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11.
高峰100号矿体硫、铅同位素特征   总被引:1,自引:0,他引:1  
10 0号矿体的成矿物理化学环境为 :成矿温度 30 0± 30℃ ;成矿压力为 84.2× 10 5Pa ;LogfO2 =- 30 .4~- 35 .6 ,LogfCO2 =- 2 .5 5~ +0 .36 ,LogfS2 =- 8.3~ - 11.0 ,pH =4.2~ 4.9。同位素的分析结果 :硫化物的硫同位素为 6 4‰~ 12 .3‰ ,δ3 4 SΣS 值为 6 6~ 13 8;2 0 6Pb 2 0 4Pb值为 17 4 91~ 18 96 0 ,2 0 7Pb 2 0 4Pb值为 15 5 39~15 940 ,2 0 8Pb 2 0 4Pb值为 37 95 7~ 39 4 90。表明 10 0号矿体的硫源是混合硫 ,铅源是两种异常铅混合的结果。  相似文献   
12.
河南省华北陆块南缘铅金成矿系统   总被引:6,自引:0,他引:6       下载免费PDF全文
华北陆块南缘是我国重要的多金属成矿带之一,可划分为两个成矿集中区:小秦岭-熊耳山金成矿带和栾川陆缘凹陷钼、钨、铅、锌成矿带.在其演化过程中形成不同的成矿系统,与铅成矿带有关的成矿系统为中新元古代拉张构造体制被动陆缘成矿系统:MVT型铅锌成矿系列和Sedex型铅锌成矿系列;中生代陆内碰撞成矿系统:与岩浆岩有关的热液充填交代型铅锌成矿系列.与金成矿带有关的成矿系统为古元古代古陆核边缘成矿系统:小秦岭石英脉型金矿成矿系列;中新元古代拉张构造体制被动陆缘成矿系统:熊耳山蚀变岩型金矿成矿系列.  相似文献   
13.
阿尔泰东南缘布尔根地区造山带型金矿床受韧性剪切带控制,有两种矿化类型:一为石英脉型,另一种为糜棱岩型。糜棱岩型金矿硫化物的δ^34S值变化于-10.009‰~-2.819‰,平均值为-5.29‰,石英脉型金矿硫化物的δ^34S值变化于-0.062‰~-1.688‰,平均值为-1.0575‰。布尔根地区金矿床的金属硫化物样品具有较窄的^207Pb/^204Pb比值,变化于17.71~18.35;相对较高的^207Pb/^204Pb比值为15.31~15.64和^208Pb/^204Pb比值为37.13~38.07,铅同位素分析结果表明,该区金矿床成矿物质铅来源于地幔及下地壳。硫、铅同位素特征反映了布尔根地区金矿床成矿物质具有多来源特征。  相似文献   
14.
利用泥蚶(Tegillarca granosa)铁蛋白原核表达工程菌获得的重组铁蛋白,通过圆二色光谱分析蛋白二级结构,扫描电镜和电感耦合等离子质谱研究重组铁蛋白富集Fe~(2+)、Mn~(2+)、Cd~(2+)、Cr~(3+)、Hg~(2+)、Pb~(2+)和As~(3+)等7种重金属离子的特性,同时探索利用重组铁蛋白修饰丝网印刷电极,设计和制备重组铁蛋白检测Pb~(2+)和Cd~(2+)浓度的电化学生物传感器。结果表明复性成功的铁蛋白多为完整的?-螺旋结构,而复性不成功的蛋白聚集体则多为无规卷曲。重组铁蛋白的直径和形态与富集的离子种类有关。泥蚶铁蛋白对单一金属离子Fe~(2+)和Mn~(2+)的富集凸显优势。对两种混合金属离子的富集大多表现为竞争关系。但重组铁蛋白对Hg~(2+)和As~(3+)混合组的富集量明显高于单一金属离子组的富集量,对Hg~(2+)和As~(3+)混合组的富集表现出协同促进作用。重组铁蛋白传感器对Pb~(2+)和Cd~(2+)溶液的最低检测限为10μg/L。  相似文献   
15.
探究合成纤维系缆损伤对绷紧式系泊系统响应的影响,具有重要的工程意义。通过高强聚乙烯(HMPE)缆绳损伤动刚度实验,获得其动刚度随损伤的演变规律。在数值计算上,借鉴并合理简化了前人提出的动刚度经验公式,通过处理实验结果确定动刚度经验公式的参数并进行验证。在此基础上,以一座采用高强聚乙烯缆绳为主体系缆的FPSO为例,将所得动刚度经验公式导入系泊分析软件,结合水动力分析,计算得到在相同海洋环境中,系缆发生不同程度损伤时,各系缆张力和平台偏移响应的结果。通过处理、分析所得的计算结果,获得合成纤维缆绳损伤演变对绷紧式系泊系统响应的影响规律,并据此为系缆更换提供了建议。这些成果既有利于把握绷紧式系泊系统的非线性动力响应,也对安全、经济、合理地运用合成纤维系缆具有重要意义。  相似文献   
16.
