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1.
Molecules ; 29(15)2024 Jul 24.
Artigo em Inglês | MEDLINE | ID: mdl-39124874

RESUMO

Developing reusable and easy-to-operate biocatalysts is of significant interest in biodiesel production. Here, magnetic whole-cell catalysts constructed through immobilizing recombinant Escherichia coli cells (containing MAS1 lipase) into Fe3O4-chitosan magnetic microspheres (termed MWCC@MAS1) were used for fatty acid methyl ester (FAME) production from waste cooking oil (WCO). During the preparation process of immobilized cells, the effects of chitosan concentration and cell concentration on their activity and activity recovery were investigated. Optimal immobilization was achieved with 3% (w/v) chitosan solution and 10 mg wet cell/mL cell suspension. Magnetic immobilization endowed the whole-cell catalysts with superparamagnetism and improved their methanol tolerance, enhancing the recyclability of the biocatalysts. Additionally, we studied the effects of catalyst loading, water content, methanol content, and reaction temperature on FAME yield, optimizing these parameters using response surface methodology and Box-Behnken design. An experimental FAME yield of 89.19% was gained under the optimized conditions (3.9 wt% catalyst loading, 22.3% (v/w) water content, 23.0% (v/w) methanol content, and 32 °C) for 48 h. MWCC@MAS1 demonstrated superior recyclability compared to its whole-cell form, maintaining about 86% of its initial productivity after 10 cycles, whereas the whole-cell form lost nearly half after just five cycles. These results suggest that MWCC@MAS1 has great potential for the industrial production of biodiesel.


Assuntos
Biocombustíveis , Quitosana , Escherichia coli , Microesferas , Escherichia coli/genética , Escherichia coli/metabolismo , Quitosana/química , Células Imobilizadas/metabolismo , Óleos de Plantas/química , Lipase/metabolismo , Lipase/genética , Metanol/química , Culinária
2.
PeerJ ; 12: e17282, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38666083

RESUMO

This study investigated the potential of using steam-exploded oil palm empty fruit bunches (EFB) as a renewable feedstock for producing fumaric acid (FA), a food additive widely used for flavor and preservation, through a separate hydrolysis and fermentation process using the fungal isolate K20. The efficiency of FA production by free and immobilized cells was compared. The maximum FA concentration (3.25 g/L), with 0.034 g/L/h productivity, was observed after incubation with the free cells for 96 h. Furthermore, the production was scaled up in a 3-L air-lift fermenter using oil palm EFB-derived glucose as the substrate. The FA concentration, yield, and productivity from 100 g/L initial oil palm EFB-derived glucose were 44 g/L, 0.39 g/g, and 0.41 g/L/h, respectively. The potential for scaling up the fermentation process indicates favorable results, which could have significant implications for industrial applications.


Assuntos
Células Imobilizadas , Fermentação , Fumaratos , Fumaratos/metabolismo , Células Imobilizadas/metabolismo , Óleo de Palmeira , Frutas/microbiologia , Frutas/química , Arecaceae/microbiologia , Arecaceae/química , Óleos de Plantas/metabolismo , Hidrólise , Glucose/metabolismo
3.
Braz. j. microbiol ; 49(2): 285-295, Apr.-June 2018. tab, graf
Artigo em Inglês | LILACS | ID: biblio-889238

RESUMO

Abstract Different technologies may be used for decolorization of wastewater containing dyes. Among them, biological processes are the most promising because they seem to be environmentally safe. The aim of this study was to determine the efficiency of decolorization of two dyes belonging to different classes (azo and triphenylmethane dyes) by immobilized biomass of strains of fungi (Pleurotus ostreatus - BWPH, Gleophyllum odoratum - DCa and Polyporus picipes - RWP17). Different solid supports were tested for biomass immobilization. The best growth of fungal strains was observed on the washer, brush, grid and sawdust supports. Based on the results of dye adsorption, the brush and the washer were selected for further study. These solid supports adsorbed dyes at a negligible level, while the sawdust adsorbed 82.5% of brilliant green and 19.1% of Evans blue. Immobilization of biomass improved dye removal. Almost complete decolorization of diazo dye Evans blue was reached after 24 h in samples of all strains immobilized on the washer. The process was slower when the brush was used for biomass immobilization. Comparable results were reached for brilliant green in samples with biomass of strains BWPH and RWP17. High decolorization effectiveness was reached in samples with dead fungal biomass. Intensive removal of the dyes by biomass immobilized on the washer corresponded to a significant decrease in phytotoxicity and a slight decrease in zootoxicity of the dye solutions. The best decolorization results as well as reduction in toxicity were observed for the strain P. picipes (RWP17).


