Isfahan University of Medical Sciences

Science Communicator Platform

Stay connected! Follow us on X network (Twitter):
Share this content! On (X network) By
Improved Degradation of N-Hexane Vapours Using a Hybrid System, a Photoreactor Packed With Tio2 Coated-Scoria Granules and a Multilayer Biofilter Publisher



Abdolahnejad A1 ; Mokhtari M1 ; Ebrahimi AA1 ; Nikaeen M1 ; Shahi MA1 ; Hajizadeh Y1
Authors
Show Affiliations
Authors Affiliations
  1. 1. Isfahan University of Medical Sciences, Isfahan, Iran

Source: Journal of Environmental Health Science and Engineering Published:2019


Abstract

Biofiltration of hydrophobic and/or recalcitrant volatile organic compounds such as n-hexane is imperfect. In the present study, we applied a hybrid system consisting of a photoreactor packed with scoria granules coated with TiO2 and a biofilter to improve the removal efficiency of n-hexane from the air stream. The experimental results showed that the hybrid system provided higher removal efficiencies than the single biofilter process with an inlet n-hexane concentration range of 0.11-1 g-3 for empty bed residence times (EBRTs) of 30-120 s in the hybrid system. The removal efficiency of the single biofilter in EBRTs of 30, 60 and 120 s was 10.06%, 21.45%, and 45.98%, respectively. When the photoreactor was included as a pretreatment system (with residence time of 7-27 s) and the overall EBRTs of the system was adjusted to 30, 60 and 120 s, the removal efficiency of the hybrid system was increased to 39.79%, 63.08%, and 92.6%, respectively. The mass ratio of carbon dioxide produced as an indicator for n-hexane degradation in the hybrid system and the biofilter alone was 1.9 and 1.28, respectively. Bacterial community analysis with sequence analysis of 16S rDNA in the biofilter biomass revealed that Pseudomonas and Bacillus as predominant bacterial species were responsible for n-hexane biodegradation. Therefore, the application of the hybrid system is advantageous in enhanced n-hexane removal from the air stream. © 2019 Springer Nature Switzerland AG.
Other Related Docs
15. Atenolol Absorption by Multi-Wall Carbon Nanotubes From Aqueous Solutions, Journal of Mazandaran University of Medical Sciences (2017)
19. Evaluation of Flat Sheet Membrane Bioreactor Efficiency for Municipal Wastewater Treatment, International Journal of Environmental Health Engineering (2012)
29. Performance Evaluation of a Scoria-Compost Biofilter Treating Xylene Vapors, Journal of Environmental Health Science and Engineering (2014)
33. Crotonaldehyde Removal From Polluted Air Using a Biofilter Packed With a Mixed Bed, Journal of Industrial and Engineering Chemistry (2018)
35. Comparison of the Biological Nh3 Removal Characteristics of a Three Stage Biofilter With a One Stage Biofilter, International Journal of Environmental Science and Technology (2006)