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Effect of molecular weight of sulphonated acetone-formaldehyde condensate on its adsorption and dispersion properties in cementitious system

机译:磺化丙酮-甲醛缩合物的分子量对其在胶结体系中的吸附和分散性能的影响

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This article studied the effect of molecular weight of sulphonated acetone-formaldehyde condensate (SAF) on the adsorption and dispersion properties in cementitious system. SAF was separated into four different molecular weight fractions using ultrafiltration membranes. The adsorption behaviors were investigated by measuring the adsorption amount, zeta potential, and thickness of the adsorbed films obtained from various SAF fractions. Results show that the SAF fraction with a higher molecular weight has larger adsorption amount, higher absolute value of zeta potential, and thicker adsorbed film, which induces better dispersibility of the corresponding cement paste. An adsorption model of SAF on cement surface is presented. The SAF fraction with a higher molecular weight is more likely to twist and be adsorbed on cement particles through "loop and tail" adsorption. On the contrary, SAF fraction with a lower molecular weight tends to be adsorbed on cement particles through "flat train" adsorption.
机译:本文研究了磺化丙酮-甲醛缩合物(SAF)的分子量对胶结体系中吸附和分散性能的影响。使用超滤膜将SAF分为四个不同的分子量部分。通过测量从各种SAF馏分获得的吸附膜的吸附量,ζ电位和厚度研究吸附行为。结果表明,较高分子量的SAF馏分具有较大的吸附量,较高的Zeta电位绝对值和较厚的吸附膜,从而可以使相应的水泥浆更好​​地分散。建立了SAF在水泥表面的吸附模型。分子量较高的SAF馏分更可能发生扭曲,并通过“环和尾”吸附而吸附在水泥颗粒上。相反,具有较低分子量的SAF级分倾向于通过“平列”吸附而吸附在水泥颗粒上。

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