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1.
贵州铜仁坝黄磷矿中铀赋存状态的逐级化学提取研究   总被引:1,自引:1,他引:0  
王志罡  谢宏  杨旭  周忠容 《岩矿测试》2018,37(3):256-265
贵州铜仁坝黄磷块岩矿床富集放射性元素铀,利用逐级化学提取分析方法对该地区黄磷矿中铀的赋存状态进行探究,有助于进一步探讨磷块岩型铀矿的分布规律、成矿机理及铀资源的综合开发。本文采用经修改的Tessier法流程,提取了水溶态、可交换离子态、碳酸盐结合态、铁锰氧化物结合态、有机质黄铁矿态、强酸提取态和残渣态等七种不同形态的铀。研究发现:黄磷矿中的铀主要以独立铀矿物和类质同象置换的形式存在,分别占37.83%、37.21%,少量铀(占24.96%)以分散吸附形式存在。分析表明:独立铀矿物在富磷、黄铁矿脉和镜面擦痕发育的岩层中含量较高,说明热液活动有利于独立矿物形式铀的富集;类质同象铀与黄磷矿中的磷含量呈正相关关系,铀元素可能是以离子置换的方式赋存于胶磷矿的晶格缺陷中;吸附形态铀的含量受到岩石中黏土矿物含量和黄铁矿脉的影响,有机质黄铁矿态是吸附形态铀存在的主要方式,少量铀通过扩散作用吸附于黏土矿物表面。除类质同象铀因其存在形式不易被提取利用外,独立铀矿物及吸附形态铀对于未来优化资源配置具有现实意义。  相似文献   

2.
对黄岗梁矿区内锡、铍矿化地段进行野外调研,结合矿物学特征,利用光学显微镜、电子探针、LA-ICP-MS等测试手段,对矿区内的锡石、石榴子石、符山石及绿钙闪石等矿物进行了测试分析,并对矿石与围岩进行了微量元素分析。结果表明:Sn赋存除了独立矿物锡石外,还有少量以类质同象形式赋存在石榴子石、绿钙闪石、符山石等矿物中。锡石形成于高温热液环境且成矿来源具有较高的高场强元素含量;未发现铍的独立矿物,铍元素主要以类质同象形式赋存在符山石、绿钙闪石等矿物中。  相似文献   

3.
中国煤中的氟   总被引:9,自引:0,他引:9  
氟是煤中所含微量元素中丰度较高的少数几种元素之一。对我国581个煤样分析数据的统计表明,多数样品氟含量处于20~300mg/kg,平均40mg/kg,个别超过1000mg/kg。氟在煤中赋存状态有:①独立的氟矿物;②以类质同象存在于矿物晶格内;③被矿物吸附;④以F-离子形式溶于水中。在煤中所含微量元素中,氟是对植物、动物和人体健康的影响面最大的元素。  相似文献   

4.
呼和浩特市大气降尘中镉赋存形态分析   总被引:3,自引:0,他引:3  
采用Tessier连续提取法对呼和浩特市不同区域的9个大气降尘样品中镉的赋存形态进行了研究。结果表明,各形态含量在总镉中所占比例由大到小排列顺序依次是:铁锰氧化物结合态>残渣态>碳酸盐结合态>强有机结合态>可交换态。大气降尘中镉的5种形态占总镉的平均质量分数由大到小为:铁锰氧化物结合态31.80%,残渣态24.42%,碳酸盐结合态19.04%,强有机结合态14.61%,可交换态10.13%;铁锰氧化物结合态是主要存在形态;铁锰氧化物结合态镉、有机结合态镉、残留态镉这三种形态镉生物有效性很低,但当环境改变时可能发生镉释放,应予以关注。汽油和煤的燃烧以及工厂排放镉能加大城市大气降尘中的镉含量。  相似文献   

