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Influence of mineral admixtures on carbonation curing of cement paste

机译:矿物混合物对水泥浆料碳酸化固化的影响

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This paper aims to investigate the influences of limestone powder, fly ash and ground granulated blast-furnace slag (GGBS) on carbonation curing of cement pastes. These three mineral admixtures were incorporated at percentage of 20% by weight to replace cement and compressive strength and chloride ion permeability test were performed to evaluate the carbonation curing effects. On the other hand, X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), thermogravimetry-differential thermal analysis (TG-DTA), mercury intrusion porosimeter (MIP) and scanning electron microscope (SEM) measurements were performed on typical samples. Experimental results show that the addition of mineral admixture decreased the compressive strength of uncarbonated specimens but strengthened the improvement effect of carbonation curing on compressive strength. This better improvement effect can partly compensate the decreasing strength induced by the incorporation of mineral admixtures. Among those mineral admixtures, fly ash exhibited the best improvement effect and GGBS ranked second. The chloride ion permeability of cement mortars were decreased by the addition of mineral admixtures but improved by the carbonation curing. The formation of CaCO3 upon carbonation curing refined the pore structure and presented a higher effectiveness for filling pores with diameters of 0.1 similar to 1 mu m. Therefore, carbonation curing provides a good method for both efficiently recycling industrial wastes as mineral admixtures and capturing more greenhouse gas. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文旨在探讨石灰石粉末,粉煤灰和地面粒状高炉炉渣(GGBS)对水泥浆料碳酸化固化的影响。将这三种矿物混合物以20%重量的百分比掺入以替代水泥,并进行抗压强度和氯离子渗透性试验以评估碳酸化固化效果。另一方面,对典型进行X射线衍射(XRD),傅里叶变换红外光谱(FTIR),热重差分热分析(TG-DTA),汞入侵孔隙率计(MIP)和扫描电子显微镜(SEM)测量样品。实验结果表明,矿物混合物的添加降低了未染料标本的抗压强度,但增强了碳酸固化对抗压强度的提高效果。这种更好的改善效果可以部分补偿矿物混合物掺入的降低强度。在那些矿物混合物中,粉煤灰表现出最佳的改善效果和GGB排名第二。通过加入矿物混合物来降低水泥砂浆的氯离子渗透性,但通过碳酸化固化改善。在碳酸化固化时形成CaCO 3,精制孔结构,并提高了填充孔径,直径为0.1的孔的效果。因此,碳酸化固化为有效回收工业废物作为矿物混合物和捕获更多温室气体提供了良好的方法。 (c)2019 Elsevier Ltd.保留所有权利。

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