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1.
Chemosphere ; 258: 127148, 2020 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-32535434

RESUMEN

Tetrahydrofuran (THF) is a common highly toxic cyclic aliphatic ether that frequently exists in waste gases. Removal of gaseous THF is a serious issue with important environmental ramifications. A novel three-phase airlift bioreactor (TPAB) loaded with immobilized cells was developed for efficient THF removal from gas streams. An effective THF-degrading transformant, Pseudomonas oleovorans GDT4, which contains the pTn-Mod-OTc-gfp plasmid and was tagged with a green fluorescent protein (GFP), was constructed. Continuous treatment of THF-containing waste gases was succeeded by the GFP-labelled cells immobilized with calcium alginate and activated carbon fiber in the TPAB for 60 days with >90% removal efficiency. The number of fluorescent cells in the beads reached 1.7 × 1011 cells·g-1 of bead on day 10, accounting for 83.3% of the total number of cells. The amount further increased to 3.0 × 1011 cells·g-1 of bead on day 40. However, it decreased to 2.5 × 1011 cells·g-1 of bead with a substantial increase in biomass in the liquid because of cell leakage and hydraulic shock. PCR-DGGE revealed that P. oleovorans was the dominant microorganism throughout the entire operation. The maximum elimination capacity was affected by empty bed residence time (EBRT). The capacity was only 25.9 g m-3·h-1 at EBRT of 80 s, whereas it reached 37.8 g m-3·h-1 at EBRT of 140 s. This work provides an alternative method for full-scale removal of gaseous THF and presents a useful tool for determining the biomass of a specific degrader in immobilized beads.


Asunto(s)
Reactores Biológicos/microbiología , Furanos/metabolismo , Pseudomonas oleovorans/metabolismo , Administración de Residuos/métodos , Alginatos/química , Biodegradación Ambiental , Biomasa , Fibra de Carbono , Células Inmovilizadas/metabolismo , Carbón Orgánico , Diseño de Equipo , Gases , Proteínas Fluorescentes Verdes/genética , Microbiota , Microorganismos Modificados Genéticamente , Pseudomonas oleovorans/citología , Pseudomonas oleovorans/genética , Administración de Residuos/instrumentación
2.
Bioresour Technol ; 139: 87-93, 2013 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-23644074

RESUMEN

A novel entrapment matrix, calcium alginate (CA) coupled with activated carbon fiber (ACF), was prepared to immobilize Pseudomonas oleovorans DT4 for degrading tetrahydrofuran (THF). The addition of 1.5% ACF increased the adsorption capacity of the immobilized bead, thus resulting in an enhanced average removal rate of 30.3mg/(Lh). The synergism between adsorption and biodegradation was observed in the hybrid CA-ACF beads instead of in the system comprising CA beads and freely suspended ACF. The effective diffusion coefficient of the CA-ACF bead was not significantly affected by bead size, but the bead's value of 1.14×10(-6)cm(2)/s (for the bead diameter of 0.4 cm) was larger than that of the CA bead by almost one order of magnitude based on the intraparticle diffusion-reaction kinetics analysis. Continuous treatment of the THF-containing wastewater was succeeded by CA-ACF immobilized cells in a packed-bed reactor for 54 d with a >90% removal efficiency.


Asunto(s)
Alginatos/farmacología , Carbono/farmacología , Carbón Orgánico/farmacología , Furanos/metabolismo , Microesferas , Pseudomonas oleovorans/citología , Pseudomonas oleovorans/metabolismo , Adsorción , Biodegradación Ambiental/efectos de los fármacos , Biomasa , Reactores Biológicos/microbiología , Fibra de Carbono , Células Inmovilizadas/citología , Células Inmovilizadas/efectos de los fármacos , Células Inmovilizadas/metabolismo , ADN Ribosómico/genética , Electroforesis en Gel de Gradiente Desnaturalizante , Difusión , Ácido Glucurónico/farmacología , Ácidos Hexurónicos/farmacología , Pseudomonas oleovorans/efectos de los fármacos , Pseudomonas oleovorans/genética , Soluciones
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