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1.
通过综合分析张马屯铁矿尾矿基本特性,对张马屯铁矿尾矿进行了铁尾矿砖生产试验研究。结果表明,利用张马屯铁矿尾矿,采用压制成型法,可以制备出MU10等级以上的建筑用砖,颜色一致性好,铁尾矿砖为灰色,抗冻性良好。认为利用尾矿制备建筑用砖是一条很好的尾矿利用途径,具有明显的经济效益和广泛的应用前景。  相似文献   

2.
对尾矿进行深入细致的研究, 认真分析其物理化学组成将为矿山环境的治理以及尾矿的综合利用提供重要的科学依据.探讨了铜绿山矽卡岩型铜铁矿床尾矿砂的矿物组合特征和地球化学特征, 初步研究了稀硫酸溶液萃取尾矿砂中有价金属元素方法的可行性.研究结果表明: 尾矿砂先后经过化学冶选和长期堆存风化, 矿物组成发生显著改变, 以粘土矿物(高岭石和伊利石)为主; 尾矿中的铜矿物以氧化铜为主, 尾矿砂中金属元素的活动性明显增强, 含量从顶部到第6层逐渐增加, 并在尾砂库的第6层强烈富集, 重金属铜具有回收利用的价值.   相似文献   

3.
通过对冀东司家营铁矿尾矿的化学成分、矿物组成、矿物粒度、解离度以及矿物连生关系等测定,分析了该尾矿综合利用的途径,为同类型沉积变质型铁矿(BIF型铁矿)尾矿综合利用提供参考.分析结果表明,司家营铁尾矿属高硅高铁低铝尾矿;矿物组成以石英、阳起石、透辉石和长石为主,含少量赤铁矿、铁白云石、大隅石及云母等矿物;尾矿粒度以细砂...  相似文献   

4.
鞍山式铁矿尾矿中含有金,它是各种地质作用的综合产物,也是火山沉积的中基性岩本身含有微量金造成的。建议开采该类型铁矿的同时研究回收铁矿尾矿中的金,加强矿床的综合利用,提高企业经济效益。  相似文献   

5.
王书丹 《吉林地质》2002,21(1):131-132
鞍山式铁矿尾矿中含有金,它是各种地质作用的综合产物,也是火山沉积的中基性岩本身含有微量金造成的,建议开采该类型铁矿的同时研究回收铁矿尾矿中的金,加强矿床的综合利用,提高企业经济效益。  相似文献   

6.
宁芜盆地是长江中下游成矿带的7个矿集区之一,以中生代火山岩和玢岩铁矿的广泛发育为特征。凹山铁矿床位于盆地中部,是宁芜盆地玢岩型铁矿床的重要代表之一。本文首次利用成矿元素Fe的金属矿物对宁芜盆地凹山铁矿床的黄铁矿进行了Re-Os同位素测年,获得凹山铁矿床的黄铁矿Re-Os同位素等时线年龄为127.7±2.6Ma(n=5,MSWD=0.66),直接代表凹山铁矿床的成矿年龄。~(187)Os/~(188)Os初始比值为1.73±0.56,γ_(Os(t))值为527.18~535.93,介于地幔与地壳之间,结合已有研究成果,认为凹山铁矿床的成矿物质主要来源于富集地幔,少量来自地壳。  相似文献   

7.
向缉熙 《地质论评》1959,19(5):195-199
安徽省马鞍山市,水陆交通极其方便。在市区南部,内生铁矿床分布极广,其中包括著名的凹山铁矿(凹山式铁矿代表)、南山铁矿(南山式铁矿代表)、大小东山铁矿、向山铁矿以及新发现的其他铁矿。本文只准备简单介绍一下凹山式铁矿(以凹山、大东山两铁矿为主)的主要地质特征。  相似文献   

