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Xiangshan ore field is the largest volcanic-hosted uranium ore field in China. Continuous discoveries of lead,zinc,silver,and copper polymetallic mineralization at depth beneath uranium mineralization reveal a spatial distribution pattern of “upper uranium-lower polymetallic”mineralization. Therefore,the genetic relationship between polymetallic mineralization and large-scale uranium mineralization has become another research focus in the Xiangshan ore field. This study systematically investigated the H-O-S-Pb isotopic compositions and conducted comprehensive comparative analyses of uranium and polymetallic mineralization. Results indicate that uranium mineralization involved more atmospheric precipitation and crustal-derived materials compared to polymetallic mineralization. The sulfur isotopic composition of polymetallic mineralization in the Xiangshan area shows distinct differences from typical regional polymetallic deposits. At least one stage of relatively uranium-enriched mineralization process has been identified during the polymetallic mineralization in Xiangshan region.
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LI Ziying,male,born in 1964,senior engineer,PhD supervisor,focusing on uranium metallogenic theory and predictive evaluation techniques. E-mail:
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First author:GUO Jian,male,born in 1989,senior engineer,focusing on research on uranium metallogenesis mechanisms and predictive evaluation. E-mail:guojian9818@163.com
, authorsList=Jian GUO, Ziying LI, Jiangtao NIE, Sheng HE), CN=ArticleExt(id=1190344159908168058, articleId=1190343835663302823, tenantId=1146029695717560320, journalId=1190260162528112641, language=CN, title=相山矿田铀与多金属矿化H-O-S-Pb同位素组成及对比研究, columnId=1190343834992214173, journalTitle=世界核地质科学, columnName=研究论文, runingTitle=null, highlight=null, articleAbstract=
相山矿田是我国最大的火山岩型铀矿田,铀矿化深部不断发现铅、锌、银和铜多金属矿化,呈现“上铀下多金属”的空间分布规律,多金属与大规模铀成矿作用之间成因联系是相山矿田又一研究热点。系统开展了铀与多金属H-O-S-Pb多元同位素组成与综合对比研究,结果表明,铀成矿相对于多金属成矿作用具有更大比例的大气降水以及壳源物质的加入,相山地区多金属成矿硫化物S同位素组成与区域典型多金属矿床相比具有一定差异,在相山多金属成矿作用过程中可能存在相对富铀成矿过程。
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1 National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, Beijing 100029, China
2 Beijing Research Institute of Uranium Geology, Beijing 100029, China
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1 铀资源探采与核遥感全国重点实验室, 北京 100029
2 核工业北京地质研究院, 北京 100029
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第一作者:郭建,男,1989年生,高级工程师,主要从事铀成矿机理与预测评价研究。E-mail:guojian9818@163.com
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第一作者:郭建,男,1989年生,高级工程师,主要从事铀成矿机理与预测评价研究。E-mail:guojian9818@163.com
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1, 2, 3, address=
1 National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, Beijing 100029, China
2 Beijing Research Institute of Uranium Geology, Beijing 100029, China
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1, 2, 3, address=
1 铀资源探采与核遥感全国重点实验室, 北京 100029
2 核工业北京地质研究院, 北京 100029
3 中核集团铀资源勘查与评价技术重点实验室, 北京 100029, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=[AuthorCompany(id=1190366605159792867, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, xref=1, ext=[AuthorCompanyExt(id=1190366605168181476, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605159792867, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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1 铀资源探采与核遥感全国重点实验室, 北京 100029)]), AuthorCompany(id=1190366605226901734, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, xref=2, ext=[AuthorCompanyExt(id=1190366605235290343, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605226901734, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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1, 2, 3, address=
1 National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, Beijing 100029, China
2 Beijing Research Institute of Uranium Geology, Beijing 100029, China
3 CNNC Key Laboratory of Uranium Resource Exploration and Evaluation Techniques, Beijing 100029, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1190366605881213184, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, authorId=1190366605751189755, language=CN, stringName=聂江涛, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=
