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1.
攀枝花地区不同工业区表层土壤中重金属分布的特征   总被引:12,自引:0,他引:12  
作者在本文中研究了攀枝花地区不同工业区表层土壤中重金属的污染特征及元素组合。结果表明,煤矿区以Cd,Ni,Cu,Zn污染为主,攀钢工业区以Ni,Cu,Cd, Cr污染为主,其它工业区以Cd,Ni污染为主。不同工业区的重金属元素组合特征基本一致,即分为As-Cd-Cu-Ni-Pb和Cr-Zn两组。  相似文献   

2.
运用ICP-MS和ICP-OES分析了攀枝花市不同时段不同地点大气降尘中重金属元素含量,并对大气降尘中重金属的地球化学特征进行了分析,得出以下结论:①攀枝花市大气尘中As、Co、Mn、Pb、Ti、V的含量,与四川省其他城市相比均偏高,Zn的含量相对较低;②Cd、Mn、Pb主要分布在冶炼区和石灰石矿区,Co、Cu、Ti主要分布在石灰石矿区,Cr和V主要分布在冶炼区,As在仁和河富集较为富集,Zn集中在排土场附近,Fe集中在冶炼区和煤矿区;③除Pb外,其余十种元素旱季含量基本都高于雨季,而雨季Pb的含量却明显高于旱季。通过主成份分析,得出了在攀枝花市大气降尘中,重金属元素的来源主要为矿山污染和开采过程中产生的废水、废气。  相似文献   

3.
1 Introduction Vanadium (V) is a relatively abundant elemenwhich is widely distributed in nature; howeverworkable V deposits are very rare (World HealthOrganization, 2001). Vanadium is a trace elementwhich may be beneficial and possibly essential fohuman…  相似文献   

4.
Mining and smelting activities are the main causes for the increasing pollution of heavy metals in soil, Water body and stream sediment. An environmental geochemical investiga-tion was carried out in and around the Panzhihua mining and smelting area to determine the ex-tent of chemical contamination in soil and sediment. The main objective of this study was to in-vestigate the environmental geochemistry of Ti, V, Cr, Mn, Cu, Pb, Zn and As in soil andsediment and to assess the degree of pollution in the study area. The data of heavy metal con-centrations reveal that soils and sediments in the area have been slightly contaminated. Geo-chemical maps of Igeo of each heavy metal show that the contaminated sites are located in V-Ti-magnetite sloping and smelting, gangues dam. The pollution sources of the selected elementscome mainly from dusts resultant from mining activities and other three-waste-effluents. The areaneeds to be monitored regularly for trace metal, especially heavy metal enrichment.  相似文献   

5.
INTRODUCTIONMining activlties have significant envi ronmenta1 inll)ac'l ssuch as visual intrusions, dust, noise, blasting, trafflc and h}'drology (Kwolek, l999; Ripley et al., l996 ). The l)rot'csst'sof mineral extraction, processing, smelting and refinlng;1rt'never approximate to the environmental neutrality, but tht' affected areas can be ameliorated (KwoIek, l999; Klukanov;1;llltlRapant, 1999). The regions, where mining activities are I,r('sent or continuous for a long tlme, are pote…  相似文献   

6.
确定矿井水中重金属污染程度及主要来源,对矿井水的再利用及矿区生态环境保护具有重要的理论意义。以内蒙古某矿区为研究对象,采集地表水、第四系潜水、承压水及矿井水水样49组,检测水体中Zn、Pb、Fe、Mn、As、Cu、Cd、Cr、Hg、Se 10种重金属浓度,分析矿井水中重金属污染特征及超标情况,利用HPI模型定量评价重金属污染程度,并综合数理统计、不同类型水样重金属浓度箱形图及煤/顶板重金属浸出试验,分析矿井水重金属主要来源。结果表明:内蒙古某矿矿井水中Zn、Pb、Fe、Mn、As 5种重金属浓度值超标,其中Fe和Zn的超标率高达100%;7个矿井水样中6个矿井水的HPI值大于临界值100,矿井水重金属污染程度较高;矿井水中的Pb、As主要来源于采煤及运输机械油类物质泄漏,Mn主要来源于Ⅲ含地下水,Fe、Zn主要来源于Ⅲ含地下水及煤层中含Fe、Zn矿物的溶滤。该结论将为矿井水中重金属污染防治提供基础与依据。   相似文献   

