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利用热解聚丙烯油生产替代燃料。

Use of polypropylene pyrolysis oil in alternative fuel production.

机构信息

Faculty of Marine Technology and Natural Sciences, Klaipeda University, Klaipeda, Lithuania.

Life Science Center, Institute of Biochemistry, Vilnius University, Vilnius, Lithuania.

出版信息

Waste Manag Res. 2022 Aug;40(8):1220-1230. doi: 10.1177/0734242X211068243. Epub 2022 Feb 8.

Abstract

In this study, polypropylene (PP) was recycled in a non-stirred batch reactor by slow pyrolysis at low temperature. Virgin PP and waste PP as well as mixed material of equal amounts of virgin PP plus virgin PP pyrolysis oil (ratio 1:1 w/w) were used as raw material. The highest yields of liquid product were obtained at 350°C and 400°C (82.0 and 82.3 w/w%, respectively). The density, viscosity and calorific value of the gasoline and diesel fractions of the obtained pyrolysis oils comply with EN228 and EN590 standards, respectively. The flash point corresponded to the standard only for some of the oils, but the cold filter clogging point, the pour point and especially the oxidation stability were far above the stated reference values of the standards. The pyrolysis oils as products of thermal decomposition were determined by the methods of H and C and two-dimensional-heteronuclear single quantum coherence nuclear magnetic resonance (2D-HSQC NMR) spectra. Spectral analysis showed that only very little aromatic compounds were present in the oils, but they contained many unsaturated compounds, which is presumably consistent with the measured oxidation stability and limits their use in the production of alternative fuels. The research octane number (RON) calculated from the NMR analyses corresponds to the lower limit of gasoline.

摘要

在这项研究中,通过在低温下进行非搅拌间歇式反应器中的慢速热解,对聚丙烯(PP)进行了回收。采用 virgin PP 和 waste PP 以及 virgin PP 热解油等比例(1:1 w/w)的混合物作为原料。在 350°C 和 400°C 时,液体产物的收率最高(分别为 82.0 和 82.3 w/w%)。所得到的热解油的汽油和柴油馏分的密度、粘度和热值分别符合 EN228 和 EN590 标准。闪点仅对部分油品符合标准,但冷滤点堵塞点、倾点,尤其是氧化稳定性远远高于标准规定的参考值。通过 H 和 C 以及二维异核单量子相干核磁共振(2D-HSQC NMR)谱的方法对热解油进行了测定。光谱分析表明,油中仅存在少量芳烃化合物,但含有许多不饱和化合物,这与所测量的氧化稳定性相符,限制了它们在替代燃料生产中的使用。根据 NMR 分析计算出的研究法辛烷值(RON)对应于汽油的下限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4113/9203672/52a3d7ee465c/10.1177_0734242X211068243-fig1.jpg

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