Pyrolysis of plastic waste for sustainable energy Recovery: Technological advancements and environmental impacts

被引:1
|
作者
Hasan, M. M. [1 ,2 ]
Haque, R. [3 ]
Jahirul, M. I. [1 ,2 ]
Rasul, M. G. [1 ,2 ]
机构
[1] Cent Queensland Univ, Sch Engn & Technol, Rockhampton, Qld 4701, Australia
[2] Cent Queensland Univ, Ctr Hydrogen & Renewable Energy, Gladstone, Qld 4680, Australia
[3] Univ Sunshine Coast, Sch Sci Technol & Engn, Sippy Downs, QLD 4556, Australia
关键词
Pyrolysis; Plastic waste management; Energy recovery; Sustainable waste-to-energy; Circular economy; Greenhouse gas reduction; HIGH-DENSITY POLYETHYLENE; GASOLINE-RANGE HYDROCARBONS; FLUIDIZED-BED REACTOR; BIO-OIL PRODUCTION; CATALYTIC PYROLYSIS; SLOW PYROLYSIS; PRODUCT YIELD; ECONOMIC-FEASIBILITY; CIRCULAR ECONOMY; ORGANIC FRACTION;
D O I
10.1016/j.enconman.2025.119511
中图分类号
O414.1 [热力学];
学科分类号
摘要
The global plastic waste crisis requires innovative solutions, and pyrolysis has emerged as a promising technology. This review critically examines pyrolysis technologies for plastic waste management, focusing on their efficiency, economic potential, and environmental impact. Pyrolysis can convert 60 %-80 % of plastic waste into liquid fuels, with yields of up to 85 % in fast pyrolysis processes conducted at temperatures between 450 degrees C and 600 degrees C. The process also reduces greenhouse gas emissions by 40 %, mitigating 3.5 tons of CO2-equivalent per ton of plastic waste processed. Economically, pyrolysis oil can be sold for $600-$900 per ton, while syngas, with a market value of $200-$300 per ton, can generate up to 800 kWh of electricity per ton of waste. Challenges include high energy requirements and the need for more efficient catalysts, which could improve liquid fuel yields by an additional 15 %. Future research should prioritize developing cost-effective and durable catalysts, improving energy efficiency in large-scale reactors, and integrating renewable energy sources to further enhance sustainability. Additionally, supportive policies and market strategies are crucial for enabling large-scale adoption of pyrolysis technologies.
引用
收藏
页数:25
相关论文
共 50 条
  • [41] Assessment of energy recovery potential and analysis of environmental impacts of waste to energy options using life cycle assessment
    Kumar, Atul
    Samadder, Sukha Ranjan
    JOURNAL OF CLEANER PRODUCTION, 2022, 365
  • [42] Waste to Energy Conversion and Sustainable Recovery of Nutrients from Pee Power - Recent Advancements in Urine-Fed MFCs
    Narayanan, Natarajan
    Mangottiri, Vasudevan
    Narayanan, Kiruba
    MINI-REVIEWS IN ORGANIC CHEMISTRY, 2020, 17 (07) : 768 - 779
  • [43] FEEDSTOCK RECYCLING AND ENERGY RECOVERY FROM PLASTIC WASTE
    GEIGER, T
    KNOPF, H
    LEISTNER, G
    ROMER, R
    SEIFERT, H
    CHEMIE INGENIEUR TECHNIK, 1993, 65 (06) : 703 - 709
  • [44] Energy and Sustainable Development: Environmental Impacts of Energy Use in Africa
    Hussein, Muawya Ahmed
    SURVIVAL AND SUSTAINABILITY: ENVIRONMENTAL CONCERNS IN THE 21ST CENTURY, 2011, : 471 - 479
  • [45] Life cycle assessment of plastic waste and energy recovery
    Vlasopoulos, Antonis
    Malinauskaite, Jurgita
    Zabnienska-Gora, Alina
    Jouhara, Hussam
    ENERGY, 2023, 277
  • [46] Harnessing solar energy with porous organic polymers: Advancements, challenges, economic, environmental impacts and future prospects in sustainable photocatalysis
    Kotp, Mohammed G.
    Kuo, Shiao-Wei
    MATERIALS TODAY CHEMISTRY, 2024, 41
  • [47] Sustainable waste management in the Indonesian medical and health-care industry: technological performance on environmental impacts and occupational safety
    Tseng, Ming Lang
    Ardaniah, Viqi
    Bui, Tat-Dat
    , Jiun-Wei Tseng
    Lim, Ming K.
    Ali, Mohd Helmi
    MANAGEMENT OF ENVIRONMENTAL QUALITY, 2022, 33 (02) : 549 - 569
  • [48] Progress in waste oil to sustainable energy, with emphasis on pyrolysis techniques
    Lam, Su Shiung
    Liew, Rock Keey
    Jusoh, Ahmad
    Chong, Cheng Tung
    Ani, Farid Nasir
    Chase, Howard A.
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 53 : 741 - 753
  • [49] Quality and environmental impacts of oil production through pyrolysis of waste tyres
    Yasar, Abdullah
    Rana, Saba
    Moniruzzaman, Muhammad
    Nazar, Masooma
    Tabinda, Amtul Bari
    Haider, Rizwan
    Ahmad, Aqeel
    Mukhtar, Ahmad
    Qyyum, Muhammad Abdul
    Ullah, Sami
    ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2021, 23
  • [50] Traded Plastic, Traded Impacts? Designing Counterfactual Scenarios to Assess Environmental Impacts of Global Plastic Waste Trade
    Li, Kai
    Ward, Hauke
    Lin, Hai Xiang
    Tukker, Arnold
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2024, 58 (20) : 8631 - 8642