巴基斯坦俾路支省沉积型铅锌矿床成矿作用初探

Asfand yar waliArain, A. S. Mastoi, Asghar Ali Alias Daahar Hakro, Riaz Ahmed Rajper, M. A. Jamali, Gulam Raza Bhatti, Waqar Bhatti
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引用次数: 3

摘要

铅锌矿是世界各国经济发展的重要助推器。三十年来,经济地质学家一直致力于寻找这些促进经济发展的矿物和岩石。铅和锌是巴基斯坦俾路支省拉斯拉-库兹达尔带的丰富资源,全国储量约为5000万吨。在本文中,我们介绍了Dudder矿区的野外观测,并总结了早期论文的工作,以提供这些矿化和矿床的显着特征。在野外观测和前人工作的基础上,讨论了构造背景和重要的控矿作用。more range侏罗系Ferozabad群主要由下-中-上侏罗统碳酸盐岩和深海硅塑性岩层序组成,以出露岩体为主。该组含同生和表生铅锌矿化,属层状置换,在Duddar、Gunga和Surmai矿区多处可见脉状裂隙充填。一般来说,这些矿床是在黑色页岩、泥质灰岩和泥岩中赋存的黄铁矿块体,具有细粒闪锌矿基质和方铅矿。建立了以矿化为主、矿岩为辅的铅锌矿预测构造模型。安吉拉组在扰动的三级盆地中开始沉积时,构造活动较为活跃。热液沿断裂进入盆地,在安吉拉组和下伏的Spingwar组、Loralai组形成了同生的硫化物成矿作用。根据铅锌矿床的展布,认为该矿床属于SEDEX型矿床,认为多期、多旋回的造山环境对铅锌矿床的发育最为有利。在此基础上,分析了构造演化、地质成矿作用与铅锌成矿时代的关系。构造和成矿机制模型的建立将有助于详细研究费罗扎巴德群成矿地质地球化学条件和资源经济评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A PRELIMINARY REVIEW ON THE METALLOGENY OF SEDIMENT-HOSTED PB-ZN DEPOSITS IN BALOCHISTAN, PAKISTAN
Lead and Zinc deposits are very much important economic booster for the country all over the world. Economic geologists are engaged in the search of these economy booster minerals and rocks for three decades. Lead and zinc are profuse resources in the Lasbela-Khuzdar belt of Balochistan province of Pakistan, with reserves of about 50 million tons all over the country. In this paper, we have presented field observations of the Dudder mine area and summarised the work of earlier papers to provide the salient features of these ore mineralizations and deposits. The tectonic settings and important ore controls have been discussed based on field observations and previous work. The Pb-Zn dominantly occupied by exposures of rocks of the Ferozabad Group of Jurassic age in the Mor range, which is comprised of Lower-Middle-Upper Jurassic carbonates and deep-marine siliciclastics rock sequence. This group contains syngenetic and epigenetic Pb-Zn mineralization classified as a stratiform replacement, and vein-type fissure fillings observed at various places of Duddar, Gunga, and Surmai deposit areas. Generally, these deposits are hosted pyrites nuggets with fine-grained sphalerite matrix with galena in black shale, argillaceous limestone, and mudstone. We construct a Pb-Zn deposit predictive tectonic model that regards mineralization as the primary factor and the ore rock as secondary. The tectonics were more active when sedimentation of the Anjira Formation started in a disturbing third-order basin. The Hydrothermal solution comes into the basin along faults and gave rise to syngenetic mineralization of sulfides in the Anjira Formation, and epigenetic one in the underlying Spingwar and Loralai Formations. These deposits are considered as SEDEX deposits according to the distribution of Pb-Zn deposits, we concluded that a multi-period, multi-cycle orogenic environment is the most positive for lead-zinc deposit growth. With this, we analyze the association between tectonic evolution, geological mineralization, and Pb-Zn metallogenic epoch. The tectonic and mineralization mechanism models are expected to ease the detailed study on the geological and geochemical conditions of mineralization in the Ferozabad Group and economic assessment of the resources.
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