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比瓦比克铁矿层和德卢斯杂岩体的地质情况

Geology of the Biwabik Iron Formation and Duluth Complex.

作者信息

Jirsa Mark A, Miller James D, Morey G B

机构信息

Minnesota Geological Survey, 2642 University Ave., St. Paul, MN 55114, USA.

出版信息

Regul Toxicol Pharmacol. 2008 Oct;52(1 Suppl):S5-S10. doi: 10.1016/j.yrtph.2007.09.009. Epub 2007 Oct 1.

Abstract

The Biwabik Iron Formation is a approximately 1.9 billion year-old sequence of iron-rich sedimentary rocks that was metamorphosed at its eastern-most extent by approximately 1.1 billion year-old intrusions of the Duluth Complex. The metamorphic recrystallization of iron-formation locally produced iron-rich amphiboles and other fibrous iron-silicate minerals. The presence of these minerals in iron-formation along the eastern part of what is known as the Mesabi Iron Range, and their potential liberation by iron mining has raised environmental health concerns. We describe here the geologic setting and mineralogic composition of the Biwabik Iron Formation in and adjacent to the contact metamorphic aureole of the Duluth Complex. The effects of metamorphism are most pronounced within a few kilometers of the contact, and decrease progressively away from it. The contact aureole has been divided into four metamorphic zones-each characterized by the composition and crystal structure of the metamorphic minerals it contains. The recrystallization of iron-formation to iron-rich amphibole minerals (grunerite and cummingtonite) and iron-pyroxene minerals (hedenbergite and ferrohypersthene) is best developed in zones that are most proximal to the Duluth Complex contact.

摘要

比瓦比克含铁建造是一套约19亿年历史的富铁沉积岩序列,在其最东端被约11亿年的德卢斯杂岩体侵入体变质。含铁建造的变质重结晶局部产生了富铁闪石和其他纤维状铁硅酸盐矿物。在所谓的梅萨比铁矿区东部的含铁建造中这些矿物的存在,以及它们通过铁矿开采可能被释放出来,引发了对环境健康的担忧。我们在此描述德卢斯杂岩体接触变质晕内及附近的比瓦比克含铁建造的地质背景和矿物成分。变质作用的影响在接触带几公里范围内最为明显,并随着远离接触带而逐渐减弱。接触晕被划分为四个变质带,每个变质带的特征是其所含变质矿物的成分和晶体结构。含铁建造重结晶为富铁闪石矿物(铁闪石和镁铁闪石)和铁辉石矿物(钙铁辉石和铁紫苏辉石)在最靠近德卢斯杂岩体接触带的地带最为发育。

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