Article(id=1190343837018063026, tenantId=1146029695717560320, journalId=1190260162528112641, issueId=1190343834195296407, articleNumber=1672-0636(2025)02-0291-16, orderNo=null, doi=10.3969/j.issn.1672-0636.2025.02.006, pmid=null, cstr=null, oa=null, hot=null, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=research-article, receivedDate=1740412800000, receivedDateStr=2025-02-25, revisedDate=1741968000000, revisedDateStr=2025-03-15, acceptedDate=null, acceptedDateStr=null, onlineDate=1761729686264, onlineDateStr=2025-10-29, pubDate=1744041600000, pubDateStr=2025-04-08, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1761729686264, onlineIssueDateStr=2025-10-29, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1761729686264, creator=13701087609, updateTime=1761729686264, updator=13701087609, issue=Issue{id=1190343834195296407, tenantId=1146029695717560320, journalId=1190260162528112641, year='2025', volume='42', issue='2', pageStart='219', pageEnd='435', issueExtLink='null', onlineDate='null', pubDate='null', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=-1, specialIssue=null, createTime=1761729685590, creator=13701087609, updateTime=1761731679353, updator=13701087609, preIssue=null, nextIssue=null, ext={EN=IssueExt(id=1190352196689560315, tenantId=1146029695717560320, journalId=1190260162528112641, issueId=1190343834195296407, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1190352196689560316, tenantId=1146029695717560320, journalId=1190260162528112641, issueId=1190343834195296407, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null}, startPage=291, endPage=306, ext={EN=ArticleExt(id=1190343837240361141, articleId=1190343837018063026, tenantId=1146029695717560320, journalId=1190260162528112641, language=EN, title=Evaluation of uranium metallogenic potential in Rössing mining area,Namibia, columnId=1190343834849607834, journalTitle=World Nuclear Geoscience, columnName=RESEARCH ARTICALS, runingTitle=null, highlight=null, articleAbstract=
The Rössing mine in Namibia is the earliest alaskite-type uranium mine,ranking the top 10 globe uranium mines. However,the backup resources are seriously insufficient,therefore it is urgent to carry out exploration to expand resources and ensure the sustainable development of the mine. Based on the secondary data development,the authors carried out field geological survey,large-scale geological mapping,and ground energy spectrum measurement on the main uranium deposits in the mining area,studied the typical uranium deposit and identified uranium mineralization characteristics and ore-controlling factors. It was considered that the alaskite-type uranium deposit was the products of regional tectonic-magmatic evolution,which was crystallized from granitic magma. The ore-forming material was derived from the anatexis of the ancient basement rocks. The diversity of source rocks and the heterogeneity of melting resulted in the capacity variations in the ore-bearing alaskite. The localization of the deposit is controlled by NNE-trending regional faults, dome (fold) turning ends and structural variation sites. Ore-bearing pluton intruded along the structural and weak stratigraphic planes,with post-mineralization hydrothermal alteration and supergene leaching and enrichment.On the basis of summarizing the geological background, metallogenic and ore-controlling pattern of uranium mineralization,this paper defined the prediction factors of uranium mineralization and extracted the prediction factors including uranium deposits buffer zones,alaskite distribution areas,regional tectonic buffer zones,marble exocontact zones,alteration development zones, aerial radiometric uranium anomaly zones and ground gamma spectrometry anomaly zones. Using the comprehensive information geological unit method,uranium metallogenic prediction was conducted and 14 new uranium prospective sectors were delineated in the Rössing mining licence area with approximately 140 000 tons potential resources. This achievement indicated significant uranium potential in the periphery of the Rössing deposit and worthy more exploration efforts. The 5 predicted level-A prospects are the focus for the next exploration. Among which,the A1(Z17-19)sector has been verified as a super-large uranium deposit through drilling,demonstrating remarkable prospecting achievements.
