共 14 条
Airborne toluene removal for minimizing occupational health exposure by means of a trickle-bed biofilter
被引:0
|作者:
Massimo Raboni
Vincenzo Torretta
Paolo Viotti
机构:
[1] University LIUC-Cattaneo,School of Industrial Engineering
[2] University of Insubria,Department of Biotechnologies and Life Sciences
[3] University of Roma “La Sapienza”,Department of Civil and Environmental Engineering
来源:
Environmental Science and Pollution Research
|
2016年
/
23卷
关键词:
Toluene;
Biotrickling;
Air treatment;
Air pollution;
VOCs;
Occupational exposure;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The paper presents the experimental results on a biotrickling pilot plant, with a water scrubber as pre-treatment, finalized to the treatment of an airborne toluene stream in a working place. The air stream was characterized by a very high variability of the inlet concentrations of toluene (range: 4.35–68.20 mg Nm−3) with an average concentrations of 16.41 mg Nm−3. The pilot plant has proved its effectiveness in toluene removal, along a 90-day experimentation period, in steady-state conditions. The scrubbing pre-treatment has achieved an average removal efficiency of 69.9 %, but in particular it has proven its suitability in the rough removal of the toluene peak concentrations, allowing a great stability to the following biological process. The biotrickling stage has achieved an additional average removal efficiency of 75.6 %, confirming the good biodegradability of toluene. The biofilm observation by a scanning confocal laser microscope has evidenced a biofilm thickness of 650 μm fully penetrated by toluene degrading bacteria. Among the micro-population Pseudomonas putida resulted the dominant specie. This bacterium can therefore be considered the responsible for most of the toluene degradation. The whole experimented process has determined an average 92.7 % for toluene removal efficiency. This result meets the most stringent limits and recommendations for occupational safety, given by authoritative organizations in the USA and EU; it also meets the odorous threshold concentration of 11.1 mg Nm−3.
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页码:11751 / 11758
页数:7
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