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1.
运用电感耦合等离子体质谱(ICP MS)对渭北煤田韩城下峪口矿二叠纪主采煤层及其顶底板中的稀土元素进行了测定。在此基础上,全面分析了稀土元素的含量特征和分布模式,探讨渭北煤田二叠纪煤中稀土元素的主要来源及赋存状态。结果表明:与华北和中国煤均值相比,本区煤层中稀土元素相对不富集,∑REY平均含量为87.70 μg/g;剖面上,2号煤中稀土含量稍高于3号煤,3号煤层中自上而下,稀土元素含量呈降低的趋势,在顶底板中出现富集。研究区煤层中轻稀土元素相对于重稀土元素明显富集,Ce呈微弱正异常,成煤沼泽受海水的影响程度较小。Eu明显负异常,且∑REY含量与CaO含量呈负相关关系,说明当时的成煤环境为酸性还原环境。煤层与其顶底板样品中稀土元素分布模式相似,成煤期间物质来源基本一致,陆源物质供应相对稳定。煤中稀土元素含量与灰分呈不太显著的正相关关系(R=0.216),表明煤中稀土元素可能以无机态和有机吸附态共存。  相似文献   

2.
利用钻孔岩心资料及层序地层学的观点,对陕西省渭北煤田石炭—二叠纪煤系地层进行了层序地层学的分析。以奥陶系顶部区域不整合面、太原组最大海泛面的K2灰岩"1分层"的顶面、山西组底部的"北岔沟砂岩"(K4)底面和下石盒子组底部"骆驼脖子砂岩"(K中)底面等界面为层序界限将研究区内含煤地层划分为3个三级层序SQ1、SQ2、SQ3。在层序格架内,对煤层的聚集规律进行研究,结果表明,渭北煤田主要可采煤层3号、10号、11号煤层主要形成于海侵体系域中晚期,4号、5号煤层形成于高位体系域的中晚期。  相似文献   

3.
为研究准格尔串草圪旦5号煤微量元素地球化学特征,采用光学显微镜、扫面电子显微镜和X射线衍射(XRD)方法观测煤中矿物组成及形态特征,应用电感耦合等离子质谱(ICP MS)方法测定煤中多种微量元素含量,运用数理统计方法研究微量元素在煤中的赋存特征。结果表明:5号煤中Li、Be、F、U、Hg 5种元素相对富集,含量高于研究区6号煤及中国煤中含量水平。5号煤中Li、F、Ga、Se无机亲和性强,Be、As、U为亲有机元素;Hg与硫含量显著正相关。各元素在煤中主要以有机结合态、无机结合态和硫化物结合态赋存。  相似文献   

4.
淮北煤田二叠纪煤中稀土元素地球化学研究   总被引:9,自引:0,他引:9  
从淮北煤田二叠系10,7,5,4和3煤层中采集34个样品,采用等离子体质谱(ICP-MS)、中子活化(INNA)、等离子体发射光谱(ICP-AES)等方法对样品中主量元素和稀土元素进行了测试,利用X射线衍射等方法对煤中矿物质及其煤质参数进行了测定。在各种测试的基础上,全面分析了稀土元素含量特征、空间分布规律、地球化学参数和分布模式,探讨了淮北煤田二叠纪煤中稀土元素的主要来源及其在煤中的主要赋存方式。研究表明:与华北和国内外其他地区相比,本区煤层中稀土元素相对富集;产于石盒子组煤中的稀土元素含量高于山两组的,在同一煤层中自下而下稀土元素含量有增高趋势,在顶底板中可能出现富集。Ce呈正异常,Eu明显负异常,不同煤层稀土元素的分布模式相似,稀土元素和灰分具有较好的正相关,∑REE与灰分、灰分中的主要元素以及典型陆源灰分中的微量元素正相关,与反映海相的低灰组分相关性较差。结合煤中矿物质的X射线衍射结果,分析获知,淮北煤田二叠纪成煤环境基本不受海水影响,稀土元素主要由陆源供给,而且主要赋存在以高岭石、伊利石为主的粘土矿物中。  相似文献   