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FAN Honghai,male,born in 1963,senior engineer,PhD,focusing on uranium geological research and resource estimation work. E-mail:
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First author:HE Debao,male,born in 1981,senior engineer,PhD,focusing on the research of hydrothermal uranium deposit and metallogenic prediction. E-mail:hedebao@126.com
, authorsList=Debao HE, Honghai FAN, Ruirui GENG, Jinyong CHEN, Yongjian WANG, Donghuan CHEN, Xu CHEN), CN=ArticleExt(id=1190344220595552989, articleId=1190343837018063026, tenantId=1146029695717560320, journalId=1190260162528112641, language=CN, title=纳米比亚罗辛矿区铀成矿潜力评价, columnId=1190343834992214173, journalTitle=世界核地质科学, columnName=研究论文, runingTitle=null, highlight=null, articleAbstract=
纳米比亚罗辛铀矿山是开采最早的白岗岩型铀矿,产量位列全球十大铀矿山之列,但其后备资源严重不足,急需开展资源勘查,扩大资源量,保障矿山可持续发展。在资料二次开发基础上,对矿区主要铀矿床(点)进行野外地质调查、重点地段大比例尺地质填图和能谱测量,开展典型铀矿床(点)解剖,识别出不同矿床铀矿化特征、控矿要素,认为白岗岩型铀矿是区域构造-岩浆演化产物,其为花岗质岩浆结晶而成,其成矿物质来自古老基底的深熔作用,源区岩性多样以及基底熔融的不均一性造成白岗岩含矿性的差异。矿床定位受NNE向的区域性断裂、穹隆转折端及构造变异部位控制,含矿白岗岩沿构造、地层薄弱面侵入并结晶成矿,矿后由于热液蚀变及表生淋滤作用部分地段矿体叠加富集。在总结罗辛地区铀成矿地质背景,研究典型矿床特征和控矿要素基础上,厘定铀成矿预测要素,提取铀矿产地缓冲区、白岗岩分布区、区域构造缓冲区、大理岩外接触带、蚀变发育区、航空放射性铀异常区及地面γ能谱异常区等预测要素,采用综合信息地质单元法开展铀成矿预测。在矿权区范围内新圈定铀成矿预测区14片,预测铀资源潜力约14万t,表明罗辛矿床外围铀成矿潜力巨大,应加大勘查投入力度,5个A类预测区是下一步勘查工作的重点,其中A1(Z17-19)预测区经钻探揭露已落实为特大型铀矿床,找矿成果显著。
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, authorsList=何德宝, 范洪海, 耿瑞瑞, 陈金勇, 王勇剑, 陈东欢, 陈旭)}, authors=[Author(id=1190362873894372152, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=hedebao@126.com, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1190362873990841149, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, authorId=1190362873894372152, language=EN, stringName=Debao HE, firstName=Debao, middleName=null, lastName=HE, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=
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={"content":"
第一作者:何德宝,男,1981年生,高级工程师,博士,主要从事热液型铀矿研究及成矿预测工作。E-mail:hedebao@126.com
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第一作者:何德宝,男,1981年生,高级工程师,博士,主要从事热液型铀矿研究及成矿预测工作。E-mail:hedebao@126.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
3 CNNC Key Laboratory of Uranium Resources Exploration and Evaluation Technology, Beijing 100029, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1190362874376717125, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, authorId=1190362874167001920, language=CN, stringName=范洪海, 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=1190362873651102509, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, xref=1, ext=[AuthorCompanyExt(id=1190362873659491118, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873651102509, 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=1190362873667879727, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873651102509, language=CN, 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 Resources Exploration and Evaluation Technology, Beijing 100029, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1190362874611598156, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, authorId=1190362874443825991, language=CN, stringName=耿瑞瑞, 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=1190362873651102509, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, xref=1, ext=[AuthorCompanyExt(id=1190362873659491118, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873651102509, 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=1190362873726599984, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, xref=2, ext=[AuthorCompanyExt(id=1190362873730794289, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873726599984, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
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3 中核集团铀资源勘查与评价技术重点实验室, 北京 100029)])]), Author(id=1190362874674512718, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, orderNo=3, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1190362874804536146, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, authorId=1190362874674512718, language=EN, stringName=Jinyong CHEN, firstName=Jinyong, middleName=null, lastName=CHEN, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=
