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首页> 外文期刊>Journal of Applied Polymer Science >Differential scanning calorimetry of urea-formaldehyde adhesive resins, synthesized under different pH conditions
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Differential scanning calorimetry of urea-formaldehyde adhesive resins, synthesized under different pH conditions

机译:在不同pH条件下合成的脲醛胶粘树脂的差示扫描量热法

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The purpose of this study was to investigate the effects of reaction pH conditions on thermal behavior of urea-formaldehyde (UF) resins, for the possible reduction of formaldehyde emission of particleboard bonded with them. Thermal curing properties of UF resins, synthesized at three different reaction pH conditions, such as alkaline (pH 7.5), weak acid (pH 4.5), and strong acid (pH 1.0), were characterized with multiheating rate method of differential scanning calorimetry. As heating rate increased, the onset and peak temperatures increased for all three UF resins. By contrast, the heat of reaction (Delta H) was not much changed with increasing heating rates. The activation energy (E-a) increased as the reaction pH decreased from alkaline to strong acid condition. The formaldehyde emission of particleboard was the lowest for the UF resins prepared under strong acid, whereas it showed the poorest bond strength. These results indicated that thermal curing behavior was related to chemical species, affecting the formaldehyde emission, while the poor bond strength was believed to be related to the molecular mobility of the resin used. (c) 2006 Wiley Periodicals, lnc.
机译:这项研究的目的是研究反应pH条件对脲醛(UF)树脂热行为的影响,以减少与它们粘合的刨花板的甲醛释放量。用差示扫描量热法的多重加热速率法表征了在三种不同的反应pH条件下合成的UF树脂的热固化性能,所述pH条件为碱性(pH 7.5),弱酸(pH 4.5)和强酸(pH 1.0)。随着加热速率的增加,所有三种UF树脂的起始温度和峰值温度均升高。相反,随着加热速率的增加,反应热(ΔH)变化不大。活化能(E-a)随着反应pH从碱性到强酸的降低而增加。在强酸下制备的UF树脂,刨花板的甲醛释放量最低,而粘结强度最差。这些结果表明,热固化行为与化学物质有关,影响甲醛的释放,而不良的粘合强度被认为与所用树脂的分子迁移率有关。 (c)2006年Wiley期刊公司。

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