首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Composite soil-geochemical halos delineating carbonate-hosted zinc-lead-barium mineralization in the Irankuh district, Isfahan, west-central Iran
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Composite soil-geochemical halos delineating carbonate-hosted zinc-lead-barium mineralization in the Irankuh district, Isfahan, west-central Iran

机译:复合土壤地球化学晕圈描述了伊朗中西部伊斯法罕的Irankuh地区碳酸盐岩中铅锌钡的矿化作用

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The Irankuh district inwest-central Iran hosts several largely unexposed Lower Cretaceous carbonate-hosted Zn-Pb deposits whose host rocks are overlain by soil cover. This paper documents a detailed soil-geochemical exploration program, comprising 804 residual soil samples that were treated with a microwave acid digestion and analyzed by ICP-MS for a multi-element package. The soils overlying the Zn-Pb-Ba veins and mineralized zones have geochemical contrast and element enrichments that are more than two to twenty-one times greater than the non-mineralized background soil values. The most diagnostic elements are Zn, Pb, Ag, Ba, Hg and Sb which show multi-point anomalies across the entire mineralized zone with concentration ranges of 28210,000 ppm Zn, 73-10,000 ppm Pb, 22-71.9 ppm Ag, 1500-3400 ppm Ba, 0.89-36 ppm Hg and 11-164 ppm Sb, respectively. The newly proposed composite geochemical halos defined by Ag*Cd/Pb*Zn, Ag*As/Pb*Zn, Ca*Mg/Pb*Zn, Sb*As/Pb*Zn, Hg*Sb/Pb*Zn, Sb*Ba/Pb*Zn, Ba*Ca/Pb*Zn and Ag*As* Sb/Pb*Zn*Bi correlate well with the anomalous patterns of the individual elements. The anomalies are coincident with the main faults and fractures, in particular Gushfil and Rumarmar faults of the area. On the basis of the low contents of Cu and Fe and the variodiagram of log (Pb + Zn) versus Pb/Pb + Zn, the composition of the samples suggests epigenetic stratabound Zn-Pb-Ba mineralization of the Mississippi-Valley-Type (MVT). The mode of occurrences of the anomalies is likely controlled by structural replacement in sphalerite, galena, carbonates and barite or adsorption by iron-manganese oxides and clay minerals. Follow-up sampling of gossans in highly faulted-fractured zones may indicate more concealed Zn-Pb mineralization. (C) 2015 Elsevier B.V. All rights reserved.
机译:伊朗中西部的Irankuh区拥有几处未曝光的下白垩统碳酸盐岩沉积的Zn-Pb矿床,其主岩被土壤覆盖物覆盖。本文记录了一个详细的土壤地球化学勘探计划,包括804个残留土壤样品,这些样品经过微波酸消解处理并通过ICP-MS分析,用于多元素包装。覆盖Zn-Pb-Ba脉和矿化带的土壤具有比非矿化本底土壤值大2至21倍的地球化学对比和元素富集。最具诊断性的元素是Zn,Pb,Ag,Ba,Hg和Sb,它们在整个矿化区显示出多点异常,浓度范围为28210,000 ppm Zn,73-10,000 ppm Pb,22-71.9 ppm Ag,1500 -3400 ppm Ba,0.89-36 ppm Hg和11-164 ppm Sb。由Ag * Cd / Pb * Zn,Ag * As / Pb * Zn,Ca * Mg / Pb * Zn,Sb * As / Pb * Zn,Hg * Sb / Pb * Zn,Sb *定义的新提出的复合地球化学晕Ba / Pb * Zn,Ba * Ca / Pb * Zn和Ag * As * Sb / Pb * Zn * Bi与单个元素的异常模式密切相关。异常与主要断层和裂缝一致,特别是该地区的古什菲尔和鲁马尔马尔断层。基于低含量的铜和铁以及对数(Pb + Zn)与Pb / Pb + Zn的对数示重图,样品的组成表明密西西比河谷型的表观成因地层结合的Zn-Pb-Ba矿化( MVT)。异常的发生方式很可能是由闪锌矿,方铅矿,碳酸盐和重晶石中的结构置换或铁锰氧化物和粘土矿物的吸附所控制。在高度断裂的断裂带中对戈桑进行的后续采样可能表明更多的隐蔽的Zn-Pb矿化。 (C)2015 Elsevier B.V.保留所有权利。

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