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 Resources Exploration and Evaluation Technology, Beijing 100029, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1190362874863256403, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, authorId=1190362874674512718, language=CN, stringName=陈金勇, 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
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1 National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, Beijing 100029, China
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2018., articleTitle=null, refAbstract=null)], funds=[Fund(id=1190362878629741449, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, awardId=地SD05, language=EN, fundingSource=Supported by CNNC Self-Developed Project,Research on Resource Expansion in the Rössing Mine and its Peripheral Areas(地SD05), fundOrder=null, country=null), Fund(id=1190362878684267402, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, awardId=地SD05, language=CN, fundingSource=中核集团自主研发项目罗辛矿区及外围资源扩大研究(地SD05), fundOrder=null, country=null)], companyList=[AuthorCompany(id=1190362873651102509, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, xref=1, ext=[AuthorCompanyExt(id=1190362873659491118, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873651102509, 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=1190362873667879727, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873651102509, 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=1190362873726599984, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, xref=2, ext=[AuthorCompanyExt(id=1190362873730794289, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873726599984, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
2 Beijing Research Institute of Uranium Geology, Beijing 100029, China), AuthorCompanyExt(id=1190362873734988594, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873726599984, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
2 核工业北京地质研究院, 北京 100029)]), AuthorCompany(id=1190362873802097459, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, xref=3, ext=[AuthorCompanyExt(id=1190362873806291764, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873802097459, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
3 CNNC Key Laboratory of Uranium Resources Exploration and Evaluation Technology, Beijing 100029, China), AuthorCompanyExt(id=1190362873814680373, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, companyId=1190362873802097459, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=
3 中核集团铀资源勘查与评价技术重点实验室, 北京 100029)])], figs=[ArticleFig(id=1190362876272542577, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 1, caption=
Structural geological map of Damala orogenic belt and distribution of main alaskite-type uranium deposits(modified after reference [4]), figureFileSmall=vc/iANRPkXXGgUOyLeV7nA==, figureFileBig=oQcB0FJsCrmGnS6avvz6qg==, tableContent=null), ArticleFig(id=1190362876352234354, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图1, caption=
达马拉造山带构造地质简图及主要白岗岩型铀矿分布(据参考文献[4]修改), figureFileSmall=vc/iANRPkXXGgUOyLeV7nA==, figureFileBig=oQcB0FJsCrmGnS6avvz6qg==, tableContent=null), ArticleFig(id=1190362876457091955, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig.2, caption=
Geological sketch of Rössing mine 1-Quaternary alluvium;2-Kuiseb formation of Schist and gneiss;3-Karibib formation of marble,calc-silicate rock,pelitic and semi-pelitic schist and gneiss;4-Chuos formation of diamictite,calc-silicate rock,pebbly schist,quartzite,tillite;5-Rössing formation of marble,pelitic schist and gneiss,biotite hornblende schist,migmatite,calc-silicate rock,quartzite,metaconglomerate;6-Khan formation of banded and mottled amphibole gneiss,hornblende-biotite schist,biotite schist and gneiss,amphibolite,metaconglomerate;7-Etusis formation of schist and gneiss,quartzite,marble;8-Abbabis complex;9-Alaskite;10-Coarse basaltic dike;11-Uranium deposit;12-Uranium occurrence ;13-The boundary of Rössing mining licence.