雷诺数对圆形渐缩喷嘴湍流射流的影响   总被引:2,自引:0,他引:2  
杜诚  徐敏义  米建春 《海洋学报》2010,32(9):6331-6338
The present study systematically investigates by experiment the influence of Reynolds number (Re) on a turbulent jet issuing from a smoothly-contracting round nozzle. Measurements were performed for seven Reynolds numbers varying from Re = 4,050 to Re = 20,100 using single hot-wire anemometry and over an axial distance of 30 nozzle exit diameters. Although all the exit velocity profiles are of "top-hat" shape, these measurements reveal significant dependence on Re of the exit and downstream flows. The effect of Re on both the mean and turbulent fields is substantial for Re < 10,000 and becomes weak beyond Re = 10,000. The length of the jet’s potential core and the far-field rates of decay and spread all depend significantly on Re.  相似文献   
17.
A limited survey was undertaken to determine the concentrations of copper, lead, and chromium in sediments of the upper Manukau Harbour, New Zealand. The concentrations of copper and chromium (33–70 and 70–107 μg g‐1 respectively) were of the same order of magnitude as those reported for other New Zealand harbours. However, lead concentrations (98–247 μg g‐1) were higher than those found for the other harbours. This may be a consequence of higher traffic densities in the surrounding area.  相似文献   
18.
新疆乌恰县乌拉根铅锌矿床地质地球化学特征及其成因探讨   总被引:13,自引:0,他引:13  
在研究矿床的地质地球化学特征的基础上,对矿床成因进行了初步探讨,认为乌拉根铅锌矿床是产于中新生代盆地中的热卤水沉积铅锌矿床.其矿质来源主要是由热卤水溶液从深部带至沉积盆地,控制盆地生成和发展的同生断裂为矿液运移提供了通道,稳定下沉的次生盆地提供了良好的矿质沉积环境.  相似文献   
19.
In this paper, we compare the elemental and isotopic (C, N, Pb) geochemistry of lake sediments from two contrasted environments in south‐central Chile. The first lake, Laguna Chica de San Pedro (LCSP), is situated in the urbanised area of the Biobio Region (36°S). The second lake, Lago Puyehue (40° S), is located 400 km to the southeast of LCSP and within an Andean national park. Our aim is to identify environmental impacts associated with increasing industrial activities and land degradation during the last 150 a. In LCSP, shifts in C/N atomic ratios, δ13C and δ15N from 1915–1937 to the late 1980s are attributed to successive land degradation episodes in the lake watershed. Based on a Pb isotopic mixing model, we estimate that up to 20% of lead in LCSP sediments is supplied from urban atmospheric pollution. By contrast, human impact in the watershed of Lago Puyehue is very limited. We observe no change in organic geochemistry during the last 150 a and lead contamination remains lower than 5%, even during the last decades. Although contamination levels are much higher in LCSP than in Lago Puyehue, a peak in anthropogenic Pb is recorded during the same period (1974–1976) at both sites. This maximum contamination level is consistent with increased industrial activity in the vicinity of Concepción. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   
20.
Twenty‐four mineral separates from the Arunta Complex, four from the metamorphosed Heavitree Quartzite (White Range Quartzite), and one whole rock sample of metamorphosed Bitter Springs Formation, all from the western part of the White Range Nappe of the Arltunga Nappe Complex, and two samples from the autochthonous basement west of the nappe have been dated by the K‐Ar method. The samples from the basement rocks form two groups. Those in the southern or frontal part of the nappe are of Middle Proterozoic (Carpentarian) age (1660–1368 m.y.), determined on hornblende, biotite, and muscovite. In the northern or rear part of the nappe, all but one of the muscovite samples and two biotites are of Middle Silurian to Early Carboniferous age (431–345 m.y.); the remainder of the biotite dates range from 1775 to 548 m.y. (including the two samples from the autochthon), and two hornblendes gave dates of 1639 and 2132 m.y. respectively. All the muscovite samples from the Heavitree Quartzite, and the whole rock sample from the Bitter Springs Formation gave Early to Middle Carboniferous dates (358–322 m.y.). The findings support the identification of the White Range Quartzite as the metamorphosed part of the Heavitree Quartzite, which in turn supports the interpretation of the structure of the area as a large, basement‐cored fold nappe. In addition, they date the time of the Alice Springs Orogeny as pre‐Late Carboniferous, which agrees with fossil evidence from elsewhere in the area. The Alice Springs Orogeny was accompanied by widespread greenschist facies meta‐morphism that progressively metamorphosed the Heavitree Quartzite and Bitter Springs Formation, and retrogressively metamorphosed the Arunta Complex. However, the basement rocks in the southern part of the nappe escaped this metamorphism and retain a Middle Proterozoic age, thus dating the time of the Arunta Orogeny in this region as Carpentarian or older.  相似文献   
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