1, 2, 3, address=
1 铀资源探采与核遥感全国重点实验室, 北京 100029
2 核工业北京地质研究院, 北京 100029
3 中核集团铀资源勘查与评价技术重点实验室, 北京 100029, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=[AuthorCompany(id=1190366605159792867, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, xref=1, ext=[AuthorCompanyExt(id=1190366605168181476, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605159792867, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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1 铀资源探采与核遥感全国重点实验室, 北京 100029)]), AuthorCompany(id=1190366605226901734, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, xref=2, ext=[AuthorCompanyExt(id=1190366605235290343, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605226901734, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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1, 2, 3, address=
1 National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, Beijing 100029, China
2 Beijing Research Institute of Uranium Geology, Beijing 100029, China
3 CNNC Key Laboratory of Uranium Resource Exploration and Evaluation Techniques, Beijing 100029, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1190366606065762567, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, authorId=1190366605935739138, language=CN, stringName=何升, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=
1, 2, 3, address=
1 铀资源探采与核遥感全国重点实验室, 北京 100029
2 核工业北京地质研究院, 北京 100029
3 中核集团铀资源勘查与评价技术重点实验室, 北京 100029, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=[AuthorCompany(id=1190366605159792867, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, xref=1, ext=[AuthorCompanyExt(id=1190366605168181476, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605159792867, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
1 National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, Beijing 100029, China), AuthorCompanyExt(id=1190366605176570085, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605159792867, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
1 铀资源探采与核遥感全国重点实验室, 北京 100029)]), AuthorCompany(id=1190366605226901734, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, xref=2, ext=[AuthorCompanyExt(id=1190366605235290343, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, companyId=1190366605226901734, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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Simplified geological map of the Xiangshan volcanic intrusive complex a-Tectonic map of Southeastern China,showing the location of the Gan-Hang tectonic belt;b-Geological sketch map, showing the Gan-Hang belt,modified after [10];c-Geological map of Xiangshan volcanic-intrusive complex,modified after [1] and [3].
, figureFileSmall=dE+ojA5UXGuURqCrGPwdqg==, figureFileBig=yYcPHiixq6kOqsq3STsKgA==, tableContent=null), ArticleFig(id=1190366606820737297, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图1, caption=
相山火山-侵入杂岩体地质构造简图 a—赣杭构造带大地构造位置简图; b—赣杭构造带地质略图,据参考文献[10]修改;c—相山火山-侵入杂岩体地质简图,据参考文献[1]和[3]修改 。
, figureFileSmall=dE+ojA5UXGuURqCrGPwdqg==, figureFileBig=yYcPHiixq6kOqsq3STsKgA==, tableContent=null), ArticleFig(id=1190366606900429074, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Fig. 2, caption=
Comprehensive lithological section of Xiangshan area, figureFileSmall=COmVNLf0pEoNR/R/u8ARlA==, figureFileBig=CN5jEXGC++dZK/o29qMK2w==, tableContent=null), ArticleFig(id=1190366606959149331, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图2, caption=
相山地区岩性综合柱状图, figureFileSmall=COmVNLf0pEoNR/R/u8ARlA==, figureFileBig=CN5jEXGC++dZK/o29qMK2w==, tableContent=null), ArticleFig(id=1190366607017869588, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Fig. 3, caption=
Microscopic characteristics of uranium and polymetallic mineralization in the Xiangshan uranium ore field a-Strongly hematitized uranium ore;b-Intense carbonatization and chloritization;c-Disseminated pyrite-pitchblende assemblage;d-Banded polymetallic ore;e-Paragenesis of sphalerite, arsenopyrite,and pyrite;f - Sphalerite and galena replacing pyrite,displaying replacement relict texture. Abbreviations: Cal- Calcite;Chl-Chlorite;Pit-Pitchblende;Py-Pyrite, Sp-Sphalerite;Gn-Galena;Apy-Arsenopyrite.
