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Correlations of the dispersing capability of NSF and PCE types of superplasticizer and their impacts on cement hydration with the adsorption in fresh cement pastes

机译:NSF和PCE型高效减水剂的分散能力及其对水泥水化和新鲜水泥浆中吸附的影响

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Comparative study of NSF and PCE superplasticizers was carried out aiming at correlating the adsorption in fresh cement pastes (fcps) with their dispersing capability and the impacts on cement hydration. Results show that the adsorption of NSF follows a typical Langmuir monolayer adsorption model while PCE exhibits a multi-layer adsorption. The fluidity of fcps containing NSF and the retardation effect of NSF on hydration are directly proportional to the surface coverage of NSF on cement grains. As full coverage is achieved, the fluidity enhancement and the retardation effect reach maximum by addition of NSF. By contrast, the fluidity of fcps with PCE is related to the coverage of the first adsorbed layer and the secondary adsorbed layer does not contribute to the enhancement of fluidity. Both the adsorbed PCE and the PCE remaining in aqueous phase participate in retarding cement hydration because of the complexation effect of -COO- with Ca2+. (C) 2014 Elsevier Ltd. All rights reserved.
机译:NSF和PCE高效减水剂的对比研究旨在将新鲜水泥浆(fcps)中的吸附与其分散能力以及对水泥水化的影响联系起来。结果表明,NSF的吸附遵循典型的Langmuir单层吸附模型,而PCE表现出多层吸附。含NSF的fcps的流动性和NSF对水合作用的阻滞作用与NSF在水泥颗粒上的表面覆盖率成正比。当达到完全覆盖时,通过添加NSF,流动性增强和延迟效果达到最大。相反,具有PCE的fcps的流动性与第一吸附层的覆盖率有关,而第二吸附层对流动性的提高没有贡献。由于-COO-与Ca2 +的络合作用,被吸附的PCE和残留在水相中的PCE均参与延迟水泥的水合作用。 (C)2014 Elsevier Ltd.保留所有权利。

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