5.
中国煤中的氯   总被引:3,自引:0,他引:3  
在煤中诸多微量元素中,氯的含量是比较高的一种元素。全国280个样品分析数据的统计,多数煤中含氯量处于50~500mg/kg,平均约220mg/kg。氯在煤中的赋存状态主要为:氯离子溶于孔隙水中;呈类质同象赋存于其他多种矿物中;独立矿物。煤中氯的较高含量给煤的利用带来的问题近年来引起人们的重视。  相似文献   

6.
次显微金在黄铁矿和毒砂中的赋存状态新探讨   总被引:4,自引:0,他引:4  
重新认以了含金黄铁矿、含金毒砂中次显微金的电子顺磁共振实验和溶解实验的结果。指出它们均不能作为存在类质同象金的证据,含金黄铁矿和含金毒砂中的顺磁中心可能由As、S之间的类质同象取代引起;硝酸溶解金的载体矿物后溶液中出现的Au3-离子可能来自金的硫化物的微包裹体金。进而认为含金黄铁矿和含金每秒中不可能存在类质同象金。  相似文献   

7.
峨嵋玄武岩铂钯赋存状态分析   总被引:6,自引:1,他引:6       下载免费PDF全文
以黔西峨嵋玄武岩和辉长岩为测试对象,在矿物鉴定基础上,建立了Pt、Pd在硫化物、金属互化物、吸附态和硅酸盐类质同象不同赋存状态查定的流程,查明了峨嵋玄武岩中Pt、Pd是以硫化物态和金属互化物态为主,少量呈吸附态和硅酸盐类质同象态存在,讨论了峨嵋玄武岩铂钯状态丰度与铂族元素可能成矿的关系。  相似文献   

8.
通过电子探针背散射图象扫描分析,发现鲕状黄铁矿和胶状结构黄铁矿中存在锡石包体,大小2~5μm。对无锡石包体的区域进行电子探针定量分析,测出鲕状黄铁矿中w(Sn)最高可达0.23%,胶状磁黄铁矿中最高可达0.06%。结合ICP-MS等离子质谱分析结果,认为鲕状黄铁矿和胶状结构黄铁矿中Sn的分布有两种形式:一种是以锡石(SnO2)包体形式存在;另一种是分散在黄铁矿中的Sn,可能以类质同像形式存在。锡石包体的存在暗示着海底喷流时可形成锡的独立矿物,鲕状黄铁矿和胶状结构黄铁矿中含锡,表明海底喷流形成硫化物矿物的同时携带了Sn,在后期花岗岩热液叠加改造过程中可起到Sn的矿源层的作用。  相似文献   

9.
渝南大佛岩矿区铝土矿碎屑锆石中钪的赋存形式研究   总被引:1,自引:0,他引:1  
李军敏  陈莉  徐金沙  闫武  吕涛  杨波  陈阳 《沉积学报》2013,31(4):630-638
以渝南大佛岩矿区含矿岩系铝土质黏土岩为研究对象,通过淋滤实验证明其中钪并非以独立矿物形式和大量离子吸附形式存在的。由于铝土矿含矿层位缺少有机质,也排除了钪与有机质结合的可能性。基于扫描电镜和能谱分析的结果,发现其中的碎屑锆石富含钪元素,钪广泛分布于碎屑锆石表面,且分布非常不均匀,最高重量百分比可达2.75%,最低低于检测线,且在锆石的凹坑、裂隙与锆石上重矿物的钪含量普遍较高。结合钪易与锆发生极性类质同象的特性,本研究认为该矿区原矿石碎屑锆石中的钪,很可能有类质同象、离子吸附和超显微非结构混入物三种形式。此研究成果将对今后渝南地区铝土矿伴生钪的开发利用提供理论参考依据。  相似文献   