, figureFileSmall=Z+oCESESIthHafWwKDqGRg==, figureFileBig=MnyIImBtyxm7UXXClEsgFA==, tableContent=null), ArticleFig(id=1190362876515812212, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图2, caption=
罗辛矿区地质简图 1—第四系冲积物、坡积物;2—卡塞布组片岩、片麻岩;3—卡里毕比组大理岩、石英岩、片岩;4—楚斯组混积岩、钙硅质岩、石英岩、冰碛岩;5—罗辛组大理岩、泥质片岩、片麻岩、角闪岩、钙硅质岩、石英岩、混合岩;6—可汗组条带状、斑状片麻岩、角闪岩、变砾岩;7—艾杜西斯组片岩、石英岩、大理岩;8—阿巴比斯组变质杂岩;9—白岗岩;10—粗玄岩脉;11—铀矿床;12—铀矿点;13—罗辛矿权范围。
, figureFileSmall=Z+oCESESIthHafWwKDqGRg==, figureFileBig=MnyIImBtyxm7UXXClEsgFA==, tableContent=null), ArticleFig(id=1190362876801024885, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 3, caption=
Overlayer map of the alaskite and uranium deposits in the Rössing mine 1-Alaskite;2-The buffer of alaskite vein(10 m);3-Uranium deposits;4-Uranium occurrences,prospectivs;5-The boundary of Rössing mining licence.
, figureFileSmall=0d/1R5tdmABkcl0FrSKibQ==, figureFileBig=iUf83ge3wasH6SmYECWmNw==, tableContent=null), ArticleFig(id=1190362876972991350, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图3, caption=
罗辛矿区白岗岩与矿床分布叠合图 1—白岗岩;2—细脉状白岗岩缓冲区(10 m);3—铀矿床;4—铀矿点、矿化点;5—罗辛矿区范围。
, figureFileSmall=0d/1R5tdmABkcl0FrSKibQ==, figureFileBig=iUf83ge3wasH6SmYECWmNw==, tableContent=null), ArticleFig(id=1190362877186900855, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 4, caption=
Overlayer map of structural buffers and uranium deposits in the Rössing mine 1-The buffers of regional structures (1 000 m);2-The buffers of normal faults (100 m);3-Uranium deposits;4-Uranium occurrences,prospectives;5-The boundary of Rössing mining licence.
, figureFileSmall=/zvDc9l9xVGVMNbIJ9LjuA==, figureFileBig=iAzieQr6xqb95rJ+G7j9dQ==, tableContent=null), ArticleFig(id=1190362877337895800, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图4, caption=
罗辛矿区构造缓冲区分布及铀矿床位置叠合图 1—区域性构造缓冲区(1 000 m);2—小型构造缓冲区(100 m);3—铀矿床;4—铀矿点、矿化点;5—罗辛矿区范围。
, figureFileSmall=/zvDc9l9xVGVMNbIJ9LjuA==, figureFileBig=iAzieQr6xqb95rJ+G7j9dQ==, tableContent=null), ArticleFig(id=1190362877421781881, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 5, caption=
Overlayer map of contact zones of marble and uranium deposits in the Rössing mine 1-Contact zones(200 m) of marble;2-Uranium deposits;3-Uranium occurrences,prospectives;4-The boundary of Rössing mining licence.
, figureFileSmall=rc5fFyEER/qS5wHDRNBUDQ==, figureFileBig=K+PRdfSp3tDEzLGVurE/JQ==, tableContent=null), ArticleFig(id=1190362877484696442, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图5, caption=
罗辛矿区大理岩外接触带缓冲区与矿床位置叠加图 1—大理岩外接触带缓冲区(200 m);2—铀矿床;3—铀矿点、矿化点;4—罗辛矿区范围。
, figureFileSmall=rc5fFyEER/qS5wHDRNBUDQ==, figureFileBig=K+PRdfSp3tDEzLGVurE/JQ==, tableContent=null), ArticleFig(id=1190362877535028091, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 6, caption=
Distribution of zones of hematitization,illitization,chloritization and uranium deposits in the Rössing mine 1-Zones of hematitization;2-Zones of illitization;3-Zones of chloritization;4-Uranium deposits;5-Uranium occurrences,prospectives;6-The boundary of Rössing mining licence.
