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1.
铅同位素示踪技术在重金属污染研究中的应用   总被引:4,自引:0,他引:4  
重金属通过在生态环境和生物中的迁移、转化和富集已对环境质量和人类健康构成了严重威胁。概述了重金属元素在地表环境中的迁移方式和在土壤一植物系统中的聚积形态,以及重金属污染治理的研究现状。针对以往研究工作的不足和在研项目特点,重点提出了土壤和茶叶中铅同位素组成的测试技术.综述了铅同位素示踪技术在重金属污染研究中的应用,并指出了今后研究重金属污染的重点。  相似文献   

2.
铅同位素示踪是采用铅同位素作为示踪剂,根据有关岩石、矿物的铅同位素组成和它们之间的关系判断成矿物质来源。笔者利用铅同位素示踪地气物质来源,采用ICP-MS测试方法,对山东邹平王家庄斑岩铜矿区矿石、围岩、土壤等介质的铅同位素组成与地气样品铅同位素特征进行对比,发现矿体上方地气异常样品铅同位素组成与矿石中铅同位素组成基本一致,表明地气异常样品中的铅主要来自深部矿体,且捕集剂空白和其他影响因素对地气异常样品中铅的干扰较小,其铅同位素组成更接近于矿石。  相似文献   

3.
汪明启  高玉岩 《地球化学》2007,36(4):391-399
地气测量方法能够用来勘查隐伏矿和盲矿,但由于其机理还处在假说阶段,方法自诞生以来一直受到质疑.研究地气物质来源有助于对地气形成机理的认识.采用超净环境控制、高纯酸提纯和高纯制水等方法,成功地实现捕集材料空白Pb小于0.5 ng/mL.利用美国国家标准局SRM981铅同位素标准物质和SRM982富集铅同位素稀释剂,采用ICP-MS法首次实现低含量地气铅同位素比值的测定.矿区黄土、红层、围岩和矿石铅同位素组成由质谱法测定.结果显示,背景区地气样品由于铅同位素含量低,其铅同位素组成偏离矿区已知地质母体,可能主要受到捕集剂空白干扰所致;异常区地气铅同位素组成明显不同于背景区,样品点位于近矿围岩和矿石硫化物之间,且更靠近矿石硫化物,说明异常区地气样品有深部矿石硫化物铅的加入,从而为地气用于覆盖区矿产勘查提供了可靠的理论依据.  相似文献   

4.
通过对大水金矿时空分布及元素地球化学特征的分析研究,探讨了地幔流体参与大水金矿床成矿的可能性。大水金矿属于川甘陕"金三角"矿集区的一个组成部分,在时空分布上受深大断裂、壳幔混合源岩浆岩的控制,是西秦岭地区勘查发现的大型金矿床之一。研究表明,矿石及贯穿于整个成矿过程中的方解石脉的稀土配分模式总体具相对富集轻稀土的特征。流体包裹体显微测温显示矿床的成矿温度范围为105℃-400℃。包裹体(方解石)气相成分主要为CO2和H2O,液相成分中阳离子以K^+为主,Na^+次之;阴离子以SO4^2-为主,Cl^-次之。矿物黄铁矿的δ^34S为-1.8‰-+4.1‰,平均值+2.4‰,反映成矿流体中硫部分来源于地幔。热液方解石的碳、氢、氧同位素组成反映成矿流体既有来自地幔的流体,也有来自岩浆岩、地层的流体,还有明显大气降水的加入。硅化灰岩矿石及硅质岩矿石的硅同位素组成具深部或岩浆热液和热水来源的特点,其氧同位素组成具火成石英来源的特点。矿石铅与矿区岩石铅(灰岩和脉岩)的铅同位素组成比较相近,在铅同位素构造模式图及Δγ-Δβ成因分类图解中,铅属壳幔混合铅。综上可知,矿床在成矿作用过程中存在地幔流体活动。  相似文献   