10.
贵州织金磷矿床中离子吸附型稀土的存在及初步定量   总被引:1,自引:1,他引:0  
近年来研究表明贵州织金磷块岩矿床中伴生丰富的稀土主要以类质同象形式存在,其主要依据为稀土总量与磷含量的正相关性,而对独立稀土矿物与离子吸附型稀土两种赋存状态的认识目前仍然不清楚。本文通过利用电感耦合等离子体质谱(ICP-MS)稀土元素全分析、磷钼酸喹啉重量法磷分析、岩矿鉴定与实验室选矿试验等方法对该矿床中伴生稀土的赋存规律进行了研究。岩矿鉴定表明矿石中主要矿物成分为胶磷矿并含少量黏土矿物,但未发现独立的稀土矿物;磷与稀土全分析显示稀土总量及各分量都与磷含量呈正相关,从而验证并进一步表明了稀土主要以类质同象形式存在于胶磷矿中。通过研究原矿经选别后稀土与磷在精矿、尾矿和选液(尾矿水)中的分配对比及两者的含量关系来探讨稀土的赋存规律,结果显示磷仅分配于精矿和尾矿中未发生损失,而11.98%的稀土在强电解质硫酸盐的作用下从原矿中解离出来进入了选液,推断这部分稀土在原矿中未进入矿物晶格,而是呈离子态吸附于矿物表面,初步认为漫长时限与潮湿条件下的充分风化作用以及胶磷矿与黏土矿物所充当的吸附载体发挥了作用,表明织金磷矿中稀土总量的11.98%以离子吸附状态存在。综合各分析结果,织金磷矿伴生稀土各赋存状态中类质同象占主导,未发现独立稀土矿物,而离子吸附型稀土占一定的比例,故将稀土的离子吸附形式列为仅次于类质同象的第二大赋存状态。  相似文献   

11.
《Applied Geochemistry》2001,16(11-12):1353-1360
Southwest Guizhou Province is one of the most important areas of disseminated, sediment-hosted-type Au deposits in China and is an important area of coal production. The chemistry of most of the coals in SW Guizhou is similar to those in other parts of China. Their As content is near the Chinese coal average, but some local, small coal mines contain high As coals. The highest As content is up to 3.5 wt.% in the coal. The use of high As coals has caused in excess of 3000 cases of As poisoning in several villages. The high As coals are in the Longtan formation, which is an alternating marine facies and terrestrial facies. The coals are distributed on both sides of faults that parallel the regional anticlinal axis. The As content of coal is higher closer to the fault plane. The As content of coal changes greatly in different coal beds and different locations of the same bed. Geological structures such as anticlines, faults and sedimentary strata control the distribution of high As coals. Small Au deposits as well as Sb, Hg, and Th mineralization, are found near the high As coals. Although some As-bearing minerals such as pyrite, arsenopyrite, realgar (?), As-bearing sulfate, As-bearing clays, and phosphate are found in the high As coals, their contents cannot account for the abundance of As in some coals. Analysis of the coal indicates that As mainly exists in the form of As5+ and As3+, perhaps, combined with organic compounds. The occurrence of such exceptionally high As contents in coal and the fact that the As is dominantly organically associated are unique observations.  相似文献   

12.
This paper mainly describes mineralogy and geochemistry of coals from the Weibei coalfield in the southeastern Ordos Basin, North China. A number of Al-hydroxide/oxyhydroxide minerals were detected in the Late Carboniferous coals (Nos. 5, 10 and 11 coals), especially in the No. 10 coal. Aluminum-hydroxide/oxyhydroxide minerals (nordstrandite, boehmite and diaspore) in the No. 10 coal are associated with kaolinite, suggesting that these minerals are derived from the breakdown of kaolinite. A model in which Al-hydroxide/oxyhydroxide minerals form from the incongruent dissolution of kaolinite is presented. Nordstrandite and boehmite mainly occur as massive lenses (<500 μm in length). Diaspore appears as massive aggregates and as single euhedral crystals (<50 μm in length) in a kaolinite matrix. The presence of high temperature quartz, and zircon indicates that there was input of felsic volcanic debris during accumulation of the Late Carboniferous coals. These volcanic materials have also had a significant influence on the enrichment of certain trace elements including Li, Be, Ga, Zr, Nb, Mo, Sn, W and U in the Late Carboniferous coals (Nos. 5, 10, and 11 coals). SEM-EDX results show that Ga in the No. 10 coal (whole coal average 33.4 μg/g; n = 2) mainly occurs within Al-hydroxide/oxyhydroxide minerals (nordstrandite, boehmite, and diaspore), kaolinite and organic matter.  相似文献   