, figureFileSmall=6E1duMxZny2ZBRTRYJyz1A==, figureFileBig=sXw1N2IzRWXCGMmjbwWzcQ==, tableContent=null), ArticleFig(id=1190362877606331260, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图6, caption=
罗辛矿区赤铁矿化、伊利石化和绿泥石化蚀变与铀矿床位置叠合图 1—赤铁矿化蚀变范围;2—绿泥石化蚀变范围;3—伊利石化蚀变范围;4—铀矿床;5—铀矿点、矿化点;6—罗辛矿区范围。
, figureFileSmall=6E1duMxZny2ZBRTRYJyz1A==, figureFileBig=sXw1N2IzRWXCGMmjbwWzcQ==, tableContent=null), ArticleFig(id=1190362877681828733, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 7, caption=
Overlayer map of airborne radioactive uranium anormaly and uranium deposits in the Rössing mine(Modified after the information provided by Rössing mine) 1-Abnormal range of airborne uranium(U≥12×10-6);2-Uranium deposits;3-Uranium occurrences,prospectives;4-The boundary of Rössing mining licence
, figureFileSmall=sPoK/e8qgP1dU+M5yCb4zA==, figureFileBig=1r8Ulr/cWmhXRynWJXt1Ew==, tableContent=null), ArticleFig(id=1190362877790880638, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图7, caption=
罗辛地区航空放射性U异常区与矿床位置叠合图(航空放射性数据据罗辛矿山资料修改) 1—航空放射性U异常范围(U≥12×10-6);2—铀矿床;3—铀矿点、矿化点;4—罗辛铀矿权区。
, figureFileSmall=sPoK/e8qgP1dU+M5yCb4zA==, figureFileBig=1r8Ulr/cWmhXRynWJXt1Ew==, tableContent=null), ArticleFig(id=1190362877845406591, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 8, caption=
Overlayer map of ground gamma spectrometry and uranium deposits in the Rössing mine 1-Uranium abnormal range of ground gamma spectrometry;2- Uranium deposits;3-Uranium occurrences,prospectives;4-The boundary of Rössing mining licence.
, figureFileSmall=sM/dB6A7ciysIRowQR5pBA==, figureFileBig=mAcjn7ezrSZVNEV5Q2umYw==, tableContent=null), ArticleFig(id=1190362877912515456, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图8, caption=
地面γ能谱异常范围与矿床矿点及矿区范围叠合图 1—地面γ能谱U异常区;2—铀矿床;3—铀矿点、矿化点;4—罗辛铀矿权区。
, figureFileSmall=sM/dB6A7ciysIRowQR5pBA==, figureFileBig=mAcjn7ezrSZVNEV5Q2umYw==, tableContent=null), ArticleFig(id=1190362877988012929, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=EN, label=Fig. 9, caption=
The predicted prospecting area and its classification in the Rössing mine 1-Quaternary:alluvium;2-Kuiseb formation:Schist and gneiss;3-Karibib formation:marble,calc- silicate rock,pelitic and semi-peliticschist and gneiss;4-Chuos formation:diamictite,calc-silicate rock,pebbly schist,quartzite,tillite;5-Rössing formation:marble,pelitic schist and gneiss,biotite hornblende schist,migmatite,calc-silicate rock,quartzite,metaconglomerate;6-Khan formation:banded and mottled amphibole gneiss,hornblende-biotite schist,biotite schist and gneiss,amphibolite, metaconglomerate;7-Etusis formation:schist and gneiss,quartzite,marble;8-Abbabis complex;9-Alaskite;10-Coarse basaltic dike;11-Uranium deposit;12-Uranium ore occurrence,mineralized point;13-The boundary of Rössing mining licence;14-Level A prospecting area;15-Level B prospecting area;16-Level C prospecting area;17-Known deposit or prospecting area outside the boundary of Rössing mining licence.
