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Effect of Sodium Hexametaphosphate and Trisodium Phosphate on Dispersion of Polycarboxylate Superplasticizer

机译:六偏磷酸钠和磷酸三钠对聚羧酸类高效减水剂分散性的影响

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摘要

Enhancement in dispersion of polycarboxylate superplasticizer (PCE) could be obtained by incorporating retarders in normal concrete. The generally believed reason was that the consumption of free water and polymer at the beginning was reduced by retarding cement hydration. This theory could not convincingly explain why sodium hexametaphosphate (SHMP) was able to promote the dispersion capacity of PCE, while trisodium phosphate (TSP) could not, despite that both TSP and SHMP could obviously retard the cement hydration. The adsorption behavior of PCE and phosphate was investigated and the mechanism was analyzed in order to gain deeper understanding. The results showed that TSP and SHMP delayed the cement hydration, impeded adsorption process of PCE, and increased thickness of adsorption layer. It was interesting that TSP reduced the dispersion, but SHMP enhanced. The reason for this contradiction was due to the difference in composition of adsorption layer. In the PCE-TSP system, this layer was composed of the precipitates (formed by TSP and Ca ) and the invalided PCE (caused by these precipitates in the immediate vicinity of the cement grains); the invalided PCE was due to the decrease of PCE dispersion. In the PCE-SHMP system, “Inner-phosphate (multi-layers) + Outer-PCE (single layer)” structure was formed to make the PCE work more effective, hence enhancing the dispersion. These results were expected to be useful for the design of highly efficient dispersants.
机译:通过在普通混凝土中加入缓凝剂,可以提高聚羧酸盐高效减水剂(PCE)的分散性。人们普遍认为,原因是通过延迟水泥的水合作用减少了开始时游离水和聚合物的消耗。该理论不能令人信服地解释为什么六偏磷酸钠(SHMP)能够提高PCE的分散能力,而磷酸三钠(TSP)却不能,尽管TSP和SHMP都明显地阻碍了水泥的水合作用。研究了PCE和磷酸盐的吸附行为,并对其机理进行了分析,以加深理解。结果表明,TSP和SHMP延迟了水泥的水化作用,阻碍了PCE的吸附过程,并增加了吸附层的厚度。有趣的是,TSP降低了色散,但SHMP增强了。该矛盾的原因是由于吸附层的组成不同。在PCE-TSP系统中,该层由沉淀物(由TSP和Ca形成)和失效的PCE(由这些沉淀物在水泥颗粒附近产生)组成。无效的PCE是由于PCE色散的减小。在PCE-SHMP系统中,形成了“内部磷酸盐(多层)+外层PCE(单层)”结构,以使PCE更加有效地工作,从而增强了分散性。预期这些结果将对设计高效分散剂有用。

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