伊朗Siojan探区水系沉积物样品中元素的地球化学关系

A. Shirazi, Adel Shirazy, Seyed Omid Hosseini, A. Hezarkhani, A. B. Pour
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引用次数: 0

摘要

在矿产勘查研究中,水系沉积物样品对确定金属和非金属成矿潜力区起着重要作用。地球化学元素的相互关系反映了元素在该地区的分布情况。此外,通过识别相关元素,采样和有针对性的化学分析可以用于下一阶段的勘探。本研究的目的是研究与铜元素相关的元素在Siojan找矿区,该地区位于南呼罗珊省,位于伊朗Birjand市西北30公里处。在Siojan地区,采集了60平方公里范围内120个水系沉积物样品进行地球化学异常检测,并利用电感耦合等离子体质谱(ICP-MS)对45种元素进行了分析。初步地质研究表明,研究区具有铜成矿潜力,因此选择铜作为研究目标元素。在该区进行了微量铜元素的鉴定,并利用该结果对铜矿化异常进行了识别。对元素分析数据,采用主成分分析(PCA)、因子分析(FA)、层次聚类分析(HCA)和k均值聚类方法识别相关元素及其相互关系。对该区地球化学元素浓度的统计分析表明,铜和钴元素在地球化学遗传学上属于同一科。分析样品中铜和钴元素的平均值分别为27.2 ppm和15.5 ppm。最后,使用K-Means聚类算法将铜和钴元素之间的关系建模为方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geochemical relations among elements in stream sediment samples from Siojan Prospecting Area, Iran using geostatistical methods
Stream sediment samples play an important role in identifying potential areas of metallic and non-metallic mineralization in mineral exploration studies. The relationship of geochemical elements with each other shows how the elements are distributed in the area. Also, by identifying related elements, sampling and targeted chemical analysis can be used in the next stages of exploration. The purpose of this study is to investigate the elements related to the copper element in the Siojan prospecting area, which is located in South-Khorasan province and 30 km northwest of Birjand city of Iran. In Siojan area, 120 stream sediment samples of a 60 square kilometer area were collected to detect geochemical anomalies and were consequently analyzed by Inductively Coupled Plasma Mass Spectrometry (ICP-MS) for 45 elements. Preliminary geological studies showed that the studied area has copper mineralization potential, and therefore, copper was selected as the target element in this study. Copper trace elements were identified in the area and the results were used to identify copper mineralized anomalies. For the elemental analysis data, methods of Principal Component Analysis (PCA), Factor Analysis (FA), Hierarchical Cluster Analysis (HCA) and K-Means Clustering were performed to identify the relevant elements and relationships among them. Statistical analysis of the concentration of geochemical elements in the region revealed that copper and cobalt elements were identified as two elements of the same family in terms of geochemical genetics. The average value for copper and cobalt elements in the analyzed samples was 27.2 ppm and 15.5 ppm, respectively. Finally, the relationship between copper and cobalt elements was modeled as an equation using the K-Means Clustering algorithm.
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