Zhang Xiaohang, Ding Yonggang
School of Civil Engineering and Architecture, Henan University of Technology, Zhengzhou 450001, China.
Materials (Basel). 2022 Aug 24;15(17):5844. doi: 10.3390/ma15175844.
Ca-alginate beads have strong hygroscopicity, which have been used for the self-healing and internal curing of cement-based materials. However, ca-alginate beads in cement will chelate with calcium ions, which decreases the swelling rate of ca-alginate beads in the healing environment and is detrimental to the self-healing of cement-based materials. In this paper, the mechanism and steps for preparing ca-alginate beads with a lower ability to chelate with calcium ions were proposed based on protonation theory. In addition, the molecular structure and the swelling rates in cement filtrate and healing environment of ca-alginate beads prepared by the proposed method were characterized. The results showed that the ca-alginate beads prepared by the proposed method had higher molecular density and a lower ability to chelate with calcium ions. The swelling rate in the healing environment is not decreased. Furthermore, the equilibrium swelling rate in cement filtrate can satisfy the need for internal curing of cement-based materials.
钙藻酸盐微球具有很强的吸湿性,已被用于水泥基材料的自愈合和内部养护。然而,水泥中的钙藻酸盐微球会与钙离子螯合,这会降低钙藻酸盐微球在愈合环境中的溶胀率,不利于水泥基材料的自愈合。本文基于质子化理论,提出了制备与钙离子螯合能力较低的钙藻酸盐微球的机理和步骤。此外,还对通过该方法制备的钙藻酸盐微球的分子结构以及在水泥滤液和愈合环境中的溶胀率进行了表征。结果表明,通过该方法制备的钙藻酸盐微球具有更高的分子密度和更低的与钙离子螯合的能力。在愈合环境中的溶胀率不会降低。此外,在水泥滤液中的平衡溶胀率能够满足水泥基材料内部养护的需求。