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1.
应用Microsoft Excel软件中"数据分析"工具之T-检验,对杭州地区不同环境介质的铅同位素组成(206Pb/207Pb比值)进行了均值相等假设检验。通过T-检验,揭示了杭州市哪些环境介质具有相似或不同的铅同位素组成。结果表明,汽车尾气铅具有独特的铅同位素组成而不同于其它环境介质;汽车尾气铅对环境的污染导致环境中铅同位素组成逐渐偏离原值,如城区表土污染最为严重,其206Pb/207Pb比值已与土壤的残渣显示有显著差异,西湖表层沉积淤泥也与深部沉积柱样品有明显的不同。大气和水与多个环境介质具有相似的铅同位素比值,说明大气与水在环境中能与多种环境介质进行同位素物质交换,对污染的扩散起了重要的作用;茶叶与大气有相似的铅同位素比值,说明大气(降尘)对茶叶铅有较大的贡献。而运河沉积物与城区表土铅同位素比值高度一致则说明运河沉积物可能就是来自城区流失的表土。通过实例,介绍了Excel中T-检验在地球化学研究中的应用。  相似文献   

2.
长春市城市土壤铅同位素组成特征及其来源解析   总被引:3,自引:0,他引:3  
为查明长春市土壤铅的污染来源,采集了长春市表层(0~20 cm)土壤及城市环境污染端元(燃煤尘、汽车尾气尘,建筑尘)样品,采用X荧光光谱法(XRF)测定土壤Pb含量,用质谱仪测定各样品的铅同位素组成.分析结果表明,长春市表层土壤Pb平均质量分数44.72×10-6,是长春市土壤背景值(19.06×10-6)的2.35倍,已受到一定程度铅污染;长春市土壤铅同位素208Pb/207Pb和206Pb/207Pb比值变化较大,分别为2.249~2.473和1.158~1.213;各污染端元物质铅同位素组成差异较大,能很好区别各端元物质.运用铅同位素示踪技术追踪土壤铅的污染来源结果表明,长春市中心城区土壤铅污染主要来源于以热电二厂为代表的工业燃煤排放和历史汽车尾气残留,而与当前汽车尾气排放关系不大;建筑尘也一定程度上对城市土壤产生了影响.  相似文献   

3.
滇东南白牛厂多金属矿床铅同位素组成及铅来源新认识   总被引:1,自引:0,他引:1  
白牛厂矿床位于滇东南锡多金属成矿带中部,是一个Ag、Pb、Zn、Sn等共生的多金属矿床,但成因争议较大.前人引用早期矿床矿石矿物铅同位素数据得出矿石铅主要来源于基底岩石淋滤,矿床经历了热水沉积+岩浆热液叠加两个成矿阶段的结论.本文采用最新铅同位素数据系统研究了白牛厂矿床的铅同位素组成,其中,白牛厂矿床矿石矿物的铅同位素组成206Pb/204Pb、207Pb/204Pb和208Pb/204Pb分别为17.264~18.537、14.843~15.862和38.481~39.424;薄竹山花岗岩长石铅同位素组成206Pb/204Pb、207Pb/204Pb和208Pb/204Pb分别为18.301~18.387、15.611~15.670和38.677~38.904;薄竹山岩体接触带型矿床(点)矿石矿物铅同位素组成206Pb/204Pb、207Pb/204Pb和208Pb/204Pb分别为18.302~18.417、15.603~15.692和38.596~38.868;区域地层及矿区地层钻孔样品铅同位素组成206Pb/204Pb、207Pb/204Pb和208Pb/204Pb分别为18.307~19.206、15.622~15.809和38.436~39.932.对比四者铅同位素组成特征,白牛厂矿床矿石矿物、薄竹山花岗岩长石、薄竹山岩体接触带型矿床(点)矿石矿物具有一致的铅同位素组成,与地层铅同位素组成相差甚远,表明白牛厂矿床铅主要来自岩浆作用,在侵入的过程中可能受到了地层的轻度混染.矿床地质特征及近期地球化学和年代学研究成果表明,白牛厂矿床的形成主要受岩浆作用影响,沉积成矿作用在白牛厂矿床很可能是不存在的.  相似文献   