5.
Boehmite-rich coal of Pennsylvanian age was discovered earlier at the Heidaigou Surface Mine, Jungar Coalfield, Inner Mongolia, China. This paper reports new results on 29 bench samples of the no. 6 coal from a drill core from the adjacent Haerwusu Surface Mine, and provides new insights into the origin of the minerals and elements present. The results show that the proportion of inertinite in the no. 6 coal is higher than in other Late Paleozoic coals in northern China. Based on mineral proportions (boehmite to kaolinite ratio) and major element concentrations in the coal benches of the drill core, the no. 6 coal may be divided into five sections (I to V). Major minerals in Sections I and V are kaolinite. Sections II and IV are mainly kaolinite with a trace of boehmite, and Section III is high in boehmite. The boehmite is derived from bauxite in the weathered surface (Benxi Formation) in the sediment-source region. The no. 6 coal is rich in Al2O3 (8.89%), TiO2 (0.47%), Li (116 μg/g), F (286 μg/g), Ga (18 μg/g), Se (6.1 μg/g), Sr (350 μg/g), Zr (268 μg/g), REEs (172 μg/g), Pb (30 μg/g), and Th (17 μg/g). The elements are classified into five associations by cluster analysis, i.e. Groups A, B, C, D, and E. Group A (ash–SiO2–Al2O3–Na2O–Li) and Group B (REE–Sc–In–Y–K2O–Rb–Zr–Hf–Cs–U–P2O5–Sr–Ba–Ge) are strongly correlated with ash yield and mainly have an inorganic affinity. The elements that are negatively or less strongly correlated with ash yield (with exceptions of Fe2O3, Be, V, and Ni) are grouped in the remaining three associations: Group C, Se–Pb–Hg–Th–TiO2–Bi–Nb–Ta–Cd–Sn; Group D, Co–Mo–Tl–Be–Ni–Sb–MgO–Re–Ga–W–Zn–V–Cr–F–Cu; and Group E, S–As–CaO–MnO–Fe2O3. Aluminum is mainly distributed in boehmite, followed by kaolinite. The high correlation coefficients of the Li–ash, Li–Al2O3, and Li–SiO2 pairs indicate that Li is related to the aluminosilicates in the coal. The boehmite-rich coal is high in gallium and F, which occur in boehmite and the organic matter. Selenium and Pb are mainly in epigenetic clausthalite fillings in fractures. The abundant rare earth elements in the coal benches were supplied from two sources: the bauxite on the weathered surface of the Benxi Formation and from adjacent partings by groundwater leaching during diagenesis. The light rare earth elements (LREEs) are more easily leached from the partings and incorporated into the organic matter than the heavy REEs, leading to a higher ratio of LREEs to HREEs in the coal benches than in the overlying partings.  相似文献   

6.
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   

7.
鄂尔多斯盆地东北缘准格尔煤田煤中超常富集勃姆石的发现   总被引:10,自引:0,他引:10  
运用X射线衍射分析(XRD)、带能谱仪的扫描电镜(SEM-EDX)和光学显微镜等技术,首次在鄂尔多斯盆地东北缘准格尔矿区6号巨厚煤层中发现了超常富集的勃姆石及其特殊的矿物组合,勃姆石含量可高达13.1%,与勃姆石伴生的矿物有磷锶铝石、锆石、金红石、菱铁矿、方铅矿、硒铅矿和硒方铅矿。重矿物的组合特征与华北地区本溪组铝土矿中的重矿物组合特征相似,高含量的勃姆石主要来源于聚煤盆地北偏东方向本溪组风化壳铝土矿,三水铝石以胶体溶液的形式从铝土矿中被短距离带入泥炭沼泽中,在泥炭聚积阶段和成岩作用早期经压实作用脱水凝聚而形成勃姆石。  相似文献   

