Las mineralizaciones de Pb-Zn-Ba en el Muschelkalk inferior de los Catalánides

X. Font, A. Andreu, F. Calvet, M. Viladevall
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引用次数: 2

Abstract

The Catalan Triassic is divided into the three characteristie facies of the Germanic Triassic: Buntsandstein, Muschelkalk (Loxver, Middle and Upper Muschelkalk) and Keuper. The base fractures condition the Mesozoic sedimentation, whereby the Catalanid are divided into sedimentary domains, which are separated by transversal faults to the mountain range (ANADON et aL, 1979) (fig. 1). The carbonatic facies from the Catalanid Lower Muschelkalk, Anisien Age, corresponds itself with a ramp depositional environment, in which the paleokarstic levels are frequent, the importance of which development, number of Ihe afected paleokarstic surfaces and materials vanes in accordance with the location of the different domains (MARZO et al., 1983). In this context you can find numerous traces of Pb-Zn-Ba stratabound mineralizations (SAGRISTA et al., 1980, and MATA, 1982) associated with paleokarstic surfaces or algal-mats leveIs (fig. 2). me associated karst mineralizations are singenetic with the karstic filling, Anisiense age. Ihe algal-mats, rich in organic matter, present a high level of Pb-Zn-Ba, Uds elements themselves accumulated into the algal facies while this build up. As fon the origin of this deposits a model named supergen singenetic by AMSTUTZ (1962) is proposed, in `which Ihe minerals themselves deposited at selisame time which the sediments and the mineralizants elements are supergen source. The main contribution of the elements comes from the continent lixiviation (strong anomalies in Pb, Zn, Ba, Cu in the Paleozoic Age) (CASAS, 1979 and FONT, 1983).
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catalanides下Muschelkalk的Pb-Zn-Ba矿化
将加泰罗尼亚三叠纪划分为日耳曼三叠纪的三个特征相:Buntsandstein、Muschelkalk (Loxver、中、上Muschelkalk)和Keuper。基底断裂是中生代沉积的条件,将加泰罗尼亚盆地划分为多个沉积域,这些沉积域被与山脉的横向断裂分隔开(ANADON et aL, 1979)(图1)。阿尼期加泰罗尼亚盆地下Muschelkalk的碳酸盐相对应于斜坡沉积环境,古岩溶水平频繁,其发育的重要性。受影响的古地壳表面和物质的数量根据不同区域的位置变化(MARZO et al., 1983)。在这种背景下,你可以发现许多与古岩溶表面或藻垫水平相关的铅锌钡层控矿化痕迹(SAGRISTA等人,1980年和MATA, 1982年)(图2)。与岩溶相关的矿化与岩溶充填、大isiense时代有关。富有机质的藻垫呈现出高水平的铅锌钡元素,而铅锌钡元素本身在此过程中积累到藻相中。对于这种矿床的成因,AMSTUTZ(1962)提出了一种超生成因模型,即矿物本身是在沉积物和成矿元素为超生源的同时沉积的。元素的主要贡献来自大陆剥蚀作用(古生代Pb、Zn、Ba、Cu的强烈异常)(CASAS, 1979, FONT, 1983)。
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