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Synthesis and Characterization of Phenol-Urea-Formaldehyde Foaming Resin Used to Block Air Leakage in Mining

机译:采矿中阻隔空气泄漏的酚醛脲醛泡沫树脂的合成与表征

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In this study, phenol, urea, and paraformaldehyde were used as the monomers for the one-step synthesis of phenol-urea-formaldehyde (PUF) foaming resin that was used to block air leakage in mining. An orthogonal test was used to study the effects of urea amount, catalyst amount, reaction temperature, and reaction time on the foaming property of the resin. The results showed that the optimum parameters for synthesizing PUF resin are as follows: 1 mol phenol, 0.5 mol urea, 3 mol formaldehyde equivalents of paraformaldehyde, and 0.05 mol catalyst at 75°C for 3 h. The infrared and ~(13)C nuclear magnetic resonance spectra of the PUF resin showed that the chemical structure of the PUF resin was significantly different from that of phenol-formaldehyde resin, indicating that a copolymerization reaction has occurred among the three components, that is, phenol, urea, and paraformaldehyde. In this study, PUF foam was prepared from catalysts and PUF resin. The results showed that the foaming capacity and oxygen index of the PUF foam were significantly improved by using urea, whereas the shrinking percentage decreased with no change in compression strength.
机译:在这项研究中,苯酚,尿素和低聚甲醛被用作一步合成酚醛-脲醛(PUF)发泡树脂的单体,该树脂被用来阻止采矿中的空气泄漏。使用正交试验研究尿素量,催化剂量,反应温度和反应时间对树脂发泡性能的影响。结果表明,合成PUF树脂的最佳参数如下:1 mol苯酚,0.5 mol尿素,3 mol甲醛当量的多聚甲醛和0.05 mol催化剂在75℃下反应3 h。 PUF树脂的红外和〜(13)C核磁共振光谱表明,PUF树脂的化学结构与酚醛树脂的化学结构显着不同,表明这三种组分之间发生了共聚反应,即,苯酚,尿素和多聚甲醛。在这项研究中,PUF泡沫是由催化剂和PUF树脂制备的。结果表明,使用尿素可显着提高PUF泡沫的发泡能力和氧指数,而收缩百分率却随压缩强度的变化而降低。

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