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  • Treatment of a BTo-X-contaminated gas stream with a biotrickling filter inoculated with microbes bound to a wheat bran/red wood powder/diatomaceous earth carrier.

Treatment of a BTo-X-contaminated gas stream with a biotrickling filter inoculated with microbes bound to a wheat bran/red wood powder/diatomaceous earth carrier.

Bioresource technology (2010-06-26)
Jian M Chen, Run Y Zhu, Wei B Yang, Li L Zhang
ABSTRACT

Microbes bound to a wheat bran/red wood powder/diatomaceous earth carrier were used as inoculants for a biotrickling filter (BTF) for treating gases contaminated with a mixture of benzene, toluene, and o-xylene (BTo-X). An overall removal efficiency of more than 87.9% was achieved after a start-up period of as low as 4days. At BTo-X loading rates (LRs) below 60.0g/m(3)h, the BTF's performance was similar for EBRTs of 90, 60, 45 and 30s with an elimination capacity (EC) almost approaching the LR; stable REs above 91.3% for benzene and toluene and above 82.8% for o-xylene were achieved. A maximum EC of 97.7g/m(3)h was obtained at inlet load of 146.4g/m(3)h. The mass ratio of carbon dioxide produced to the BTo-X removed was approximately 2.62, which confirmed complete degradation of BTo-X. The results demonstrate that microbes bound to a solid carrier can be an alternative to traditional liquid inoculums applied in BTFs and highlight their potential applicability to BTF technologies.

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Sigma-Aldrich
Xileni, histological grade
Sigma-Aldrich
Xileni, ACS reagent, ≥98.5% xylenes + ethylbenzene basis
Sigma-Aldrich
Xileni, reagent grade
Sigma-Aldrich
o-Xylene, reagent grade, ≥98.0%
Supelco
o-Xylene, analytical standard
Supelco
o-Xylene, Pharmaceutical Secondary Standard; Certified Reference Material