Magnetic induction assisted pyrolysis of plastic waste to liquid hydrocarbons on carbon catalyst

被引:0
|
作者
Duong-Viet C. [1 ]
Truong-Phuoc L. [1 ]
Nguyen-Dinh L. [2 ]
Michon C. [3 ]
Nhut J.-M. [1 ]
Pham C. [4 ]
Ba H. [5 ]
Pham-Huu C. [1 ]
机构
[1] Institute of Chemistry and Processes for Energy, Environment and Health (ICPEES) – UMR 7515 CNRS-University of Strasbourg, 25 rue Becquerel, Strasbourg Cedex 02
[2] Department of Chemical Engineering, The University of Da-Nang – University of Science and Technology, Da-Nang
[3] Laboratoire d′Innovation Moléculaire et Applications (LIMA) - UMR 7042 CNRS-University of Strasbourg, 25 rue Becquerel, Strasbourg Cedex 02
[4] SICAT SAS, 20 place des Halles, Strasbourg
[5] BLACKLEAF SAS, 210 rue Geiler de Kaysersberg, Illkirch
来源
关键词
Carbon catalyst; Hydrocarbon production; Induction heating; Pyrolysis; Waste plastic recycling;
D O I
10.1016/j.mtcata.2023.100028
中图分类号
学科分类号
摘要
Carbon-based catalyst can effectively crack model waste plastic based on polyolefins under contactless induction heating and yield gaseous and liquid hydrocarbons fractions at mild reaction temperatures. High catalytic performances are reached thanks to the stable catalyst bed temperature arising from the high heating rate of the induction setup. By comparison to indirect Joule heating which required much higher temperatures, contactless direct induction heating allows a compensation of the internal temperature loss during such highly endothermic process through direct heat targeting. The single carbon-based catalyst combined a high and stable activity with an extremely high stability as a function of cycling tests with pure or mixed polymers. By comparison to the acid or metal based catalysts used in plastic cracking, such low cost carbon catalyst avoids deactivation within cycling tests and therefore provides an efficient and cost-effective route for waste plastic recycling and also as chemical storage means for renewable energy. © 2023 The Authors
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