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61.
为建立矿区内岩浆演化序列、探讨成岩成矿关系,选取凤凰山石英二长闪长岩和花岗闪长岩进行锆石SHRIMP U-Pb精确定年。石英二长闪长岩样品测年获得年龄数据为(136.0±2.0)~(143.0±2.4)Ma,加权平均值为(139.4±1.2)Ma(n=15,MSWD=0.76);花岗闪长岩样品测年获得年龄数据为(136.7±2.0)~(145.3±2.4)Ma,加权平均值为(141.0±1.1)Ma(n=17,MSWD=1.5)。岩体侵位年代为晚侏罗世、燕山晚期,与铜陵矿集区主要成矿岩体的形成时代一致。辉钼矿Re-Os等时线年龄与花岗闪长岩侵位年龄一致,老于石英二长闪长岩侵位年龄,说明花岗闪长岩为凤凰山矽卡岩型铜矿床的主成矿岩体,成岩成矿关系密切,它们为同期产物。同位素组成表明,幔源岩浆分异的深部流体参与了成矿作用。岩体侵位、岩石圈整体加厚产生的伸展作用和软流圈地幔、上覆地壳减压熔融产生玄武岩浆底侵作用有关。  相似文献   
62.
新疆西天山乌孙山地区科库萨依系列石英正长斑岩呈岩瘤状、岩脉状产出,侵入于早石炭世大哈拉军山组地层中。其LA-ICP-MS锆石U-Pb年龄为314.4±3.7 Ma(MSWD=0.51),属石炭世晚期,为本区岩浆活动及构造环境探讨提供年代学依据。  相似文献   
63.
等效剂量预热温度坪实验是光释光(OSL)测年中确定预热温度的常用手段,一般选择坪区温度作为OSL测年的预热温度。对于黄土细颗粒石英,无论采用单片再生法(SAR)还是简单多片再生法(SMAR),以10s为预热时间,其天然和再生剂量预热温度坪区间均为250~280℃,试验剂量的预热温度分布较广,如180~260℃。常规等效剂量预热温度坪实验需要耗费较长的实验室时间。通过对SMAR法测试数据的再分析发现,天然与再生剂量OSL信号校正强度的比值(N/R)随预热温度的变化与常规等效剂量坪实验中等效剂量随预热温度的变化有着相似的趋势,这样,N/R预热温度坪就可作为黄土样品细颗粒石英等效剂量预热温度坪的替代,为实验室OSL测年确定预热温度提供一个简捷途径  相似文献   
64.
贵州锦丰(烂泥沟)金矿是滇黔桂“金三角”目前已探明最大的卡林型金矿床。含砷黄铁矿是该矿床最主要的载金矿物,硅化及石英脉是最显著的热液蚀变类型。本文采用高精度电感耦合等离子质谱(ICP-MS)对含砷黄铁矿和脉石英及其包裹体的微量元素进行了测试,结果表明含砷黄铁矿富亲硫元素,并相对于围岩和上部地壳均强烈富集;亏损V,Sr 及高场强元素。同生黄铁矿也具有类似的特征。脉石英除亲石元素含量高以外,还表现为亲硫元素以及Mo,Bi 含量较高。但与上部地壳相比,绝大部分元素贫化。相应包裹体的微量元素含量普遍低于单矿物,但变化特征一致。结合矿物和包裹体的稀土元素分析,发现脉石英和含砷黄铁矿及其包裹体均表现为HFSE明显亏损,Th/La,Nb/La 比值小于1,说明成矿流体为富Cl 的流体。含砷黄铁矿及其包裹体中Co/Ni 比值远小于1,反映成矿温度较低,推测成矿流体主要来源于以沉积建造水为主的盆地流体。  相似文献   
65.
为了探讨柯石英的形成条件,利用河北省平山县西柏坡地区太古代阜平群中的黑云母片麻岩进行高温高压条件下的岩石变形实验。实验的温度为800 ℃,围压为0.2 GPa,应变量为10%,应变速率为10-5/s。实验结果表明,变形后样品中不同部位石英颗粒的激光拉曼光谱与标准的石英光谱相比较发生了明显的变化,具体表现为:挤压带中,石英颗粒的光谱出现了9个峰,而标准石英光谱为6个峰;在剪切带中,石英颗粒的谱线只有一个清晰的峰,在拉伸带中,石英颗粒的谱线无论峰的数目还是出现的位置都与标准石英光谱有着显著的区别,说明导致岩石变形的差应力对石英晶格结构的改造具有一定的影响。  相似文献   
66.
石英是自然界分布很广的矿物,是金矿中重要的载金矿物之一,在金矿的各个成矿阶段均有出现。目前对胶东各类型金银矿中石英的化学成分标型研究还较薄弱。该文对胶东各类型金银矿中成矿期石英的化学成分进行了详细研究,结果表明,各金银矿中石英中K/Na,Al,Na-K-Al和(Na+K)-Al参数均有显著区别,可用于区分胶东各类型金银矿,以上区别和各金银矿不同的成矿环境密切相关。以上结论对胶东各金银矿的成因和找矿具有借鉴意义。  相似文献   
67.