4.
通过对西湖茶园的植物和土壤样品进行一系列的调查,以着力寻找茶叶的铅污染源。利用铅同位素技术对西湖茶园的土壤、茶叶和城区的燃煤、大气气溶胶、汽车尾气进行铅同位素示踪研究。研究表明,茶园土壤铅物质的可溶相具同源性和残查态偏于多源性。清洗后的茶叶铅含量显著降低,但其同位素组成不发生明显改变,显示出茶叶中的铅与叶面空气沉降物中的铅同源。不同介质铅同位素对比值平均值呈现表土、大气(气溶胶)、煤的w(206Pb)/w(207Pb)与茶叶趋于相近,汽油低之;表土、大气(气溶胶)、汽油的w(208Pb)/〔w(206Pb)+w(207Pb)〕与茶叶趋于相近,煤略高之。不同区域茶叶铅物质具同源性,与种植的农业地质背景无关。在煤燃烧、气化过程中,Pb进入大气,通过大气沉降或被茶树吸收或附着在茶叶叶面;汽车尾气的排放是茶树铅污染的重要原因之一。  相似文献   

5.
杭州市土壤铅污染的铅同位素示踪研究   总被引:27,自引:0,他引:27       下载免费PDF全文
根据杭州市40个土壤全铅和38个可溶相铅的统计分析,土壤中全铅平均含量为49.6×10-6,可溶相铅平均为21.4×10-6,城区表土的全铅高达76.1×10-6,显著高于全国土壤平均值。分析结果还显示,从农村→远郊→近郊→公路旁,土壤可溶相铅含量逐渐增加,且土壤的可溶相铅含量与深度具明显的负相关关系。表明杭州市土壤受到了不同程度的铅污染,污染程度由农村→远郊→近郊→公路旁→城区有明显的增高趋势。通过对茶园土壤中可溶相铅、残渣态铅及城区表土全铅的同位素组成对比分析发现,从土壤残渣态(代表土壤背景)→土壤可溶相→城区表层土壤全铅206Pb/207Pb比值有明显的降低。208Pb/(206Pb+207Pb)也有类似的变化趋势。将土壤与杭州市的汽车尾气、大气等环境样品进行对比发现,随着土壤受污染程度的增加,铅同位素组成逐渐向汽车尾气铅漂移,表明汽车尾气排放的铅为其主要污染源。  相似文献   

6.
对荆州市郊的农田区、交通区和工业区土壤、汽车尾气、染料和煤等样品进行了铅含量和铅同位素组成研究.铅含量分析结果表明,工业区和交通区土壤均已受到一定的铅污染,其Pb含量平均值(32.80 μg/g和26.28 μg/g)均高于中国土壤平均值,但工业区受到的铅污染更严重.农田区土壤的Pb含量平均值(24.84μg/g)虽稍低,但也指示该区部分土壤已开始受到铅污染.土壤酸溶相Pb含量与全土Pb含量成显著正相关,指示土壤中的Pb主要分布在酸溶相中.铅同位素组成分析结果表明,工业区、交通区和农田区土壤以及土壤不同相(全土、土壤酸溶相和残渣相)具有不同的Pb同位素组成,且土壤的206Pb/204Pb和208Pb/204Pb比值大致具有如下规律:土壤残渣相>全土>士壤酸溶相.但是,全土的两组Pb同位素比值平均值更接近于酸溶相的.煤、汽车尾气和染料等环境样品具有比土壤变化范围更大的Pb同位素组成.208Pb/204Pb与206Pb/204Pb相关关系图显示,土壤酸溶相大致位于残渣相、汽车尾气和染料与煤组成的三角形内,表明土壤同时受到了汽车尾气、染料和煤的影响.综合对比分析所有样品的Pb含量和Pb同位素组成,结果表明自无Pb汽油的使用,交通区的Pb污染已大大降低,但工业区受到的Pb污染在加重.为防止土壤铅污染的进一步加重,今后需重点防范工业Pb的排放与污染.  相似文献   

