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Enhanced styrene recovery from waste polystyrene pyrolysis using response surface methodology coupled with Box-Behnken design

Yu Mo, Lei Zhao, Zhonghui Wang, Chia-Lung Chen, Giin-Yu Amy Tan, Jing-Yuan Wang

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

A work applied response surface methodology coupled with Box-Behnken design (RSM-BBD) has been developed to enhance styrene recovery from waste polystyrene (WPS) through pyrolysis. The relationship between styrene yield and three selected operating parameters (i.e., temperature, heating rate, and carrier gas flow rate) was investigated. A second order polynomial equation was successfully built to describe the process and predict styrene yield under the study conditions. The factors identified as statistically significant to styrene production were: temperature, with a quadratic effect; heating rate, with a linear effect; carrier gas flow rate, with a quadratic effect; interaction between temperature and carrier gas flow rate; and interaction between heating rate and carrier gas flow rate. The optimum conditions for the current system were determined to be at a temperature range of 470-505. °C, a heating rate of 40. °C/min, and a carrier gas flow rate range of 115-140. mL/min. Under such conditions, 64.52% WPS was recovered as styrene, which was 12% more than the highest reported yield for reactors of similar size. It is concluded that RSM-BBD is an effective approach for yield optimization of styrene recovery from WPS pyrolysis. © 2014 Elsevier Ltd.
Original languageEnglish
Pages (from-to)763-769
JournalWaste Management
Volume34
Issue number4
DOIs
Publication statusPublished - Apr 2014
Externally publishedYes

Bibliographical note

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Research Keywords

  • Box-Behnken design
  • Polystyrene waste
  • Pyrolysis
  • Response surface methodology
  • Styrene

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