General Information
    • ISSN: 2010-0221 (Print)
    • Abbreviated Title: Int. J. Chem. Eng. Appl.
    • Frequency: Biannually
    • DOI: 10.18178/IJCEA
    • Editor-in-Chief: Prof. Dr. Shen-Ming Chen
    • Executive Editor: Alice Loh
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Editor-in-chief
Prof. Dr. Shen-Ming Chen
National Taipei University of Technology, Taiwan
 

IJCEA 2022 Vol.13(4): 25-29 ISSN: 2010-0221
doi: 10.18178/ijcea.2022.13.4.797

Pyrolysis Simulation of Plastic Wastes in Actual Situation

Zijian Wang

Abstract—Nowadays, the physical and chemical qualities of the same type of plastic goods can vary significantly due to production conditions and manufacturing processes, making it difficult to categorize discarded plastic products and increasing the difficulty of recycling. In this paper, three thermoplastics: polypropylene (PP); polystyrene (PS); and high-density polyethylene (HDPE), are used to detect and analyze the pyrolysis properties of waste plastics using Thermogravimetric Analysis (TGA) and to calculate the kinetic parameters of thermoplastics in the pyrolysis reaction. It is found that the mixed pyrolysis of plastics facilitates the pyrolysis reaction, but the required activation energy of the reaction increases if the content of more stable HDPE gains. The optimum pyrolysis temperature range and activation energy of pyrolysis are discovered by modelling the real proportion of waste plastics and pyrolyzing them. And the results will predict and guide the engineering development for mass waste plastic pyrolysis.

Index Terms—Plastic waste, plastic pyrolysis, activation energy.

Zijian Wang is with the Hong Kong University of Science and Technology, Clearwater Bay, Kowloon, Hong Kong (e-mail: brucew0904@outlook.com).

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Cite: Zijian Wang, "Pyrolysis Simulation of Plastic Wastes in Actual Situation," International Journal of Chemical Engineering and Applications vol. 13, no. 4, pp. 25-29, 2022.

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