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Hydrolytic degradation of monomer casting nylon in subcritical water

机译:亚临界水中单体铸造尼龙的水解降解

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In contrast with the conventional physical methods, sub- and supercritical hydrolysis is not only a more environmentally friendly method to recycle the monomer casting nylon (MC nylon) wastes, but also a more feasible way to produce the corresponding monomer. In subcritical water, MC nylon was decomposed completely into water-soluble oligomers within 45 min at 345 ℃ and 9 MPa. Fourier transform infrared spectroscopy and X-ray diffraction were employed to characterize the chemical composition and crystalline form changes of the solid products obtained within 30 min of the degradation. Qualitative and quantitative analyses of liquid phase product were performed by liquid chromatography mass spec-trometry and high performance liquid chromatography. The yield of the main degradation product ε-caprolactam largely depended on the hydrolysis temperature and reaction time. The maximum yield value reached 89.0% when the reaction time was 75 min. A hydrolytic degradation mechanism of MC nylon in subcritical water is proposed as well.
机译:与常规的物理方法相比,亚临界和超临界水解不仅是回收单体铸造尼龙(MC尼龙)废料的更环境友好的方法,而且还是生产相应单体的更可行的方法。在亚临界水中,MC尼龙在345℃和9 MPa下的45分钟内完全分解为水溶性低聚物。使用傅里叶变换红外光谱和X射线衍射来表征降解后30分钟内获得的固体产物的化学组成和晶型变化。通过液相色谱质谱法和高效液相色谱法对液相产物进行定性和定量分析。主要降解产物ε-己内酰胺的产率在很大程度上取决于水解温度和反应时间。当反应时间为75分钟时,最大产率达到89.0%。还提出了MC尼龙在亚临界水中的水解降解机理。

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