8.
钴是高温合金、电池材料、防腐材料、磁性材料等重要原料,广泛应用于航空航天、电子电器、机械制造、汽车、化工农业、陶瓷等领域,在国民经济和社会发展中具有特殊的意义。特别是从移动电子设备,到新能源汽车的动力电池,再到电网储能,钴作为锂电池正极材料——钴酸锂的重要组成,都是不可或缺。因此,钴被世界上众多国家列为21世纪重要的关键战略资源(Gulley et al., 2018)。现今我国是世界上最大的钴资源进口国(95%依靠进口)和消费国(US Geological Survey, 2018),而且钴资源紧缺,保障程度低(蒋少涌等,2019;许德如等,2019)。因此,在复杂的国际政治和经济形势下,摸清我国钴资源的家底,增强我国钴矿资源供应保障程度,对我国国民经济发展和国家安全保障具有重要的战略意义。我国钴矿床类型多样,包括岩浆铜镍硫化物型、红土风化型、沉积砂岩型、热液型(如沉积喷流型、矽卡岩型、斑岩型、IOCG型等)(王辉等,2019;许德如等,2019;卢宜冠等,2020)。然而,与世界上钴矿资源相比,我国钴矿规模小、品位低,大部分钴矿为伴生矿,钴多作为副产品回收利用,主要伴生铜、镍金属产出,其次伴生铜铁矿床。其中,矽卡岩型矿床是我国伴生钴矿的一种重要类型,富钴矽卡岩矿床主要发育在东昆仑地区、长江中下游和冈底斯地区。目前,关键金属元素在自然界的矿物和岩石中赋存状态研究已广泛开展,但在矿山尾矿中的赋存状态和可回收利用性研究则相对薄弱。基于山东省新一轮找矿突破战略行动及鲁西地区矽卡岩型铁矿尾矿综合利用程度低等背景,为有效发挥尾矿二次资源的作用,摸清尾矿中伴生的矿产资源的可利用性,本次选取山东省莱芜垂阳铁矿床开展了尾矿中伴生矿产资源的综合利用评价工作,大致查明垂阳铁矿尾矿中可利用伴生资源类型、赋存状态及推荐选矿工艺。通过铁矿尾矿中伴生矿产资源综合利用评价工作,对提高山东矽卡岩型铁矿床中矿产资源综合利用水平,提升战略性矿产资源安全保障能力,助力山东省新一轮找矿突破战略行动具有重要意义。  相似文献   

9.
我国尾矿利用现状及21世纪展望   总被引:18,自引:2,他引:18  
我国金属矿山储存的尾矿超过40亿t,而且每年以3亿t的数量在增长。尾矿排入河道、沟谷、低地,污染水土大气,破坏环境,乃至造成灾害。尾矿的治理和利用是十分紧迫的事情。尾矿综合回收有价组分可创造巨大财富。要加强调查研究,实行整体利用;通过工程示范、技术攻关、建立高附加值的产业,变害为利。  相似文献   

10.
河北邯邢式铁矿尾矿地球化学特征   总被引:1,自引:0,他引:1  
徐国志  邓金火  徐锦鹏 《地质通报》2014,33(9):1439-1444
邯邢铁矿是中国重要的铁矿山之一,利用钻探方法对西石门铁矿后井尾矿56种元素进行地球化学评价,了解元素在尾矿库中的空间分布特征。研究表明,尾矿库中Fe、Cu、S、Co元素可进一步开采利用,局部可达到或超出原生矿的工业品位要求。后井尾矿中Fe、S、Cu、Co资源量分别是28.5×104t、4.5×104t、0.36×104t和0.2×104t,适合二次综合开发利用,同时研究中也探索了这些元素在尾矿沙中富集作用和富集机理及影响因素,旨在探索出一种利用地球化学评价尾矿的资源量勘查方法,加速实现中国尾矿资源化。  相似文献   

11.
四川拉拉铜矿床尾矿的综合利用与研究   总被引:1,自引:0,他引:1  
拉拉铜矿是四川最大的铜矿床,该矿床含有铜、钴、钼、铁、金、银以及多种稀土元素。在分析拉拉铜矿有用组分赋存状态及综合利用情况基础上,对不同期次的尾矿所含有用组分做了具体的分析,根据尾矿的特点和目前拉拉铜矿对尾矿的利用现状,提出了若干适合拉拉铜矿尾矿处理的方法,为矿山的持续发展提供了有力保障。  相似文献   

