首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Exploratory data analysis and C-A fractal model applied in mapping multi-element soil anomalies for drilling: A case study from the Sari Gunay epithermal gold deposit, NW Iran
【24h】

Exploratory data analysis and C-A fractal model applied in mapping multi-element soil anomalies for drilling: A case study from the Sari Gunay epithermal gold deposit, NW Iran

机译:探索性数据分析和C-A分形模型在测绘多元素土壤异常中的应用:以伊朗西北部Sari Gunay超热金矿床为例

获取原文
获取原文并翻译 | 示例
       

摘要

This contribution investigates potential best practice in statistical treatment of exploration geochemistry data for drill target definition, using data from the Sari Gunay epithermal gold deposit, northwest Iran. Primarily, a robust factor analysis was applied to the soil geochemical data to identify anomalies related to outcropping and weak surface expression of hidden gold mineralizations. Investigation of outcropping mineralization indicates that the invisible gold mostly occurs in arsenian pyrite, accompanied by antimony and mercury sulfides. Therefore, a favorable principal factor with strong association of Au, As, Sb, Hg, Tl and S elements, related to epithermal mineralization, was selected for analysis. Then, the boxplot and median + 2MAD (median absolute deviation) techniques of the exploratory data analysis (EDA) and also concentration-area (C-A) fractal model were applied to the favorable factor loading to set the threshold values for defining multi-element soil geochemical anomalies for drilling. The median + 2MAD and C-A fractal models successfully identified the known outcropping gold mineralization at the Sari Gunay and Agh Dagh hills. In contrast, the boxplot method only identified the strong outcropping gold mineralization at the Sari Gunay hill, but failedto map the weaker mineralization at the Agh Dagh hill due to the usage of higher threshold values. In addition, the C-A fractal analysis identified a few second-class, weaker multi-element soil anomalies, mostly related to subsurface gold mineralization. The identified soil geochemical anomalies were compared with the in situ economic gold concentration in channel rock samples, mostly below the soil cover, and the outcropping host lithologies for validation. The results indicated the EDA approaches failed to map weak surface expression of gold mineralization and only mapped strong geochemical anomalies, useful only for reconnaissance drilling stages. The C-A fractal analysis is capable of mapping multi-class geochemical anomalies, some of which were associated with the weak surface expression of hidden gold mineralization, and is therefore useful in defining targets at both the reconnaissance and systematic drilling stages. The identified geochemical anomalies by C-A fractal analysis were also useful to characterize the favorable lithologies (e.g. quartz-tourmaline breccias, intrusive fragmental rocks including diatreme and dacite/ trachyte porphyry) and hydrothermal alterations (e.g. quartz-sericite, K-feldspar and silicification) hosting gold mineralization at Sari Gunay.
机译:该贡献使用来自伊朗西北部Sari Gunay超热金矿床的数据,研究了对勘探地球化学数据进行统计学处理以确定钻探目标的潜在最佳实践。首先,将稳健因素分析应用于土壤地球化学数据,以识别与露头和隐性金矿化的弱表面表达有关的异常。露头矿化研究表明,看不见的金主要存在于砷黄铁矿中,并伴有锑和硫化汞。因此,选择了与超热矿化有关的,具有金,砷,锑,汞,汞和锡元素强相关性的有利主因子进行分析。然后,将探索性数据分析(EDA)的箱线图和中位数+ 2MAD(中值绝对偏差)技术以及浓度区域(CA)分形模型应用于有利因子加载,以设置用于定义多元素土壤的阈值钻探的地球化学异常。中值+ 2MAD和C-A分形模型成功地确定了Sari Gunay和Agh Dagh山丘上已知的露头金矿化。相比之下,箱线图法仅能识别出Sari Gunay山地强烈露头的金矿化作用,但由于使用了较高的阈值而未能绘制出Agh Dagh山地较弱的矿化作用。此外,C-A分形分析还发现了一些二等的,较弱的多元素土壤异常,主要与地下金矿化有关。将识别出的土壤地球化学异常与河道岩石样品中的原位经济金浓度(主要在土壤覆盖层以下)和露头基质岩性进行比较,以进行验证。结果表明,EDA方法无法绘制出金矿化的弱表面表达,而只能绘制出强烈的地球化学异常,仅适用于侦察钻探阶段。 C-A分形分析能够绘制多类地球化学异常图,其中一些与隐伏金矿化的弱表面表达有关,因此可用于在侦察和系统钻探阶段定义目标。通过CA分形分析确定的地球化学异常也可用于表征有利的岩性(例如石英-电气石角砾岩,侵入性碎裂岩石,包括硅藻土和钠长辉石/曲奇岩斑岩)和热液蚀变(例如石英绢云母,钾长石和硅化作用) Sari Gunay的金矿化。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号