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Working mechanism of methyl hydroxyethyl cellulose (MHEC) as water retention agent

机译:甲基羟乙基纤维素(MHEC)作为保水剂的工作机理

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摘要

The working mechanism of methyl hydroxyethyl cellulose, MHEC (M_w = 2.5·10~5g/mol,DS_(methyl) = l.81, MS_(hydroxyethyl)=0.15) as water retention agent in cement was investigated First, the hydrocolloid was characterized and its performance as non-ionic water retention agent was determined employing the filter paper test. Also, water sorption and swelling of individual MHEC fibers under conditions of different humidities were monitored by ESEM imaging. Second, its working mechanism was established. It was found that at low dosages, MHEC achieves water retention by intramolecular sorption of water and concomitant swelling while at higher dosages, MHEC molecules agglomerate into large hydrdcolloidal microgel particles (d>l μm) which effectively plug the pores in the mortar matrix. MHEC association was evidenced by an exponential increase in solution viscosity as concentration rises, a strong increase in the hydrodynamic diameter of solved MHEC molecules, and a noticeable reduction of surface tension.
机译:研究了甲基羟乙基纤维素MHEC(M_w = 2.5·10〜5g / mol,DS_(methyl)= 1.81,MS_(羟乙基)= 0.15)在水泥中的保水剂的工作机理。首先,对水胶体进行了表征并通过滤纸试验确定其作为非离子型保水剂的性能。另外,通过ESEM成像监测在不同湿度条件下单个MHEC纤维的吸水率和溶胀率。二是建立工作机制。发现在低剂量下,MHEC通过分子内吸水和伴随的溶胀实现保水,而在高剂量下,MHEC分子会聚集成大的胶体微凝胶颗粒(d> 1μm),从而有效地堵塞砂浆基质中的孔。 MHEC缔合通过溶液粘度随浓度的增加呈指数增加,所溶解的MHEC分子的流体动力学直径大大增加以及表面张力显着降低而得到证明。

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