催化作用
聚合物
化学
有机化学
化学工程
材料科学
光化学
工程类
作者
Arjun K. Manal,Jun Zhao,Rajaram Bal,Rajendra Srivastava
出处
期刊:Chemsuschem
[Wiley]
日期:2025-06-02
卷期号:18 (15): e202500902-e202500902
标识
DOI:10.1002/cssc.202500902
摘要
The valorization of plastic waste and biomass has gained significant attention in the twenty first century. Despite structural similarities and the potential to yield similar products, an integrated approach to converting both feedstocks using the same catalyst has not been realized. This study demonstrates the catalytic upcycling of plastic waste and lignin biomass into selective C 6 C 9 aromatics through CO and/or CC bond cleavage using Ru‐supported catalysts. The Ru/TiO 2 exhibits remarkable performance, achieving 75%–90% yield from single, mixed plastic polymers and lignin. The exceptional activity of Ru/TiO 2 stems from its unique structural and electronic properties. H 2 spillover at the Ru–TiO 2 interface transfers in the form of H + /e − , where the e − reduces TiO 2 to TiO x , generating surface oxygen vacancies and inducing strong metal support interactions, while H + migrates to the adjacent oxygen sites, forming new Brønsted acid sites. Oxygen vacancies at TiO x sites promote the activation and cleavage of CO bonds, while Brønsted acid sites assist in the cleavage of CC bonds. Additionally, ultrasmall, highly dispersed Ru suppresses the hydrogenation of aromatics. These synergistic properties enable Ru/TiO 2 to selectively produce aromatics, offering a promising strategy for catalytic upcycling of aromatic polymer waste into sustainable chemicals, aligning with the circular economy.
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