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A method to enhance the CO2 storage capacity of pyroxenitic rocks

机译:一种提高辉石岩CO 2储存能力的方法

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Investigation of new efficient pathways for CO2 sequestration is of great significance for the mitigation of climate change. Ultramafic rocks are considered among the most promising lithotypes for the safe storage of CO2 via mineral carbonation. This paper investigates a powerful method for the optimization of the ex situ carbonation of pyroxenitic rocks, which comprise part of ultramafic lithologies occurring in ophiolite complexes. The ball milling process was applied to a sample of pyroxenite from the Troodos ophiolite (Cyprus) for the first time, in order to create novel nanomaterials with enhanced CO2 storage capacity. The goal was to accelerate the kinetics of rock-fluid reactions during the carbonation process. The starting rock material and the ball-milled samples were characterized using a variety of methodologies. The experimental results imply that only a few hours of wet ball milling with ethanol as process control agent can substantially increase the CO2 storage capacity of pyroxenites. Through temperature-programmed desorption of CO2 (CO2-TPD) experiments, we show that the optimum milling conditions are 4 h of ball milling with 50 wt% ethanol, leading to an increase of the CO2 uptake of the studied rock material by 41 times. This notable increase designates that pyroxenites are very promising lithologies for CO2 storage via ex situ carbonation, and that ball milling can be an effective preparation technique for this process, providing an efficient and secure carbon storage solution.(c) 2015 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:研究新的有效封存二氧化碳的途径对缓解气候变化具有重要意义。超镁铁质岩石被认为是最有前途的岩石类型,可通过矿物碳酸化来安全储存二氧化碳。本文研究了一种强大的方法,可以优化焦黄铁矿岩的非原位碳酸化,焦碳岩包括蛇绿岩配合物中的超镁铁岩性。球磨工艺首次应用于Troodos蛇绿岩(塞浦路斯)的辉石矿样品,目的是创建具有增强的CO2储存能力的新型纳米材料。目的是在碳化过程中加快岩石-流体反应的动力学。使用多种方法对起始岩石材料和球磨样品进行表征。实验结果表明,仅用乙醇作为工艺控制剂的湿球磨几个小时就可以大大增加辉石的CO2储存能力。通过程序升温编程的CO2解吸(CO2-TPD)实验,我们表明最佳研磨条件是用50 wt%乙醇进行球磨4小时,从而使所研究岩石材料的CO2吸收增加41倍。这一显着增加表明,辉石矿是非常适合通过异位碳化存储CO2的岩性,并且球磨可以是该工艺的有效制备技术,从而提供有效且安全的碳存储解决方案。(c)2015年化学工业协会和约翰·威利父子有限公司

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