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◆ Applications in Energy and Combustion Science2026-04-27· Waste management

A review on interactions and reactor implications during pyrolysis of biomass- and plastic-based waste

Ribhu Gautam, Shekhar R. Kulkarni, Ilman N. Zaini, Hengda Han, S. Mani Sarathy, Bassam B. Dally, William L. Roberts

原始摘要(英文原文)· Original abstract
Meeting the growing demand for sustainable fuels and chemicals requires the adoption of alternative raw materials to replace those obtained from fossil fuels. The co-pyrolysis of biomass- and plastic-based waste is seen as a highly promising avenue for the creation of sustainable fuels and chemicals. A comprehensive knowledge of the components' interactions during co-pyrolysis is essential for understanding the formation pathways of valuable compounds and realizing a viable and sustainable valorization of biomass and plastic waste. This review presents an integrated interactions-to-reactor perspective on co-pyrolysis of biomass- and plastic-based wastes. Co-pyrolysis chemistry of lignocellulosic and non-lignocellulosic biomass with different types of plastics is discussed with an emphasis on hydrogen transfer, mineral-assisted cracking and deoxygenation, heteroatom migration, and secondary vapor-phase reactions. Non-lignocellulosic biomass-based wastes including marine biomass, sewage sludge, food waste and other lipid-rich residues that introduce high ash, protein, and oxygen functionalities are discussed to understand reaction pathways. Mechanisms that provide insights into char formation during co-pyrolysis are also included. The review further highlights recent advances in reactor concepts (fixed-bed, fluidized-bed, auger, microwave-assisted, and catalytic systems) and examines how heat and mass transfer couple with chemistry to control selectivity. Finally, applications of CFD tools to co-pyrolysis systems are also outlined.
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