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Carbonated MgO concrete with improved performance: The influence of temperature and hydration agent on hydration, carbonation and strength gain

机译:碳酸化MgO混凝土具有改善的性能:温度和水化剂对水合,碳化和强度增益的影响

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Carbonation plays a key role in the strength gain of reactive MgO cement (RMC)-based concrete formulations. Low hydration of MgO limits the subsequent carbonation and associated strength gain. This study improves the mechanical performance of carbonated RMC concrete mixes with the introduction of a hydration agent (HA) and high temperature pre-curing (HTPC). The influence of HA and HTPC on hydration, carbonation and microstructural development was investigated through isothermal calorimetry, TGA, XRD, ATR-FTIR and SEM. Implementation of HA and HTPC increased the rate and degree of hydration. The increased brucite content led to higher carbonation degrees, accompanied by lower water absorption and higher density and strength values. Improvement of the morphology of carbonates resulted in 40% higher strengths than the control mix, reaching 56 MPa at 28 days. These mixes provided equivalent strengths to the 28-day strength of the control mix at 7 days, therefore shortening the curing period by 75%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:碳酸化在反应性MgO水泥(RMC)的混凝土配方的强度增益中起着关键作用。 MgO的低水合限制随后的碳酸化和相关强度增益。该研究通过引入水合剂(HA)和高温预固化(HTPC)来提高碳酸RMC混凝土混合物的机械性能。通过等温热量测定,TGA,XRD,ATR-FTIR和SEM研究了HA和HTPC对水合,碳酸化和微观结构发育的影响。 HA和HTPC的实施增加了水合的速率和程度。增加的Brucite含量导致碳酸化度较高,伴随着较低的吸水性和更高的密度和强度值。改善碳酸盐的形态产生的强度高于对照混合物,在28天达到56MPa。这些混合物在7天内提供了对照混合物的28天强度的等效强度,因此缩短了固化期75%。 (c)2017 Elsevier Ltd.保留所有权利。

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