Carbon Composite Materials Research Center, Korea Institute of Science and Technology, 92 Chudong-ro, Bongdong-eup, Wanju-gun, Jeonbuk, 55324, Republic of Korea.
Department of Quantum System Engineering, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeonbuk, 54896, Republic of Korea.
Macromol Rapid Commun. 2022 Jan;43(1):e2100467. doi: 10.1002/marc.202100467. Epub 2021 Nov 5.
Even though plastic improved the human standard of living, handling the plastic waste represents an enormous challenge. It takes more than 100 years to decompose discarded or buried waste plastics. Microplastics are one of the causes of significantly pervasive environmental pollutants. The incineration of plastic waste generates toxic gases, underscoring the need for new approaches, in contrast to conventional strategies that are required for recycling plastic waste. Therefore, several studies have attempted to upcycle plastic waste into high value-added products. Converting plastic waste into carbonaceous materials is an excellent upcycling technique due to their diverse practical applications. This review summarizes various studies dealing with the upcycling of plastic waste into carbonaceous products. Further, this review discusses the applications of carbonaceous products synthesized from plastic waste including carbon fibers, absorbents for water purification, and electrodes for energy storage. Based on the findings, future directions for effective upcycling of plastic waste into carbonaceous materials are suggested.
尽管塑料提高了人类的生活水平,但处理塑料垃圾却是一个巨大的挑战。丢弃或掩埋的废塑料需要超过 100 年的时间才能分解。微塑料是造成广泛存在的环境污染的原因之一。焚烧塑料垃圾会产生有毒气体,这凸显了需要新的方法,而不是像传统策略那样需要回收塑料垃圾。因此,已经有几项研究试图将塑料废物转化为高附加值产品。将塑料废物转化为碳质材料是一种极好的升级利用技术,因为它们具有多种实际应用。这篇综述总结了各种将塑料废物转化为碳质产品的研究。此外,本文还讨论了由塑料废物合成的碳质产品的应用,包括碳纤维、水净化用吸附剂和储能用电极。根据研究结果,提出了将塑料废物有效升级为碳质材料的未来方向。