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Time course of isocyanate emission from curing polyurethane adhesives

机译:固化聚氨酯胶粘剂排放异氰酸酯的时间过程

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The time Course of isocyanate emission from curing polyurethane (PUR) resins and adhesives was studied in two different emission test chambers. The measured emissions were strongly dependent on the type of experiment. The adhesives under investigation contained different types of diisocyanates and are used for different applications, e.g. for fixing of textile floor coverings. The influence of the curing mechanism on emission was studied by comparing the emission curves of one-component adhesives (OCA) and two-component adhesives (TCA). For TCA, the decrease in isocyanate emission was found to follow a two-step process during curing. In the first step, the emission is dominated by surface evaporation, and the decay of emission is mainly caused by the decrease in monomer content due to reaction. In the second step, the release is limited by internal diffusion. The influence of monomer reactivity on the emission profile could be demonstrated for 2,4'- and 4,4'-MDI. The less-reactive 2,4-MDI caused prolonged emission. A strong dependence of emission rates on temperature and adhesive viscosity was also obvious. The evaluation of emission rates of different commercially available PUR adhesives showed the highest emission from systems that are applied at high temperatures. The high reactivity of diisocyanates requires special techniques for sampling and analysis. Therefore, an analytical method using HPLC-MS/MS was developed that enables limits of quantitation of < 5 ng/m(3) with a sampling volume of 1001. (C) 2003 Elsevier Ltd. All rights reserved. [References: 20]
机译:在两个不同的排放测试室中研究了固化聚氨酯(PUR)树脂和胶粘剂排放异氰酸酯的时间过程。测得的排放量很大程度上取决于实验的类型。研究中的粘合剂包含不同类型的二异氰酸酯,并用于不同的应用,例如用于固定纺织地板覆盖物。通过比较一组分胶粘剂(OCA)和二组分胶粘剂(TCA)的发射曲线,研究了固化机理对排放的影响。对于TCA,发现固化过程中异氰酸酯排放量的减少遵循两步过程。在第一步中,发射主要由表面蒸发所致,发射的衰减主要是由于反应引起的单体含量降低所致。在第二步中,释放受到内部扩散的限制。对于2,4'-和4,4'-MDI,可以证明单体反应性对发射曲线的影响。反应性较低的2,4-MDI导致排放时间延长。发射速率对温度和粘合剂粘度的强烈依赖性也很明显。对各种市售PUR胶粘剂的排放速率进行的评估表明,高温下应用的系统排放量最高。二异氰酸酯的高反应活性需要特殊的技术进行采样和分析。因此,开发了一种使用HPLC-MS / MS的分析方法,使定量限为<5 ng / m(3),采样量为1001。(C)2003 Elsevier Ltd.保留所有权利。 [参考:20]

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