12.
徐国栋  王冠  程江  董随亮 《岩矿测试》2014,33(6):808-812
西藏扎西康铅锌多金属矿床是我国首次发现的喷流沉积-热泉水改造型锰铁锑铅锌银矿床,已有研究表明矿床中除了铅锌矿还伴生有银、锑、铜、硫、锰、砷等多种元素。本文在化学多元素分析和光学显微镜镜下鉴定的基础上,结合能谱扫描电子显微镜和X射线衍射分析等手段对扎西康铅锌矿中伴生组分Mn的含量、矿物种类、嵌布和包裹等特性进行了研究。分析结果表明,原生矿石的主要成矿元素Pb和Zn的含量分别为6.00%和4.00%,伴生元素Mn的含量平均达到4.36%;原生矿石中的主要矿物为方铅矿、闪锌矿,其次为黄铁矿、毒砂和菱锰矿等。原生矿石中伴生元素Mn主要以独立的菱锰矿和铁菱锰矿形式存在,与闪锌矿和方铅矿密切共生,是成矿早期重要的载矿矿物,嵌布在石英、黄铁矿、闪锌矿和毒砂的粒间、边部及空隙间,其次以类质同象形式赋存于菱铁矿和菱锌矿中。进一步对扎西康铅锌矿选冶产物中的伴生元素Mn的含量和赋存状态进行研究,研究表明Mn具有较高的综合利用价值,在原生矿石、铅精矿、锌精矿和尾矿中的质量分数分别为4.36%、0.51%、0.95%和5.36%,显示Mn很少一部分进入铅精矿和锌精矿,而绝大部分进入尾矿;Mn在尾矿中仍主要以菱锰矿形式存在,存在形式与原生矿石相比未发生改变,可通过强磁选工艺从铅锌尾矿中综合回收利用Mn。  相似文献   

13.
Between 1957 and 1990, the Peñarroya Mining and Metallurgical Company (SMMPE) disposed about 60 million tonnes of tailings materials directly to the Mediterranean Sea. A substantial part of it (12.5 Mt) was dragged back by the sea currents progressively infilling the Portman Bay (Murcia, SE Spain), thus making the shoreline advance between 500 and 600 m seaward. The Roberto froth flotation plant processed mineral from manto-type deposits belonging to the Sierra de Cartagena-La Unión lead-zinc district. One of the mineral assemblages present in these deposits comprises greenalite, magnetite, sulfides, carbonates, and silica. Despite that magnetite recovery was undertaken by SMMPE between 1959 and 1967, we estimate that magnetite contained in the tailings hosts a substantial resource that could be as large as 2.3 Mt of iron ore. The ore contains magnetite ± hematite ± siderite. Tidal waves and sea currents led to gravimetric classification of the tailings material, with concentration of the dense iron oxides in the sandy fractions, eventually forming a coastal placer iron deposit. A major problem for magnetic separation is the intimate intergrowth between magnetite, hematite, and siderite. Besides, the sands contain large concentrations of Pb (0.27 %), Zn (0.72 %), and As (559 ppm).  相似文献   

14.
Experiments have shown that it is possible to obtain a concentrate containing 65% iron, 1.8% alumina and 1.4% silica with an iron recovery of 80% from the tailings of Barsuan iron ore plant containing 52.5% iron, 7.4% alumina and 7.8% silica through selective flocculation employing starch. Key to such success lies in the manner in which the flocculant is desired from the parent starch. Barsuan deposit being a limiting case of typical fine-grained high-alumina iron ores, the results open up technical possibilities of better utilization of such deposits.  相似文献   

15.
河北邯邢铁矿区矿山环境生态地球化学评价   总被引:1,自引:0,他引:1  
徐国志  董迎春  邓金火  田恒川 《地质通报》2014,33(11):1827-1835
在河北邯邢西石门及周边铁矿区系统地采集了各类生态环境地球化学样品,包括土壤(n=242)、玉米(n=110)、地表水(n=37)、地下水(n=31)和水系沉积物(n=81)。通过对矿区各样品元素含量特征和元素富集程度的研究,利用区域地球化学基准值和地质累积指数定量评价了矿山污染扰动程度。研究表明,矿区土壤、玉米、地表水、地下水、水系沉积物中相对富集较高的与成矿作用有关的元素及主要的伴生元素,部分重金属元素超标,土壤和水系沉积物中Se、As、Cd、Cu、As、Cd、Cu、Co元素超标,玉米中F、Cr、Cd元素接近食品卫生限值,地表水和地下水部分指标浓度接近三类水质限值。研究表明,造成污染的主要来源是铁矿尾矿沙和煤矸石中的硫化物发生氧化作用,导致重金属淋滤转移,另一来源是燃煤降尘的积聚。  相似文献   

