从华力西期至燕山期均有产出,其中以燕山中期为主要成矿期. 相似文献
147.
简要介绍了瞬变电磁法原理和特点、WDC-2B型瞬变电磁勘探系统及其野外工作方法。在充分考虑富盛铅锌矿地质矿产和物性特征的基础上,重点应用重叠回线装置,研究已知矿体上方的瞬变电磁响应特征及其与地质矿产的联系,提出了在富盛铅锌矿地质物性条件下,瞬变电磁响应模式为“上凹下凸”,同时对矿区外围发现的瞬变电磁响应异常,结合矿区的地质物性资料进行了初步解释。 相似文献
148.
In order to constrain sulfur isotope compositions of ore-forming fluids, ore-forming temperature, source of sulfur and mechanism of sulfur reduction in the Huize lead-zinc ore field, based on sulfur isotope compositions from previous studies, new data of sulfur isotopic composition of primary sulfide of upper ore-bodies in Qilinchang and newly-found sulfate outside the deposits were utilized in this study. It show that 5 values of primary sulfide vary from 8. Oft∗ to 17. 68 ft∗ , and sulfur isotopes in ore-forming fluid have reached equilibrium; S'lS values of sulfur out side the deposits vary from 17. 95ft∗ to 24. 30ft∗ with average value of 20. 14ft∗ , yielding sulfur isotopic composition of ore-for ming fluids as 14. 14ft∗ by the Pinekney method for mineral association. The value is close to 5'4S of marine sulfate. Ore-forming temperature is calculated as 1 34 - 388by isotope geological thermometer. The results of fluid inclusion thermometer indicate that barites were crystallized from hydrothermal fluid, which is suggested that sulfur in ore-forming fluid probably originates from marine sulfate of stratum in and outside the deposits or hydrothermal barites found in ore district. Reduction mechanism of sulfate is likely to be themio-chemical sulfate reduction. 相似文献
149.
新疆阿合栏杆银铅矿床位于新疆维吾尔自治区和田县郎如乡,地处昆仑山脉东端,受喜玛拉雅板块活动影响,构造复杂,岩浆活动强烈,岩石普遍变质,属中-低温热液型脉状银铅矿床。矿体受构造控制,呈脉状、透镜状产出于断裂破碎带之中,断层总体走向NE,倾向NW,倾角50°~70°。区内圈出3个矿带,分别为Ⅰ,Ⅱ,Ⅲ。矿体厚度和品位沿走向和倾向变化不大,赋存标高+5110 m^+4870 m。矿石为富铅银贫锌的铅银矿石,矿体围岩为黑云母二长花岗岩。通过地质勘查工作,系统地控制了区内的浅部矿体,新增银铅矿矿石资源量146.6万t。该文通过对矿床浅部矿体的形态、规模、矿石质量、矿石类型、围岩、矿床成因及成矿规律的分析研究,发现矿体形态结构简单,矿化均匀连续,严格受岩浆、构造控制,通过地表探槽平硐揭露及深部个别钻孔验证,矿体有向深部延伸的趋势,表明该区深部和外围仍具有良好的资源前景,对今后的找矿具有重要的指导意义。 相似文献
150.
《China Geology》2022,5(4):595-613
By the end of 2020, 83 silver deposits (or ore occurrences), including four super-large-scale deposits, nine large-scale deposits, 33 medium-scale deposits and 37 small-scale deposits or ore occurrences, have been proved. The amount of silver metal exceeds 86000 t with average grade of 100 g/t, which makes Daxing’ anling region one of the the most important silver ore belt in China. However, the metallogenic characteristics and metallogenesis need to be clarified. The silver deposits in the study area are classified into three main types, which are magmatic hydrothermal vein type, continental volcano-subvolcanic type and skarn type, respectively. The supergiant deposits include the Shuangjianzishan deposit (silver metal amount of 15214 t with average grade of 138 g/t), the Baiyinchagandongshan deposit (silver metal amount of 9446 t with average grade of 187 g/t), the Huaobaote deposit (silver metal amount of 6852 t with average grade of 170 g/t), and the Fuxingtun deposit (silver metal amount of 5240 t with average grade of 196 g/t). The silver deposits are mainly distributed in the central and south of the Daxing’anling area, and mainly formed in the Yanshanian period. The silver polymetallic deposits in the Daxinganling area are significantly controlled by regional faults and the junction zone of volcanic rock basins and their margins. The north-east trending deep faults are the most important ore-controlling structures in this area. The distribution of silver polymetallic deposits along the main faults is obvious, and the intersection area of multiple groups of faults often form important mine catchments. The Permian is the most important ore-bearing formation in this area, but some important silver polymetallic deposits occur in Mesozoic volcanic basins or pre-Mesozoic strata. The magmatic rocks related to mineralization are mainly intermediate acidic or acidic intrusions, intermediate acidic lavas, pyroclastic rocks, and small intrusions of ultra-shallow or shallow facies of the Yanshanian Period. The mineralization element combination is mainly determined by the elemental geochemical background of surrounding rocks or source layers. In addition, the type of deposit, the distance from the mineralization center, and the degree of differentiation of ore-forming rock mass are also important influence factors. The article analyzes the prospecting prospects of each silver deposit type in the study area, discusses the relationship between mineralization center and deep prospecting, and proposes that porphyry silver deposits should be paid attention to. In the prospecting and exploration of silver deposits, comprehensive evaluation and multi-target prospecting need to be strengthened because silver can coexist or be associated with a variety of metals.©2022 China Geology Editorial Office. 相似文献