Recent advances in liquid fuel production from plastic waste via pyrolysis: Emphasis on polyolefins and polystyrene

被引:6
|
作者
Valizadeh, Soheil [1 ]
Valizadeh, Behzad [1 ]
Seo, Myung Won [1 ]
Choi, Yong Jun [1 ]
Lee, Jechan [2 ,3 ]
Chen, Wei-Hsin [4 ,5 ,6 ]
Lin, Kun-Yi Andrew [7 ,8 ,9 ]
Park, Young -Kwon [1 ]
机构
[1] Univ Seoul, Sch Environm Engn, Seoul 02504, South Korea
[2] Sungkyunkwan Univ, Dept Global Smart City, 2066 Seobu Ro, Suwon 16419, South Korea
[3] Sungkyunkwan Univ, Sch Civil Architectural Engn & Landscape Architect, 2066 Seobu Ro, Suwon 16419, South Korea
[4] Natl Cheng Kung Univ, Dept Aeronaut & Astronaut, Tainan 701, Taiwan
[5] Tunghai Univ, Res Ctr Smart Sustainable Circular Econ, Taichung 407, Taiwan
[6] Natl Chin Yi Univ Technol, Dept Mech Engn, Taichung 411, Taiwan
[7] Natl Chung Hsing Univ, Dept Environm Engn, 145 Xingda Rd, Taichung 402, Taiwan
[8] Natl Chung Hsing Univ, Innovat & Dev Ctr Sustainable Agr, 145 Xingda Rd, Taichung 402, Taiwan
[9] Natl Tsing Hua Univ, Inst Analyt & Environm Sci, Hsinchu, Taiwan
基金
新加坡国家研究基金会;
关键词
Plastic waste; Waste management; Thermo -catalytic pyrolysis; Liquid fuels generation; HIGH-DENSITY POLYETHYLENE; FLUIDIZED-BED REACTOR; CATALYTIC PYROLYSIS; HZSM-5; ZEOLITE; THERMAL-DEGRADATION; PROCESS PARAMETERS; STYRENE MONOMER; FLASH PYROLYSIS; OIL PRODUCTION; TEMPERATURE;
D O I
10.1016/j.envres.2024.118154
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The management of plastic waste (PW) has become an indispensable worldwide issue because of the enhanced accumulation and environmental impacts of these waste materials. Thermo-catalytic pyrolysis has been proposed as an emerging technology for the valorization of PW into value-added liquid fuels. This review provides a comprehensive investigation of the latest advances in thermo-catalytic pyrolysis of PW for liquid fuel generation, by emphasizing polyethylene, polypropylene, and polystyrene. To this end, the current strategies of PW management are summarized. The various parameters affecting the thermal pyrolysis of PW (e.g., temperature, residence time, heating rate, pyrolysis medium, and plastic type) are discussed, highlighting their significant influence on feed reactivity, product yield, and carbon number distribution of the pyrolysis process. Optimizing these parameters in the pyrolysis process can ensure highly efficient energy recovery from PW. In comparison with non-catalytic PW pyrolysis, catalytic pyrolysis of PW is considered by discussing mechanisms, reaction pathways, and the performance of various catalysts. It is established that the introduction of either acid or base catalysts shifts PW pyrolysis from the conventional free radical mechanism towards the carbonium ion mechanism, altering its kinetics and pathways. This review also provides an overview of PW pyrolysis practicality for scaling up by describing techno-economic challenges and opportunities, environmental considerations, and presenting future outlooks in this field. Overall, via investigation of the recent research findings, this paper offers valuable insights into the potential of thermo-catalytic pyrolysis as an emerging strategy for PW management and the production of liquid fuels, while also highlighting avenues for further exploration and development.
引用
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页数:19
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