Engineering Research Internal of Resource Utilization of Carbon-containing Waste with Carbon Neutrality, Ministry of Education, Shanghai 200237, PR China; Shanghai Engineering Research Internal of Coal Gasification, East China University of Science and Technology, Shanghai 200237, PR China.
Engineering Research Internal of Resource Utilization of Carbon-containing Waste with Carbon Neutrality, Ministry of Education, Shanghai 200237, PR China; Shanghai Engineering Research Internal of Coal Gasification, East China University of Science and Technology, Shanghai 200237, PR China.
Bioresour Technol. 2025 Jan;416:131831. doi: 10.1016/j.biortech.2024.131831. Epub 2024 Nov 16.
Plastics and paper are common components of municipal solid waste (MSW), making an in-depth understanding of their interactions essential for MSW thermal conversion. In this study, the co-pyrolysis behavior of plastic and paper was investigated. Firstly, the thermal decomposition characteristics were analyzed. Secondly, the pyrolytic behavior was elucidated in a fixed-bed reactor. Thirdly, the impact of plastic melting on co-pyrolysis was clarified. Results indicated that the thermal decomposition was accelerated between 250 °C and 283 °C, while temperatures above 400 °C resulted in inhibition. During fixed-bed pyrolysis, char yields (70.7-16.9 %) were increased by 4.0 %-12.7 %. This increase was mainly due to plastic melting, which contributed 8.6 % and increased aliphatic carbon content. Besides, PVC and PET exhibited a broader melting range > 500 °C. Bio-oil yields (25.5-70.6 %) were reduced by 3.4 %-12.4 %, primarily affecting aliphatic compositions. Gas yields (3.8-6.5 %) were reduced < 400 °C but increased with temperature, involving primarily H, CH, CH, and CH.
塑料和纸是城市固体废物(MSW)的常见组成部分,因此深入了解它们之间的相互作用对于 MSW 的热转化至关重要。在本研究中,研究了塑料和纸的共热解行为。首先,分析了热分解特性。其次,在固定床反应器中阐明了热解行为。第三,阐明了塑料熔融对共热解的影响。结果表明,在 250°C 至 283°C 之间,热分解加速,而高于 400°C 的温度则导致抑制。在固定床热解过程中,炭产率(70.7-16.9%)增加了 4.0%-12.7%。这种增加主要归因于塑料的熔融,其贡献了 8.6%并增加了脂肪族碳含量。此外,PVC 和 PET 表现出较宽的熔融范围>500°C。生物油产率(25.5-70.6%)降低了 3.4%-12.4%,主要影响脂肪族组成。气体产率(3.8-6.5%)在<400°C 时降低,但随温度升高而增加,主要涉及 H、CH、CH 和 CH。