, figureFileSmall=nuC8J9Ayw33XVXLtvAT0QA==, figureFileBig=HDdAYW9z6oXnHnPCW+bXiw==, tableContent=null), ArticleFig(id=1190366607072395541, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图3, caption=
相山铀矿田铀与多金属矿化显微特征 a—强赤铁矿化铀矿石; b—强碳酸盐化、绿泥石化;c—浸染状黄铁矿、沥青铀矿组合;d—带状多金属矿石;e—闪锌矿、毒砂、黄铁矿共生;f—闪锌矿和方铅矿交代黄铁矿,显示交代残余结构;缩写:Cal—方解石;Chl—绿泥石;Pit—沥青铀矿;Py—黄铁矿;Sp—闪锌矿;Gn—闪锌矿;Apy—毒砂。
, figureFileSmall=nuC8J9Ayw33XVXLtvAT0QA==, figureFileBig=HDdAYW9z6oXnHnPCW+bXiw==, tableContent=null), ArticleFig(id=1190366607131115798, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Fig. 4, caption=
H-O isotopes composition of uranium and polymetallic ore-forming fluid (modified after Taylor et al.,1979[14]), figureFileSmall=EGFj8wcZfa5bb9TJISXCTQ==, figureFileBig=MRzYVW/Aecg0/qwsqJ/VbQ==, tableContent=null), ArticleFig(id=1190366607223390487, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图4, caption=
铀与多金属矿化成矿流体氢、氧同位素组成(底图据Taylor et al.,1979[14]), figureFileSmall=EGFj8wcZfa5bb9TJISXCTQ==, figureFileBig=MRzYVW/Aecg0/qwsqJ/VbQ==, tableContent=null), ArticleFig(id=1190366607273722136, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Fig. 5, caption=
Sulfur isotope compositions histogram of the uranium and Pb-Zn mineralization, figureFileSmall=rKx/4dgryjcX2uZwHnlc6Q==, figureFileBig=UGpVBshbJK6kKMYiHuyBog==, tableContent=null), ArticleFig(id=1190366607349219609, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图5, caption=
铀矿化和多金属矿化硫同位素组成分布直方图, figureFileSmall=rKx/4dgryjcX2uZwHnlc6Q==, figureFileBig=UGpVBshbJK6kKMYiHuyBog==, tableContent=null), ArticleFig(id=1190366607407939866, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Fig. 6, caption=
S isotope compostion and comparison of uranium mineralization,polymetallic mineralization,geological units and regional polymetallic deposits. S isotope composition of geological units come from Hoefs (1997)[24], figureFileSmall=EMVGGwTTPvUhlw6UClALiQ==, figureFileBig=Dlv/TntQ+mJlNmyH7eVdxA==, tableContent=null), ArticleFig(id=1190366607470854427, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图6, caption=
铀矿化、多金属矿化、地质单元及区域多金属矿床硫同位素组成(对比自然地质单元的硫同位素组成来自Hoefs (1997)[24]), figureFileSmall=EMVGGwTTPvUhlw6UClALiQ==, figureFileBig=Dlv/TntQ+mJlNmyH7eVdxA==, tableContent=null), ArticleFig(id=1190366607546351900, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Fig. 7, caption=