7.
大西洋洋中脊TAG热液区硫化物铅和硫同位素研究   总被引:18,自引:3,他引:18  
位于大西洋洋中脊26.08°N的 TAG 热液区是目前己知的赋存在无沉积物覆盖的洋中脊区的一个最大的海底热液硫化物矿床。新测得来自 ODP-158航次钻孔的9件热液硫化物的铅、硫同位素组成;2件铁锰氧化物和1件底盘玄武岩的铅同位素组成。结果表明,矿石硫化物的铅同位素组成~(206)Pb/~(204)Pb 为18.2343~18.3181,~(207)pb/~(204)Ph 为15.4717~15.5061,~(208)Pb/~(204)Pb 为37.7371~37.8417;它们位于该区底盘玄武岩(~(206)Pb/~(204)Pb=18.1454,~(207)Pb/~(204)Pb=15.4572,~(208)Pb/~(204)Pb=37.6534)和近洋底铁锰氧化物(~(206)Pb/~(204)Pb,~(207)Pb/~(204)Pb,~(208)Pb/~(204)Pb 分别为18.6907~18.9264,15.5615~15.6279,38.1164~38.3687)的铅同位素组成之间。三者呈线性相关关系,说明硫化物中铅来源于地幔(玄武岩)与海水(铁锰氧化物)的两端元混合。硫化物的硫同位素组成δ~(34)S 为6.2‰~9.5‰,它明显高于地幔玄武岩的硫同位素组成(δ~(34)S=±0‰),也高于东太平洋海隆 EPR21°N(δ~(34)S=0.9‰~4.0‰)和大西洋洋中脊 MAR23°N(δ~(34)S=1.2‰~2.8‰)等热液活动区硫化物的硫同位素组成,这一特征反映了 TAG 热液体系中硫来源于地幔玄武岩硫与海水硫酸盐无机还原作用产生的硫的两端元混合。此,铅硫同位素研究为现代大洋底热液硫化物矿床形成过程中矿质来源及流体混合作用提供了十分有益的信息。  相似文献   

8.
铜陵地区老鸦岭层状钼矿床铅同位素组成研究   总被引:1,自引:0,他引:1  
安徽铜陵老鸦岭矿床中二叠系大隆组(P2d)顶部的含矿(钼矿化)黑色页岩以及附近(立新煤矿)同一层位不含矿黑色页岩的实测铅同位素组成分别为:^206Pb/^204Pb20.20~22.37,^207Pb/^204Pb15.67~15.82,^208Pb/^204Pb38.47~38.60和^206Pb/204Pb18.83~20.80,^207Pb/^204Pb15.65~15.76,^208Pb/^204Pb38.84~39.22。对137Ma的放射成因Pb进行校正后的铅同位素组成表明,含矿黑色页岩和不含矿黑色页岩均与燕山晚期火成岩无关,老鸦岭含矿黑色页岩可能具沉积成因。对沉积(约250Ma)以来的放射成因Pb进行校正后的铅同位素组成表明:不含矿黑色页岩的Pb源自上地壳,而含矿黑色页岩的Pb(因而推测其他成矿金属)可能源于上地壳物质(与不含矿黑色页岩的Pb源相似)与下地壳物质的混合。  相似文献   

9.
对采自Mothra热液场Faulty Towers硫化物烟囱体群(47°57.447,N,129°06.568W)的一个硫化物烟囱体进行了铅和硫同位素组成的研究工作.分析结果表明,铅同位素组成的分布范围为:206Pb/204Pb=18.665~18.828; 207Pb/204Pb=15.460~15.607; 208...  相似文献   

10.
铅同位素示踪在大气降尘重金属污染来源解析中的应用   总被引:1,自引:0,他引:1  
为了分析大气降尘中铅的污染来源,解析各污染源对大气降尘铅的相对贡献值,在厦门市不同功能区采集了29个大气降尘样品。用热电质谱仪测定了大气降尘的总铅同位素组成,用ICP-MS测定样品酸可溶相铅同位素组成。结果表明,厦门市大气降尘铅同位素206Pb/207Pb值变化较大,为1.111 9~1.173 8;酸可溶相铅206Pb/207Pb值与福建土壤残渣相206Pb/207Pb值相差较大,表明厦门市大气降尘受人类活动来源铅的影响较大;酸可溶相铅206Pb/207Pb值明显小于总量铅206Pb/207Pb值。铅同位素示踪表明,厦门市大气降尘铅主要来源是燃煤,其次是自然来源和汽车尾气。三元混合模型分析表明,燃煤、自然来源、汽车尾气对厦门市大气降尘总量铅的贡献率分别为48.57%、20.29%、31.14%。  相似文献   