5.
魏长帅  刘平辉  袁瑾 《江苏地质》2015,39(4):673-677
对华东某铀矿区及对照区稻米中重金属元素Pb的含量进行了研究。该铀矿区尾矿坝、尾矿堆积区、矿床开采区、矿床开采区上游以及下游、矿石矿渣运输道路沿线稻米中Pb含量与位于铀矿区边缘的某村(受矿区水及大气影响)以及非铀矿区某村(不受矿区水系及大气影响)稻米中的Pb含量接近,均未超过国家食品污染限量标准(GB 2762—2012)中谷类Pb的限量。单因素污染评价结果表明,该铀矿区和非铀矿区的稻米均没有受到重金属铅的污染。在自然界中,铅化合物的溶解度低,这可能是铅不易被水稻吸收的原因。  相似文献   

6.
东天山康古尔金矿床成矿物源的同位素地球化学特征   总被引:5,自引:0,他引:5  
张连昌  姬金生 《现代地质》1998,12(3):380-387
康古尔金矿床属晚古生代火山岩区剪切带蚀变岩型金矿。同位素地球化学研究表明,矿石中铅为正常铅,热液系统硫同位素组成为陨石硫型,矿石中碳、钕同位素组成具深源特征,同时矿石与火山岩围岩中的Si、Sr、S、Pb等同位素组成相近,说明成矿物质主要来自矿体围岩———火山岩,晚期有少量来自矿区附近的侵入岩。铅、锶同位素组成反映成矿过程中也有少量壳源物质的加入。  相似文献   

7.
代文军 《甘肃地质》2013,22(2):26-32
通过对矿床矿石铅同位素组成的分析,并与矿区岩浆岩脉和围岩地层中的岩石铅同位素组成进行对比,借以示踪矿床成矿物质来源。研究表明,矿石铅与矿区岩石铅(灰岩和脉岩)的铅同位素组成具有较相近和较窄的变化范围,暗示铅可能属同一铅源。在铅同位素构造模式图及不同成因类型矿石铅的Δγ-Δβ成因分类图解中,显示出造山带铅、地壳与地幔混合的俯冲带岩浆作用铅特征,说明铅不是单一来源的正常铅,而是混合型多来源的异常铅。成矿物质是多来源的,赋矿地层和岩浆岩共同提供了铅源及成矿物质,但以岩浆为主,地层为辅,地幔铅参与了成矿。  相似文献   

8.
本次工作利用等离子质谱仪(ICP-MS)对湘江长沙-湘潭-株洲河段河床沉积物重金属含量和铅同位素组成进行了系统的分析。结果表明,河床沉积物富集V、Cr、Mn、Co、Ni、Th、U、Cu、Pb、Zn等多种重金属,其中Cu、Zn、Pb等重金属于株洲段沉积物中达高度至极度富集。沉积物重金属的富集特征暗示沉积物存在较严重的重金属污染。沉积物铅同位素组成以相对富Th铅为特征,具明显的人为源和自然源铅,其~(206)Pb/~(207)Pb值在1.1723至1.1855之间,~(206)Pb/~(208)Pb值在0.4760至0.4786之间。其中自然源铅主要为花岗岩铅,而人为源铅则为铅锌矿矿石铅和燃煤铅构成,即沉积物铅同位素组成为花岗岩铅、铅锌矿矿石铅、燃煤铅组成的三元混合铅。铅同位素比例估算显示,长沙、湘潭段沉积物铅锌矿矿石源铅比例平均依次为23%、32%,燃煤源铅比例平均依次为47%、23%,自然源铅比例平均依次为30%、45%;株洲段沉积物的自然源铅比例较低,平均为17%,而矿石铅和燃煤铅的比例较高,平均依次为34%和49%。V、Mn、Co、Cu、Zn、U等其他重金属与Pb一样,长沙、湘潭段沉积物人为源比例小于67%,株洲段沉积物人为源比例达70%。因此,湘江长潭株段河床沉积物重金属污染问题值得引起高度重视。  相似文献   