7.
Vanadium is a trace element, which may be biologically beneficial and possibly essential but certainly harmful to human beings and some living organisms if excessive. After over 40 years of development, the mining industry has caused serious environmental problems in the Panzhihua mining area. Vanadium is significantly accu-mulated in the soil of the Panzhihua area. Human activities have intensified the pollution and release of vanadium and caused serious damages to the ecological system there. In the past few years, the authors have made investiga-tions into and assessments on the geochemical distribution, chemical speciation, adsorption characteristics and transfer behavior of vanadium in the topsoil in the Panzhihua mining area. The results showed that: (1) the difference in the contents of vanadium in soil between premonsoon and monsoon is insignificant; (2) the adsorption isotherms of vanadium on soil in the Panzhihua mining area ate well described by the Langmuir type; (3) the transfer ability of vanadium in soil is interrelated to soil properties; and (4) the chemical speciation of vanadium shows an order of insoluble residue > oxidizable=reducible > soluble component. According to the above results, some countermea-sures to control pollution of vanadium in soil should be put forward.  相似文献   

8.
硫磺渣是硫磺矿区主要的矿业固废,其随意堆放可产生一系列的环境地质问题,并对山水林田湖草等自然资源、环境及人的健康构成较大危害。滇东北地区长期以硫铁矿为原料、以煤炭为燃料,土法炼硫生产硫磺,导致巨量硫磺渣堆积,产生了严重的环境地质问题。本文针对该地区镇雄县硫磺矿区,调查了小硫磺生产形成硫磺渣的规模和特征,梳理了该硫磺矿区主要环境地质问题及其对当地生态环境的影响,认为目前镇雄硫磺矿区存在的环境污染、自然资源破坏及可能形成的矿渣性泥石流等环境地质现状与过去40多年的小硫磺生产密切相关。基于以上认识,强调应结合矿业固废无害化、减量化和资源化技术政策,从资源回收利用、生态环境恢复、地质灾害防治和文化遗产保护方面探讨和提出镇雄硫磺矿区矿渣治理和生态修复的新理念和新对策。  相似文献   

9.
金顶矿区长期的矿业活动造成矿区水系沉积物严重污染.通过沉积物中Cd的化学形态分析发现:矿区沉积物中Cd元素形态主要以可还原态为主,其次为可氧化态Cd、残渣态Cd和弱酸提取态Cd.沉积物中Cd的形态特征受污染源的控制.当沉积物受氧化矿为主体的污染源控制时,镉的弱酸提取态和可还原态相对较高(占总金属量的90%以上),而当沉积物受硫化矿为主体污染源控制时.镉的弱酸提取态和可还原态相对较低(仅占总金属量的20%左右).池江水系沉积物中Cd的弱酸提取态占相当大比例(占金属总量的18.8%),在表生环境中极易释放出来并污染水体,对矿区乃至矿区下游流域生态环境构成直接的危害.  相似文献   

10.
以承德市伊逊河红旗钒钛磁铁矿小流域为例,通过参比元素标准化法、垂向剖面似背景值法确定小流域矿集区土壤12种重金属的地球化学基线,并与不同空间尺度流域的重金属地球化学基线进行对比;采用确定的基线值结合地累积指数法、地统计学、生态风险指数法和GIS叠加法对流域土壤重金属潜在生态风险和累积程度进行了评价.结果表明:钒钛磁铁矿...  相似文献   