13.
印度尼西亚是我国最大的煤炭进口国,本文应用电感耦合等离子体质谱、原子荧光光谱、直接测汞仪等技术分析了上海口岸31批进口印度尼西亚煤炭中的12种微量元素,结合数理统计方法研究该类煤炭中微量元素的赋存形态。结果表明,进口印尼煤炭中含有高汞煤、三级含砷煤,As、Hg的平均富集系数大于1,其迁移风险值得关注;Be、Cu、Mo、Cd、Sn、Pb含量均低于中国煤和世界煤炭的平均水平,体现出印尼煤炭低灰分的品质特征。12种微量元素和相关项目(灰分和全硫)可划分为3类:第一类归纳为黏土矿物吸附类,包括As、Be、Cr、Co、Ni、Cu、Mo、Cd、Sn、Pb、灰分;第二类归纳为硫铁矿类,包括Hg、全硫;第三类归纳为碳酸盐矿物类,包括Ba。本文研究结果对于指导进口煤炭开发、利用过程中的环境评价和洁净化处理具有一定的参考价值。  相似文献   

14.
Pakistan is rich in coal resources, which amount to around 186 billion tons. The Paleocene Padhrar and Darra Adam Khel coalfields are located in the Central Salt Range Punjab Province and the Khyber Pakhtunkhwa Province, Pakistan, respectively. Padhrar coal has not been studied in detail and the Darra Adam Khel coalfields are newly-discovered, so no research has been done, due to security considerations. In this study, an attempt has been made to study the geochemical and mineralogical characteristics of the Padhrar and Darra Adam Khel coals, in order to learn about the coal quality, element enrichment mechanism, sedimentary medium conditions and potentially valuable elements for coal utilization. The Padhrar and Darra Adam Khel coals are low to medium ash, low moisture content, high in volatiles and high total sulfur coal. The vitrinite reflectance in Darra Adam Khel coal is higher than in Padhrar coal, indicating either a greater burial depth or the effects of Himalayan tectonism. The vitrinite content is dominant in the Padhrar and Darra Adam Khel coals, followed by inertinite and liptinite, the major minerals including quartz, clay minerals, calcite and pyrite. The trace elements Ni, As, Be Zn, Ge, Mo, Ta, W, Co and Nb, Sn, Hf, Ta, Pb, Th, Cd, In, Be, V, Cr, Zr, Ag, Li, W and Co are concentrated in some of the Padhrar and Darra Adam Khel coal samples, respectively. The Padhrar coal shows positive Ce, Eu and Gd anomalies, with most of the Darra Adam Khel coal showing negative Ce, Eu and positive Gd anomalies with high LREE. The Al2O3/TiO2 values indicate that the sediment source of the Padhrar and Darra Adam Khel coals is mostly related to intermediate igneous rocks. The Sr/Ba, SiO2 + Al2O3, Fe2O3 + CaO + MgO/SiO2 + Al2O3 and high sulfur content in the Padhrar and Darra Adam Khel coals indicate epithermal and marine water influence with a tidal flat, coal-forming environment and a deltaic coal-forming environment, respectively.  相似文献   

