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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Early weathering of palladium gold under lateritic conditions, Maquine Mine, Minas Gerais: Brazil
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Early weathering of palladium gold under lateritic conditions, Maquine Mine, Minas Gerais: Brazil

机译:米纳斯吉拉斯州马奎恩矿山,红土条件下钯金的早期风化:巴西

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Since the 80's, studies have shown that Au is mobile in supergene lateritic surficial conditions. They are based either on petrological, thermodynamic studies, or experimental works. In contrast, few studies have been done on the mobility of the Pt group elements (PGE). Moreover, at the present time, no study has addressed the differential mobility of Au, Ag and Pd from natural alloys in the supergene environment. The aim of this study is to understand the supergene behavior, in lateritic conditions, of Au-Ag-Pd alloys of the Au ore locally called Jacutinga at the Maquine Mine, Iron Quadrangle, Minas Gerais state, Brazil. The field work shows that the host rock is a "Lake Superior type" banded iron formation (BIF) and that the Au mineralization originates from sulfide-barren hydrothermal processes. Primary Ag-Pd-bearing Au has developed as xenomorphous particles between hematite and quartz grains. The petrological study indicates that the most weathered primary Au particles with rounded shapes and pitted surfaces were found, under the duricrust, within the upper friable saprolite. This layer, however is not the most weathered part of the lateritic mantle, but it is where the quartz dissolution resulting porosity is the most developed. The distribution of Au contents in the weathered rocks are controlled by the initial hydrothermal primary pattern. No physical dispersion has been found. Most of the particles are residual and very weal;ly weathered. This characterizes early stages of Au particle weathering in agreement with the relatively low weathering gradient of the host itabiritic formations that leads essentially to the development of isostructural saprolite lateritic mantle. Limited dissolution of primary Au particles issued from the friable saprolite induces Pd-Ag depleted rims compared to primary Au particle Pd-Ag contents. In addition, limited very short distance in situ dissolution / reprecipitation processes have been found at depth within the primary mineralization, as illustrated by tiny supergene, almost pure, Au particles. The supergene mobility order Pd > Ag > Au as reflecting early weathering stages of Au-Ag-Pd alloys under lateritic conditions is proposed. (C) 1999 Published by Elsevier Science Ltd. All rights reserved. [References: 63]
机译:自80年代以来,研究表明Au在超基因红土表层条件下是可移动的。它们基于岩石学,热力学研究或实验工作。相反,关于铂族元素(PGE)迁移率的研究很少。而且,目前,还没有研究涉及天然金属在超基因环境中的Au,Ag和Pd的差异迁移率。这项研究的目的是了解在红土条件下,在巴西米纳斯吉拉斯州马四角铁矿的马奎内矿区的一种名为Jacutinga的金矿石的Au-Ag-Pd合金的超基因行为。现场工作表明,基质岩为“优级湖”带状铁层(BIF),金矿化源自硫化物贫瘠的热液过程。含Ag-Pd的原生Au已发展为赤铁矿和石英晶粒之间的异形颗粒。岩石学研究表明,在上部易碎的腐泥土中的榴ric下发现了风化度最高的具有圆形和凹坑表面的原生金颗粒。然而,该层不是红土幔中风化程度最高的部分,但它是石英溶解导致孔隙度最发达的地方。风化岩石中金含量的分布受初始热液初生模式控制。尚未发现物理分散。大多数颗粒是残留的,非常富裕;风化的。这表征了金颗粒风化的早期阶段,与主体易生层的相对低的风化梯度相一致,这基本上导致了同结构腐泥土红土幔的发展。与主要金颗粒中Pd-Ag的含量相比,由脆性腐泥土发出的主要Au颗粒的有限溶解会诱导Pd-Ag耗尽。此外,在初级矿化的深处发现了非常短距离的原位溶解/再沉淀过程,如微小的超基因,近乎纯净的Au颗粒所示。提出了反映红土条件下Au-Ag-Pd合金早期风化阶段的超基因迁移率顺序Pd> Ag> Au。 (C)1999由Elsevier Science Ltd.出版。保留所有权利。 [参考:63]

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