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1.
Biotechnol Lett ; 36(10): 1971-9, 2014 Oct.
Article in English | MEDLINE | ID: mdl-24930097

ABSTRACT

Removal of gaseous chlorobenzene (CB) by a biotrickling filter (BTF) filled with modified ceramics and multi-surface hollow balls during gas-liquid mass transfer at the steady state was by microbial degradation rather than dissolution in the spray liquid or emission into the atmosphere. The BTF was flexible and resistant to the acid environment of the spray liquid, with the caveat that the spray liquid should be replaced once every 6-7 days. The BTF, loaded with Lysinibacillus fusiformis, performed well for purification of high-loading CB gas. The maximum CB gas inlet loading rate, 103 g m(-3) h(-1), CB elimination capacity, 97 g m(-3) h(-1), and CB removal efficiency, 97.7 %, were reached at a spray liquid flow rate of 27.6 ml min(-1), an initial CB concentration of up to 1,300 mg m(-3), and an empty bed retention time of more than 45 s.


Subject(s)
Bacillaceae/metabolism , Chlorobenzenes/isolation & purification , Filtration/instrumentation , Air Pollutants/isolation & purification , Biodegradation, Environmental , Bioreactors/microbiology , Filtration/methods
2.
Bioresour Technol ; 231: 19-25, 2017 May.
Article in English | MEDLINE | ID: mdl-28189989

ABSTRACT

A strain, Brevibacillus agri DH-1, isolated from dry lands was used to remove m-dichlorobenzene. After 48h culturing, the concentrations of m-dichlorobenzene decreased from 26-130 to 7.87-28.87mg/L and dry cell weight for bacterial growth reached 52.43-75.05mg/L. The growth and degradation kinetics were analyzed by the fitting of Haldane-Andrews model and pseudo first-order model. A degradation pathway was proposed according to major intermediates (phenol), chloride ion variation, ring-opening enzyme activity, and high mineralization (0.47gCl-/gm-dichlorobenzene, 0.65 gco2/gm-dichlorobenzene, 0.15 gDCW/gm-dichlorobenzene). In addition, the performance in a biotrickling filter (BTF) was evaluated through removal efficiency and pressure drop values with increasing inlet loading rate from 4.10 to 122.57g/m3/h at three empty bed residence time points (30s, 60s, and 90s). The results demonstrated that strain DH-1 possessed high removal efficiency and stable operation in a BTF.


Subject(s)
Brevibacillus/metabolism , Chlorobenzenes/isolation & purification , Filtration/instrumentation , Biodegradation, Environmental , Bioreactors/microbiology , Brevibacillus/growth & development , Carbon Dioxide/analysis , Chlorides/analysis , Kinetics , Pressure
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