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SPECIAL AND COMPREHENSIVE REVIEW







                 Exploration of the scientific development of AI-assisted pyrolysis of
                                              waste plastics(Part A)

                                                        Zhang Yougen

                                 (Shanghai First Plastic Machinery Factory, Shanghai 201201, China)
                  Abstract: The pyrolysis of waste plastics, as a kind of environmentally friendly and efficient waste
              treatment method, has received widespread attention. This paper expounds the development strategy
              of the basic theoretical system for AI waste plastics pyrolysis; explores the main functional analysis and key
              technology implementation strategies of the AI waste plastics pyrolysis model; explores the design of the AI
              waste plastics pyrolysis system; expounds and analyzes the application cases of AI waste plastics pyrolysis;
              discusses the future development trends and challenges of AI waste plastics pyrolysis technology, pointing
              out that how to achieve the optimal environmentally friendly waste plastics pyrolysis has become a key issue
              that needs to be urgently addressed. This paper provides a reference for intelligent solutions for waste plastics
              pyrolysis.
                  Key words: AI; waste plastics; pyrolysis; scientific development
                  Classification number: TQ320.9                                       Article number: 1009-797X(2026)02-0001-09
                  Document code: B                                                           DOI:10.13520/j.cnki.rpte.2026.02.001







                  In recent years, with the rapid development of AI and   system; elaborates and analyzes the application cases of AI
              its widespread application in various fields, the pyrolysis   waste plastic pyrolysis; discusses the future development
              of waste plastics empowered by AI has gradually emerged,   trends and challenges of AI waste plastic pyrolysis technology,
              demonstrating tremendous potential and prospects. The   pointing out that how to achieve the optimal environmentally
              pyrolysis technology of waste plastics empowered by AI   friendly waste plastic pyrolysis has become a key issue
              optimizes the pyrolysis process through intelligent means,   that needs to be urgently addressed. This article provides a
              improves pyrolysis efficiency, reduces energy consumption,   reference for intelligent solutions for waste plastic pyrolysis.
              and achieves efficient resource utilization of waste materials.
              It is expected to provide a more environmentally friendly,   1 Development strategy for the basic
              efficient, and sustainable green solution to address the   theoretical system of AI waste plastic
              environmental problems of waste plastics. This not only   pyrolysis
              enhances the intelligent level of pyrolysis but also promotes the   The AI theoretical system has been introduced into
              dual improvement of environmental protection and economic   the field of waste plastic pyrolysis. Based on the scientific
              benefits, providing a sustainable green solution to the problem   development of environmentally friendly green pyrolysis of
              of plastic pollution.                             waste plastics, an AI-based fundamental theoretical system
                  This article expounds on the development strategy of
              the basic theoretical system for AI waste plastic pyrolysis;   Biography: Zhang Yougen (1947-), male, is a professor-level senior
                                                                engineer who has been enjoying a lifelong special government allowance
              explores the main functional analysis and key technology
                                                                from the State Council. He is primarily engaged in research related to
              implementation strategies of the AI waste plastic pyrolysis   plastic materials and processes, and has published numerous papers in
              model; explores the design of the AI waste plastic pyrolysis   national journals.


              Vol.52,2026                                                                              ·1·
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