11.
用铅同位素示踪长春环境铅污染的来源   总被引:2,自引:0,他引:2       下载免费PDF全文
王铁夫  周燕  张延洁  郑培玺 《地球学报》2005,26(Z1):230-232
本文用铅同位素示踪了近几年长春市主要公路两旁交通环境中铅污染的来源及燃煤对周围土壤的污染,由此说明长春市属“尾气型”铅污染的城市,并论述了环境铅污染对人体健康的危害。  相似文献   

12.
容量法测定铅丹中四氧化三铅   总被引:1,自引:0,他引:1       下载免费PDF全文
实验了用4mol/LHNO3浸取分离铅丹中的PbO,然后在pH5.7的HAc NaAc缓冲溶液中,加入抗坏血酸,浸取铅丹中的PbO2,并用EDTA标准溶液滴定,再计算出Pb3O4的含量。方法用于w(Pb3O4)为34.22%的铅丹样品测定,结果与外检结果一致,5次测定的RSD<0.2%。  相似文献   

13.
胶东金矿铅同位素地质特征及成矿年代讨论   总被引:2,自引:0,他引:2  
对胶东据同位素的系统研究表明,本区据及其金矿床的成矿物质主要来自胶东岩群,燕山期是本区主要成岩成矿期,招远一莱州矿带放射成因铅由西向东有逐渐增高的趋势,这种现象的产生是受本区地层结构和岩石类型制约的。给出了在不依赖于其它同位素测试数据的情况下,利用铅同位素各参量的谐和性解析上交点年龄的方法。从而显示了本区各种同位素测定结果的和谐性、一致性。  相似文献   

14.
黄勇  高博  王健康  李强  郭太君 《岩矿测试》2013,32(4):632-637
城市道路尘土中重金属污染已成为当前重大的环境问题之一.本文对我国西部石河子市城区道路尘土的重金属污染进行评价,利用电感耦合等离子体质谱法测定铅的含量及铅同位素组成,采用地积累指数法评价铅的污染程度.结果显示,石河子市城区道路尘土中重金属铅的含量范围为19.36 ~ 84.63 mg/kg,平均含量为37.85 mg/kg,高于当地土壤背景值,但明显低于我国其他大中型城市,表明当前石河子市的环境质量已经受到人为活动的干扰;尘土中铅的地积累指数在-0.59~1.54之间,平均值为0.30,属于轻度污染水平.利用铅同位素示踪法识别铅污染的来源,206pb/207Pb比值的范围是1.159 ~ 1.182,208 pb/207 Pb比值的范围是2.391 ~2.457,均接近于煤炭和建筑材料的铅同位素比值,初步判断石河子道路尘土的铅污染主要受到煤炭燃烧和城市建设的影响.  相似文献   

15.
论“华夏古大陆”—铅同位素研究证据   总被引:10,自引:1,他引:9  
张理刚  吴克隆 《地质论评》1994,40(3):200-208
我国东南部地区一批中生代花岗岩类岩石中长石铅同位素数据表明,至少可将该地区地壳基底岩石划分三大块体。一是武夷块体,其范围包括江-绍断裂带以南,赣江-河源断裂以东和政和一大埔断裂中,南段以西地区,它们的中生代花岗岩长石铅同位素^206Pb/^204Pb,^207Pb/^204Pb和^204Pb/^204Pb三组比值平均分别为18.226;15.620和38.725;另一块体为闽台块体,即政和一大埔断  相似文献   

