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1.
中国古生教授学会微体古生物学分会举行代表大会和学术年会中国古竽物学会微体古物学分会第五次会员代表大分暨第六次不术年会于1996年1月24日到30日在福州市召开。来自全国地质、石油、煤炭的和产、科研和大学的100多位代表参加了这次大会和学术研讨。大会共...  相似文献   
2.
广西大厂拉么锌铜多金属矿床成岩成矿作用年代学研究   总被引:20,自引:1,他引:19  
李华芹  王登红  梅玉萍  梁婷  陈振宇  郭春丽  应立娟 《地质学报》2008,82(7):912-2008-01-30
本文对广西大厂矿田拉么矿区内出露的酸性侵入岩和矿石进行了精细的年代学研究,分别获得龙箱盖含斑黑云母花岗岩锆石原位SHRIMP UPb和全岩RbSr等时线年龄为94±4Ma(95%可信度)和98.6±1.9Ma(95%可信度),矽卡岩成矿期锌铜矿石中石英矿物RbSr等时线年龄为98.6±6Ma(95%可信度)。上述测定结果表明,拉么锌铜多金属矿床的成矿年龄与相关岩体的成岩年龄接近,均形成于早白垩世晚期。  相似文献   
3.
晚二叠世初期,在晴隆大厂一带,以"大厂层"为基底的山间盆地中,形成了一条自北东流向南西的规模较大的曲流河。该河流微相发育,其沉积物包括河道砾岩、边滩砂屑岩和洪泛平原泥质岩等。这套沉积地层上与上二叠统峨眉山玄武岩下与"大厂层"或局部与中二叠统茅口组接触。此乃峨眉地幔隆起边缘的沉积效应。  相似文献   
4.
Antimony (Sb) is strongly concentrated into hydrothermal mineral deposits, commonly with gold, in metasedimentary sequences around the Pacific Rim. These deposits represent potential point sources for Sb in the downstream environment, particularly when mines are developed. This study documents the magnitude and scale of Sb mobility near some mineral deposits in Australia and New Zealand. Two examples of New Zealand historic mining areas demonstrate that natural groundwater dissolution of Sb from mineral deposits dominates the Sb load in drainage waters, with Sb concentrations between 3 and 24 μg/L in major streams. Mine-related discharges can exceed 200 μg/L Sb, but volumes are small. Sb flux in principal stream waters is ca 1–14 mg/s, compared to mine tunnel fluxes of ca 0.001 mg/s. Dissolved Sb is strongly attenuated near some mine tunnels by adsorption on to iron oxyhydroxide precipitates. Similar Sb mobilisation and attenuation processes are occurring downstream of the historic/active Hillgrove antimony–gold mine of New South Wales, Australia, but historic discharges of Sb-bearing debris has resulted in elevated Sb levels in stream sediments (ca 10–100+ mg/kg) and riparian plants (up to 100 mg/kg) for ca 300 km downstream. Dissolution of Sb from these sediments ensures that river waters have elevated Sb (ca 10–1,000 μg/L) over that distance. Total Sb flux reaching the Pacific Ocean from the Hillgrove area is ca 8 tonnes/year, of which 7 tonnes/year is particulate and 1 tonne/year is dissolved.  相似文献   
5.
Twenty-six groundwater samples were collected from the Eastern Thessaly region and analysed by ICP-ES for these elements: Al, As, P, Pb, Zn, Mn, Fe, Cr, Sb, Cu, Na, Br, Cl, Si, Mg, Ag, Be, Bi, Dy, Er, Eu, Au, Ge, Ho, In, Ir, Os, Pt, Re, Rh, Ru, Lu, Hf, Hg, Tm, Zr and Nb. The objectives of the study were to assess the level of water contamination with respect to the EC and the USEPA health-based drinking water criteria. The geology of the studied area includes schists, amphibolites, marbles of Palaeozoic age, ophiolites, limestones of Triassic and Cretaceous age, Neogene and Quaternary deposits. The element ranges for groundwater samples are: Al 7–56 μg l−1, As 1–125 μg l−1, Br 6–60 μg l−1, Cl 500–25,000 μg l−1, Cr 1–6 μg l−1, Cu 1–15 μg l−1, Fe 10–352 μg l−1, Mg 2,940–40,100 μg l−1, Mn 0–8 μg l−1, Na 3,650–13,740 μg l−1, P 20–48 μg l−1, Pb 0–7 μg l−1, Sb 0–21 μg l−1, Si 3,310–13,240 μg l−1 and Zn 7–994 μg l−1. The results of groundwater analyses from the region of Eastern Thessaly showed elevated concentrations of As and Sb. Factor analysis explained 77.8% of the total variance of the data through five factors. Concentration of Br, Cl, Mg, Na and Si is directly related to the presence of saltwater in the aquifer, so grouping of these variables in factor 1 probably reflects the seawater intrusion. Al, As and Sb are known to form complexes in the environment, so grouping of these elements in factor 2 indicates their similar geochemical behaviour in the environment. The high negative loading of Mn in factor 2 indicates the presence of manganese oxides–hydroxides in the study area. Pb and Zn are associated together in sulphide mineralisation; so grouping of these elements in factor 3 reflects the sulphide mineralization paragenesis in the Melivoia area. P and Cu are associated together in phosphate fertilizers; so grouping of these variables in factor 4 could be related to agricultural practices. Cr, Fe, Mn and Mg are associated together in iron and manganese oxides–hydroxides and the weathering products of the olivine of the ultrabasic rocks; so grouping of these elements in factor 5 reflects the lithology of the area. There is a natural contamination of groundwaters with elevated concentrations of As and Sb due to the presence of the arsenopyrite and stibnite mineralisation in the Melivoia, Sotiritsa and Ano Polydendri areas. Contamination over the health-based drinking water guidelines given by EC and EPA has been investigated from nine sampling sites out of 26 of Eastern Thessaly region.  相似文献   
6.
