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Comparing Zsm 5 , Tio 2 /Zsm 5 , Uv/ Zsm 5 , and Uv/Tio 2 /Zsm 5 Processes in Removal of Styrene From Synthetic Air Current



Mortazavi SB1 ; Salari M2 ; Mahabadi HA1 ; Shendi MRA3 ; Miri M4 ; Aval MY5
Authors
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Authors Affiliations
  1. 1. Department of Occupational Health Engineering, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran
  2. 2. Faculty of Public Health, Research Center for Health Sciences, Hamadan University of Medical Sciences, Hamadan, Iran
  3. 3. Faculty of Public Health, Tehran University of Medical Sciences, Tehran, Iran
  4. 4. Department of Environmental Health Engineering, School of Public Health, Sabzevar University of Medical Sciences, Sabzevar, Iran
  5. 5. Department of Occupational Health Engineering, School of Public Health, Sabzevar University of Medical Sciences, Sabzevar, Iran

Source: Journal of Mazandaran University of Medical Sciences Published:2018

Abstract

Background and purpose: Styrene, one of the most important compounds of VOCs, causes some health concern. In current study, the ability of ZSM 5 , TiO 2 /ZSM 5 , UV/ ZSM 5 , and UV/TiO 2 /ZSM 5 methods was investigated in removing styrene from air synthetic current. Materials and methods: In order to synthesize the zeolite and TiO 2 -coated zeolite, the sol-gel and saturation methods were employed, respectively. In this study, the effect of the type of removal process, saturation time and initial pollutant concentration were investigated on the removal of styrene in a photoreactor. Phocheck device with direct reading system was applied to determine the output concentration. Also, SEM, XRD, EDX, and BET analyses were used to characterize the chemical and physical properties of ZSM 5 , and TiO 2 /ZSM 5 . Results: SEM analysis showed that zeolite has a crystal form, and TiO 2 successfully covered the surface of this compound. In addition, the EDX analysis demonstrated that a great part of zeolite structural includes Al and Si constituents. The XRD pattern showed the presence of attached TiO 2 in the zeolite structure. BET analysis revealed that the surface area of zeolite decreased when TiO 2 was coated on its surface. The order of increase in removal efficiency was as follows: UV/TiO 2 /ZSM 5 > ZSM 5 > TiO 2 /ZSM 5 . The saturation time of ZSM 5 and TiO 2 /ZSM 5 in the 300 ppm concentration was 370 and 280 min, respectively, while the outlet concentration in the UV/TiO2/ZSM 5 method was fixed at 74% removal efficiency after elapsing 310 min. The increment of time exposure and initial styrene concentration also led to decrease in removal efficiency. Conclusion: In this study application of UV/TiO2/ZSM 5 process provided a higher efficiency of the styrene removal than that of TiO2/ZSM or ZSM 5 in the same time. © 2018, Mazandaran University of Medical Sciences. All rights reserved.