Spatial Overlay Analysis of Geochemical Singularity Index α-Value of Porphyry Cu Deposit in Gangdese Metallogenic Belt, Tibet, Western China

IF 2.5 4区 综合性期刊 Q2 CHEMISTRY, MULTIDISCIPLINARY
Shunli Zheng, Xiaojia Jiang, Shunbao Gao
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Abstract

The statistical modeling with ILR-RPCA-back CLR has two problems when dealing with the closure effect of geochemical data. Firstly, after performing isometric logratio (ilr) transformation, robust principal component analysis (RPCA) is employed for processing. The double-plot diagram illustrates that the element sequence transformation occurs in the first and second principal components, while the unique principal component remains unattainable. Secondly, by transforming both the score and load into the centered logratio (CLR) space using the U matrix, it is possible to obtain a score result that corresponds to the original order of elements according to the CLR = ILR·U formula. However, for obtaining a load result that corresponds to the original order of elements, an alternative formula “CLR = UT·ILR” must be used instead. In order to determine the optimal element assemblage for porphyry copper deposits, this study conducted statistical analysis on mineral assemblages from discovered deposits in the Gangdese metallogenic belt and identified Cu, Mo, Au, Ag, W, and Bi as key elements associated with porphyry copper deposits. Subsequently, by analyzing the singularities of the composite elements, the spatial overlay of the combined element is carried out, and concentration-area (C-A) fractal filtering is applied to identify the anomaly and background areas. To facilitate comparison, we conducted an analysis of various mineral and ore deposit types, revealing the following findings: (1) Combination elements exhibit superior recognition capability than single elements in porphyry copper deposits; (2) Skarn-type copper deposits unrelated to porphyry show a high degree of dissimilarity compared to those related to porphyry; (3) this method offers advantages over the single element method in evaluating porphyry gold deposits by reducing anomaly levels and initial investment during the evaluation stage for porphyry copper anomalies; (4) However, this method has limited ability in distinguishing between porphyry copper and molybdenum deposits.
西藏冈底斯成矿带斑岩型铜矿地球化学奇异指数α值的空间叠加分析
利用ILR-RPCA-back CLR进行统计建模,在处理地球化学数据闭合效应时存在两个问题。首先,在进行等距loratio (ilr)变换后,采用鲁棒主成分分析(RPCA)进行处理。双图说明了元素序列转换发生在第一主成分和第二主成分中,而唯一的主成分仍然无法获得。其次,利用U矩阵将分数和载荷都转换到中心logratio (CLR)空间中,根据CLR = ILR·U公式,可以得到与元素的原始顺序相对应的分数结果。然而,为了获得与元素的原始顺序相对应的加载结果,必须使用替代公式“CLR = UT·ILR”。为确定斑岩型铜矿床的最佳元素组合,对冈底斯成矿带已发现矿床的矿物组合进行了统计分析,确定了Cu、Mo、Au、Ag、W、Bi是斑岩型铜矿床的关键伴生元素。随后,通过分析复合元素的奇异性,对复合元素进行空间叠加,并采用浓度-面积分形滤波识别异常区和背景区。为了便于对比,我们对各种矿物和矿床类型进行了分析,发现:(1)斑岩铜矿组合元素的识别能力优于单一元素;(2)与斑岩无关的矽卡岩型铜矿与与斑岩有关的铜矿具有高度的差异性;(3)该方法在斑岩型铜矿异常评价阶段降低了异常水平和初始投资,在斑岩型金矿评价中优于单元素法;(4)但该方法对斑岩型铜矿床和钼矿床的鉴别能力有限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Sciences-Basel
Applied Sciences-Basel CHEMISTRY, MULTIDISCIPLINARYMATERIALS SCIE-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
5.30
自引率
11.10%
发文量
10882
期刊介绍: Applied Sciences (ISSN 2076-3417) provides an advanced forum on all aspects of applied natural sciences. It publishes reviews, research papers and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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