Published January 2018 | Version v1
Journal article

Optimization of non-thermal plasma efficiency in the simultaneous elimination of benzene, toluene, ethyl-benzene, and xylene from polluted airstreams using response surface methodology

  • 1. Mashhad University of Medical Sciences, Department of Environmental Health Engineering, Social Determinants of Health Research Center (Iran, Islamic Republic of)
  • 2. Iran University of Medical Sciences, Department of Environmental Health Engineering, School of Public Health (Iran, Islamic Republic of)
  • 3. Mashhad University of Medical Sciences, Student Research Committee, Department of Environmental Health Engineering, School of Health (Iran, Islamic Republic of)
  • 4. Shahid Beheshti University of Medical Sciences, Department of Ergonomics and Industrial Safety, School of Health, Safety and Environment (Iran, Islamic Republic of)
  • 5. University of Zanjan, Department of Chemical Engineering (Iran, Islamic Republic of)

Description

Treatment with a non-thermal plasma (NTP) is a new and effective technology applied recently for conversion of gases for air pollution control. This research was initiated to optimize the efficient application of the NTP process in benzene, toluene, ethyl-benzene, and xylene (BTEX) removal. The effects of four variables including temperature, initial BTEX concentration, voltage, and flow rate on the BTEX elimination efficiency were investigated using response surface methodology (RSM). The constructed model was evaluated by analysis of variance (ANOVA). The model goodness-of-fit and statistical significance was assessed using determination coefficients (R2 and R2adj) and the F-test. The results revealed that the R2 proportion was greater than 0.96 for BTEX removal efficiency. The statistical analysis demonstrated that the BTEX removal efficiency was significantly correlated with the temperature, BTEX concentration, voltage, and flow rate. Voltage was the most influential variable affecting the dependent variable as it exerted a significant effect (p < 0.0001) on the response variable. According to the achieved results, NTP can be applied as a progressive, cost-effective, and practical process for treatment of airstreams polluted with BTEX in conditions of low residence time and high concentrations of pollutants.

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Publishing Information

Journal Title
Environmental Science and Pollution Research International
Journal Volume
25
Journal Issue
1
Journal Page Range
p. 233-241
ISSN
0944-1344
CODEN
ESPLEC

INIS

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Copyright (c) 2017 Springer-Verlag GmbH Germany