, figureFileSmall=4q4AieduxtXg0R9lSp59Ig==, figureFileBig=YhUTELUbSYik4VKRaIr/ew==, tableContent=null), ArticleFig(id=1190362878067704706, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=图9, caption=
罗辛地区成矿预测区及其分类 1—第四系;2—卡塞布组片岩、片麻岩;3—卡里毕比组大理岩、石英岩、片岩;4—楚斯组混积岩;5—罗辛组大理岩、片麻岩、石英岩;6—可汗组片麻岩、角闪岩;7—艾杜西斯组片岩、石英岩、大理岩;8—阿巴比斯组变质杂岩;9—白岗岩;10—粗玄岩脉;11—铀矿床;12—铀矿点、矿化点;13—罗辛矿权范围;14—A类预测区;15—B类预测区;16—C类预测区;17—已知矿床及矿权外预测区。
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Stratigraphic assemblage and characteristics of the Damara orogenic belt(modified after reference [5])
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| 群 | 组 | 代号 | 厚度/m | 主要岩性 |
斯瓦科普群 (Swakap) | 卡塞布组(Kuiseb) | NKs | >3 000 | 砂质、泥质片岩、片麻岩,混合岩、钙硅质岩及石英岩 |
| 卡里毕比组(Karibib) | NKb | 1 000 | 大理岩、钙硅质岩、泥质片岩和片麻岩 |
| 楚斯组(Chuos) | NCh | 700 | 混积岩、钙硅质岩、含砾片岩、石英岩、冰碛岩 |
| 罗辛组(Rössing) | NRs | 200 | 大理岩、黑云母堇青石片麻岩、云母角闪片岩、混合岩、长石质石英岩、变质砾岩 |
诺西布群 (Nosib) | 可汗组(Khan) | NKn | 1 100 | 混合条带斑点石英长石辉石角闪片麻岩、云母片岩和片麻岩、混合岩、辉石石榴片麻岩、角闪岩、石英岩、变质砾岩 |
| 艾杜西斯组(Etusis) | NEt | 3 000 | 片麻状花岗岩、眼球状片麻岩、石英长石片麻岩、泥质片岩和片麻岩、石英岩、钙硅质岩、混合岩、大理岩 |
| 阿巴比斯组(Abbabis) | 结晶基底,长英质眼球状片麻岩、片岩、斜长角闪岩、石英岩、大理岩、钙硅质岩杂岩体 |
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达马拉造山带地层组合及其特征(据参考文献[5]修改)
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| 群 | 组 | 代号 | 厚度/m | 主要岩性 |
斯瓦科普群 (Swakap) | 卡塞布组(Kuiseb) | NKs | >3 000 | 砂质、泥质片岩、片麻岩,混合岩、钙硅质岩及石英岩 |
| 卡里毕比组(Karibib) | NKb | 1 000 | 大理岩、钙硅质岩、泥质片岩和片麻岩 |
| 楚斯组(Chuos) | NCh | 700 | 混积岩、钙硅质岩、含砾片岩、石英岩、冰碛岩 |
| 罗辛组(Rössing) | NRs | 200 | 大理岩、黑云母堇青石片麻岩、云母角闪片岩、混合岩、长石质石英岩、变质砾岩 |
诺西布群 (Nosib) | 可汗组(Khan) | NKn | 1 100 | 混合条带斑点石英长石辉石角闪片麻岩、云母片岩和片麻岩、混合岩、辉石石榴片麻岩、角闪岩、石英岩、变质砾岩 |
| 艾杜西斯组(Etusis) | NEt | 3 000 | 片麻状花岗岩、眼球状片麻岩、石英长石片麻岩、泥质片岩和片麻岩、石英岩、钙硅质岩、混合岩、大理岩 |
| 阿巴比斯组(Abbabis) | 结晶基底,长英质眼球状片麻岩、片岩、斜长角闪岩、石英岩、大理岩、钙硅质岩杂岩体 |
