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Comparative Study on Chloride Binding Capacity of Cement-Fly Ash System and Cement-Ground Granulated Blast Furnace Slag System with Diethanol-Isopropanolamine

机译:水泥 - 粉煤灰系统氯化物结合能力与二乙醇 - 异丙醇胺和水泥地粒状高炉矿渣系统的比较研究

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摘要

Steel bar corrosion caused by chloride was one of the main forms of concrete deterioration. The promotion of chloride binding capacity of cementitious materials would hinder the chloride transport to the surface of steel bar, thereby alleviating the corrosion and mitigating the deterioration. A comparative study on binding capacity of chloride in cement-fly ash system (C-FA) and cement-ground granulated blast furnace slag system (C-GGBS) with diethanol-isopropanolamine (DEIPA) was investigated in this study. Chloride ions was introduced by adding NaCl in paste, and the chloride binding capacity of the paste samples at 7 d and 60 d was examined. The hydration process was discussed via the testing of hydration heat and compressive strength. The hydrates in hardened paste was characterized by X-ray Diffractometry (XRD), Thermo Gravimetric Analysis (TGA), and Scanning Electron Microscope (SEM). The effect of DEIPA on dissolution of aluminate phase and compressive strength was discussed as well. These results showed that DEIPA could facilitate the hydration of C-FA and C-GGBS system, and the promotion effect was higher in C-FA than that in C-GGBS. DEIPA also increased the binding capacity of chloride in C-FA and C-GGBS systems. One reason was the increased chemical binding, because DEIPA facilitated the dissolution of aluminate to benefit the formation of Friedel’s salt. Other reasons were the increased physical binding and migration resistance. By contrast, DEIPA presented greater ability to increase chloride binding capacity in C-FA system, because DEIPA showed stronger ability to expedite the dissolution of aluminate of FA than that of GGBS, which benefited the formation of FS, thereby promoting the chemical binding. Such results would give deep insight into using DEIPA as an additive in cement-based materials.
机译:氯化物引起的钢筋腐蚀是混凝土劣化的主要形式之一。促进水泥材料的氯化物结合能力将阻碍氯化物输送到钢棒表面,从而减轻腐蚀并减轻劣化。该研究研究了水泥 - 飞灰系统(C-FA)和水泥地粒状高炉炉渣系统(C-GGBS)中氯化物中氯化物结合能力的比较研究。通过在糊状物中加入NaCl引入氯离子,并检查糊剂样品在7d和60d中的氯化物结合能力。通过对水合热和抗压强度的测试讨论了水合过程。通过X射线衍射法(XRD),热重分析(TGA)和扫描电子显微镜(SEM)以X射线衍射术(SEM)为特征。讨论了DEIPA对铝酸铝酸液相和抗压强度溶解的影响。这些结果表明,DEIPA可以促进C-FA和C-GGBS系统的水合,C-FA促进效果高于C-GGBS。 Deipa还增加了C-FA和C-GGBS系统中氯化物的结合能力。一个原因是化学结合增加,因为Deipa促进了铝酸盐的溶解,使Friedel盐的形成受益。其他原因是增加物理结合和迁移性。相比之下,Deipa提出了更大的能力增加C-FA系统中的氯化物结合能力,因为DEIPA表现出加快FA铝酸盐的溶解的能力更强,这使得FS的形成受益于FS,从而促进化学结合。这种结果将深入了解使用Deipa作为基于水泥基材料的添加剂。

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