9.
<正>伴随矿产资源的开发与利用所引发的环境问题日益受到了广大学者的关注。目前,矿山环境研究从污染源如废石、尾矿、酸性排水至元素迁移介质如土壤、地表水、大气等均有涉及。此外,相关污染模拟实验及评价模型的建立也为矿山环境的修复及治理提供了切实可靠的方法。矿区内的尾矿坝及露天堆放的废石堆、矿石堆是矿区周围及其下游环境中重金属元素的主要来源,天然雨水淋溶浸泡作用对重金属元素的释放迁移具有一定的促进作用,因此许多国内外学者致力于尾矿、废石、矿石的模拟淋滤实验研究,包括  相似文献   

10.
为了评价有色金属矿山城市大气降尘中重金属元素的污染状况、来源及其对土壤重金属累积的影响,分析测试了铜陵市大气降尘样品中Cd元素的含量.分析结果表明,降尘样品中Cd元素的平均含量为16.44/μg/g,明显高于安徽省江淮流域多目标调查中铜陵土壤Cd元素的平均含量;降尘中Cd元素含量较高的样品出现在矿山和冶炼厂附近.用富集...  相似文献   

11.
邬光海  王晨昇  陈鸿汉 《中国地质》2020,47(6):1838-1852
为研究内蒙古赤峰市废弃钨钼矿区周围土壤重金属污染特征、潜在生态风险及成因分析,共采集83份表层土壤样品和6个土壤钻孔。采用ArcGIS空间插值分析方法研究As、Cd、Cr、Cu、Ni、Pb、Mo和Zn的空间分布,构建重金属扰动指数函数研究重金属受人类活动的污染程度,利用地累积指数法验证矿区周围土壤重金属污染程度,通过相关性分析判断重金属来源并讨论污染成因。结果表明:矿区周围土壤As、Cd、Cu、Pb、Zn和Mo平均含量明显高于矿区周边背景值,高含量主要分布尾矿库周围,主要来源为矿山采选活动;Cr和Ni基本无污染,主要来源为母岩风化。通过重金属扰动指数函数计算发现:采用区域背景值对矿区周围进行重金属污染评价夸大了矿山采选活动对矿区周围土壤重金属的污染,矿区周围土壤重金属污染是由于天然重金属富集和采矿活动共同作用下的“双驱动模式”导致,尾矿库周围土壤重金属污染程度随着与尾矿库水平距离的增加和深度的加大而逐渐降低。降水量丰富程度是影响重金属迁移能力的关键因素,该矿处于降水量匮乏地区,尾矿库对周围土壤重金属污染范围有限,对生态环境影响轻微。  相似文献   

12.
Environmental impact of the mining activities in the Mahd Adh Dahab gold mine was examined through detailed chemical analyses of a number of samples represent the gold-bearing rocks, soils, dust, and plants from inside and outside the mine area and within the Mahd City as well as the surrounding areas. The obtained data were compared with the standard values of heavy metals concentrations in order to evaluate the pollution levels of these activities on the different systems around the mine area. The data of rock samples shows relatively high concentrations of Cu (up to 11.9%), Pb (up to 4.1%), and Zn (up to 14.2%), which attributed to the outcropping of the sulfide-bearing veins on the surface of the mine area. Soil samples inside the mine area show high concentrations of Zn, Cu, Cd, Pb, and As compared to those from outside the mine indicating pollution impact of the mine activities on soils from inside the mine with these elements. Dust samples collected from inside the mine have considerably high concentrations of Cd, Zn, and Pb compared to those from outside the mine. Values of heavy metals in the collected dust from outside the mine are comparable with those from many big cities including Riyadh City, Saudi Arabia, indicating contaminations with heavy metals to the dust from inside the mine at Mahd Adh Dahab City. Heavy metals concentrations in the stems and leaves samples of the various types of plants inside and outside Mahd Adh Dahab gold mine area show that they have relatively higher concentrations of Cu and Zn compared to other metals. Stem samples show relatively higher concentrations of Zn, Cu, Cr, and V compared to the leaves samples. Although values of most heavy metals in the plants, both stems and leaves, are comparable with those of the typical levels of heavy metals in plants, Co and Cr show relatively higher concentrations suggesting a pollution impact of the mine activities in plants with Co and Cr. As a conclusion, results indicated that the contamination effect of Mahd Adh Dahab gold mine activities are clear in soils and dusts inside the mine area with some metals such Zn, Cu, Cd, and Pb due to their relatively enrichment in mineralization. Therefore, careful treatments of the waste dump materials inside the mine area are recommended to protect soils and air contaminations and to prevent the extension of pollution outside the mine in the future.  相似文献   

