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
Summary
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.
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