16.
凡口铅锌矿床同位素地球化学证据   总被引:3,自引:0,他引:3  
汪礼明  徐文忻  李蘅  彭省临 《地球学报》2005,26(Z1):164-167
对凡口铅锌矿床不同成矿阶段进行矿物包裹体温度、硫和铅同位素测定,获得成矿第Ⅰ阶段温度为300±50℃,第Ⅱ、Ⅲ阶段温度为250±50℃;并获得矿床硫化物的S同位素组成为2.1‰~26.5‰,具有δ34SPy>δ34SSp>δ34SGn;第Ⅰ阶段硫化物的硫同位素组成随赋存层位由老到新硫同位素有逐渐减小趋势;第Ⅱ阶段硫化物的δ34S为14.3‰~23.8‰;第Ⅲ阶段硫化物的δ34S为5.7%~15.7‰,具有从早阶段至晚阶段硫同位素组成变化范围从大至小的减小趋势。分析获得68件铅同位素数据,其中硫化物的206Pb/204Pb比值为18.023~18.847;207Pb/204Pb比值为15.700~15.820;208Pb/204Pb比值为38.056~39.796。灰岩全岩的206Pb/204Pb比值为18.230~18.860;207Pb/204Pb比值为15.640~16.000;208Pb/204Pb比值为38.714~39.960。辉绿岩的206Pb/204Pb比值为18.570~18.650;207Pb/204Pb比值为15.260~15.620;208Pb/204Pb比值为38.650~38.960。第Ⅰ阶段δ34OH2O为13.3‰~13.1‰,δD为-50.2‰~-61.5‰;第Ⅱ阶段δ18OH2O为-2.4‰~+10.8‰,δD为-50.2‰~-63.2‰;第Ⅲ阶段δ18OH2O为-4.9‰~-14.3‰,δD为-59.0‰~-61.0‰。  相似文献   

17.
The Bainiuchang deposit in Yunnan Province,China,is located geographically between the Gejiu ore field and the Dulong ore field.In addition to the>7000 t Ag reserves,the deposit also boasts of large-scale Pb,Zn and Sn reserves with a lot of dispersed elements(In,Cd,Ge,Ga,etc.).We have determined systematically the Pb isotope composition of the deposit.The Pb isotope ratios of the ores that are of sea-floor exhalative sedimentary origin in the northwest of the mining district,are ~(206)Pb/~(204)Pb=17.758-18.537,~(207)pb/~(204)pb=15.175-15.862 and ~(208)pb/~(204)pb=37.289-39.424,while those of ores that are of magmatic hydrothermal superimposition origin in the southeast of the mining district, are ~(206)Pb/~(204)Pb=17.264-18.359,~(207)Pb/~(204)Pb=14.843-15.683 and ~(208)Pb/~(204)Pb=36.481-38.838, respectively.In terms of the Pb isotope composition of feldspar in magmatic rocks or magmatic whole- rock samples from the mining district,we have determined the Pb isotope composition and acquired the Pb isotope ratios as:~(206)Pb/~(204)Pb=18.224-18.700,~(207)Tpb/~(204)Pb=15.595-15.797 and ~(208)Pb/~(204)Pb= 38.193-39.608.Then,in the light of the Pb isotope composition of metamorphic rock samples from the Proterozoic basement exposed in the Dulong ore field,we have determined the Pb isotope composition and obtained the isotope ratios as:~(206)Pb/~(204)Pb=18.434-19.119,~(207)Pb/~(204)Pb=15.644-15.693,and ~(208)Pb/~(204)Pb=38.514-38.832.And the Pb isotope ratios of Cambrian sedimentary rocks,which are exposed in the Bainiuchang mining district,are ~(206)Pb/~(204)Pb=18.307-19.206,~(207)Pb/~(204)Pb= 15.622-15.809,and ~(206)Pb/~(204)Pb=38.436-39.932.By comparing the two types of ores with respect to their Pb isotope compositions,it is indicated that lead in the Bainiuchang deposit was derived largely from the lower-crust granulite which is earlier than Neoproterozoic in age,but the Yanshanian magmatic hydrothermal fluids probably provided a part of ore-forming elements such as Sn for the ore blocks in the south of the mining district.  相似文献   

18.
谭洪旗 《地质与勘探》2017,53(6):1051-1060
四川布托县乌依铅矿床是川滇黔相邻区赋存于奥陶系大箐组地层中的典型密西西比河谷型矿床之一,其成矿物质来源仍不清楚。本文开展了方铅矿和石膏硫同位素及方铅矿稀土元素地球化学研究,获得方铅矿硫同位素δ~(34)S平均值为-4.04‰(n=31),石膏δ~(34)S平均值为29‰(n=15)。方铅矿稀土元素地球化学表明,轻稀土富集,重稀土明显亏损,稀土配分模式曲线大致向右倾,Eu正异常和Ce负异常。结合前人的硫、铅同位素数据,认为乌依铅矿床硫来源于细菌还原地层中硫酸盐所产生的硫,矿石铅来自上地壳,成矿物质来源为奥陶系大箐组,与峨眉山玄武岩无关。  相似文献   

