Effect of highly carboxylated colloidal polymers on cement hydration and interactions with calcium ions
Effect of highly carboxylated colloidal polymers on cement hydration and interactions with calcium ions
复制标题
高度羧化胶体聚合物对水泥水化及与钙离子相互作用的影响
DOI:
10.1016/j.cemconres.2018.08.010
复制
发表时间:
2018-11-01
影响因子:
11.4
通讯作者:
Cai, Yi
中科院分区:
文献类型:
--
作者:
Lu, Zichen;Kong, Xiangming;Cai, Yi
Polymer latexes are often found to retard cement hydration. Interaction of polymer particles with Ca2+ in pore solution and adsorption of polymer on cement were proposed as possible mechanisms for the retardation effect. This paper aims at disclosing the retardation mechanism of colloidal polymers using a highly carboxylated polystyrene latex. Interaction between colloidal particles and Ca2+ was studied by post-treatment of the latex with Ca(NO3)(2). Techniques including calorimetry, adsorption test, ICP-OES, SEM, are involved to investigate effects of the post-treated latexes on hydrations of cement and C3S. It is found that enrichment of Ca2+ on surface of colloidal particles doesn't contribute to the retardation effect of polymer on cement hydration. Furthermore, the acceleration effect of the two-step treated latex using Ca(NO3)(2) and Na2SiO3 suggests that nucleation inhibition of the adsorbed polymer layer on cement surface is the more conceivable mechanism responsible for the retardation effect of the highly carboxylated latex.