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Magnesium-based cements for CO2 capture and utilisation

机译:镁基水泥用于二氧化碳的捕集和利用

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Magnesium from reject desalination brine is reacted at atmospheric pressure and 25-65 degrees C with CO2 from industrial effluent combustion gas, precipitating preferably nesquehonite, MgCO3 center dot 3H(2)O. Nesquehonite can be thermally activated so that, when remixed with water, it is self-cementing. At ambient temperature, cure durations are typically similar to 1-3 days. The nesquehonite-based product contains similar to 32 wt sequestered carbon dioxide and, at end of use, can be recycled without loss of CO2. As an application example, cast nesquehonite products are suitable to form lightweight, incombustible building materials with densities in the range 700-900 kg/m(3). Compressive strengths of the cast products are low, ca 2-4 MPa, thus application is envisaged to be broadly similar to that of gypsum-based products. (C) 2016 Elsevier Ltd. All rights reserved.
机译:废海水淡化盐水中的镁在大气压下和25-65摄氏度下与来自工业废气燃烧气体的CO2反应,沉淀出的最好是锂蒙脱石,MgCO3中心点3H(2)O。钠钙锰矿可以被热活化,因此当与水重新混合时,它是自粘的。在环境温度下,固化时间通常约为1-3天。基于水松石的产品包含约32重量%的隔离二氧化碳,在使用结束时可以回收利用而不会损失CO2。作为一个应用实例,铸造水松石产品适合形成密度在700-900 kg / m(3)范围内的轻质,不可燃建筑材料。铸造产品的抗压强度很低,约为2-4 MPa,因此可以预期其应用与石膏基产品的抗压强度大致相似。 (C)2016 Elsevier Ltd.保留所有权利。

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