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Characterization of Hydrolysis Process of a Silane Coupling Agent KH-570

机译:硅烷偶联剂水解过程的表征KH-570

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The hydrolysis process of a silane coupling agent KH-570 in deionized water, ethanol, and their mixed medium was characterized by continuous online conductivity testing, respectively. In addition, hydration products of KH-570 in different mediums were analyzed by Fourier transform infrared spectroscopy (FTIR) to correlate with its hydration process. Results indicate that the KH-570 hydrates fast and to a large degree in deionized water, but at the same time, its hydrolysis products condensate together with increasing rate during the hydration process. However, the introduction of ethanol could significantly reduce the degree of the condensation. The hydrolysis degree of KH-570 was relatively large in a mix medium of deionized water and ethanol with the mass ratio of 5:1, and condensation degree of hydrolysis products was also small. KH-570 would hydrate quickly in a hydration medium of colloidal silica, and subsequently, its hydration products would directly react with colloidal silica, which could accelerate the formation of Si-O-Si three-dimensional network structure, and thus promoting the setting of colloidal silica. The hydration of 0.9wt% KH-570 in colloidal silica could be sufficient, and correspondingly, its effect on the coagulation of colloidal silica was better.
机译:通过连续的在线电导测试分别表征了在去离子水,乙醇中的硅烷偶联剂KH-570的水解过程。此外,通过傅里叶变换红外光谱(FTIR)分析了不同介质中KH-570的水合产物,与其水合过程相关。结果表明,KH-570在去离子水中快速和大程度的水合物,但同时,其水解产物在水合过程中随着增加的速率而冷凝。然而,乙醇的引入可以显着降低冷凝度。 KH-570的水解度在去离子水和乙醇的混合介质中相对较大,质量比为5:1,水解产物的缩合度也很小。 KH-570将在胶体二氧化硅的水化介质中迅速水合,随后,其水合产物将直接与胶体二氧化硅反应,这可以加速Si-O-Si三维网络结构的形成,从而促进设置胶体二氧化硅。胶体二氧化硅中0.9wt%KH-570的水合可以足够,相应地,其对胶体二氧化硅凝结的影响更好。

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