Valorizing Polymeric Wastes and Biomass through Optimized Co-Pyrolysis for Upgraded Pyrolysis Oil: A study on TG-FTIR and Fixed bed reactor

热解 傅里叶变换红外光谱 生物量(生态学) 热解油 材料科学 废物管理 化学工程 制浆造纸工业 化学 有机化学 工程类 海洋学 地质学
作者
Gulzeb Rajput,Bin Liu,Minhui Pan,Akash Kumar,Lata Kumari,Muhammad Zohaib Farooq,Dan Li,Fawei Lin,Longlong Ma
出处
期刊:Journal of Analytical and Applied Pyrolysis [Elsevier BV]
卷期号:: 106686-106686
标识
DOI:10.1016/j.jaap.2024.106686
摘要

The co-pyrolysis of biomass and polymeric wastes offers a promising approach for waste reduction and valuable product recovery while decreasing fossil fuel dependence. This study aimed to investigate the synergistic effects of blending waste tire (WT) or polystyrene (PS) with sawdust (SD) at varying effective hydrogen/carbon ratio (H/Ceff) on liquid product distribution. Thermal degradation behavior was analyzed using TGA-FTIR, followed by fixed-bed reactor pyrolysis experiments at different temperatures. The devolatilization of SD primarily occurred between 185 and 390°C, while WT and PS decomposed between 250-500°C and 350-460°C, respectively. Results showed that SD addition to WT accelerated degradation at lower temperatures. Optimal H/Ceff ratios were 0.42 for WT/SD and 0.64 for PS/SD blends at 500°C, maximizing valued hydrocarbons, reducing pollutants, and yielding the highest liquid fraction. TGA-FTIR analysis revealed the presence of various functional groups, including C-H, C=C, CO2, and O-H. The pyrolytic oil showed improved stability with significantly fewer undesired compounds. This research provides theoretical and practical insights into the control and application potential as well as the limitations of high-value energy products derived from the co-pyrolysis of SD, WT, and PS.

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