13.
研究矿业活动重金属的释放、迁移及累积特征对于控制和治理矿区水土环境污染具有重要的意义。本文通过广东大宝山矿区水土污染源调查及横石河流域沿岸水土样品采集,以研究区土壤对照值及国家环境质量为标准,试图探讨了大宝山矿区重金属迁移及累积特征。研究结果表明,横石河沿岸土壤重金属元素主要来自采矿活动的酸性废水的排放,土壤中Cd、Pb、Cu和Zn的含量均超过对照值,呈现出明显的累积特征,且Cd、Cu含量超过了国家土壤环境质量标准;土壤中重金属累积程度及其风险等级呈现出从源头向下游递减的特点,其中凉桥、水楼下地段农田重金属处于高风险区,阳河-莲心村虽有累积,但无风险;上坝村地处土壤重金属累积的中风险区,下坝村处于低风险区。研究结果为矿区重金属污染防治提供了重要依据。  相似文献   

14.
路璐  赵元艺  柳建平  薛强 《地质通报》2014,33(8):1205-1212
以2004年和2011年江西德兴铜矿开采区影响的大坞河流域共计140件水、土、底泥及种植物样品中Cu的含量为研究对象,参考国家标准对大坞河流域不同河段Cu污染进行评价,研究不同环境介质中Cu含量随时间变化的规律,并且探讨种植物中Cu元素的来源。研究表明,从空间上看大坞河源区和上游的样品超标率最高,分别达到70.3%和90.9%。7年间研究区环境介质中的Cu元素总体是趋于恶化的,除地表水和土壤中Cu含量有所降低外,其他环境介质中的Cu含量都有所增加,最明显的是2011年小白菜中的Cu元素含量是2004年的11.68倍。与种植物密切相关的地表水和对应土壤中Cu元素的变化规律存在较大差异,据此推断其Cu元素来源与元素形态、大气干湿沉降等因素有关。  相似文献   

15.
Gold mining activities in Apolobamba area, northwest of La Paz, Bolivia have created serious environmental concern and great risk to human health. The current methods used to extract gold are too primitive resulting in metal contamination of soil and water. The objectives of this study were to: (1) determine the degree of metal pollution, and (2) assess the risk to human health and environment in the Apolobamba area. Soil, water, sediment samples, and mine spills were collected and analyzed. Metals including Pb, Cu, Zn, Cd, and Hg concentrations were higher in surface soils than in subsurface soils indicating active atmospheric deposition of metals. Sediment samples had elevated levels of metals probably from mine spills discharged into the Sunchulli River. Surface soils in the Sunchulli community show the highest levels of Pb and Hg in all soil samples and may pose a risk to the health of the human population and environment.  相似文献   

16.
不同源区铅同位素的组成不同,因此可以利用铅同位素的这种"指纹"特征来示踪铅的不同源区。近年来铅同位素示踪在研究土壤中相关重金属来源及其运移途径起到独特的作用。由于铊和铅具有相似的地球化学性质,并且在云浮硫铁矿区污染土壤中其分布与铅有很好的相关性,笔者利用铅同位素作为示踪工具探讨了土壤中铊的污染特征,初步研究表明铊污染物主要累积在土壤深度0~16.5cm范围内,深度为16.5cm以下土壤受到废渣中铊污染的影响较小,但废渣周围土壤深度约44cm范围已经受到来自废渣中铊的影响。  相似文献   