8.
山西西山煤田7号煤层煤相研究   总被引:5,自引:2,他引:5  
在系统总结西山煤田7号煤层成因标志的基础上,对其成煤植物、成煤环境及其古地理背景、古气候变化进行了综合分析;然后从微观研究的角度出发,对该煤层进行了成因类型的划分,在此基础上,详细划分了该煤层煤相,共划分出6种煤相类型:干燥森林沼泽相;滞流浅覆水森林沼泽相;流动浅覆水森林沼泽相;滞流强覆水森林沼泽相;流动强覆水森林沼泽相以及洪泛沼泽相。此外,对7号煤层煤相类型的垂向分布和演化规律进行了初步分析。  相似文献   

9.
Composition and quality of coals in the Huaibei Coalfield, Anhui, China   总被引:3,自引:0,他引:3  
The Huaibei Coalfield, Anhui Province, China, is one of the largest coalfields in China. The coals of Permian age are used mainly for power generation. Coal compositions and 47 trace elements of the No. 10 Coal of the Shanxi Formation, the No. 7, 5, and 4 Coals of the Lower Shihezi Formation, and the No. 3 Coal of the Upper Shihezi Formation from the Huaibei Coalfield were studied. The results indicate that the Huaibei coals have low ash, moisture, and sulfur contents, but high volatile matter and calorific value. The ash yield increases stratigraphically upwards, but the volatile matter and total sulfur contents show a slight decrease from the lower to upper seams. Magmatic intrusion into the No. 5 Coal resulted in high ash, volatile matter, and calorific value, but low moisture value in the coal. Among the studied 47 trace elements, Ba, Co, Cr, Cu, Hg, Mo, Ni, Pb, Sb, Th, U, V, and Zn are of environmental concerns. Four elements Hg, Mo, Zn, and Sb are clearly enriched in the coals as compared with the upper continental crust.  相似文献   

10.
Total 138 coal samples and 14 parting samples were taken from the No. 6 Seam of the Jungar Coalfield, Inner Mongolia. These samples were analysed by optical microscopy, sequential chemical extraction procedure (SCEP), inductively coupled plasma mass spectrometry (ICP-MS), X-ray powder diffraction (XRD), and scanning electron microscope in conjunction with an energy-dispersive X-ray spectrometer (SEM-EDX) analysis. The results indicate that the Li contents have reached the industrial grade of the coal associated Li deposit, and the total Li reserves have reached 2406600 tons, that is, 5157000 tons Li2O in the No. 6 seam in the Jungar Coalfield. The sequential chemical extraction procedure results suggest that the Li concentration is mainly related to inorganic matter. The minerals in the coals consist of kaolinite, boehmite, chlorite-group mineral, quartz, calcite, pyrite, siderite and amorphous clay material. Some Li could be absorbed by clay minerals in the Li-bearing coal seam. The chlorite phase?could be?most likely the host for a part of Li. The Yinshan Oldland should be the most possible source of Li of the coal.  相似文献   

11.
以淮北煤田二叠纪10、7、3煤层样品为研究对象,采用仪器中子活化法(INNA)测试了煤中42个伴生元素的含量,将其与华北石炭-二叠纪和中国煤中的伴生元素含量、范围进行了对比,并对伴生元素中主量元素含量和灰分的关系、微量元素的共生组合特点以及稀土元素含量与灰分的关系、稀土元素分布模式进行了初步分析。结果表明,对环境有影响的Ba、Co、Cr、Cu、Mo、Th、V、W、Zn、Ti元素在研究区煤中相对富集,Al、Ti、K、Na等元素与灰分有较好的相关性,Ca、Mg、Fe和灰分的相关性较差,稀土元素与灰分正相关且具有相似的分配模式,普遍存在Eu亏损现象,说明煤中伴生元素的主要来源是陆源物质。  相似文献   