Plots of 207Pb/204Pb vs.206Pb/204Pb for the uranium and Pb-Zn mineralization. Trends for the upper crust, orogen, mantle and lower crust are taken from Zartman and Doe (1981)[25], figureFileSmall=WQGCXgs1QI3UR3M4zpbpog==, figureFileBig=4iBu8w6ZE0LJpf46PnKP+g==, tableContent=null), ArticleFig(id=1190366607605072157, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=图7, caption=
相山地区铀和多金属207Pb/204Pb -206Pb/204Pb上地壳(U),造山带(O),地幔(M)和下地壳(L) 趋势线来自 Zartman and Doe(1981)[25], figureFileSmall=WQGCXgs1QI3UR3M4zpbpog==, figureFileBig=4iBu8w6ZE0LJpf46PnKP+g==, tableContent=null), ArticleFig(id=1190366607672181022, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Table 1, caption=
The H-O isotope composition of uranium and polymetallic mineralization
, figureFileSmall=null, figureFileBig=null, tableContent=
| 矿化类型 | 样品号 | 取样位置/深度/m | 样品类型 | δ18O矿物/‰ | δ18O${}_{{H}_{2}O}$/‰b | δD/‰ | 温度/℃a | 数据来源 |
| 铀成矿 | V057 | 邹家山矿床 | 方解石 | 12.2 | 4.55 | -78.1 | 240 | 本文 |
| V090 | 邹家山矿床 | 方解石 | 12.6 | 4.95 | -79.6 | 240 |
| V177 | 邹家山矿床 | 方解石 | 8.6 | 0.95 | -87.3 | 240 |
| V178 | 邹家山矿床 | 方解石 | 9.1 | 1.45 | -85.9 | 240 |
| 多金属成矿 | B598-1 | 1 795.5 | 石英 | 10.4 | 3.51 | -81.4 | 300 | 据参考文献[2] |
| B643-1 | 1 929.3 | 石英 | 14.1 | 7.21 | -78.7 | 300 |
| B660-2 | 1 980.6 | 石英 | 14.0 | 7.11 | -89.9 | 300 |
| B672-1 | 2 016.1 | 石英 | 14.2 | 7.31 | -91.3 | 300 |
| B756-3 | 2 268.8 | 石英 | 14.1 | 7.21 | -77.3 | 300 |
| B760-1 | 2 280.1 | 石英 | 12.4 | 5.51 | -76.7 | 300 |
| B788-1 | 2 364.2 | 石英 | 14.4 | 7.51 | -73.6 | 300 |
| B795-2 | 2 385.8 | 石英 | 14.3 | 7.41 | -80.7 | 300 |
| D070 | 2 428.6 | 石英 | 14.7 | 7.81 | -77.9 | 300 |
| D080 | 2 705.3 | 石英 | 14.3 | 7.41 | -71.4 | 300 |
), ArticleFig(id=1190366607739289887, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=表1, caption=
铀及多金属矿化方解石、石英单矿物H-O同位素组成
, figureFileSmall=null, figureFileBig=null, tableContent=
| 矿化类型 | 样品号 | 取样位置/深度/m | 样品类型 | δ18O矿物/‰ | δ18O${}_{{H}_{2}O}$/‰b | δD/‰ | 温度/℃a | 数据来源 |
| 铀成矿 | V057 | 邹家山矿床 | 方解石 | 12.2 | 4.55 | -78.1 | 240 | 本文 |
| V090 | 邹家山矿床 | 方解石 | 12.6 | 4.95 | -79.6 | 240 |
| V177 | 邹家山矿床 | 方解石 | 8.6 | 0.95 | -87.3 | 240 |
| V178 | 邹家山矿床 | 方解石 | 9.1 | 1.45 | -85.9 | 240 |
| 多金属成矿 | B598-1 | 1 795.5 | 石英 | 10.4 | 3.51 | -81.4 | 300 | 据参考文献[2] |
