矿床地质:2026,Vol.>>Issue(2):436-456

西藏哲古-雪莎一带锑金等多元素地球化学特征及靶区优选
中国地质调查局军民融合地质调查中心, 四川 成都 610036;山东省鲁南地质工程勘察院(山东省地质矿产勘查开发局第二地质大队)
, 山东 济宁 272100;中国地质大学(北京)
, 北京 100083;四川省第三地质大队, 四川 成都 610036
Geochemical characteristics and target generation of antimony-gold and other elements in Zhegu-Xuesha area, Xizang
HAN Cong,HUANG Yong,ZHANG YiMing,ZHANG XiaoFei,ZHANG FangFang,FAN YongGang,XIA LiangZhi,YANG JianFeng,ZHAO XuTing
(Civil-Military Intergration Center of China Geological Survey, Chengdu 610036, Sichuan, China;Shandong Provincial Lunan Geology and Exploration Institute(Shandong Provincial Bureau of Geology and Mineral Resources No. 2 Geological Brigade), Jining 272100, Shandong, China;China University of Geosciences (Beijing), Beijing 100083, China;The 3rd Geological Brigade of Sichuan, Chengdu 610036, Sichuan, China)
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投稿时间:2025-03-17   修订日期:2025-09-01      网络发布日期:2026-04-22
中文摘要:西藏特提斯喜马拉雅构造带成矿地质条件优越,是中国重要的锑金富集带。为服务藏南金锑等找矿突破,文章以该构造带东段哲古-雪莎地区为研究区,基于大比例尺地球化学勘查数据,开展元素地球化学参数及元素组合特征分析,采用分子区多背景方法确定异常下限,并以地球化学异常特征为核心开展区域找矿预测。结果显示,Au、As、Sb、Pb、Zn、Ag为区内主要成矿元素或伴生元素,上述元素构成3组独立且存在部分关联的成矿系统,即Au-As成矿系统、Sb-Ag成矿系统及Pb-Zn-Ag多金属成矿系统。分子区多背景异常法有效提高了预测精度,以元素地球化学异常特征为基础在区内圈定出4处找矿预测区,进一步细化圈定出A类靶区5处,B类靶区3处,C类靶区5处,并优选4处找矿靶区开展异常剖析。本次研究结果为区内锑、金等多金属元素找矿勘查和工作部署提供了一定的依据。
Abstract:The Tibetan Tethyan Himalayan Tectonic Belt boasts superior metallogenic geological conditions and stands as a significant Sb-Au enrichment belt in China. To facilitate prospecting breakthroughs for Au,Sb and other associated minerals in southern Xizang, this study focuses on the Zhegu-Xuesha area in the eastern segment of this tectonic belt. Based on large-scale geochemical exploration data, analyses of elemental geochemical parameters and element association characteristics were conducted. The subarea-multi background method was employed to determine the anomaly threshold, and regional prospecting prediction was performed with geochemical anomaly characteristics as the core basis. The results indicate that Au, As, Sb, Pb, Zn, and Ag are the primary ore-forming elements or associated elements in the study area. These elements constitute three independent and partially interrelated metallogenic systems, namely the Au-As metallogenic system, Sb-Ag metallogenic system, and Pb-Zn-Ag polymetallic metallogenic system. The subarea-multi background method effectively enhances the prediction accuracy. Based on the elemental geochemical anomaly characteristics, 4 high prospective areas were delineated in the region, which were further refined into 5 Class A target areas, 3 Class B target areas, and 5 Class C target areas. Additionally, 4 key prospecting targets were selected for in-depth anomaly analysis. The research findings provide a reliable scientific basis for regional mineral prospecting and exploration program planning searching for Sb, Au, and other polymetallic deposits in the study area.
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基金项目:中国地质调查局项目(编号:DD202402069、DD20240206901、DD20240206905、DD20240207011);自然资源部新一轮找矿突破科技支撑项目(编号:ZKKJ202427-03-02、ZKKJ202427-03-04);西藏科技计划项目(编号:XZ202401YD0006-07);国家科技重大专项(编号:2025ZD1006304);甘肃省自然资源厅科技创新项目(编号:202425)联合资助
引用文本:
韩聪,黄勇,张毅明,张晓飞,张方方,范勇刚,夏良智,杨建峰,赵旭婷.2026.西藏哲古-雪莎一带锑金等多元素地球化学特征及靶区优选[J].矿床地质,45(2):436~456
HAN Cong,HUANG Yong,ZHANG YiMing,ZHANG XiaoFei,ZHANG FangFang,FAN YongGang,XIA LiangZhi,YANG JianFeng,ZHAO XuTing.2026.Geochemical characteristics and target generation of antimony-gold and other elements in Zhegu-Xuesha area, Xizang[J].Mineral Deposits45(2):436~456
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