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首页> 外文期刊>Chemistry: A European journal >Combined Chemical Activation and Fenton Degradation to Convert Waste Polyethylene into High-Value Fine Chemicals
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Combined Chemical Activation and Fenton Degradation to Convert Waste Polyethylene into High-Value Fine Chemicals

机译:结合化学活化和Fenton降解,将废聚乙烯转化为高价值的精细化学品

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摘要

Plastic waste is a valuable organic resource. However, proper technologies to recover usable materials from plastic are still very rare. Although the conversion/cracking/degradation of certain plastics into chemicals has drawn much attention, effective and selective cracking of the major waste plastic polyethylene is extremely difficult, with degradation of C-C/C-H bonds identified as the bottleneck. Pyrolysis, for example, is a nonselective degradation method used to crack plastics, but it requires a very high energy input. To solve the current plastic pollution crisis, more effective technologies are needed for converting plastic waste into useful substances that can be fed into the energy cycle or used to produce fine chemicals for industry. In this study, we demonstrate a new and effective chemical approach by using the Fenton reaction to convert polyethylene plastic waste into carboxylic acids under ambient conditions. Understanding the fundamentals of this new chemical process provides a possible protocol to solve global plastic-waste problems.
机译:塑料废料是一种宝贵的有机资源。但是,从塑料中回收可用材料的适当技术仍然非常罕见。尽管将某些塑料转化/裂解/降解为化学品备受关注,但主要的废塑料聚乙烯的有效和选择性裂解却极为困难,C-C / C-H键的降解被认为是瓶颈。例如,热解是一种用于使塑料破裂的非选择性降解方法,但它需要非常高的能量输入。为了解决当前的塑料污染危机,需​​要更有效的技术来将塑料废物转化为有用的物质,这些物质可以进入能源循环或用于生产工业用精细化学品。在这项研究中,我们通过使用Fenton反应将聚乙烯塑料废料在环境条件下转化为羧酸,证明了一种新的有效化学方法。了解这种新化学过程的基本原理为解决全球塑料废物问题提供了可能的方案。

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