The object of this study is to test the assumption that cryogenic weathering (here understood as in‐situ disintegration of rock under cold‐climate conditions including ice as a weathering agent) preferentially breaks up quartz grains. We apply the results of laboratory tests to a Quaternary sediment record. The combination of silt production, relative quartz enrichment in the silt fraction, and quartz grain micromorphology is traced in a multi‐100‐kyr lake sediment archive as indicator data for cryogenic weathering. Constant cryogenic weathering conditions are inferred for at least the last 220 000 years from a lake sediment core of El'gygytgyn Crater, northeast Russia. This is the longest continuous terrestrial archive currently known for the continental Arctic. Quartz enrichment in the fines evolves from seasonal freeze–thaw weathering as demonstrated in laboratory testing where over 100 freeze and thaw cycles crack quartz grains preferentially over feldspar. Microscopic grain features demonstrate that freeze–thaw cycling probably disrupts quartz grains along mineral impurities such as bubble trails, gas–liquid inclusions, or mineralogical sub‐grain boundaries. Single‐grain micromorphology (e.g. angular outlines, sharp edges, microcracks, brittle surfaces) illustrates how quartz becomes fragmented due to cryogenic cracking of the grains. The single‐grain features stemming from the weathering dynamics are preserved even after a grain is transported off site (i.e. in mobile slope material, in seasonal river run‐off, into a lake basin) and may serve as first‐order proxy data for permafrost conditions in Quaternary records.  相似文献   
68.
The present work reports the first numerical ages obtained for the two highest fluvial terraces (Qt1 and Qt2) of the Alcanadre River system (Northeastern Spain) representing the earliest remnants of Quaternary morphosedimentary fluvial activity in the Ebro basin. ESR dating method was applied to optically bleached quartz grains and both the Al and Ti centers were measured, in accordance with the Multiple Center approach. The results are overall in good agreement with the existing preliminary chronostratigraphic framework and our interpretation indicate that terraces Qt1 and Qt2 have an ESR age of 1276 ± 104 ka and 817 ± 68 ka, respectively. These data provide some chronological insights on the beginning of the fluvial sedimentary processes in a scenario of incision maintained over Quaternary in the Ebro Basin. These are among the first numerical ages obtained for such high terraces in the Iberian Peninsula.Our results demonstrate the interest of using the Multiple Center approach in ESR dating of quartz, since the two centers provide complementary information, i.e. an independent dose control. The overall apparent consistency between the ESR age estimates and the existing preliminary chronostratigraphic framework may be considered as an empirical evidence that the Ti–Li center may actually work for Early Pleistocene deposits, whereas the Ti–H center shows some clear limitations instead. Finally, these results demonstrate the interest of using ESR method to date Early Pleistocene fluvial terraces that are usually beyond the time range covered by the OSL dating method.  相似文献   
69.
石英脉型金矿是广西大瑶山地区主要的金矿床类型之一,但一直没有高精度的年龄数据约束其成矿时代。论文首次 对大瑶山南部广西苍梧县上木水石英脉型金矿中的热液白云母进行39Ar/40Ar年龄法测年,获得坪年龄为(432.6 ± 3.2)Ma,相应 的等时线年龄为(428.2 ± 7.2)Ma,反等时线年龄为(425.3 ± 6.6)Ma,表明其成矿时代为加里东期。这一数据进一步证明 大瑶山南部的古龙-夏郢环形成矿区主要以加里东期矿化为主,除了与加里东期岩浆岩有关的斑岩-矽卡岩型钨多金属矿化 外,还存在石英脉型金矿。同时,位于大瑶山中部沿区域性大黎断裂分布的六岑-桃花-古袍金矿田的石英脉型金矿时代仍 然不明确,还需要进一步的高精度测年数据来约束。  相似文献   
70.
The Xiaojiashan tungsten deposit is located about 200 km northwest of Hami City, the Eastern Tianshan orogenic belt, Xinjiang, northwestern China, and is a quartz vein‐type tungsten deposit. Combined fluid inclusion microthermometry, host rock geochemistry, and H–O isotopic compositions are used to constrain the ore genesis and tectonic setting of the Xiaojiashan tungsten deposit. The orebodies occur in granite intrusions adjacent to the metamorphic crystal tuff, which consists of the second lithological section of the first Sub‐Formation of the Dananhu Formation (D2d 12). Biotite granite is the most widely distributed intrusive bodies in the Xiaojiashan tungsten deposit. Altered diorite and metamorphic crystal tuff are the main surrounding rocks. The granite belongs to peraluminous A‐type granite with high potassic calc‐alkaline series, and all rocks show light Rare Earth Element (REE)‐enriched patterns. The trace element characters suggest that crystallization differentiation might even occur in the diagenetic process. The granite belongs to postcollisional extension granite, and the rocks formed in an extensional tectonic environment, which might result from magma activity in such an extensional tectonic environment. Tungsten‐bearing quartz veins are divided into gray quartz vein and white quartz veins. Based on petrography observation, fluid inclusions in both kinds of vein quartz are mainly aqueous inclusions. Microthermometry shows that gray quartz veins have 143–354°C of Th, and white quartz veins have 154–312°C of Th. The laser‐Raman test shows that CO2 is found in fluid inclusions of the tungsten‐bearing quartz veins. Quadrupole mass spectrometry reveals that fluid inclusions contain major vapor‐phase contents of CO2, H2O. Meanwhile, fluid inclusions contain major liquid‐phase contents of Cl?, Na+. It can be speculated that the ore‐forming fluid of the Xiaojiashan tungsten deposit is characterized by an H2O–CO2, low salinity, and H2O–CO2–NaCl system. The range of hydrogen and oxygen isotope compositions indicated that the ore‐forming fluids of the tungsten deposit were mainly magmatic water. The ore‐forming age of the Xiaojiashan deposit should to be ~227 Ma. During the ore‐forming process, the magmatic water had separated from magmatic intrusions, and the ore‐bearing complex was taken to a portion where tungsten‐bearing ores could be mineralized. The magmatic fluid was mixed by meteoric water in the late stage.  相似文献   
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