Abstract

Hydrophobic volatile organic compounds (VOCs) such as n-hexane are not completely biodegradable by a single biofilter. So, in the present study, a photoreactor system packed with scoria granules coated with TiO2, as a pretreatment unit, was used for increasing the removal efficiency of n-hexane by a biofilter during an operation period of 191 days. The inlet and outlet concentration of n-hexane was analyzed with a gas chromatography coupled with a flame ionization detector (GC/FID). The results indicated that the removal efficiency of the single biofilter with input concentrations of 0.18 – 1 g/m3 at empty bed residence times (EBRTs) of 30, 60, and 120 s was 10.06%, 21.45%, and 46.8%, respectively. When the photoreactor was used as a pretreatment system, the removal efficiency of the combined system in corresponding EBRTs was improved to 39.79%, 63.08%, and 92.60%, respectively. The results proved that the combined system provided higher removal efficiencies than the single biofilter. Thus, the application of the photoreactor as a pretreatment step was much effective in increasing the removal efficiency of n-hexane from the polluted air by the biofilter.

Highlights

  • Yaghoub Hajizadeh a, Negar Jafari a, Mehdi Mokhtari b, Amir Mohammadi c, Seyed Mojtaba Momtaz d, Farzad Fanaei e, Ali Abdolahnejad c,∗

  • The results indicated that the removal efficiency of the single biofilter with input concentrations of 0.18 – 1 g/m3 at empty bed residence times (EBRTs) of 30, 60, and 120 s was 10.06%, 21.45%, and 46.8%, respectively

  • In the present study, a photoreactor packed with scoria granules coated with TiO2, as a pretreatment unit, was used to increase the removal efficiency of n-hexane by a biofilter during an operation period of 191 days

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Summary

Introduction

Yaghoub Hajizadeh a, Negar Jafari a, Mehdi Mokhtari b, Amir Mohammadi c, Seyed Mojtaba Momtaz d, Farzad Fanaei e, Ali Abdolahnejad c,∗. The results indicated that the removal efficiency of the single biofilter with input concentrations of 0.18 – 1 g/m3 at empty bed residence times (EBRTs) of 30, 60, and 120 s was 10.06%, 21.45%, and 46.8%, respectively.

Results
Conclusion
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