Vazquez Yamila V, Barbosa Silvia E
PLAPIQUI (UNS-CONICET), Cno. "La Carrindanga" km 7, Bahía Blanca, Argentina.
Waste Manag. 2017 Jan;59:403-408. doi: 10.1016/j.wasman.2016.10.021. Epub 2016 Oct 18.
The aim of this paper is to assess recycling process window of ABS (Acrylonitrile-Butadiene-Styrene) and HIPS (High impact Polystyrene) from WEEE (waste from electrical and electronic equipment) through a final properties/structure screening study on their blends. Main motivation is to evaluate which amount of one plastic WEEE can be included into the other at least keeping their properties. In this sense, a wider margin of error during sorting could be admitted to obtain recycling materials with similar technological application of recycled ABS and HIPS by themselves. Results are discussed in terms of final blend structure, focusing in the interaction, within blends, of copolymers phases and fillers presents in WEEE. The comparative analysis of mechanical performance and morphology of HIPS/ABS blends indicates that the addition of 50wt% HIPS to ABS even improves 50% the elongation at break maintaining the strength. On the opposite, HIPS maintains its properties with 20wt% of ABS added. This study allows enlarging composition process window of recycling plastic WEEE for similar applications. This could be a sustainable way to improve benefit of e-scrap with low costs and easy processability. In consequence, social interest in the recycling of this kind of plastic scrap could be encourage from either ecological or economical points of view.
本文旨在通过对废弃电气和电子设备(WEEE)中丙烯腈-丁二烯-苯乙烯共聚物(ABS)和高抗冲聚苯乙烯(HIPS)共混物的最终性能/结构筛选研究,评估其回收工艺窗口。主要动机是评估一种塑料WEEE能以何种含量混入另一种塑料中,同时至少保持其性能。从这个意义上说,在分类过程中可以允许更大的误差范围,以获得具有与回收的ABS和HIPS本身类似技术应用的回收材料。根据最终共混物结构讨论结果,重点关注WEEE中共聚物相和填料在共混物中的相互作用。HIPS/ABS共混物的力学性能和形态的对比分析表明,向ABS中添加50wt%的HIPS甚至能使断裂伸长率提高50%,同时保持强度。相反,添加20wt%的ABS时,HIPS能保持其性能。这项研究扩大了用于类似应用的回收塑料WEEE的组成工艺窗口。这可能是一种以低成本和易于加工的方式提高电子垃圾效益的可持续方法。因此,从生态或经济角度来看,都可以激发社会对这类塑料废料回收利用的兴趣。