12.
贵州六盘水市煤矸石综合利用现状及对策   总被引:1,自引:0,他引:1  
六盘水市煤炭资源在贵州省煤炭资源中占有重要地位,煤炭资源开发是该市最重要的支柱产业,其煤矸石排放量和煤矸石堆放量均是全省最多的地区之一。本次工作对六盘水市煤矸石综合利用现状进行了调查,发现该市在煤矸石综合利用方面存在利用率较低、利用不平衡、利用方式相对单一、利用技术水平滞后和利用优惠政策落实难等问题。针对以上情况,作者对该市煤矸石综合利用提出了今后发展方向和建议。  相似文献   

13.
采用标准试验方法求得筑坝用煤矸石的最大干密度和相应的最优含水量。试验结果表明,击实作用使煤矸石的粗大颗粒发生破碎,导致其粒度组成改变,颗粒级配进一步趋于良好,有利于碾压密实。当粗粒质量分数大于60%时,煤矸石的破碎程度明显提高。当粗粒质量分数小于40%时,煤矸石的工程特性主要由细颗粒的性质决定。煤矸石的渗透系数和孔隙比之间存在指数关系。随细颗粒含量的增加,煤矸石的渗透性将显著降低。  相似文献   

14.
淮北煤田煤的稀土元素地球化学   总被引:17,自引:6,他引:17  
采用仪器中子活化分析法(INAA)测试了淮北煤田6、3煤层1个煤样的稀土元素含量,并探讨了稀土元素地球化学特征,得出以下认识:11个样吕的平均ΣREE为81.9535ug/g;稀土元素分布模式呈左高右低的、具Eu负异常的“V”型曲线。相关分析、聚类分析的结果表明:稀土元素与灰分、陆源碎屑的元素(Si、Al、Ti、Cr、Co、Ni、Th、Ta、Sc和Rb等)的关系密切,而与海相元素(Ca、Sr等)关  相似文献   

15.
贵州水城地区煤矸石中微量元素综合利用评价   总被引:1,自引:0,他引:1  
丁伟  黄智龙  周家喜  谷静 《矿物学报》2011,31(3):502-508
煤矸石中富含各种微量元素,其中很多元素都具有综合利用潜力,如在高镓矸石中,微量元素Ga含量可达到工业利用品位。矸石中也富含一些对植物生长有益的微量元素,这有利于利用煤矸石制作肥料和矸石山的复垦,但矸石中有些微量重金属元素含量过高时也会对环境造成一定的影响。为了更深入的查明煤矸石中微量元素的利用潜力和对环境的影响程度,选择重要产煤区水城为研究区域,对多个煤矿的煤矸石开展综合利用研究工作,采用ICP—MS对煤矸石中微量元素进行分析,并对煤矸石微量元素利用进行了综合评价。通过分析,认为Ag、co、Ga、zr、Nb和sc等6种微量元素有较大综合利用潜力,矸石中富含cu、zn、c0和M04种对植物生长有益的微量元素,但矸石中的cu、Ni、zn和Cr含量是对照背景值的2—3倍,可能会对环境造成一定的影响。  相似文献   

16.
煤矸石堆积体稳定性及灾害防治对策研究   总被引:2,自引:0,他引:2  
巨能攀 《地质与勘探》2010,46(1):142-146
在对矸石堆积体地质条件、结构特征和已有变形特征分析的基础上,分析了堆积体产生变形的机理和潜在破坏模式,并利用数值模拟技术对矸石堆积体的变形特征和破坏规律进行模拟,确定潜在滑动面位置和形态,分析各种工况下矸石堆积体的稳定性,确定相应的防治措施,并提出了防治矸石灾害的对策。实例研究表明,在强降雨的条件下矸石堆积体沿基覆界面滑动的可能性较大,同时在堆积体的后缘存在局部失稳的可能,采用削方压脚、排水及挡墙等综合治理方法可取得良好的防治效果。  相似文献   

