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基于聚丙烯热解产物估计沸点的热解油表征NP-gram方法的基本原理

The Fundamentals of the NP-Gram Method for the Characterisation of Pyrolysis Oils Based on the Estimated Boiling Points of Pyrolysis Products from Polypropylene.

作者信息

Brebu Mihai, Murata Katsuhide

机构信息

"Petru Poni" Institute of Macromolecular Chemistry, 41A Grigore Ghica Voda Alley, 700487 Iași, Romania.

Toyohashi Chamber of Commerce and Industry, Toyohashi 440-8508, Japan.

出版信息

Polymers (Basel). 2025 Jul 2;17(13):1855. doi: 10.3390/polym17131855.

Abstract

The pyrolysis of polymers is a thermal processing method largely used to convert polymeric waste into valuable products such as oils and carbonaceous residues. The NP-gram method (NP standing for normal paraffins) is useful for the global characterisation of pyrolysis oils with complex composition. Here, we present the fundamental of this method, which is based on the concept of "carbon number", in conjunction with the boiling point and the chromatographic retention time of chemical compounds. Polypropylene was selected as the model polymer due to its simple mechanism of thermal degradation. The boiling points of the main compounds in polypropylene pyrolysis oil were estimated based on the equations of Egloff and Wiener. A good correspondence was obtained for the estimated boiling points and the position of the compounds in the gas chromatogram. A distinction was made between the number of carbon atoms in the molecule and the corresponding carbon number used in characterisation of pyrolysis oils by NP-gram. Correlation with the chromatographic retention index was also discussed. The application of the NP-gram method for different polymers was also presented.

摘要

聚合物的热解是一种主要用于将聚合物废料转化为有价值产品(如油类和含碳残渣)的热加工方法。NP-gram方法(NP代表正构烷烃)对于表征成分复杂的热解油具有全局性作用。在此,我们介绍该方法的基本原理,它基于“碳数”概念,并结合化合物的沸点和色谱保留时间。由于聚丙烯热降解机制简单,因此选用它作为模型聚合物。基于埃格洛夫方程和维纳方程估算了聚丙烯热解油中主要化合物的沸点。估算沸点与化合物在气相色谱图中的位置具有良好的对应关系。区分了分子中的碳原子数与NP-gram方法表征热解油时使用的相应碳数。还讨论了与色谱保留指数的相关性。此外,还介绍了NP-gram方法在不同聚合物中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/412b/12252114/7373b1a449f3/polymers-17-01855-sch001.jpg

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