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不同合成废聚合物衍生的活性炭的组成、结构和吸附行为的比较研究。

Comparative study on composition, structure, and adsorption behavior of activated carbons derived from different synthetic waste polymers.

机构信息

College of Environmental Science and Engineering, Tianjin Key Laboratory of Environmental Remediation and Pollution Control, Key Laboratory of Pollution Processes and Environmental Criteria, Ministry of Education, Nankai University, Tianjin 300071, China.

出版信息

J Colloid Interface Sci. 2011 Aug 15;360(2):725-30. doi: 10.1016/j.jcis.2011.04.103. Epub 2011 May 4.

Abstract

The composition, structure, and adsorption behavior of activated carbons (ACs) derived from three different types of waste polymers, i.e., tire rubber (TR), polyvinyl chloride (PVC), and polyethyleneterephtalate (PET), by KOH activation were compared. The AC derived from PET exhibited the largest surface area (2831 m(2)/g) and pore volume (1.68 cm(3)/g) due to the homogenous aromatic composition of PET. The AC derived from PVC exhibited relatively lower surface area (2666 m(2)/g) but more narrowed pore size distribution (2-3 nm). The complex composition and high ash content of tire particles resulted in AC product with significantly lower surface area (398.5 m(2)/g) and heterogeneous pore width. Adsorption data of methylene blue (MB) were fitted well by Langmuir equation, indicating monolayer coverage on the ACs. The high oxygen content of PET-derived AC heavily affected its adsorption to MB and iodine. Due to the remarkable surface area and highly mesoporous structures, ACs based on both PET and PVC exhibited much higher adsorption capacities than that of TR and commercial coal-based AC (F400). This study demonstrates that the properties of ACs are highly dependent on their starting polymers and the potential of converting synthetic polymer waste into effective adsorbents for environmental remediation and cleanup.

摘要

三种不同类型废聚合物(轮胎橡胶(TR)、聚氯乙烯(PVC)和聚对苯二甲酸乙二醇酯(PET))经 KOH 活化制备的活性炭(AC)的组成、结构和吸附行为进行了比较。由于 PET 的均相芳构组成,由 PET 制备的 AC 具有最大的比表面积(2831 m2/g)和孔体积(1.68 cm3/g)。由于 PVC 的相对较低的比表面积(2666 m2/g)但更窄的孔径分布(2-3 nm)。轮胎颗粒的复杂组成和高灰分导致 AC 产品的比表面积(398.5 m2/g)显著降低,且孔径不均匀。亚甲蓝(MB)的吸附数据很好地符合 Langmuir 方程,表明在 AC 上单层覆盖。高氧含量的 PET 衍生 AC 对 MB 和碘的吸附有很大影响。由于具有显著的比表面积和高度的中孔结构,基于 PET 和 PVC 的 AC 的吸附容量远高于 TR 和商业煤基 AC(F400)。本研究表明,AC 的性质高度依赖于其起始聚合物,并且有可能将合成聚合物废物转化为用于环境修复和清理的有效吸附剂。

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