19.
The Bainiuchang deposit in Yunnan Province, China, is located geographically between the Gejiu ore field and the Dulong ore field. In addition to the 〉7000 t Ag reserves, the deposit also boasts of large-scale Pb, Zn and Sn reserves with a lot of dispersed elements (In, Cd, Ge, Ga, etc.). We have determined systematically the Pb isotope composition of the deposit. The Pb isotope ratios of the ores that are of sea-floor exhalative sedimentary origin in the northwest of the mining district, are 206pb/204pb = 17.758-18.537, 207pb/204pb = 15.175-15.862 and 206pb/204pb = 37.289-39.424, while those of ores that are of magmatic hydrothermal superimposition origin in the southeast of the mining district, are 206pb/204pb = 17.264-18.359, 207pb/204pb = 14.843-15.683 and 208pb/204pb = 36.481-38.838, respectively. In terms of the Pb isotope composition of feldspar in magmatic rocks or magmatic whole- rock samples from the mining district, we have determined the Pb isotope composition and acquired the Pb isotope ratios as: 206pb/204pb -- 18.224-18.700, 207pb/204pb -- 15.595-15.797 and 208pb/204pb -- 38.193-39.608. Then, in the light of the Pb isotope composition of metamorphic rock samples from the Proterozoic basement exposed in the Dulong ore field, we have determined the Pb isotope composition and obtained the isotope ratios as: 206pb/204pb -- 18.434-19.119, 207pb/204pb -- 15.644-15.693, and 208pb/204pb = 38.514-38.832. And the Pb isotope ratios of Cambrian sedimentary rocks, which are exposed in the Bainiuchang mining district, are 206pb/204pb = 18.307-19.206, 207pb/204pb = 15.622-15.809, and 208pb/204pb = 38.436-39.932. By comparing the two types of ores with respect to their Pb isotope compositions, it is indicated that lead in the Bainiuchang deposit was derived largely from the lower-crust granulite which is earlier than Neoproterozoic in age, but the Yanshanian magmatic hydrothermal fluids probably provided a part of ore-forming elements such as Sn for the ore blocks in the south of the mining district.  相似文献   

20.
The polymetallic(Pb,Zn,Cu,etc) ore belt on the southwestern margin of Tarim is one of the major regions with the greatest prospecting potential in Xinjiang.Reported in this paper are the lead isotope data for 66 sulfide samples(including 50 galena samples,15 chalcopyrite samples and 1 pyrite sample) collected from such representative deposits as Tamu,Tiekelike,Kalangu,Abalieke,etc.in this ore belt.The Pb isotopic ratios of 206 Pb/204 Pb,207 Pb/204 Pb and 208 Pb/204 Pb in the galena samples range from 17.931 to 18.176,15.609 to 15.818 and 38.197 to 38.944,with the average values of 18.017,15.684 and 38.462,respectively.Those in the chalcopyrite samples range from 17.926 to 18.144,15.598 to 15.628 and 38.171 to 38.583,with the average values of 18.020,15.606 and 38.262,respectively.The pyrite sample has the Pb isotopic ratios of 206 Pb/204 Pb,207 Pb/204 Pb and 208 Pb/204 Pb to be 17.980,15.604 and 38.145,respectively.In combination with the previous Pb isotope data for sulfides,it is found that there is only a slight variation in the Pb isotopic composition of galena,chalcopyrite,sphalerite and pyrite in the ore belt.However,there is some difference in Pb isotopic characteristics between galena and chalcopyrite,especially the Pb isotopic composition of galena shows an obvious linear correlation with some other relevant parameters(e.g.β and γ).The comprehensive analysis suggested that lead in galena(maybe including sphalerite and pyrite) was derived principally from wall rocks and underlying basement,and that in chalcopyrite only originated from the basement.The single-stage model ages of these sulfides couldn’t indicate the time limit of metallogenesis(Pb,Zn,Cu,etc.),and the positive linear correlations for the Pb isotopic composition of galena are of no single-stage and two-stage Pb-Pb isochron significance.Furthermore,there are significant differences in Pb isotopic composition characteristics between the genetic type of deposits in this polymetallic ore belt and the Mississippi Valley type(MVT).In addition,the authors also pointed out that there is a phenomenon of differentiation(not paragenesis) for lead and copper elements during the process of metallogenesis in this ore belt.  相似文献   

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