17.
Total of 23 bench samples were taken from the No. 7 Coal of Iqe Coalfield, Qinghai Province, China, following Chinese Standard Method GB/T 482-2008 (2008). These samples were analyzed by powder X-ray diffraction (XRD), inductively coupled plasma mass spectrometry (ICP-MS) and X-ray fluorescence (XRF). The results indicate that the No. 7 Coal belongs to a low rank (Ro,ran =0.659%) and high-ash coal (40.54%). Compared to common Chinese and world low-rank coals, the Iqe coal contains anomalous concentrations of rare metal elements, rare-scattered (dispersed) elements and rare earth elements. The highest contents of Rb, Cs, Ga and REY reach to 180, 26, 37, and 397 ppm, respectively. Their average contents of these elements are 10.9, 15, 4.8 and 3.5 times higher than those of world coals, respectively. Minerals in the coal include kaolinite, quartz, muscovite, siderite, and traces of rutile, and brookite. Kaolinite could be main host minerals of Rb, Cs, Ga and REY. The anomalous rare element Rb and Cs accumulation in the Iqe coal is related to both organic and inorganic matter. The REY concentrations may be related to circulation of thermal solutions, contained or sorbed by clayey particles, and organic matter as well.  相似文献   

18.
新疆准东煤田五彩湾矿区西山窑组煤层厚度稳定,分布广泛,煤质优良.笔者从成因角度运用煤田地质学、煤岩学、煤地球化学及沉积学等,进一步探讨西山窑组巨厚煤层煤岩组分特征、煤相类型.结果表明,煤层微观煤岩以镜质组为主,惰性组次之,含少量壳质组.相学分析表明,该区聚煤沼泽类型以湿地森林沼泽相为主,干燥森林沼泽相次之.少数样品指示成煤过程中短时期、周期性深覆水或开阔水域沼泽相存在.煤相分析显示威煤环境具网状河三角洲沼泽相沉积特征.煤岩和煤相分析为聚煤环境分析、煤质评价和预测、煤的可选性评价等提供科学依据.  相似文献   

19.
织纳煤田含煤地层上二叠统为海陆交互相沉积,含煤层数多,厚度大,煤质较好。通过区内含煤性、煤层煤质及聚煤规律研究,对煤炭资源潜力及勘查开发前景做出综合评价。以向斜构造为基本单元划分了15个赋煤单元和2个赋煤小区,共圈定了81个预测区,预测2000m以浅潜在资源量334.325 6亿t,探获资源储量191.646 0亿t,总资源量525.971 6亿t,并提出煤炭资源勘查开发利用建议:6个近期部署区优先安排普查,10个中期部署区考虑安排预查,9个远期部署区目前暂不宜开展勘查工作。  相似文献   

20.
Character of the Si and Al Phases in Coal Gangue and Its Ash   总被引:1,自引:0,他引:1  
Abstract: Analysis of the Si and Al phases in coal gangue fuel and its ash is important for use of coal gangue ashes. A comprehensive study by theoretical and experimental analyses with differential thermal analysis, X-ray diffraction and Infrared Spectroscopy has been made in the present article to explore the diagram of the Si and Al phases in coal gangue fuel and its ashes. It is found that kaolinite and quartz are the main phases in coal gangue fuel. The ratio of moles Al2O3 to SiO2 (i.e., Al2O3 (mole) /SiO2 (mole)) is usually no more than 0.5 in most coal gangue fuel and its ashes. The kaolinit at about 984°C releases a large quantity of SiO2, which makes calcine coal gangue more active than coal gangue itself. The relationship between the ratio Al2O3 (mole)/SiO2(mole) and the components of coal gangue ash is analyzed, resulting in a formula to calculate the quantity of each phase. Applying the formula to the testing samples from an electric plant in north China supports the above conclusions.  相似文献   

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