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Direction of CRT waste glass processing: Electronics recycling industry communication

机译:CRT废玻璃加工方向:电子回收行业交流

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Cathode Ray Tube, CRT, waste glass recycling has plagued glass manufacturers, electronics recyders and electronics waste policy makers for decades because the total supply of waste glass exceeds demand, and the formulations of CRT glass are ill suited for most reuse options. The solutions are to separate the undesirable components (e.g. lead oxide) in the waste and create demand for new products. Achieving this is no simple feat, however, as there are many obstacles: limited knowledge of waste glass composition; limited automation in the recycling process; transportation of recycled material; and a weak and underdeveloped market. Thus one of the main goals of this paper is to advise electronic glass recyclers on how to best manage a diverse supply of glass waste and successfully market to end users. Further, this paper offers future directions for academic and industry research. To develop the recommendations offered here, a combination of approaches were used: (1) a thorough study of historic trends in CRT glass chemistry; (2) bulk glass collection and analysis of cullet from a large-scale glass recycler; (3) conversations with industry members and a review of potential applications; and (4) evaluation of the economic viability of specific uses for recycled CRT glass. If academia and industry can solve these problems (for example by creating a database of composition organized by manufacturer and glass source) then the reuse of CRT glass can be increased.
机译:阴极射线管,阴极射线管,废玻璃回收困扰着玻璃制造商,电子回收器和电子废物政策制定者数十年之久,因为废玻璃的总供应量超过了需求,而且CRT玻璃的配方不适用于大多数再利用选择。解决方案是分离废物中的不良成分(例如氧化铅),并创造对新产品的需求。然而,要实现这一目标并非易事,因为存在许多障碍:对废玻璃成分的了解有限;回收过程中自动化程度有限;运输回收材料;以及疲软且不发达的市场。因此,本文的主要目标之一是就如何最好地管理各种玻璃废料供应并成功地将其推向最终用户的建议向电子玻璃回收商提供建议。此外,本文为学术和行业研究提供了未来的方向。为了提出此处提供的建议,使用了多种方法的组合:(1)全面研究CRT玻璃化学的历史趋势; (2)从大型玻璃回收站收集散装玻璃并分析碎玻璃; (3)与行业成员的对话以及对潜在应用的审查; (4)评估再生CRT玻璃特定用途的经济可行性。如果学术界和工业界可以解决这些问题(例如,通过创建由制造商和玻璃来源组织的成分数据库),则可以提高CRT玻璃的重复使用率。

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