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Effects of hydrogen-donating solvents on the thermal degradation of HDPE

机译:氢供溶剂对HDPE热降解的影响

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The thermal cracking of a polyolefin (HDPE) has been investigated in the presence of solvents with different hydrogen-donating capabilities (9,10-dihydroanthracene, tetralin, decalin and 1-methylnaphthalene) with the aim of increasing the yields of C5-C32 α-olefins, which are valuable hydrocarbons for the chemical industry. The results have been also compared with the corresponding solventless reaction. The HDPE thermal degradation in the presence of 9,10-dihydroanthracene and tetralin, which are good hydrogen-donating solvents, led to the lowest yields of C5-C32 hydrocarbons. On the contrary, the reactions with the poor hydrogen-donating solvents, 1-methylnaphthalene and decalin, gave the highest C5-C32 yields, the main components of this fraction being α-olefins. However, the use of decalin is better recommended, because 1-methylnaphthalene loses its methyl group during the HDPE thermal degradation. These results have been explained based on the HDPE degradation mechanism. One of the main changes introduced by these solvents is the suppression of the reactions between intermediate radicals and α-olefins, effect which is responsible for the enhancement in the α-olefins content of the final products. In addition, the degradation mechanism includes hydrogen transfer reactions from the solvents to HDPE radicals and from the chains to the solvent radicals, which also contribute to increase the extension of the HDPE degradation and the production of α-olefins.
机译:为了提高C5-C32α的收率,已经在具有不同的给氢能力的溶剂(9,10-二氢蒽,四氢萘,十氢化萘和1-甲基萘)的存在下研究了聚烯烃(HDPE)的热裂解。 -烯烃,对于化学工业而言是有价值的烃。还将该结果与相应的无溶剂反应进行了比较。在良好的供氢溶剂9,10-二氢蒽和四氢化萘存在下,HDPE的热降解导致C5-C32烃的收率最低。相反,与弱氢供体溶剂1-甲基萘和十氢化萘的反应可得到最高的C5-C32收率,该馏分的主要成分是α-烯烃。但是,最好使用十氢化萘,因为在HDPE热降解过程中1-甲基萘会失去其甲基。这些结果已基于HDPE降解机理进行了解释。这些溶剂引起的主要变化之一是抑制了中间自由基与α-烯烃之间的反应,这种作用导致最终产物中α-烯烃含量的增加。另外,降解机理包括从溶剂到HDPE自由基以及从链到溶剂自由基的氢转移反应,这也有助于增加HDPE降解的范围和α-烯烃的生产。

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