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将建筑水泥转化为自修复混合粘结剂。

Transformation of Construction Cement to a Self-Healing Hybrid Binder.

机构信息

ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry, University Medical Center of the Johannes Gutenberg University, Duesbergweg 6, 55,128 Mainz, Germany.

Polymers and Pigments Department, National Research Centre, Dokki, Giza 12622, Egypt.

出版信息

Int J Mol Sci. 2019 Jun 17;20(12):2948. doi: 10.3390/ijms20122948.

Abstract

A new biomimetic strategy to im prove the self-healing properties of Portland cement is presented that is based on the application of the biogenic inorganic polymer polyphosphate (polyP), which is used as a cement admixture. The data show that synthetic linear polyp, with an average chain length of 40, as well as natural long-chain polyP isolated from soil bacteria, has the ability to support self-healing of this construction material. Furthermore, polyP, used as a water-soluble Na-salt, is subject to Na/Ca exchange by the Ca from the cement, resulting in the formation of a water-rich coacervate when added to the cement surface, especially to the surface of bacteria-containing cement/concrete samples. The addition of polyP in low concentrations (<1% on weight basis for the solids) not only accelerated the hardening of cement/concrete but also the healing of microcracks present in the material. The results suggest that long-chain polyP is a promising additive that increases the self-healing capacity of cement by mimicking a bacteria-mediated natural mechanism.

摘要

提出了一种新的仿生策略来改善波特兰水泥的自修复性能,该策略基于生物无机聚合物多聚磷酸盐(polyP)的应用,将其用作水泥外加剂。数据表明,具有平均链长 40 的合成线性多聚磷酸盐以及从土壤细菌中分离出的天然长链多聚磷酸盐都具有支持这种建筑材料自修复的能力。此外,多聚磷酸盐作为水溶性的 Na 盐,可与水泥中的 Ca 进行 Na/Ca 交换,当添加到水泥表面时,特别是添加到含有细菌的水泥/混凝土样品的表面时,会形成富含水的凝聚物。低浓度(<1%的固体重量比)添加多聚磷酸盐不仅加速了水泥/混凝土的硬化,而且还修复了材料中存在的微裂缝。结果表明,长链多聚磷酸盐是一种很有前途的添加剂,它通过模拟细菌介导的自然机制来提高水泥的自修复能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcc6/6627329/cdd2b517f0a9/ijms-20-02948-g001.jpg

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