| B643-1 | 1 929.3 | 石英 | 14.1 | 7.21 | -78.7 | 300 |
| B660-2 | 1 980.6 | 石英 | 14.0 | 7.11 | -89.9 | 300 |
| B672-1 | 2 016.1 | 石英 | 14.2 | 7.31 | -91.3 | 300 |
| B756-3 | 2 268.8 | 石英 | 14.1 | 7.21 | -77.3 | 300 |
| B760-1 | 2 280.1 | 石英 | 12.4 | 5.51 | -76.7 | 300 |
| B788-1 | 2 364.2 | 石英 | 14.4 | 7.51 | -73.6 | 300 |
| B795-2 | 2 385.8 | 石英 | 14.3 | 7.41 | -80.7 | 300 |
| D070 | 2 428.6 | 石英 | 14.7 | 7.81 | -77.9 | 300 |
| D080 | 2 705.3 | 石英 | 14.3 | 7.41 | -71.4 | 300 |
), ArticleFig(id=1190366607810593056, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Table 2, caption=
S isotope composition of uranium and polymetallic mineralization in Xiangshan ore field
, figureFileSmall=null, figureFileBig=null, tableContent=
| 矿化类型 | 样号 | 取样深度/m/位置 | 矿物 | δ34S/‰ | 数据来源 |
| 铀成矿 | xsz-8-4-1 | 沙洲铀矿床 | 黄铁矿 | 9.6 | 参考文献[15] |
| xsz-58-3-3 | 沙洲铀矿床 | 黄铁矿 | 9.92 |
| xsz-58-3-5 | 沙洲铀矿床 | 黄铁矿 | 10.91 |
| xsz-58-3-7 | 沙洲铀矿床 | 黄铁矿 | 10.55 |
| xsz-5cm-1 | 沙洲铀矿床 | 黄铁矿 | 13.04 |
| xsz-5cm-4 | 沙洲铀矿床 | 黄铁矿 | 13.15 |
| xsz-5cm-2 | 沙洲铀矿床 | 黄铁矿 | 12.79 |
| xsz-5cm-3 | 沙洲铀矿床 | 黄铁矿 | 13.37 |
| xsz-8-21-6-3-6 | 沙洲铀矿床 | 黄铁矿 | 14.2 |
| xsz-8-21-6-4-7 | 沙洲铀矿床 | 黄铁矿 | 18.85 |
| xsz-8-21-6-4-9 | 沙洲铀矿床 | 黄铁矿 | 18.76 |
| xsz-8-21-6-4-10 | 沙洲铀矿床 | 黄铁矿 | 18.97 |
| xsz-8-21-6-3-4 | 沙洲铀矿床 | 黄铁矿 | 17 |
| xsz-8-21-6-3-5 | 沙洲铀矿床 | 黄铁矿 | 19.1 |
| xsz-8-21-6-3-8 | 沙洲铀矿床 | 黄铁矿 | 19.55 |
| SZ13-5 | | 黄铁矿 | 15 | 参考文献[16] |
| SZ13-8 | | 黄铁矿 | 13.7 |
| SZ13-12 | | 黄铁矿 | 12.3 |
| SZ13-22-2 | | 黄铁矿 | 12.9 |
| SZ13-22-3 | | 黄铁矿 | 12.3 |
| SZ13-28 | | 黄铁矿 | 7.4 |
| SZ13-37-1 | | 黄铁矿 | 7.6 |
| SZ13-37-3 | | 黄铁矿 | 6.2 |
| SZ09-7 | 沙洲矿床 | 黄铁矿 | 14.9 | 参考文献[6] |
| ZJS-7 | 横涧矿床 | 黄铁矿 | 7.9 |
| SZ09-3 | 沙洲矿床 | 黄铁矿 | 13.7 |
| SZ09-20 | 沙洲矿床 | 黄铁矿 | 10.4 |
| SZ09-29-2 | 沙洲矿床 | 黄铁矿 | 14.7 |
| SZ-2 | 沙洲矿床 | 黄铁矿 | 12.5 |
| 多金属成矿 | SZ056S1 | 1 528 | 黄铁矿 | 4 | 本文 |
| SZ057S1A | 1 531 | 黄铁矿 | 4 |
| SZ069S1 | 2 630 | 黄铁矿 | 4.7 |
| SZ071S1 | 2 671 | 黄铁矿 | 4.9 |
| SZ073S1 | 2 682 | 黄铁矿 | 2.2 |
| SZ084S1 | 2 817 | 黄铁矿 | 5.6 |
| B572-1S1 | 1 720 | 黄铁矿 | 2.6 |
| B598-1S1 | 1 797 | 黄铁矿 | 6.9 |
| B615-1S1 | 1 845 | 黄铁矿 | 4 |
| B619-1S1 | 1 857 | 黄铁矿 | 4.7 |
| B649-1S1 | 1 947 | 黄铁矿 | 4.2 |
| B775-1S1 | 2 321 | 黄铁矿 | 4.1 |
| SZ065S2 | 2 552 | 磁黄铁矿 | 5.8 |
| SZ067S2 | 2 612 | 磁黄铁矿 | 2 |
| SZ076S2A | 2 776 | 磁黄铁矿 | 5.8 |