廖南鸿 《云南地质》2003,22(1):56-63
礼社江中上游微粒型金矿田,以其特有的地质特生和成矿规律,于红河大断裂东侧、依皮堵复式破背斜上形成一系列不同规模、以金矿为主的矿床(点);即将勘查或评价的一系列Au,As,Sb,Hg元素组合异常;不断发现的不同规模的金矿床(点)。使该矿田成为一个非常重要的黄金后备资源及生产基础。本文运用新的专业理论从矿田地质特征、控矿因素、找矿标志等方面给予论述,为在本区进一步发展提供思路。  相似文献   
7.
广西大厂电气石的成分与成因初探   总被引:9,自引:2,他引:9  
镁电气石不一定只产于喷气岩或喷气矿床,在花岗岩中也有产出。大厂花岗岩及其有关锡多金属矿床中的电气石属铁镁系列,产于岩体中者富Fe贫Mg,产于矿体中者贫Fe富Mg,并有随远离源区Mg含量增高的趋势,与国内外同类矿床电气石成分的演化规律相一致。锡石硫化物矿体中电气石富镁的原因是多方面的,其中Mg、Fe两元素亲硫性的明显差别可能是导致Fe富集于黄铁矿等硫化物中、而Mg富集于电气石等蚀变矿物内的重要原因  相似文献   
8.
广西南丹大厂超大型锡多金属矿床的成矿时代   总被引:52,自引:11,他引:52       下载免费PDF全文
通过对广西南丹大厂用多金属矿床91号和100号矿体中透长石和石英的常规快中子活化和激光原位~(40)Ar/~(39)Ar法同位素年代学的研究,获得91号矿体块状锡石硫化物矿石中石英的~(40)Ar/~(39)Ar坪年龄为94.52±0.33 Ma,等时线年龄为 95.37±0.45 Ma,反等时线年龄为 94.89±0.16 Ma,透长石的激光~(40)Ar/~(39)Ar等时线年龄为91.4±2.9 Ma;100号矿体石英的坪年龄为 94.56±0.45 Ma,等时线年龄为 93.5±1.2 Ma,反等时线年龄为 93.29±0.16 Ma。这些资料有助于表明大厂锡矿形成于燕山期,在成因上证实后生成因的看法,并且表明产出特征不同的91号矿体与100号矿体是基本同时形成的。结合100号矿体规模巨大但围岩蚀变欠发育的特点,提出了含矿流体进入古溶洞后,由于突然的减压降温而导致成矿物质超常聚集的“失压沸腾”成矿机制。  相似文献   
9.
吴国富 《矿产与地质》2004,18(4):397-399
大厂矿区一条长1.5km的运输巷道内进行了高精度磁测找矿试验,并进行了地质钻探验证。结果表明:在将局部磁性干扰压抑后,所获相对磁异常是可以取得找矿效果的。  相似文献   
10.
Although antimony (Sb) and arsenic (As) exhibit similar geochemical behavior and toxicity in the environment, growing evidence suggests that their water–rock interaction behavior in contaminated rivers is quite different. Twenty-nine river water samples were collected between September and November 2018 from contaminated rivers around an antimony mine in Hunan Province, China. The concentrations of As and Sb were inversely proportional to the water flow distance. The rates and magnitudes of Sb decrease were more prominent than those of As. Silicate mineral dissolution from rocks such as silicified limestone increased the As and Sb concentration of in-mine-district (IMD) water. Dissolution of carbonate minerals, ion exchange, and competitive adsorption were the major water–rock interactions, resulting in rapidly decreasing As and Sb concentration in IMD direct impacted water and IMD indirect impacted water. The behaviors of As and Sb during water–rock interaction were dissimilar for areas dominated by carbonate and silicate minerals.  相似文献   
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