11.
基于地球化学基线的土壤重金属污染潜在生态风险评价   总被引:14,自引:1,他引:14  
地球化学基线是区分地球化学背景和异常的重要参数。在采集和测试德兴地区约5000km^2面积的479个表层土壤样品基础上,采用标准化方法确定了样品中Cu,Pb,Zn,Cd,Cr,As和Hg等7种重金属元素的基线值,并以基线作为潜在生态风险评价的参比值,对德兴地区土壤重金属污染进行潜在生态风险评价。结果表明:研究区可划分为3个潜在生态风险等级:轻微生态风险、中等生态风险和强生态风险,强生态风险区主要分布在德兴铜矿和钟家山煤矿等矿业活动区附近。其他大部分地区为轻微生态风险区。  相似文献   

12.
Acid mine drainage (AMD) pollution is considered to be the most serious water pollution problem in mining areas. AMD containing iron sulfates and other components can affect the receiving water bodies. Pyrite oxidation and AMD generation can be considered as important processes that may take place in the wastes produced by coal mining and coal washing operations in the Golestan province (northeast Iran). The study area is characterized by appropriate atmospheric conditions that favor pyrite oxidation and the presence of a large amount of water bodies. This study attempts to consider pyrite oxidation and AMD generation in the Azad shahr–Ramian region. The impact of AMD on the quality of the surface water bodies was investigated by taking samples and analyzing them for hydro-geochemical parameters. Stiff and Piper diagrams were used to represent chemical analyses of water samples. The coal samples taken from different depths at four points on two different coal waste dumps were analyzed to find the fraction of pyrite that remained in the waste particles to investigate the pyrite oxidation process. A computational fluid dynamic package called PHOENICS was used to model pyrite oxidation process numerically. The results obtained from the geochemical analyses of water and coal samples and numerical simulation show pyrite oxidation and acid generation in the region. However, the presence of carbonate rocks raised the pH of the water samples. The drainages of the Razi mine may be recognized as natural alkaline mine drainages.  相似文献   

13.
以新庄孜矿为例,针对覆土造地过程中,煤矸石充填可能带来的重金属元素的迁移污染作了相关分析。采用煤矸石充填塌陷区,既减少矸石山占地面积,又能在塌陷区覆土造地;同时,填埋矸石有利于保护环境,防止环境污染,具有较大的经济效益、社会效益和环境效益,对淮南矿区覆土造地及工农业持续发展具有重要的示范意义。   相似文献   

14.
秦爱华  于成广  李括  杨柯 《现代地质》2014,28(3):537-542
通过对辽宁铁岭柴河铅锌矿及周边地区的土壤测量及柴河水库河漫滩沉积剖面的同位素测年研究,发现柴河铅锌矿开采导致的土壤重金属污染主要集中在柴河铅锌矿区周边3~5 km的范围内,土壤pH值表明土壤明显酸化。污染历史重建显示,1820年以来,随着沉积物中S含量的不断升高,其pH值累计下降2个单位;1900年以来河漫滩沉积物中的Cd、Pb、Zn累积明显;铅锌矿停止开采后,沉积剖面中Pb、Hg含量逐年降低;汇水域内的土壤酸化仍可导致土壤中累积的Cd和Zn对水库水体和库底沉积物造成二次污染,对水库鱼类的安全具有潜在风险。  相似文献   

15.
Water samples (springs, creeks, mine adits) from different former mining districts of the Harz Mountains and the nearby Kupferschiefer (copper shale) basin of Sangerhausen were analysed for major ions and trace metals. Due to more intensive water rock interactions including the ore minerals, the mine water concentrations of main components and trace metals are generally higher compared to non mining affected surface waters of the mountain range. Furthermore, the content of major ions in mine water is enriched by mixing processes with saline waters from Permian layers in the Kupferschiefer district and at the deeper levels of the mines in the Upper Harz Mountains. The waters of the different mining districts can be distinguished by trace metal occurrences and concentrations derived from the different ore bodies. Water from the Kupferschiefer mines shows the highest Na, Cl, Cu, Mo and U concentrations, whereas a combination of elevated As and Se concentrations is typical for most of the samples from the mines around St. Andreasberg. However, there are exceptions, and some water samples of all the investigated mining districts do not follow these general trends. Despite the influence of mining activities and ore mineralisation, hydrochemical effects due to rain water dilution can be seen in most of the waters. According to the elevation of the mountain range, higher precipitation rates decrease the ion concentrations in the waters of springs, creeks and mine adits.  相似文献   