| SZ078S2 | 2 792 | 磁黄铁矿 | 5.5 |
| SZ080S2 | 2 801 | 磁黄铁矿 | 4.3 |
| B747-1S2 | 2 237 | 磁黄铁矿 | 4.3 |
| B647-1-2S4 | 1 941 | 磁黄铁矿 | 3.7 |
| SZ069S4 | 2 630 | 磁黄铁矿 | 3.9 |
| SZ069S6 | 2 630 | 毒砂 | 4.2 |
| B647-1S6 | 1 941 | 毒砂 | 4.8 |
| B666-1S6 | 1 998 | 毒砂 | 4.4 |
| B692-3S6 | 2 075 | 毒砂 | 3.1 |
| SZ055S1 | 1 461 | 黄铁矿 | 4.2 | 参考文献[7] |
| SZ057S1 | 1 531 | 黄铁矿 | 3.9 |
| SZ068S1 | 2 615 | 黄铁矿 | 3.5 |
| SZ070S1 | 2 667 | 黄铁矿 | 6.6 |
| SZ072S1 | 2 677 | 黄铁矿 | 3.6 |
| B510-1S1 | 1 535 | 黄铁矿 | 4.3 |
| B593-1S1 | 1 782 | 黄铁矿 | 5 |
| B599-1S1 | 1 799 | 黄铁矿 | 3 |
| B693-1S1 | 2 078 | 黄铁矿 | 5.1 |
| SZ066-1S4 | 2 606 | 闪锌矿 | 3.3 |
| B666-1S4 | 1 998 | 闪锌矿 | 3.8 |
| B615-1S5 | 1 845 | 方铅矿 | 2.5 |
| SZ063S2 | 2 523 | 磁黄铁矿 | 3 |
| SZ066S2 | 2 606 | 磁黄铁矿 | 4 |
| SZ076S2 | 2 776 | 磁黄铁矿 | 5.4 |
| SZ082S2 | 2 806 | 磁黄铁矿 | 4.3 |
| SZ083S2 | 2 809 | 磁黄铁矿 | 4 |
| B666-1S2 | 1 999 | 磁黄铁矿 | 2.6 |
| SZ084S3 | 2 817 | 黄铜矿 | 4.6 |
| SZ081S6 | 2 803 | 毒砂 | 3.3 |
| B804-1S6 | 2 406 | 毒砂 | 3.7 |
), ArticleFig(id=1190366607877701921, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=表2, caption=
相山地区多金属矿化和铀矿化硫化物硫同位素组成
, figureFileSmall=null, figureFileBig=null, tableContent=
| 矿化类型 | 样号 | 取样深度/m/位置 | 矿物 | δ34S/‰ | 数据来源 |
| 铀成矿 | xsz-8-4-1 | 沙洲铀矿床 | 黄铁矿 | 9.6 | 参考文献[15] |
| xsz-58-3-3 | 沙洲铀矿床 | 黄铁矿 | 9.92 |
| xsz-58-3-5 | 沙洲铀矿床 | 黄铁矿 | 10.91 |
| xsz-58-3-7 | 沙洲铀矿床 | 黄铁矿 | 10.55 |
| xsz-5cm-1 | 沙洲铀矿床 | 黄铁矿 | 13.04 |
| xsz-5cm-4 | 沙洲铀矿床 | 黄铁矿 | 13.15 |
| xsz-5cm-2 | 沙洲铀矿床 | 黄铁矿 | 12.79 |
| xsz-5cm-3 | 沙洲铀矿床 | 黄铁矿 | 13.37 |
| xsz-8-21-6-3-6 | 沙洲铀矿床 | 黄铁矿 | 14.2 |
| xsz-8-21-6-4-7 | 沙洲铀矿床 | 黄铁矿 | 18.85 |
| xsz-8-21-6-4-9 | 沙洲铀矿床 | 黄铁矿 | 18.76 |
| xsz-8-21-6-4-10 | 沙洲铀矿床 | 黄铁矿 | 18.97 |
| xsz-8-21-6-3-4 | 沙洲铀矿床 | 黄铁矿 | 17 |
| xsz-8-21-6-3-5 | 沙洲铀矿床 | 黄铁矿 | 19.1 |
| xsz-8-21-6-3-8 | 沙洲铀矿床 | 黄铁矿 | 19.55 |
| SZ13-5 | | 黄铁矿 | 15 | 参考文献[16] |
| SZ13-8 | | 黄铁矿 | 13.7 |
| SZ13-12 | | 黄铁矿 | 12.3 |
| SZ13-22-2 | | 黄铁矿 | 12.9 |
| SZ13-22-3 | | 黄铁矿 | 12.3 |
| SZ13-28 | | 黄铁矿 | 7.4 |
| SZ13-37-1 | | 黄铁矿 | 7.6 |
| SZ13-37-3 | | 黄铁矿 | 6.2 |
| SZ09-7 | 沙洲矿床 | 黄铁矿 | 14.9 | 参考文献[6] |
| ZJS-7 | 横涧矿床 | 黄铁矿 | 7.9 |
| SZ09-3 | 沙洲矿床 | 黄铁矿 | 13.7 |
| SZ09-20 | 沙洲矿床 | 黄铁矿 | 10.4 |
| SZ09-29-2 | 沙洲矿床 | 黄铁矿 | 14.7 |
| SZ-2 | 沙洲矿床 | 黄铁矿 | 12.5 |
| 多金属成矿 | SZ056S1 | 1 528 | 黄铁矿 | 4 | 本文 |
| SZ057S1A | 1 531 | 黄铁矿 | 4 |
