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基于回收聚丙烯和废弃印刷电路板的热塑性复合材料的开发。

Development of thermoplastic composites based on recycled polypropylene and waste printed circuit boards.

机构信息

National Institute for Research & Development in Chemistry & Petrochemistry, ICECHIM, 202 Splaiul Independentei, 060021 Bucharest, Romania.

National Institute for Research & Development in Chemistry & Petrochemistry, ICECHIM, 202 Splaiul Independentei, 060021 Bucharest, Romania.

出版信息

Waste Manag. 2020 Dec;118:391-401. doi: 10.1016/j.wasman.2020.08.050. Epub 2020 Sep 14.

DOI:10.1016/j.wasman.2020.08.050
PMID:32942222
Abstract

In the last several years, the electronic waste, especially printed circuit boards have significantly increased over the world, generating one of the highest rates of solid waste. The recycling process of the printed circuit boards implies mainly the recovery of metals and glass fibers, while the reuse of the polymeric support has remained largely in the phase of research. In this paper, the non-metallic part of printed circuit boards was used as filler (up to 30%), but also to improve the fire resistance of thermoplastic composites based on recycled polypropylene and diene block-copolymers. The synergy between the elastic effect of elastomers and the reinforcing effect of the waste powder into the thermoplastic matrix was studied by mechanical and dynamo-mechanical analysis, X-ray diffraction, optical microscopy, micro-calorimetry and thermo-gravimetrical analysis. Improved mechanical properties, especially impact strength was observed. The compatibization of components considering the interactions between the ethylene-butylene blocks from the hydrogenated and maleinized styrene-butadiene block-copolymer and recycled polypropylene, respectively between the MA groups and the functionalities of the waste powder, evidenced by FTIR, was highlighted by changes in the X-ray pattern and an increased fire resistance and thermal stability.

摘要

在过去的几年中,电子垃圾,尤其是印刷电路板在世界范围内显著增加,产生了最高的固体垃圾率之一。印刷电路板的回收过程主要包括金属和玻璃纤维的回收,而聚合物支撑体的再利用在很大程度上仍处于研究阶段。在本文中,印刷电路板的非金属部分被用作填充剂(高达 30%),但也被用来提高基于回收聚丙烯和二烯嵌段共聚物的热塑性复合材料的阻燃性。通过机械和动态机械分析、X 射线衍射、光学显微镜、微热量法和热重分析研究了弹性体的弹性效应和废粉在热塑性基体中的增强效应之间的协同作用。观察到机械性能得到改善,特别是冲击强度提高。考虑到氢化和马来酸酐化苯乙烯-丁二烯嵌段共聚物的乙烯-丁烯嵌段与回收聚丙烯之间、MA 基团与废粉功能之间的相互作用,对组分进行了增容,FTIR 表明 X 射线图谱发生了变化,阻燃性和热稳定性提高。

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