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葡萄状和球粒状赤铁矿作为燃烧煤矸石堆以及火星上可能存在的高酸性条件的实验证据。

Botryoidal and spherulitic hematite as experimental evidence of highly acidic conditions in burning coal-waste dumps and potentially on Mars.

作者信息

Ciesielczuk Justyna, Fabiańska Monika J, Gaidzik Krzysztof, Nádudvari Ádám, Misz-Kennan Magdalena, Abramowicz Anna

机构信息

Institute of Earth Sciences, Faculty of Natural Sciences, University of Silesia in Katowice, Będzińska 60, 41-200 Sosnowiec, Poland.

Institute of Earth Sciences, Faculty of Natural Sciences, University of Silesia in Katowice, Będzińska 60, 41-200 Sosnowiec, Poland.

出版信息

Sci Total Environ. 2024 Jul 1;932:172759. doi: 10.1016/j.scitotenv.2024.172759. Epub 2024 Apr 24.

DOI:10.1016/j.scitotenv.2024.172759
PMID:38670352
Abstract

In the extreme setting of burning coal-waste dumps in the Upper Silesian Coal Basin in Poland, botryoidal and spherulitic hematite occurs in association with sulphates and chlorides. A series of simple experiments aimed at replicating the conditions leading to the formation of hematite spherules on the burning dumps are described. Goethite synthesised in the laboratory, mixed with various combinations of other reactants, was heated in a heating chamber or a tubular furnace. Temperature, duration of heating, water and oxygen access, and pH were experimental variables. The results show that hematite may form spherules from goethite where access to oxygen is limited and where conditions are strongly acidic. The spherulitic shape of hematite produced due to dynamically changing physicochemical conditions in the burning dumps can be an indicator of an extremely acidic environment during the closing stages of coal-waste self-heating. The conditions of hematitic-spherule formation on burning coal-waste dumps may apply in a variety of other unrelated settings, e.g., waning volcanism, sulphuric acid speleologenesis and even the formation of blueberries on Mars.

摘要

在波兰上西里西亚煤盆地燃烧煤矸石堆的极端环境中,葡萄状和球粒状赤铁矿与硫酸盐和氯化物共生。本文描述了一系列旨在重现导致燃烧煤矸石堆上赤铁矿球粒形成条件的简单实验。在实验室合成的针铁矿与其他反应物的各种组合混合后,在加热室或管式炉中加热。温度、加热持续时间、水和氧气的通入以及pH值是实验变量。结果表明,在氧气供应受限且条件呈强酸性的情况下,赤铁矿可能由针铁矿形成球粒。由于燃烧煤矸石堆中物理化学条件动态变化而产生的赤铁矿球粒形状,可能是煤矸石自热末期极端酸性环境的一个指标。燃烧煤矸石堆上赤铁矿球粒形成的条件可能适用于各种其他不相关的环境,例如火山活动减弱、硫酸洞穴形成,甚至火星上蓝莓的形成。

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