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聚羧酸系高效减水剂的合成与改性——综述

Synthesis and Modification of Polycarboxylate Superplasticizers-A Review.

作者信息

Xia Yuchen, Shi Wei, Xiang Shuncheng, Yang Xin, Yuan Ming, Zhou Huan, Yu Haotian, Zheng Tingxiang, Zhang Jiake, Jiang Zhen, Huang Liangjun

机构信息

Hunan Provincial Engineering Technology Research Center for Novel and Carbon Neutral Road Material, Changsha University of Science and Technology, Changsha 410114, China.

Science and Technology Affairs Center of Hunan Province, Changsha 410082, China.

出版信息

Materials (Basel). 2024 Feb 27;17(5):1092. doi: 10.3390/ma17051092.

Abstract

The molecular-scale structural changes in polycarboxylic superplasticizer (PCE) can influence dispersion and water retention. Polycarboxylate superplasticizer, synthesized using different methods, may alter dispersion and water-reducing effects. The synthesis of PCE involves creating a novel macromolecular monomer with a controllable molecular mass, adjustable lipophilic, and hydrophilic moieties, as outlined in this study. This article reviews processes for synthesizing polycarboxylates and identifies the optimal method through orthogonal experiments to produce a modified polycarboxylate superplasticizer (PCE-P). The study investigated the effects of different PCE types and concentrations on the surface tension, fluidity, and ζ potential of cement paste. PCE-P, synthesized at room temperature, showed comparable performances in initial hydration and conversion rate in cement to PCE synthesized at high temperatures. PCE-P exhibited an increased slump but had a wider molecular weight distribution and longer main and side chains, leading to a 24.04% decrease in surface tension, indicating a good dispersibility.

摘要

聚羧酸系高效减水剂(PCE)的分子尺度结构变化会影响分散性和保水性。采用不同方法合成的聚羧酸系高效减水剂可能会改变分散性和减水效果。如本研究所述,PCE的合成涉及制备一种具有可控分子量、可调节亲油和亲水部分的新型大分子单体。本文综述了聚羧酸盐的合成方法,并通过正交实验确定了制备改性聚羧酸系高效减水剂(PCE-P)的最佳方法。该研究考察了不同类型和浓度的PCE对水泥净浆表面张力、流动性和ζ电位的影响。室温合成的PCE-P在水泥的初始水化和转化率方面表现出与高温合成的PCE相当的性能。PCE-P的坍落度增加,但分子量分布更宽,主链和侧链更长,导致表面张力降低24.04%,表明具有良好的分散性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e16d/10934894/47427da34c39/materials-17-01092-g001.jpg

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