15.
Thermally metamorphosed Tertiary age coals from Tanjung Enim in South Sumatra Basin have been investigated by means of petrographic, mineralogical and chemical analyses. These coals were influenced by heat from an andesitic igneous intrusion. The original coal outside the metamorphosed zone is characterized by high moisture content (4.13–11.25 wt.%) and volatile matter content (> 40 wt.%, daf), as well as less than 80 wt.% (daf) carbon and low vitrinite reflectance (VRmax = 0.52–0.76%). Those coals are of subbituminous and high volatile bituminous rank. In contrast the thermally metamorphosed coals are of medium-volatile bituminous to meta-anthracite rank and characterized by low moisture content (only < 3 wt.%) and volatile matter content (< 24 wt.%, daf), as well as high carbon content (> 80 wt.%, daf) and vitrinite reflectance (VRmax = 1.87–6.20%). All the studied coals have a low mineral matter content, except for those which are highly metamorphosed, due to the formation of new minerals.The coalification path of each maceral shows that vitrinite, liptinite and inertinite reflectance converge in a transition zone at VRmax of around 1.5%. Significant decrease of volatile matter occurs in the zone between 0.5% and 2.0% VRmax. A sharp bend occurs at VRmax between 2.0% and 2.5%. Above 2.5%, the volatile matter decreases only very slightly. Between VRr = 0.5% and 2.0%, the carbon content of the coals is ascending drastically. Above 2.5% VRr, the carbon content becomes relatively stable (around 95 wt.%, daf).Vitrinite is the most abundant maceral in low rank coal (69.6–86.2 vol.%). Liptinite and inertinite are minor constituents. In the high rank coal, the thermally altered vitrinite composes 82.4–93.8 vol.%. Mosaic structures can be recognized as groundmasss and crack fillings. The most common minerals found are carbonates, pyrite or marcasite and clay minerals. The latter consist of kaolinite in low rank coal and illite and rectorite in high rank coal. Change of functional groups with rank increase is reflected most of all by the increase of the ratio of aromatic C–H to aliphatic C–H absorbances based on FTIR analysis. The Oxygen Index values of all studied coals are low (OI < 5 mg CO2/g TOC) and the high rank coals have a lower Hydrogen Index (< 130 mg HC/g TOC) than the low rank coals (about 300 mg HC/g TOC). Tmax increases with maturity (420–440 °C for low rank coals and 475–551 °C for high rank coals).Based on the above data, it was calculated that the temperature of contact metamorphism reached 700–750 °C in the most metamorphosed coal.  相似文献   

16.
重庆长河碥矿煤的微量元素地球化学特征   总被引:1,自引:1,他引:0  
运用煤岩学和地球化学的理论和方法,对重庆长河碥矿晚三叠世须家河组煤中微量元素进行了研究。结果表明,长河碥矿各煤层中明显富集Pb,其平均值为29.58μg/g。长河碥矿煤中潜在的有害微量元素Be (5.9μg/g)、Cr (28.6μg/g)、Cu (34.06μg/g)、As (10.03μg/g)和Th (12.49μg/g)均较富集;稀土元素含量为59.79287μg/g,均值为136.92μg/g,略高于中国煤中稀土元素总量均值(119.7μg/g),高于美国煤中的稀土元素总量均值(53.59μg/g)。8煤中稀土元素含量异常可能是地下水淋滤作用的结果。长河碥矿煤中有害微量元素主要受控于陆源物质的供给。   相似文献   

17.
杨建业 《地球学报》2007,28(3):277-282
运用电感耦合等离子体质谱(ICP-MS)和逐级化学提取技术(SCET)对贵州西部普安矿区晚二叠世煤中贵金属元素的含量、赋存状态和成因机理进行了研究.结果表明,贵州普安矿区2号主采煤层的矿物组成主要为低温热液流体成因的黄铁矿和陆源碎屑成因的粘土矿物;与中国煤煤相比,该煤中Rh(38 ng/g)、Pb(640 ng/g)、Ir(9 ng/g)、Pt(98 ng/g)、Au(16 ng/g)和Ag(1620 ng/g)明显富集,其中Pb、Ir、Au的含量分别是中国煤的4.3倍、9倍和5.3倍.逐级化学提取结果表  相似文献   