16.
攀枝花钒钛磁铁矿区土壤重金属地球化学特征及污染评价   总被引:9,自引:0,他引:9  
为了解攀枝花钒钛磁铁矿区土壤重金属的特征及污染程度,采集了矿区表层土壤样品和两个土壤剖面,用多种分析方法有针对性地分析了Cu、Pb、Zn、Ti、V、Co、Ni、As、Cd、Cr、Hg、Mn十二种元素。在分析分布特征基础上,对重金属进行了污染物负荷指数评价,结果发现:1)攀枝花钒钛磁铁矿矿区表层土壤大部分属于中等污染,少数属于强污染,个别达到了极强污染;2)Co、V、Cu、Cd、Ti几种元素的最高污染系数大,Zn、Mn、Ni、Cr四种元素的最高污染系数次之,Hg、Pb两种元素的最高污染系数较小,As的最高污染系数最小;3)从各区域的污染物负荷指数来看,排土场周围和朱矿采矿场下游附近污染程度较大,远离矿区以及矿区上游污染较小。  相似文献   

17.
富镉铅锌矿山的环境影响——以贵州都匀牛角塘矿床为例   总被引:4,自引:0,他引:4  
矿床的开采和选冶,常常将其中重金属有毒元素释放到环境中,铅锌矿造成的环境污染尤为严重。贵州都匀牛角塘矿床是国内外少见的富镉锌矿床,其中镉高度富集。本文通过对通过对矿区水、土壤及植物的分析和调查,发现其中镉和锌均已远远超过国家标准,矿区周围环境已受到严重污染。研究表明矿床的表生风化作用是镉等重金属释放的主要途径之一,更重要的是矿山的采矿和选矿更加剧了其释放量,虽在目前人群中没有明显中毒现象,可能是由于矿床开采时间较短,Cd等重金属元素在人体中积累不多所致。但矿山环境污染是污染元素长期积累造成的结果,即使在矿山关闭十年、上百年甚至上千年时间内,矿山尾矿淋滤液对环境生态的影响依然存在。因此,在矿山开发过程中必须注意矿床中有用元素的综合利用和重视环境保护,防患于未然。特别是对这类富含有毒污染元素的金属矿山的开采更应如此。  相似文献   

18.
攀枝花钒钛磁铁矿的发现、勘探过程,矿石开采过程,矿石分选、冶炼过程以及钢、钛产品的加工过程等,每个过程都具有极高的科普价值、科考价值,同时具有极高的旅游观赏价值,将其作为旅游景观资源,创建攀枝花矿山公园意义重大。  相似文献   

19.
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   

20.
攀枝花矿区表层土壤中钒的环境地球化学研究   总被引:5,自引:0,他引:5  
在系统采集攀枝花采矿区周边地带的表层土壤样品及土壤剖面样品的基础上,通过地球化学调查和实验,研究了表层土壤中钒的分布规律、地球化学活动性及潜在的生态风险。结果表明:(1)攀枝花矿区大部分地带的表层土壤受到了钒的污染,表层土壤钒的平均含量是中国土壤背景值的279倍;(2)土壤剖面中钒的含量随深度增加而降低,表明土壤中钒的来源受母质影响较小;(3)采用富集因子得到的表层土壤钒的人为污染以轻微污染和中度污染为主;(4)采矿过程中产生的粉尘通过干沉降是引起表层土壤钒污染的主要原因;(5)表层土壤中钒以残渣态为主,其次为可氧化态和可还原态,而酸溶态所占的比例最小,但生物可利用的钒含量较高,存在轻微的生态风险。因此,应加强矿区钒污染的监测,制定有效控制对策,降低钒污染的生态风险。  相似文献   

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