Recovery of plastic waste through its thermochemical degradation: a review

被引:0
作者
José Nolasco Cruz
Karla Donjuan Martínez
Juan José López Ávila
Irma Pérez Hernández
María de Lourdes Castellanos Villalobos
机构
[1] University of Guanajuato,Department of Mechanical Engineering
[2] University of Veracruz,Idioms Center
[3] University of Veracruz,Department of Mechanical Engineering
来源
Environmental Monitoring and Assessment | 2023年 / 195卷
关键词
Recovery; Plastic waste; Degradation; Environment; Recycling;
D O I
暂无
中图分类号
学科分类号
摘要
The demand to produce plastic has increased yearly; only in 2020, there was a production of approximately 368 million tons worldwide. According to Plastics Europe, from 2016 to 2018, a total of 29.1 Mt of plastic waste was generated, and 24% of this ended up in a landfill, generating problems due to accumulation. The increase in the demand for plastics has begun to contribute to the shortage of oil sources, a non-renewable resource. On the other hand, various researchers have reported effects on human health such as neurological damage, cancer in the nasal cavities, prostate, and ovarian cancer, and in animal species, destruction of the digestive and respiratory tracts due to the consumption of microplastics in food. Due to these reasons, various solutions have been proposed for recovering and recycling plastic waste. One of the most promising technologies is thermal and catalytic degradation, known as pyrolysis. This technology allows the recovery of chemical compounds of high energy value. In this work, the various environmental and social impacts caused by plastic are discussed. Worldwide consumption data is provided by sector and type of plastic, and the different routes of thermal degradation for each type of thermoplastic are shown.
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  • [1] Abbas-Abadi MS(2014)Evaluation of pyrolysis process parameters on polypropylene degradation products Journal of Analytical and Applied Pyrolysis 109 272-277
  • [2] Haghighi MN(2014)Thermo-catalytic pyrolysis of polystyrene in the presence of zinc bulk catalysts Journal of the Taiwan Institute of Chemical Engineers 45 2494-2500
  • [3] Yeganeh H(2007)Feedstock recycling of polyethylene in a two-step thermo-catalytic reaction system Journal of Analytical and Applied Pyrolysis 79 415-423
  • [4] McDonald AG(2015)Pyrolysis study of polypropylene and polyethylene into premium oil products International Journal of Green Energy 12 663-671
  • [5] Adnan S(2021)Utilization of liquid product through pyrolysis of LDPE and C/LDPE as commercial wax Environmental Science and Pollution Research 28 45971-45984
  • [6] J., & Jan, M. R. J(2017)A review on thermal and catalytic pyrolysis of plastic solid waste (PSW) Journal of Environmental Management 197 177-198
  • [7] Aguado DP(2010)Kinetic study of high density polyethylene (HDPE) pyrolysis Chemical Engineering Research and Design 88 1599-1606
  • [8] Serrano G(2021)Plastic waste management: A review of existing life cycle assessment studies Sustainability (Switzerland) 13 1-21
  • [9] San Miguel MC(2011)Catalytic coprocessing of coal and petroleum residues with waste plastics to produce transportation fuels Fuel Processing Technology 92 1109-1120
  • [10] Castro S(2008)Pyrolysis of high-density polyethylene for the production of fuel-like liquid hydrocarbon Iraqi Journal of Chemical and Petroleum Engineering 9 23-29