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Isocyanate emissions from pyrolysis of mattresses containing polyurethane foam

机译:含有聚氨酯泡沫的床垫热解产生的异氰酸酯排放量

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摘要

This study examined the emissions of powerful asthmatic agents called isocyanates from small-scale pyrolysis experiments of two common foams employed in mattress production such as flexible polyurethane foam (FPUF) and viscoelastic memory foam (VMF). A nitrogen atmosphere and five different temperatures, 300, 350, 400, 450 and 850 °C, were selected to carry out the experiments in order to evaluate the worst possible conditions for thermal degradation. A similar trend for both materials was found. At lower temperatures, diisocyanates were the most important products whereas at 850 °C monoisocyanates, and mainly isocyanic acid released mainly from the thermal cracking of diisocyanates evolved directly from the polymer chains. The total yields of isocyanates were in the range of 1.43–11.95 mg/m3 for FPUF at 300-850 °C and 0.05–6.13 mg/m3 for VMF, 300-850 °C. This difference could be a consequence of the lower amount of isocyanates employed in the VMF production which was confirmed by the nitrogen content of the foams, 5.95% FPUF vs. 3.34% in VMF. Additionally, a qualitative search for so far unknown isocyanates was performed in samples from the pyrolysis of FPUF at 300, 400 and 850 °C. It was confirmed that six different aminoisocyanates at 300 °C were evolved, whereas at 400 and 850 °C only five of them were detected. The general trend observed was a decrease of the aminoisocyanate levels with increasing pyrolysis temperature.
机译:这项研究检查了床垫生产中使用的两种常见泡沫(例如软质聚氨酯泡沫(FPUF)和粘弹性记忆泡沫(VMF))的小规模热解实验中排放出的强效哮喘剂异氰酸酯。选择氮气气氛和五个不同的温度300、350、400、450和850°C进行实验,以评估可能的最坏的热降解条件。两种材料的趋势相似。在较低的温度下,二异氰酸酯是最重要的产物,而在850°C时,单异氰酸酯主要是直接从聚合物链中产生的二异氰酸酯的热裂解释放出的主要是异氰酸。在300-850°C下,FPUF的异氰酸酯总产量在1.43-11.95 mg / m3之间;在300-850°C下,VMF的异氰酸酯的总产量在0.05-6.13 mg / m3之间。这种差异可能是由于VMF生产中使用的异氰酸酯含量较低而导致的,这一点已由泡沫中的氮含量(FPUF的5.95%与VMF的3.34%)证实。此外,在FPUF于300、400和850°C的热解样品中进行了迄今为止未知的异氰酸酯的定性搜索。已证实在300°C时会析出六种不同的氨基异氰酸酯,而在400和850°C时仅检测到其中的五种。观察到的总体趋势是随着热解温度的升高,氨基异氰酸酯含量降低。

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