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Accelerated carbonation of reactive magnesium oxide cement (RMC)-based composite with supercritical carbon dioxide (SCCO_2)

机译:超临界二氧化碳(SCCO_2)促进活性氧化镁水泥(RMC)基复合材料的碳化

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摘要

Reactive magnesium oxide cement (RMC) has the potential to become a sustainable alternative to ordinary Portland cement (OPC). In this study, an approach utilizing supercritical CO2 (scCO(2)) was investigated to accelerate carbonation of an RMC-based composite and to overcome its long carbonation process under the natural environment. It was found that scCO(2) led to an extremely rapid strength gain of the composite, with a mature strength level achievable within a period of hours. CO2 sequestration factors were also increased by three folds as compared to samples cured under a 20% CO2 concentration environment for 28 days. It was also revealed that the carbonation phases under scCO(2) were dominated by nesquehonite followed by hydromagnesite and some other intermediate hydrated magnesium carbonates (HMCs). More uniform carbonation within the matrix was also attained under the scCO(2) condition. Despite the promising outcomes, technical and cost challenges would need to be resolved before a possible scale-up. (C) 2019 Elsevier Ltd. All rights reserved.
机译:活性氧化镁水泥(RMC)有潜力成为普通波特兰水泥(OPC)的可持续替代品。在这项研究中,研究了一种利用超临界CO2(scCO(2))的方法来加速基于RMC的复合材料的碳化,并克服其在自然环境下的长时间碳化过程。发现scCO(2)可以使复合材料的强度迅速提高,并在数小时内达到成熟的强度水平。与在20%CO2浓度环境下固化28天的样品相比,CO2螯合因子也增加了三倍。还揭示了scCO(2)下的碳酸化相主要是水碳酸镁和其他中间水合碳酸镁(HMCs)。在scCO(2)条件下,基质内的碳化也更加均匀。尽管取得了可喜的成果,但仍需要解决技术和成本挑战,然后才能扩大规模。 (C)2019 Elsevier Ltd.保留所有权利。

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