伊朗东北部地球化学高潜力区分形建模与对应分析勘查相结合

Seyed Aliakbar Hosseini , Nasser Keshavarz Faraj Khah , Pooria Kianoush , Peyman Afzal , Arash Ebrahimabadi , Reza Shirinabadi
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引用次数: 2

摘要

采矿勘探中的大多数地球化学和地质统计学分析都需要去除区域趋势,以获得局部异常。本文基于富集区(C-A)分形模型和对应分析方法,对伊朗东北部Khusf地区的河流沉积物样品进行了研究,以寻找高潜力区元素。对170个样品通过每个样品中的20个元素浓度值进行对应分析。根据对应分析,在研究区的一种或几种元素中,分离出局部异常,其中最高浓度与变量Pb、As和Cd元素有关。经过对应分析,研究了Khusf地区的最佳变差函数。然后,通过使用克里格法估算值,生成元素浓度图。因此,利用分形方法,在三组元素之间进行统计,得出第三组元素显示Pb、As和Cd元素的异常,局部异常值分别为55、7.2和0.88ppm,该地区还发现了Cd异常,这是一个有前景的元素区。最后,提出该区域存在基本金属赋存的可能性,并建议在局部识别尺度上进行进一步的地球物理操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of fractal modeling and correspondence analysis reconnaissance for geochemically high-potential promising areas, NE Iran

Most geochemical and geostatistical analysis in mining exploration requires removing regional trends in order to obtain local anomalies. In this paper, stream sediment samples, which collected from Khusf area (NE Iran), was studied based on Concentration-Area (C-A) fractal model as well as correspondence analysis methods to find high-potential areas elements. Correspondence analysis with 170 samples through 20 elements concentration values in each sample was performed. According to correspondence analysis, among one or several elements in the study area, local anomalies were separated which the highest concentration relates to the variables Pb, As, and Cd elements. After the correspondence analysis, the best variogram for the Khusf area was studied. Elemental concentration maps was then produced through estimating the values using kriging method. Therefore, using the fractal method, between three statistical sets of elements, it was concluded that the third set showed the anomaly for Pb, As, and Cd elements with local anomaly values respectively determined as 55, 7.2, and 0.88 ppm. Although Cd element is not genetically related to same source of Pb and As, utilizing integrated approach, Cd anomalies has also been detected in the area as a promising element zone. Finally, it is suggested that this region has the possibility of Basic Metals occurrence and suggests further geophysical operations on a local identification scale.

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