16.
The knowledge of mineralogy and molecular structure of As is needed to better understand the stability of As in wastes resulting from processing of gold ores. In this study, optical microscopy, scanning electron microscopy, electron microprobe, X-ray diffraction and X-ray absorption fine structure (XAFS) spectroscopy (including both XANES and EXAFS regimes) were employed to determine the mineralogical composition and local coordination environment of As in gold ores and process tailings from bench-scale tests designed to mimic a common plant practice. Arsenic-bearing minerals identified in the ores and tailings include iron (III) oxyhydroxides, scorodite (FeAsO4·2H2O), ferric arsenates, arseniosiderite (Ca2Fe3(AsO4)3O2·3H2O), Ca-Fe arsenates, pharmacosiderite (KFe4(AsO4)3(OH)4·6-7H2O), jarosite (K2Fe6(SO4)4(OH)12) and arsenopyrite (FeAsS). Iron (III) oxyhydroxides contain variable levels of As from trace to about 22 wt% and Ca up to approximately 9 wt%.Finely ground ore and tailings samples were examined by bulk XAFS and selected mineral grains were analyzed by microfocused XAFS (micro-EXAFS) spectroscopy to reconcile the ambiguities of multiple As sources in the complex bulk EXAFS spectra. XANES spectra indicated that As occurs as As5+in all the samples. Micro-EXAFS spectra of individual iron (III) oxyhydroxide grains with varying As concentrations point to inner-sphere bidentate-binuclear arsenate complexes as the predominant form of As. There are indications for the presence of a second Fe shell corresponding to bidentate-mononuclear arrangement. Iron (III) oxyhydroxides with high As concentrations corresponding to maximum adsorption densities probably occur as nanoparticles. The discovery of Ca atoms around As in iron (III) oxyhydroxides at interatomic distances of 4.14-4.17 Å and the coordination numbers suggest the formation of arseniosiderite-like nanoclusters by coprecipitation rather than simple adsorption of Ca onto iron (III) oxyhydroxides. Correlation of Ca with As in iron (III) oxyhydroxides as determined by electron microprobe analysis supports the coprecipitate origin for the presence of Ca in iron (III) oxyhydroxides.The samples containing higher abundances of ferric arsenates released higher As concentrations during the cyanidation tests. The presence of highly soluble ferric arsenates and Ca-Fe arsenates, and relatively unstable iron (III) oxyhydroxides with Fe/As molar ratios of less than 4 in the ore and process tailings suggests that not only the tailings in the impoundment will continue to release As, but also there is the potential for mobilization of As from the natural sources such as the unmined ore.  相似文献   

17.
YML铁矿区位于几内亚福雷卡里亚省,富铁矿以条带状赤铁矿和铁角砾岩矿为主。矿区内共发育7条矿体,条带状赤铁矿体6条,铁角砾岩矿体1条。条带状赤铁矿体赋存部位多为向形地段,次级紧密褶皱发育,沿走向和倾向有逐渐变薄和尖灭的趋势;铁角砾岩矿体覆盖于地表,以风化壳的形式出现。矿床类型属复合类型,即海底热液喷气沉积叠加后期构造变质型+风化淋滤型。该区具备铁矿形成和保存的地质条件,且已发现具一定储量、品位较高的条带状赤铁矿和大面积的铁角砾岩分布区,区内铁矿找矿远景较好。  相似文献   

18.
 A detailed investigation of the mineralogy of As in the tailings of the Rabbit Lake uranium ore processing facility was conducted. The milling/ore extraction process was sampled at three different locations to obtain information about when, where and under what condition secondary As phases form. These samples were compared with four samples of varying As content from the Rabbit Lake in-pit tailings management facility (TMF). Up to 20% As in the tailings are present in primary minerals that reach the tailings directly because they are not dissolved during the uranium extraction. The remaining 80% constitute As that was dissolved during ore extraction and then re-precipitated before being discharged into the tailings pond. It was not possible to conclusively identify any individual re-precipitated (secondary) As minerals in the Rabbit Lake TMF. Indirect evidence from sequential extraction analyses suggests the presence of an amorphous Ca-As phase and a possible, but unlikely, minor amount of an amorphous Fe-As phase. However, the close association between hydrous ferric oxide (HFO) and As could be clearly demonstrated. HFO was identified to be 2-line ferrihydrite and its XRD pattern geometry indicates a substantial amount of adsorbed As. This is in good agreement with SEM, TEM and sequential extraction analyses that all showed the close association of HFO and As. Received: 14 February 2000 · Accepted: 9 May 2000  相似文献   

19.
攀西铁矿成矿带地质矿产特征及找矿方向   总被引:3,自引:0,他引:3       下载免费PDF全文
本文通过对攀西地区区域地质、区域矿产特征的分析,综合地球物理、遥感解译资料,共划分出4个找矿远景区:冕宁泸沽一喜德登相营富铁矿找矿远景区、盐源矿山梁子-牛厂富铁矿找矿远景区、太和一攀枝花钒钛磁铁矿远景区、西昌德昌兴隆.会理龙泉铁矿远景区。指出远景区内岩浆晚期分异型铁矿床、火山沉积变质型铁矿床等为主攻矿种。  相似文献   

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