基于红外光谱技术的湘东北黄金洞金矿床蚀变特征研究及勘查指示意义
作者:
作者单位:

作者简介:

通讯作者:

中图分类号:

基金项目:

本文为湖南省地质院科研项目重大项目(编号: HNGSTP202302),湖南省自然科学基金资助项目(编号: 2024JJ8345)及新一轮找矿突破战略行动科技支撑项目(编号: ZKKJ202408)的成果


Short wave infrared ( SWIR) spectral characteristics of alteration minerals and applications for ore exploration in Huangjindong orogenic gold deposit,northeastern Hunan
Author:
Affiliation:

Fund Project:

单位:
  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    位于江南造山带的湘东北地区已发现多个大型金矿床,黄金矿产资源丰富,是我国重要的金成矿带,黄金洞金矿床是该区的代表性金矿床之一,其金矿储量大,品位高。该区金矿床的成矿过程与热液蚀变作用密切相关,常见蚀变矿物包括绢云母、菱铁矿及蒙脱石等。短波红外光谱技术(Short wave infrared, SWIR)作为一种高效的勘查手段,可快速识别蚀变矿物类型及其相对含量,为利用蚀变矿物填图提供关键数据支撑。本研究基于SWIR技术,对黄金洞金矿床202号矿脉的5个钻孔岩芯样品进行高光谱扫描分析,共识别出10余种蚀变矿物,其中绢云母占主导地位。通过分析绢云母的Al—OH“2200”吸收峰位值(简称“POS2200”,变量记为λPOS2200),揭示成矿热液pH值为中到酸性。研究发现,矿区蚀变矿物空间分布规律显著,自西向东呈现以下特点:λPOS2200逐渐增大,指示矿脉热液的酸性增强;绢云母伊利石结晶度(short wave infrared Illite Crystallinity, SWIR- IC, 变量记为DSWIR- IC)逐渐减小,矿脉热液温度逐渐降低,成矿热液沿矿脉由西向东运移。研究建立了基于DSWIR- IC的温度衰减模型,确定了热液中心位置,证实利用DSWIR- IC的温度衰减模型可有效示踪热液运移路径与成矿中心,对找矿勘查具有重要指导意义。本研究为黄金洞金矿床的蚀变特征解析提供了新思路,并为区域找矿实践提供了科学依据。

    Abstract:

    The northeastern Hunan region within the Jiangnan Orogen hosts multiple large gold deposits, constituting a significant gold metallogenic belt in China with abundant gold resources. The Huangjindong Gold Deposit, a representative deposit in this area, features substantial reserves and high- grade mineralization. Gold mineralization in this district is closely associated with hydrothermal alteration, with common alteration minerals including sericite, siderite, and montmorillonite.As an efficient exploration technique, short wave infrared (SWIR) spectroscopy enables rapid identification of alteration mineral assemblages and their relative abundances, providing critical data support for alteration mineral mapping. Methods:Based on short wave infrared spectroscopy (SWIR), this study conducted hyperspectral scanning analyses on core samples from five drill holes in the ore vein of the Huangjindong Gold Deposit. By identifying the spectral characteristics of alteration minerals and analyzing the absorption peak position (POS2200) and crystallinity (IC value) of sericite, the spatial patterns of alteration minerals in the mining area were revealed.Results: More than 10 main alteration minerals were identified, with sericite being the dominant one. The λPOS2200 values of sericite mainly range from 2196 to 2210 nm, and the DSWIR- IC values range from 0.05 to 1.96. The mean λPOS2200 and DSWIR- IC values of sericite in alteration zones from different drill holes show a gradually increasing trend from west to east.Conclusions:Research reveals significant spatial distribution patterns of alteration minerals across drill holes from west to east: The λPOS2200 value of sericite progressively increases, indicating enhanced acidity of vein- forming hydrothermal fluids; concurrently, sericite illite crystallinity (DSWIR- IC) gradually decreases, demonstrating declining fluid temperatures and confirming west- to- east migration of ore- forming fluids along the vein. A temperature attenuation model based on D SWIR- IC was established, pinpointing the hydrothermal center. This validates the model's efficacy in tracing hydrothermal pathways and locating mineralization centers, providing critical guidance for mineral exploration. The study offers novel insights for interpreting alteration signatures at the Huangjindong gold deposit and delivers a scientific foundation for regional prospecting strategies.

    参考文献
    相似文献
    引证文献
引用本文

张创业,周岳强,张云飞,吴俊,张胜伟,梅宵,孙建东,文志林,刘磊.2025.基于红外光谱技术的湘东北黄金洞金矿床蚀变特征研究及勘查指示意义[J].地质论评,71(4):2025040006,[DOI].
ZHANG Chuangye, ZHOU Yueqiang, ZHANG Yunfei, WU Jun, ZHANG Shengwei, MEI Xiao, SUN Jiandong, WEN Zhilin, LIU Lei.2025. Short wave infrared ( SWIR) spectral characteristics of alteration minerals and applications for ore exploration in Huangjindong orogenic gold deposit,northeastern Hunan[J]. Geological Review,71(4):2025040006.

复制
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2025-02-20
  • 最后修改日期:2025-07-05
  • 录用日期:
  • 在线发布日期: 2025-07-19
  • 出版日期: 2025-07-15