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首页> 外文期刊>Hydrometallurgy >Extraction of magnesium from four Finnish magnesium silicate rocks for CO2 mineralisation - Part 1: Thermal solid/solid extraction
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Extraction of magnesium from four Finnish magnesium silicate rocks for CO2 mineralisation - Part 1: Thermal solid/solid extraction

机译:从四个芬兰硅酸镁镁岩石中提取镁用于CO2矿化-第1部分:固体固相热萃取

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The only option for carbon capture and storage (CCS) in Finland is mineral carbonation, which has been extensively researched at angstrom bo Akademi University (angstrom A). Finding suitable minerals for mineral carbonation in different regions of Finland will keep transportation of either CO2 or the actual mineral at a lowest possible level. Four different rocks from different regions in Finland have been compared with respect to composition" and possibility to extract magnesium. This paper presents experiments applying thermal solid/solid extraction. It was found that a mixture of ammonium sulphate (AS) and ammonium bisulphate (ABS) could extract a significant part of magnesium compared to tests using only AS or ABS. Serpentinite rock is also the best option for magnesium extraction while diopside and magnesiohornblende are much less reactive. Continuous mixing during the experiment in a rotary tube and adding some water to the solid/solid mixture gives better extraction results. The binding capacities of CO2 in the serpetinites with respect to the magnesium extractions achieved in this study are 240 kg CO2/ton rock (Serp-A) and 207 kg CO2/ton rock (Serp-B). (C) 2016 Elsevier B.V. All rights reserved.
机译:在芬兰,碳捕集与封存(CCS)的唯一选择是矿物碳酸化,这已在埃博斯特罗姆·阿卡德米德大学(Angstrom A)进行了广泛研究。在芬兰的不同地区寻找适合矿物碳酸化的矿物,可使二氧化碳或实际矿物的运输保持在最低水平。比较了芬兰不同地区的四种不同岩石的成分”和提取镁的可能性。本文介绍了采用热固/固热萃取的实验。发现硫酸铵(AS)和硫酸氢铵(ABS)的混合物)与仅使用AS或ABS的测试相比,蛇纹石岩是提取镁的最佳选择,而透辉石和镁尖晶石的反应性要低得多。在实验过程中,在旋转管中连续混合并向其中添加一些水固/固混合物能提供更好的提取效果,在这项研究中,蛇纹岩中的CO2与镁提取物的结合能力为240 kg CO2 /吨岩石(Serp-A)和207 kg CO2 /吨岩石(Serp-A)。 B)(C)2016 Elsevier BV保留所有权利。

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