Laboratory of Polymers and Dyes Chemistry and Technology, Department of Chemistry, Aristotle University of Thessaloniki, 541 24, Thessaloniki, Greece.
Department of Mineralogy-Petrology-Economic Geology, Aristotle University of Thessaloniki, GR-54 124, Thessaloniki, Greece.
Environ Sci Pollut Res Int. 2022 Apr;29(20):29570-29582. doi: 10.1007/s11356-021-15489-8. Epub 2021 Jul 26.
Chemical recycling is an environmentally friendly method, which is often used for the recycling of plastics included in waste electric and electronic equipment (WEEE), since fuels and secondary valuable materials can be produced. Brominated flame retardants (BFRs) are usually added into these plastics to reduce their flammability; but they are toxic substances. The aim of this work is to examine the thermal behaviour and the products obtained after pyrolysis of polymer blends that consist of acrylonitrile-butadiene-styrene (ABS), high-impact polystyrene (HIPS), polycarbonate (PC) and polypropylene (PP) with composition that simulates real WEEE, in the absence and presence of a common BFR, tetrabromobisphenol A (TBBPA), in order to investigate its effect on pyrolysis products. Blends were prepared via the solvent casting method and the melt-mixing in an extruder; it was revealed that the latter method may be a better choice for blends preparation, since it did not affect the products obtained. The chemical structure of each polymeric blend was identified by Fourier transform infrared spectroscopy (FTIR). Thermal degradation of the blends was evaluated by thermogravimetric (TG) experiments performed using a thermal analyser (TGA) and a pyrolyser for evolved gas analysis (EGA). It was observed that blends had a similar behaviour during their thermal degradation; and in most cases, they followed a one-step mechanism. Pyrolysis products were identified by the pyrolyser combined with a gas chromatographer/mass spectrometer (GC/MS), and comprised various useful compounds, such as monomers, aromatic hydrocarbons and phenolic compounds that could be used as chemical feedstock. Furthermore, it was found that TBBPA affected products distribution by enhancing the formation of phenolic compounds and on the other hand by resulting in brominated compounds, such as dibromophenol.
化学回收是一种环保的方法,常用于回收废旧电子电气设备(WEEE)中的塑料,因为可以生产燃料和二次有价值的材料。溴系阻燃剂(BFRs)通常添加到这些塑料中以降低其可燃性,但它们是有毒物质。本工作的目的是研究由丙烯腈-丁二烯-苯乙烯(ABS)、高抗冲聚苯乙烯(HIPS)、聚碳酸酯(PC)和聚丙烯(PP)组成的聚合物共混物的热行为和热解产物,共混物的组成模拟真实的 WEEE,在不存在和存在常见的 BFR 四溴双酚 A(TBBPA)的情况下,以研究其对热解产物的影响。通过溶剂浇铸法和在挤出机中熔融共混制备共混物;结果表明,后一种方法可能是共混物制备的更好选择,因为它不会影响所获得的产物。通过傅里叶变换红外光谱(FTIR)鉴定了每种聚合物共混物的化学结构。通过使用热重分析仪(TGA)和热解气相色谱仪(EGA)进行热重(TG)实验评估了共混物的热降解。观察到共混物在热降解过程中具有相似的行为;并且在大多数情况下,它们遵循一步机制。通过与气相色谱仪/质谱仪(GC/MS)联用的热解器鉴定了热解产物,包括各种有用的化合物,如单体、芳烃和酚类化合物,可作为化学原料。此外,发现 TBBPA 通过增强酚类化合物的形成以及另一方面通过形成溴化化合物(如二溴苯酚)来影响产物分布。