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1.
J Environ Manage ; 319: 115610, 2022 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-35797907

RESUMO

Solid non-aqueous phases (NAPs), such as silicone rubber, have been used extensively to improve the removal of volatile organic compounds (VOCs). However, the removal of VOCs is difficult to be further improved because the poor understanding of the mass transfer and reaction processes. Further, the conventional reactors were either complicated or uneconomical. In view of this, herein, an airlift bioreactor with silicone rubber was designed and investigated for dichloromethane (DCM) treatment. The removal efficiency of Reactor 1 (with silicone rubber) was significantly higher than that of Reactor 2 (without silicone rubber), with corresponding higher chloride ion and CO2 production. It was found that Reactor 1 achieved a much better DCM shock tolerance capability and biomass stability than Reactor 2. Silicone rubber not only enhanced the mass transfer in terms of both gas/liquid and gas/microbial phases, but also decreased the toxicity of DCM to microorganisms. Noteworthily, despite the identical inoculum used, the relative abundance of potential DCM-degrading bacteria in Reactor 1 (91.2%) was much higher than that in Reactor 2 (24.3%) at 216 h. Additionally, the silicone rubber could be automatically circulated in the airlift bioreactor due to the driven effect of the airflow, resulting in a significant reduction of energy consumption.


Assuntos
Cloreto de Metileno , Elastômeros de Silicone , Biodegradação Ambiental , Biomassa , Reatores Biológicos
2.
Chemosphere ; 258: 127148, 2020 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-32535434

RESUMO

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.


Assuntos
Reatores Biológicos/microbiologia , Furanos/metabolismo , Pseudomonas oleovorans/metabolismo , Gerenciamento de Resíduos/métodos , Alginatos/química , Biodegradação Ambiental , Biomassa , Fibra de Carbono , Células Imobilizadas/metabolismo , Carvão Vegetal , Desenho de Equipamento , Gases , Proteínas de Fluorescência Verde/genética , Microbiota , Microrganismos Geneticamente Modificados , Pseudomonas oleovorans/citologia , Pseudomonas oleovorans/genética , Gerenciamento de Resíduos/instrumentação
3.
Artigo em Inglês | MEDLINE | ID: mdl-31083278

RESUMO

In this study, a water-silicone oil biphasic system was developed to enhance the biodegradation of monochlorobenzene (CB) by Delftia tsuruhatensis LW26. Compared to the single phase, the biphasic system with a suitable silicone oil fraction (v/v) of 20% allowed a 2.5-fold increase in the maximum tolerated CB concentration. The CB inhibition on D. tsuruhatensis LW26 was reduced in the presence of silicone oil, and the electron transport system activity was maintained at high levels even under high CB stress. Adhesion of cells to the water-oil interface at the water side was observed using confocal laser scanning microscopy. Nearly 75% of cells accumulated on the interface, implying that another interfacial substrate uptake pathway prevailed besides that initiated by cells in the aqueous phase. The 8-fold increase in cell surface hydrophobicity upon the addition of 20% (v/v) silicone oil showed that silicone oil modified the surface characteristics of D. tsuruhatensis LW26. The protein/polysaccharide ratio of extracellular polymeric substances (EPS) from D. tsuruhatensis LW26 presented a 3-fold enhancement. These results suggested that silicone oil induced the increase in the protein content of EPS and rendered cells hydrophobic. The resulting hydrophobic cells could adhere on the water-oil interface, improving the mass transfer by direct CB uptake from silicone oil.


Assuntos
Clorobenzenos/metabolismo , Delftia/metabolismo , Óleos de Silicone/análise , Eliminação de Resíduos Líquidos/métodos , Poluentes Químicos da Água/metabolismo , Água/análise , Biodegradação Ambiental
4.
Bioresour Technol ; 139: 87-93, 2013 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-23644074

RESUMO

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.


Assuntos
Alginatos/farmacologia , Carbono/farmacologia , Carvão Vegetal/farmacologia , Furanos/metabolismo , Microesferas , Pseudomonas oleovorans/citologia , Pseudomonas oleovorans/metabolismo , Adsorção , Biodegradação Ambiental/efeitos dos fármacos , Biomassa , Reatores Biológicos/microbiologia , Fibra de Carbono , Células Imobilizadas/citologia , Células Imobilizadas/efeitos dos fármacos , Células Imobilizadas/metabolismo , DNA Ribossômico/genética , Eletroforese em Gel de Gradiente Desnaturante , Difusão , Ácido Glucurônico/farmacologia , Ácidos Hexurônicos/farmacologia , Pseudomonas oleovorans/efeitos dos fármacos , Pseudomonas oleovorans/genética , Soluções
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