| SZ069S1 | 2 630 | 黄铁矿 | 4.7 |
| SZ071S1 | 2 671 | 黄铁矿 | 4.9 |
| SZ073S1 | 2 682 | 黄铁矿 | 2.2 |
| SZ084S1 | 2 817 | 黄铁矿 | 5.6 |
| B572-1S1 | 1 720 | 黄铁矿 | 2.6 |
| B598-1S1 | 1 797 | 黄铁矿 | 6.9 |
| B615-1S1 | 1 845 | 黄铁矿 | 4 |
| B619-1S1 | 1 857 | 黄铁矿 | 4.7 |
| B649-1S1 | 1 947 | 黄铁矿 | 4.2 |
| B775-1S1 | 2 321 | 黄铁矿 | 4.1 |
| SZ065S2 | 2 552 | 磁黄铁矿 | 5.8 |
| SZ067S2 | 2 612 | 磁黄铁矿 | 2 |
| SZ076S2A | 2 776 | 磁黄铁矿 | 5.8 |
| SZ078S2 | 2 792 | 磁黄铁矿 | 5.5 |
| SZ080S2 | 2 801 | 磁黄铁矿 | 4.3 |
| B747-1S2 | 2 237 | 磁黄铁矿 | 4.3 |
| B647-1-2S4 | 1 941 | 磁黄铁矿 | 3.7 |
| SZ069S4 | 2 630 | 磁黄铁矿 | 3.9 |
| SZ069S6 | 2 630 | 毒砂 | 4.2 |
| B647-1S6 | 1 941 | 毒砂 | 4.8 |
| B666-1S6 | 1 998 | 毒砂 | 4.4 |
| B692-3S6 | 2 075 | 毒砂 | 3.1 |
| SZ055S1 | 1 461 | 黄铁矿 | 4.2 | 参考文献[7] |
| SZ057S1 | 1 531 | 黄铁矿 | 3.9 |
| SZ068S1 | 2 615 | 黄铁矿 | 3.5 |
| SZ070S1 | 2 667 | 黄铁矿 | 6.6 |
| SZ072S1 | 2 677 | 黄铁矿 | 3.6 |
| B510-1S1 | 1 535 | 黄铁矿 | 4.3 |
| B593-1S1 | 1 782 | 黄铁矿 | 5 |
| B599-1S1 | 1 799 | 黄铁矿 | 3 |
| B693-1S1 | 2 078 | 黄铁矿 | 5.1 |
| SZ066-1S4 | 2 606 | 闪锌矿 | 3.3 |
| B666-1S4 | 1 998 | 闪锌矿 | 3.8 |
| B615-1S5 | 1 845 | 方铅矿 | 2.5 |
| SZ063S2 | 2 523 | 磁黄铁矿 | 3 |
| SZ066S2 | 2 606 | 磁黄铁矿 | 4 |
| SZ076S2 | 2 776 | 磁黄铁矿 | 5.4 |
| SZ082S2 | 2 806 | 磁黄铁矿 | 4.3 |
| SZ083S2 | 2 809 | 磁黄铁矿 | 4 |
| B666-1S2 | 1 999 | 磁黄铁矿 | 2.6 |
| SZ084S3 | 2 817 | 黄铜矿 | 4.6 |
| SZ081S6 | 2 803 | 毒砂 | 3.3 |
| B804-1S6 | 2 406 | 毒砂 | 3.7 |
), ArticleFig(id=1190366607944810786, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=EN, label=Table 3, caption=
Statistical results of the Pb isotope compositions of the uranium mineralization, Pb-Zn mineralization, volcanic rocks and metamorphic basement
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| 地质单元 | 样品数/个 | (206Pb/204Pb) 131Ma | | (207Pb/204Pb)131Ma | | (208Pb/204Pb)131Ma | 来源 |
| 分布 | 平均值 | | 分布 | 平均值 | | 分布 | 平均值 |
| 铀矿化 | 11 | 18.221~19.372 | 18.430 | | 15.591~15.717 | 15.644 | | 38.504~38.910 | 38.671 | 参考文献[29];参考文献[30] |
| 多金属矿化 | 15 | 18.120~18.233 | 18.176 | | 15.575~15.698 | 15.634 | | 38.446~39.047 | 38.600 | 本文 |
| 黄铁矿 | 8 | 18.120~18.212 | 18.164 | | 15.575~15.676 | 15.631 | | 38.446~38.725 | 38.583 | |
| 磁黄铁矿 | 4 | 18.139~18.227 | 18.184 | | 15.598~15.633 | 15.617 | | 38.488~38.616 | 38.560 | |