17.
解析大气总悬浮颗粒物(TSP)的重金属来源可为重金属生态风险评价和环境修复提供理论依据。本文研究了中国南方某工业城市冶炼厂周边冬季TSP和表层土壤(0~20 cm)中的重金属环境效应。采用大气主动采样技术收集TSP样品,原子荧光光谱法和电感耦合等离子体质谱法测定其中重金属的含量,结合富集因子法和Pearson系数法分析重金属含量特征及其来源。结果表明,研究区TSP中Zn、Pb、Cd含量最高达到30809.06×10-6、9902.91×10-6、1011.21×10-6,分别是中国土壤背景值的201.43、222.53、5616.20倍,属于污染严重级别;Ni、Cr含量分别是中国土壤背景值的1.83倍和2.96倍。冶炼厂、火力发电厂和化工厂等人为源是Zn、Pb、Cd、Hg、As等重金属富集的主导因素;土壤重金属含量与TSP重金属含量呈显著正相关,可判定研究区土壤的重金属来源主要为大气沉降。  相似文献   

18.
Toxic heavy metals represent one of the possible environmental hazards from mine lands, which affect many countries having historic mining industries. The primary aim of the study was to investigate the degree of soil pollution occurring near chromite mines, and make a systematic evaluation of soil contamination based on geoaccumulation index, enrichment factor and pollution index. This paper presents the pollution load of toxic heavy metals (As, Ba, Co, Cr, Cu, Mo, Ni, Pb, Sr, V, Zn and Zr) in 57 soil samples collected around three different active (Tagdur), abandoned (Jambur) chromite mining sites as well residential zone around Chikkondanahalli of the Nuggihalli Schist Belt, Karnataka, India. Soil samples were analyzed for heavy metals by using Wavelength dispersive X-ray fluorescence spectrometry. Results indicated that elevated concentrations of Cr, Ni and Co in soils of the study area exceed the Soil Quality Guideline limits (SQGL). The high enrichment factor for Cr, Ni Co obtained in the soil samples show that there is a steady increase of toxic heavy metals risk in this area, which could be correlated with the past mining activity and post abandoned mining in the area. The data was also treated to study the geoaccumulation index, pollution index and spatial distribution of toxic elements. Emphasis need to be put on control measures of pollution and remediation techniques in the study area.  相似文献   

19.
李东风 《世界地质》2013,32(4):867-870
镉是一种毒性很大、在自然界中分布广泛的重金属元素。利用辽河流域生态地球化学调查中取得的土壤、大气干湿沉降、灌溉水及农药化肥等样品,对沈阳细河地区土壤中镉污染源进行了甄别及追踪。结果表明: 沈阳细河地区土壤中镉元素污染是由人为源引起,且镉元素污染源主要为污水灌溉、大气降尘及磷肥三种途径。  相似文献   

20.
Concentrations of total Hg (T-Hg) were measured in mine waste, stream water, soil and moss samples collected from the Tongren area, Guizhou, China to identify potential Hg contamination to local environments, which has resulted from artisanal Hg mining. Mine waste contained high T-Hg concentrations, ranging from 1.8 to 900 mg/kg. High concentrations of Hg were also found in the leachates of mine waste, confirming that mine waste contains significant water-soluble Hg compounds. Total Hg distribution patterns in soil profiles showed that top soil is contaminated with Hg, which has been derived from atmospheric deposition. Data suggest that organic matter plays an important role in the binding and transport of Hg in soil. Elevated T-Hg concentrations (5.9–44 mg/kg) in moss samples suggest that atmospheric deposition is the dominant source of Hg to local terrestrial ecosystems. Concentrations of T-Hg were highly elevated in stream water samples, varying from 92 to 2300 ng/L. Particulate Hg in water constituted a large proportion of the T-Hg and played a major role in Hg transport. Methyl–Hg (Me–Hg) concentrations in the water samples was as high as 7.9 ng/L. Data indicate that Hg contamination is dominantly from artisanal Hg mining in the study area, but the extent of Hg contamination is dependent on the mining history and the scale of artisanal Hg mining.  相似文献   

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