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Temperature-dependent pyrolysis behavior of polyurethane elastomers with different hard- and soft-segment compositions

机译:不同硬段和软段组成的聚氨酯弹性体的温度依赖性热解行为

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The pyrolysis behaviors of seven kinds of polyurethane elastomers (PUEs) with different ratios between the hard segment (HS) and soft segment (SS) were investigated for both fast pyrolysis (300, 350, 450, 850 degrees C) and slow pyrolysis at the heating rate of 10 degrees C min(-1) by thermogravimetric analysis (TG), pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS), and evolved gas analysis-mass spectrometry (EGA-MS). These PUEs were synthesized from 4,4'-diphenylmethane diisocyanate (MDI), 1,4-butane diol (BD), and poly(oxytetramethylene glycol) (PTMG). Atomic force microscopy measurements found that the HS domains were formed in PUEs containing HS, and these domains were aggregated at extremely high HS ratio. The main pyrolysate derived from HS was MDI under all conditions. In fast pyrolysis tests, the decomposition of SS proceeded sufficiently at 450 degrees C, and a lot of low molecular weight compounds were produced at 850 degrees C. In slow pyrolysis tests, three-step degradation was observed, and this degradation behavior was influenced by the HS domain and SS matrix structures. The first step is the HS pyrolysis inside the HS domain, then the HS surrounded by SS is pyrolyzed. Finally, the SS matrix is pyrolyzed. The HS pyrolysates changed from isocyanate to amine with increasing temperature. We believe that the newly found pyrolysis behavior of PUEs with different ratios between the HS and SS will promote future studies on the characterization of PUE materials and the pyrolytic recovery of chemical feedstock from PUE wastes.
机译:研究了硬段(HS)和软段(SS)之间不同比例的七种聚氨酯弹性体(PUE)在快速高温(300,350,450,850,850℃)和慢速高温下的热解行为。热重分析(TG),热解气相色谱/质谱(Py-GC / MS)和析出气体分析质谱(EGA-MS)加热速率为10摄氏度min(-1)。这些PUE是由4,4'-二苯甲烷二异氰酸酯(MDI),1,4-丁二醇(BD)和聚(氧丁二醇)(PTMG)合成的。原子力显微镜测量发现,HS结构域是在含有HS的PUE中形成的,并且这些结构域以极高的HS比率聚集。在任何条件下,源自HS的主要热解产物均为MDI。在快速热解试验中,SS在450摄氏度下充分分解,在850摄氏度下产生了许多低分子量化合物。在慢速热解实验中,观察到三步降解,并且该降解行为受到以下因素的影响: HS域和SS矩阵结构。第一步是HS域内部的HS热解,然后SS包围的HS被热解。最后,将SS基质热解。随着温度的升高,HS热解产物从异氰酸酯变为胺。我们相信,新发现的具有不同比例的HS和SS的PUE的热解行为将促进未来对PUE材料的表征以及从PUE废物中热解化学原料的研究。

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