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임한권

Lim, Hankwon
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Demonstration of feasible waste plastic pyrolysis through decentralized biomass heating business model

Author(s)
Byun, ManheeDickson, RoficeBrigljevic, BorisLee, BoreumLim, DongjunUpadhyay, MukeshParamanatham, Salai Sargunan S.Nagulapati, Vijay MohanHaider, JunaidLim, Hankwon
Issued Date
2022-08
DOI
10.1016/j.jclepro.2022.132092
URI
https://scholarworks.unist.ac.kr/handle/201301/60130
Citation
JOURNAL OF CLEANER PRODUCTION, v.361, pp.132092
Abstract
As the global recycling industry has collapsed since the China import ban of 2017, the amount of plastic waste has been rapidly increasing with little to no economic incentives for its utilization as a feedstock. For the first time, this work demonstrates a proof of concept, pilot-scale cogeneration system for biomass heating and plasticderived pyrolytic oil production (MacroConverter (R)). Furthermore, a disruptive techno-economic business model for decentralized plastic pyrolysis is assessed and compared with a traditional centralized industrial system through superstructure supply-chain optimization. Results of this initial assessment indicate that using a decentralized plastic pyrolysis model, combined with seasonal heating demand, profitability can be increased (1.3-2.4 x) and the process is unlikely to show a loss of profit whereas the centralized process may show losses. Furthermore, compared to centralized pyrolysis, transportation costs, and related CO2 emissions were significantly decreased by 3-10 x and 1.4-7 x respectively.
Publisher
ELSEVIER SCI LTD
ISSN
0959-6526
Keyword (Author)
Waste-to-energyMacroConverter ?Decentralized plastic pyrolysiscogenerationSupply-chain optimization
Keyword
CHEMICALSDIESELDESIGNENERGYPLANTCATALYTIC PYROLYSISWOODY BIOMASS

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