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Mechanical reprocessing of polyolefin waste: a review

机译:机械加工聚烯烃废料:综述

摘要

Efficient technology and applications for recycled polymer waste has become increasingly important to decrease environmental contamination and to conserve nonrenewable fossil fuels. Mechanical recycling is the most widely practiced in Australia, since it is relatively easy and economic; and moreover, infrastructure for collection and reprocessing has been well established. In order to improve quality of end products of recycled plastics, various workable reprocessing techniques in the second stage of mechanical recycling have been developed and widely applied in the recycling industry. This article critically reviews the current reprocessing techniques of recycled polyolefins. Reprocessing recycled polyolefins is always accompanied with degradation, crystallization, and consequent processability problems, which result from molecular chain scission, branching, and crosslinking. The present state of knowledge and technology of various reprocessing techniques, including melt blending, filler reinforcement and mechanochemistry, is then described and evaluated systematically. Each reprocessing technique presents its own individual advantages and special applications.
机译:对于减少环境污染和节约不可再生的化石燃料而言,高效的技术和可回收聚合物废物的应用变得越来越重要。机械回收是澳大利亚最广泛的实践,因为它相对容易且经济。而且,收集和后处理的基础设施已经建立良好。为了提高再生塑料最终产品的质量,在机械回收的第二阶段开发了各种可行的后处理技术,并将其广泛应用于回收行业。本文严格审查了再生聚烯烃的当前后处理技术。再生聚烯烃的再加工始终伴随着降解,结晶以及随之而来的可加工性问题,这些问题是由分子链断裂,支化和交联引起的。然后,系统地描述和评估了各种后处理技术(包括熔融共混,填料增强和机械化学)的知识和技术现状。每种后处理技术都有其自身的优势和特殊应用。

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