| 闪锌矿 | 3 | 18.151~18.233 | 18.181 | | 15.628~15.698 | 15.654 | | 38.571~38.790 | 38.658 | |
| 碎斑流纹岩 | 21 | 18.476~18.758 | 18.553 | | 15.618~15.652 | 15.630 | | 38.634~39.047 | 38.908 | |
| 16 | 18.497~18.758 | 18.613 | | 15.618~15.652 | 15.632 | | 38.634~39.047 | 38.912 | 本文 |
| 5 | 18.476~18.514 | 18.492 | | 15.623~15.630 | 15.627 | | 38.883~38.921 | 38.903 | 参考文献[31] |
| 流纹英安岩 | 14 | 18.471~18.792 | 18.625 | | 15.630~15.650 | 15.638 | | 38.768~39.182 | 38.945 | |
| 9 | 18.471~18.643 | 18.580 | | 15.630~15.642 | 15.635 | | 38.768~38.920 | 38.866 | 本文 |
| 5 | 18.578~18.792 | 18.669 | | 15.631~15.650 | 15.641 | | 38.852~39.182 | 39.024 | 参考文献[31] |
| 变质岩基底 | 10 | 17.968~18.623 | 18.212 | | 15.553~15.633 | 15.592 | | 38.304~38.753 | 38.435 | 本文 |
), ArticleFig(id=1190366608020308259, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343835663302823, language=CN, label=表3, caption=
相山地区铀多金属矿化和各地质单元铅同位素组成
, figureFileSmall=null, figureFileBig=null, tableContent=
| 地质单元 | 样品数/个 | (206Pb/204Pb) 131Ma | | (207Pb/204Pb)131Ma | | (208Pb/204Pb)131Ma | 来源 |
| 分布 | 平均值 | | 分布 | 平均值 | | 分布 | 平均值 |
| 铀矿化 | 11 | 18.221~19.372 | 18.430 | | 15.591~15.717 | 15.644 | | 38.504~38.910 | 38.671 | 参考文献[29];参考文献[30] |
| 多金属矿化 | 15 | 18.120~18.233 | 18.176 | | 15.575~15.698 | 15.634 | | 38.446~39.047 | 38.600 | 本文 |
| 黄铁矿 | 8 | 18.120~18.212 | 18.164 | | 15.575~15.676 | 15.631 | | 38.446~38.725 | 38.583 | |
| 磁黄铁矿 | 4 | 18.139~18.227 | 18.184 | | 15.598~15.633 | 15.617 | | 38.488~38.616 | 38.560 | |
| 闪锌矿 | 3 | 18.151~18.233 | 18.181 | | 15.628~15.698 | 15.654 | | 38.571~38.790 | 38.658 | |
| 碎斑流纹岩 | 21 | 18.476~18.758 | 18.553 | | 15.618~15.652 | 15.630 | | 38.634~39.047 | 38.908 | |
| 16 | 18.497~18.758 | 18.613 | | 15.618~15.652 | 15.632 | | 38.634~39.047 | 38.912 | 本文 |
| 5 | 18.476~18.514 | 18.492 | | 15.623~15.630 | 15.627 | | 38.883~38.921 | 38.903 | 参考文献[31] |
| 流纹英安岩 | 14 | 18.471~18.792 | 18.625 | | 15.630~15.650 | 15.638 | | 38.768~39.182 | 38.945 | |
| 9 | 18.471~18.643 | 18.580 | | 15.630~15.642 | 15.635 | | 38.768~38.920 | 38.866 | 本文 |
| 5 | 18.578~18.792 | 18.669 | | 15.631~15.650 | 15.641 | | 38.852~39.182 | 39.024 | 参考文献[31] |
| 变质岩基底 | 10 | 17.968~18.623 | 18.212 | | 15.553~15.633 | 15.592 | | 38.304~38.753 | 38.435 | 本文 |
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