Hydrogenolysis of Poly(Ethylene-co-Vinyl Alcohol) and Related Polymer Blends over Ruthenium Heterogeneous Catalysts

CHEMSUSCHEM(2024)

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Abstract
The hydrogenolysis of polymers is emerging as a promising approach to deconstruct plastic waste into valuable chemicals. Yet, the complexity of plastic waste, including multilayer packaging, is a significant barrier to handling realistic waste streams. Herein, we reveal fundamental insights into a new chemical route for transforming a previously unaddressed fraction of plastic waste - poly(ethylene-co-vinyl alcohol) (EVOH) and related polymer blends - into alkane products. We report that Ru/ZrO2 is active for the concurrent hydrogenolysis, hydrogenation, and hydrodeoxygenation of EVOH and its thermal degradation products into alkanes (C1-C35) and water. Detailed reaction data, product analysis, and catalyst characterization reveal that the in-situ thermal degradation of EVOH forms aromatic intermediates that are detrimental to catalytic activity. Increased hydrogen pressure promotes hydrogenation of these aromatics, preventing catalyst deactivation and improving alkane product yields. Calculated apparent rates of C-C scission reveal that the hydrogenolysis of EVOH is slower than low-density polyethylene. We apply these findings to achieve hydrogenolysis of EVOH/polyethylene blends and elucidate the sensitivity of hydrogenolysis catalysts to such blends. Overall, we demonstrate progress towards efficient catalytic processes for the hydroconversion of waste multilayer film plastic packaging into valuable products. The direct hydroconversion of poly(ethylene-co-vinyl alcohol) (EVOH) and polymer blends into alkane products over ruthenium catalysts has been studied. Using a combination of GC, MS, NMR, IR, and GPC, detailed product analysis and catalyst characterization provide fundamental insights into the reaction pathway in the hydrogenolysis of EVOH, which deviates from that of well-studied polyethylene (PE). This approach provides critical insights and outlines a methodology for the hydroconversion of waste multilayer film plastic packaging. image
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Key words
Heterogeneous Catalysis,Hydrogenolysis,Multilayer Films,Ruthenium,Waste Valorization
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