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首页> 外文期刊>Minerals >Biotic–Abiotic Influences on Modern Ca–Si-Rich Hydrothermal Spring Mounds of the Pastos Grandes Volcanic Caldera (Bolivia)
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Biotic–Abiotic Influences on Modern Ca–Si-Rich Hydrothermal Spring Mounds of the Pastos Grandes Volcanic Caldera (Bolivia)

机译:生物非生物因素对巴斯德格兰德火山破火山口(玻利维亚)现代Ca-Si-Rich热液泉丘的影响

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摘要

The lacustrine-to-palustrine Pastos Grandes Laguna (Bolivia) is located in a volcanic caldera fed by active hot springs, with a carbonate crust extending over 40 km 2 . An integrated approach based on geology and hydrochemistry was used to characterize La Salsa, one of its hydrothermal systems, composed of a flat mound with a hydrothermal discharge. The mound is composed of carbonate–diatom aggregates, forming muds that accumulate and undergo slight swelling. The discharge area along the hydrothermal pathway exhibits several facies and microfabrics, with considerable biological activity and microbialite development. Both the downstream evolution of carbonate and silica content in sediments and the distribution of microbialites can be linked to changes in biotic-abiotic processes occurring along the pathway. The spatial distribution of microbialites and their morphologies are related to hydrodynamic conditions, the nature of the substrate on which they grow and, to a lesser extent, to the accommodation space available. The evolution of the physicochemical properties of the water and biological activity mainly impact mineral precipitation but also affect microbialite morphologies and microstructures. This atypical Si- and Ca-rich hydrothermal system therefore provides insights into the diversity of environmental, chemical, and biotic factors controlling mineralization, which also responds to independent thermodynamic controls.
机译:从湖到谷的Pastos Grandes拉古纳(玻利维亚)坐落在火山口中,由活跃的温泉给水,碳酸盐结壳延伸超过40 km 2。拉萨尔萨(La Salsa)是其热液系统之一,它由基于地质学和水化学的综合方法来表征,该系统由带有热液排放的扁平丘组成。土墩由碳酸盐-硅藻聚集物组成,形成积聚的泥浆并略有膨胀。沿热液通道的排放区表现出几个相和微织物,具有相当大的生物活性和微辉石发育。沉积物中碳酸盐和二氧化硅含量的下游演变以及微辉石的分布都可能与沿该路径发生的生物-非生物过程的变化有关。微斜沸石的空间分布及其形态与流体动力学条件,它们在其上生长的基质的性质以及在较小程度上与可用的容纳空间有关。水的理化性质和生物活性的演变主要影响矿物沉淀,但也影响微辉石的形态和微观结构。因此,这种非典型的富含Si和Ca的热液系统提供了对控制矿化的环境,化学和生物因素的多样性的了解,这也对独立的热力学控制做出了响应。

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