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Characterization of pyrolysis products from end-of-life electronic equipment.

机译:报废电子设备的热解产物的表征。

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Tertiary Recycling of End-of-Life electronic equipment such as computer monitor casings and disk drives is considered in this project. This research aim's at finding new recycling processes that have a possibility for economic scale-up. The present work was divided into two parts. The first one dealt with the investigation of two mixed-plastics streams provided by MBA Polymers (MBAP). One of the streams consisted of fines (MBAP-1), and the other was a non-separable stream, MBAP-2. These solid polymer streams from MBAP were reacted in a Tubular Reactor inerted with helium. The overall objective of these reactions is to determine the process parameters (Reaction Temperature and Pressure) required in order to achieve maximum oil yield. The reaction process parameters are the reaction temperature (375°C, 400°C, 425°C and 450°C) and the reaction time (15min, 30min and 45min). Tetrahydrofuran (THF) and hexane are used as solvents to separate the non-gaseous products which are partitioned into THF-Insoluble, THF-Soluble Hexane-Insoluble and Hexane-Solubles while the gaseous products are analyzed using a gas chromatograph (GC). (Abstract shortened by UMI.)
机译:本项目考虑对报废电子设备(例如计算机显示器外壳和磁盘驱动器)进行第三次回收。这项研究的目的是寻找有可能扩大经济规模的新回收工艺。目前的工作分为两个部分。第一个是对MBA聚合物(MBAP)提供的两种混合塑料物流的研究。其中一个流由罚款(MBAP-1)组成,另一个是不可分离的流MBAP-2。来自MBAP的这些固体聚合物流在用氦气惰化的管式反应器中反应。这些反应的总体目的是确定为了获得最大油收率所需的工艺参数(反应温度和压力)。反应过程参数是反应温度(375℃,400℃,425℃和450℃)和反应时间(15min,30min和45min)。使用四氢呋喃(THF)和己烷作为溶剂来分离非气态产物,这些非气态产物分为THF不溶性,THF可溶的己烷不溶性和正己烷溶性,同时使用气相色谱仪(GC)分析气态产物。 (摘要由UMI缩短。)

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