18.
To determine the I distribution in Chinese coals, a nationwide survey was undertaken based on the distribution, periods of formation, rank and production yields of various coal deposits. A total of 305 coal samples were collected and their I contents were determined by catalytic spectrophotometry with pyrohydrolysis. The geochemistry of I during coalification (including both peat diagenesis and coal metamorphism) was assessed. It was found that the I contents of Chinese coals range from 0.04 mg kg–1 to 39.5 mg kg–1 and exhibit a lognormal distribution, with a geometric mean of 1.27 mg kg–1. Statistical correlation analysis and the observation that I contents increase with coal rank indicate that coal I is chalcophile in nature, and not generally organically bound. When peat developed into lignite through diagenesis, 95–99.9% of the original I was lost. The composition and structure of clay minerals present in the coal were controlled by the original depositional environment. The higher the I content of coals, the more likely the original sediments were affected by a marine environment. Iodine contents increased from lignite through sub-bituminous and bituminous coals to anthracite. This indicates that coal absorbed excess I from hydrothermal fluids during metamorphism (including geothermal metamorphism and telemagmatic metamorphism). The telemagmatic metamorphism was caused by magmatic activities that depended on the specific geological structure of the region. In China, most high-rank coals were formed by telemagmatic metamorphism.  相似文献   

19.
Selenium in Chinese coals: distribution,occurrence, and health impact   总被引:2,自引:0,他引:2  
Selenium (Se) is one of the volatile elements in coal. During mining and utilization of coal, Se is largely released into the environment, which influences environmental quality, and consequently impacts on human health. This paper is a review of current knowledge on the distribution, occurrence and environmental impact of Se in Chinese coals. This study includes the following aspects: distribution and abundance of Se in coals of different provinces of China, different coal-forming periods, modes of occurrence of Se in coals, formation mechanism of Se in coals, migration processes and transformation of Se during coal combustion and leaching and their environmental effects. The available data show that Se content in Chinese coals is highly variable in different coalfields, different coal-forming periods, and different coal seams from individual coalfields. The average Se content in Chinese coal is 3.91 mg/kg.  相似文献   

20.
This paper discusses the mineralogy and geochemistry of the No. 6 Coal (Pennsylvanian) in the Junger Coalfield, Ordos Basin, China. The results show that the vitrinite reflectance (0.58%) is lowest and the proportions of inertinite and liptinite (37.4% and 7.1%, respectively) in the No. 6 Coal of the Junger Coalfield are highest among all of the Late Paleozoic coals in the Ordos Basin. The No. 6 Coal may be divided vertically into four sections based on their mineral compositions and elemental concentrations. A high boehmite content (mean 6.1%) was identified in the No. 6 Coal. The minerals associated with the boehmite in the coal include goyazite, rutile, zircon, and Pb-bearing minerals (galena, clausthalite, and selenio-galena). The boehmite is derived from weathered and oxidized bauxite in the weathered crust of the underlying Benxi Formation (Pennsylvanian). A high Pb-bearing mineral content of samples ZG6-2 and ZG6-3 is likely of hydrothermal origin. The No. 6 coal is enriched in Ga (44.8 μg/g), Se (8.2 μg/g), Sr (423 μg/g), Zr (234 μg/g), REEs (193.3 μg/g), Hg (0.35 μg/g), Pb (35.7 μg/g), and Th (17.8 μg/g). Gallium and Th in the No. 6 Coal mainly occur in boehmite, and the Pb-bearing selenide and sulfide minerals contribute not only to Se and Pb contents in the coal, but also probably to Hg content. A high Zr content is attributed to the presence of zircon, and Sr is related to goyazite. The REEs in the coal are supplied from the sediment-source region, and the REEs leached from the adjacent partings by groundwater.  相似文献   

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