Photong Chaiwat, Pragot Wanawan
School of Energy and Environment, University of Phayao, 19, Mae Ka, Mueang Phayao District, Phayao56000, Thailand.
ACS Omega. 2022 Oct 3;7(41):36318-36329. doi: 10.1021/acsomega.2c03977. eCollection 2022 Oct 18.
This study explored the application of mineral carbonation products in the form of monohydrocalcite (MHC) as a Portland cement additive. This work studied the effect of adding monohydrocalcite on the microstructural change in cement hydration. We investigated the hydration and microstructure development of MHC-cement at different aging times and different MHC mass % values. Chemical composition changes over time were investigated using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The hydration behaviors of MHC blended with cement were monitored using thermogravimetric analysis and differential thermal analysis (TGA-DTA). The results indicated that the role of MHC in the hydrated cement was enhancing the cement hydration process with may increase the long term strength gain. We also discovered the effect of MHC in term of the long-term chemical reaction and forming the new phase formation of tilleyite in the hydrated MHC cement at long curing ages that was not present in the ordinary Portland cement (OPC) system.
本研究探索了以单水方解石(MHC)形式存在的矿物碳酸化产物作为波特兰水泥添加剂的应用。这项工作研究了添加单水方解石对水泥水化微观结构变化的影响。我们研究了不同老化时间和不同MHC质量百分比值下MHC-水泥的水化和微观结构发展。使用X射线衍射(XRD)和扫描电子显微镜(SEM)研究了随时间的化学成分变化。使用热重分析和差示热分析(TGA-DTA)监测了MHC与水泥混合后的水化行为。结果表明,MHC在水化水泥中的作用是增强水泥水化过程,这可能会增加长期强度增长。我们还发现了MHC在长期化学反应方面的作用,以及在长期养护龄期的水化MHC水泥中形成了普通波特兰水泥(OPC)系统中不存在的硅钙石新相。