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Optimization of the Synthesis of Urea-Formaldehyde Resins using Response Surface Methodology

机译:响应面法优化脲醛树脂的合成

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摘要

In the near future, companies will face the need to produce low formaldehyde emission resins, i.e., not above the emission level of natural wood. However, for producing this new generation of urea-formaldehyde resins (UF), it is necessary to optimize the synthesis process. This work describes an optimization procedure for UF resin synthesis, following an alkaline-acid process, focusing on the conditions of the condensation step. A design of experiments methodology was employed to optimize the 3 selected factors (number of urea additions, time span between urea additions, and condensation pH), in order to produce particleboards with maximum internal bond strength and minimum formaldehyde release. The condensation pH played a significant role in increasing the Internal Bond (IB) strength and reducing the Formaldehyde Emission (FE). The sequential addition of urea also has a noticeable influence on resin performance. Optimum conditions for production of UF resins have been proposed and tested by the response surface methodology using the desirability function.
机译:在不久的将来,公司将面临生产低甲醛排放树脂的需求,即不超过天然木材的排放水平。但是,为了生产这种新一代的脲醛树脂(UF),必须优化合成工艺。这项工作描述了碱式酸工艺后UF树脂合成的优化程序,重点是缩合步骤的条件。实验方法的设计用于优化3个选定的因素(添加尿素的数量,添加尿素的时间间隔和缩合pH),以生产具有最大内部粘合强度和最小甲醛释放量的刨花板。缩合pH在提高内部键(IB)强度和降低甲醛释放量(FE)方面起着重要作用。尿素的顺序添加对树脂性能也有显着影响。已经提出了用于生产超滤树脂的最佳条件,并使用期望函数通过响应面方法进行了测试。

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