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The classification, characteristic and ages of the alaskites
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| 类型 | 岩石特征 | 取样位置 | 成岩年龄/Ma |
| A | 呈不规则褶皱状,浅灰白色,细粒-中粒、糖粒状结构,以白色长石为主 | 欢乐谷 | 547.4±3.6(LA-ICP-MSU-Pb锆石)(据参考文献[14]) |
| B | 白色,不等粒结构(细粒至伟晶结构),常见石榴子石、黑云母、电气石 | 欢乐谷 | 537.8±4.3(LA-ICP-MSU-Pb锆石)(据参考文献[12]) |
| C | 淡红-乳白色,中粒-伟晶结构,含微斜长石和斜长石,副矿物为磁铁矿、褐铁矿和电气石 | 欢乐谷 | 525.4±2.6(LA-ICP-MSU-Pb锆石)(据参考文献[12]) |
| D | 呈不规则网状,白色,中-粗粒状结构,原生铀矿化的白岗岩主要由白色长石、烟灰色石英组成,见β硅钙铀矿和磷灰石 | 欢乐谷 | 506±8.1(SHRIMPU-Pb锆石)(据参考文献[15]);497±5.5(LA-ICP-MSU-Pb锆石)(据参考文献[12]) |
| 湖山 | 496.1±4.1Ma(EPMAU-Th-Pb晶质铀矿)(据参考文献[16]) |
| E | 红-粉红色,颜色及粒度多变,见浅红色长石,有氧化晕圈,矿物组成与D型相似,或者全部由烟灰色(黑色)石英和粉红色长石构成 | | |
| F | 红色,粗粒-伟晶结构,粉红色粗粒条纹长石,乳白色石英,副矿物为磁铁矿和褐铁矿 | 欢乐谷 | 511.4±4.3(LA-ICP-MSU-Pb锆石)(据参考文献[17]) |
), ArticleFig(id=1190362878327751558, tenantId=1146029695717560320, journalId=1190260162528112641, articleId=1190343837018063026, language=CN, label=表2, caption=
白岗岩分类及其主要特征及成岩年龄
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| 类型 | 岩石特征 | 取样位置 | 成岩年龄/Ma |
| A | 呈不规则褶皱状,浅灰白色,细粒-中粒、糖粒状结构,以白色长石为主 | 欢乐谷 | 547.4±3.6(LA-ICP-MSU-Pb锆石)(据参考文献[14]) |
| B | 白色,不等粒结构(细粒至伟晶结构),常见石榴子石、黑云母、电气石 | 欢乐谷 | 537.8±4.3(LA-ICP-MSU-Pb锆石)(据参考文献[12]) |
| C | 淡红-乳白色,中粒-伟晶结构,含微斜长石和斜长石,副矿物为磁铁矿、褐铁矿和电气石 | 欢乐谷 | 525.4±2.6(LA-ICP-MSU-Pb锆石)(据参考文献[12]) |
| D | 呈不规则网状,白色,中-粗粒状结构,原生铀矿化的白岗岩主要由白色长石、烟灰色石英组成,见β硅钙铀矿和磷灰石 | 欢乐谷 | 506±8.1(SHRIMPU-Pb锆石)(据参考文献[15]);497±5.5(LA-ICP-MSU-Pb锆石)(据参考文献[12]) |
| 湖山 | 496.1±4.1Ma(EPMAU-Th-Pb晶质铀矿)(据参考文献[16]) |
| E | 红-粉红色,颜色及粒度多变,见浅红色长石,有氧化晕圈,矿物组成与D型相似,或者全部由烟灰色(黑色)石英和粉红色长石构成 | | |
| F | 红色,粗粒-伟晶结构,粉红色粗粒条纹长石,乳白色石英,副矿物为磁铁矿和褐铁矿 | 欢乐谷 | 511.4±4.3(LA-ICP-MSU-Pb锆石)(据参考文献[17]) |
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Lists of prediction elements in Rössing mining area
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| 区域预测要素 | 描述内容 | 分类 |
| 区域成矿地质环境 | 大地构造单元 | 达马拉造山带南部中央带 | 重要 |
| 区域构造 | 罗辛穹隆东南侧-西南侧褶皱转折端,NE向次级褶皱发育区;NE向奥玛鲁鲁断裂和千岁兰断裂夹持区 | 必要 |
| 含铀白岗岩 | 区域发育多期白岗岩,呈脉状、透镜体状侵入罗辛组、可汗组及卡塞布组片岩、片麻岩中。其中D型、E型白岗岩中铀矿化明显 | 必要 |
| 有利地层 | 罗辛组、可汗组及卡塞布组片岩、片麻岩中层理发育,为白岗岩侵入提供了良好的场所,此外,不同时代地层接触面、不整合面也是白岗岩侵入的有利空间 | 必要 |
| 区域成矿特征 | 成矿类型 | 白岗岩型(表生淋滤叠加) | 重要 |
| 铀矿化信息 | 铀矿床、矿点、矿化点和异常点 | 必要 |
| 控矿构造 | NE向褶皱、断裂带控制白岗岩体侵位,白岗岩体整体呈NE向,其产状与地层层理一致。研究区南部部分地段受褶皱转折扭动呈近EW向 | 必要 |
| 岩脉 | 含矿白岗岩呈岩脉状顺层侵入片岩、片麻岩中 | 重要 |
| 围岩蚀变 | 不同地段铀矿围岩蚀变差异明显。全区发育硅化、绿泥石化、绢云母化、高岭土化等,SJ矿床浅部次生铀矿化发育,SK碱交代强烈,Z19赤铁矿化强烈,Z25、Z23电气石化蚀变明显 | 重要 |
| 物化遥及放射性综合信息特征 | 放射性特征 | 航空放射性测量值岩体中≥12×10-6的铀高场区 | 重要 |
| 地面γ铀异常区 | 重要 |
| 电磁异常特征 | 电磁测量推断白岗岩产状及深度 | 重要 |
| 电磁测量解译推断的线型构造 | 次要 |
| 遥感特征 | 遥感解译推断的断裂、褶皱 | 重要 |
| 遥感提取赤铁矿化、伊利石化和绿泥石化等热液蚀变信息 | 次要 |
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罗辛矿区铀成矿预测要素一览表
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| 区域预测要素 | 描述内容 | 分类 |
| 区域成矿地质环境 | 大地构造单元 | 达马拉造山带南部中央带 | 重要 |
| 区域构造 | 罗辛穹隆东南侧-西南侧褶皱转折端,NE向次级褶皱发育区;NE向奥玛鲁鲁断裂和千岁兰断裂夹持区 | 必要 |
| 含铀白岗岩 | 区域发育多期白岗岩,呈脉状、透镜体状侵入罗辛组、可汗组及卡塞布组片岩、片麻岩中。其中D型、E型白岗岩中铀矿化明显 | 必要 |
| 有利地层 | 罗辛组、可汗组及卡塞布组片岩、片麻岩中层理发育,为白岗岩侵入提供了良好的场所,此外,不同时代地层接触面、不整合面也是白岗岩侵入的有利空间 | 必要 |
| 区域成矿特征 | 成矿类型 | 白岗岩型(表生淋滤叠加) | 重要 |
| 铀矿化信息 | 铀矿床、矿点、矿化点和异常点 | 必要 |
| 控矿构造 | NE向褶皱、断裂带控制白岗岩体侵位,白岗岩体整体呈NE向,其产状与地层层理一致。研究区南部部分地段受褶皱转折扭动呈近EW向 | 必要 |
| 岩脉 | 含矿白岗岩呈岩脉状顺层侵入片岩、片麻岩中 | 重要 |
| 围岩蚀变 | 不同地段铀矿围岩蚀变差异明显。全区发育硅化、绿泥石化、绢云母化、高岭土化等,SJ矿床浅部次生铀矿化发育,SK碱交代强烈,Z19赤铁矿化强烈,Z25、Z23电气石化蚀变明显 | 重要 |
| 物化遥及放射性综合信息特征 | 放射性特征 | 航空放射性测量值岩体中≥12×10-6的铀高场区 | 重要 |
| 地面γ铀异常区 | 重要 |
| 电磁异常特征 | 电磁测量推断白岗岩产状及深度 | 重要 |
| 电磁测量解译推断的线型构造 | 次要 |
| 遥感特征 | 遥感解译推断的断裂、褶皱 | 重要 |
| 遥感提取赤铁矿化、伊利石化和绿泥石化等热液蚀变信息 | 次要 |
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