Assuntos
Basidiomycota/metabolismo , Poluentes Químicos da Água/metabolismo , Corantes/metabolismo , Compostos Azo/metabolismo , Compostos de Tritil/metabolismo , Biotransformação , Células Imobilizadas/metabolismo , Adsorção , Águas Residuárias
4.
Braz. j. microbiol ; 49(1): 38-44, Jan.-Mar. 2018. tab, graf
Artigo em Inglês | LILACS | ID: biblio-889215

RESUMO

ABSTRACT Discharge of coke-oven wastewater to the environment may cause severe contamination to it and also threaten the flora and fauna, including human beings. Hence before dumping it is necessary to treat this dangerous effluent in order to minimize the damage to the environment. Conventional technologies have inherent drawbacks however, biological treatment is an advantageous alternative method. In the present study, bacteria were isolated from the soil collected from the sites contaminated by coke-oven effluent rich in phenol and cyanide. Nucleotides sequence alignment and phylogenetic analysis showed the identity of the selected phenol and cyanide degrading isolates NAUN-16 and NAUN-1B as Pseudomonas putida and Pseudomonas stutzeri, respectively. These two isolates tolerated phenol up to 1800 mg L-1 and cyanide up to 340 mg L-1 concentrations. The isolates were immobilized on activated charcoal, saw dust and fly ash. The effluent was passed through the column packed with immobilized cells with a flow rate of 5 mL min-1. The isolates showed degradation of phenol up to 80.5% and cyanide up to 80.6% and also had the ability to reduce biological oxygen demand, chemical oxygen demand and lower the pH of effluent from alkaline to near neutral. The study suggests the utilization of such potential bacterial strains in treating industrial effluent containing phenol and cyanide, before being thrown in any ecosystem.


Assuntos
Cianetos/metabolismo , Fenol/metabolismo , Pseudomonas putida/metabolismo , Pseudomonas stutzeri/metabolismo , Eliminação de Resíduos Líquidos/métodos , Águas Residuárias/microbiologia , Biodegradação Ambiental , Células Imobilizadas/classificação , Células Imobilizadas/metabolismo , Coque/análise , Cianetos/análise , Resíduos Industriais/análise , Fenol/análise , Filogenia , Pseudomonas putida/classificação , Pseudomonas putida/genética , Pseudomonas putida/isolamento & purificação , Pseudomonas stutzeri/classificação , Pseudomonas stutzeri/genética , Pseudomonas stutzeri/isolamento & purificação , Águas Residuárias/análise
5.
Braz. j. microbiol ; 49(supl.1): 140-150, 2018. tab, graf
Artigo em Inglês | LILACS | ID: biblio-974343

RESUMO

Abstract Ethanol production from sweet sorghum juice (SSJ) using the thermotolerant Saccharomyces cerevisiae strain DBKKUY-53 immobilized in an alginate-loofah matrix (ALM) was successfully developed. As found in this study, an ALM with dimensions of 20 × 20 × 5 mm3 is effective for cell immobilization due to its compact structure and long-term stability. The ALM-immobilized cell system exhibited greater ethanol production efficiency than the freely suspended cell system. By using a central composite design (CCD), the optimum conditions for ethanol production from SSJ by ALM-immobilized cells were determined. The maximum ethanol concentration and volumetric ethanol productivity obtained using ALM-immobilized cells under the optimal conditions were 97.54 g/L and 1.36 g/L h, respectively. The use of the ALM-immobilized cells was successful for at least six consecutive batches (360 h) without any loss of ethanol production efficiency, suggesting their potential application in industrial ethanol production.


Assuntos
Saccharomyces cerevisiae/metabolismo , Microbiologia Industrial/métodos , Sorghum/microbiologia , Etanol/metabolismo , Saccharomyces cerevisiae/química , Células Imobilizadas/metabolismo , Células Imobilizadas/química , Sorghum/metabolismo , Sorghum/química , Etanol/análise , Alginatos/química , Fermentação
6.
Braz. j. microbiol ; 48(3): 515-521, July-Sept. 2017. graf
Artigo em Inglês | LILACS | ID: biblio-889145

RESUMO

Abstract Ammonia-oxidizing bacteria were immobilized by polyvinyl alcohol (PVA) and sodium alginate. The immobilization conditions and ammonia oxidation ability of the immobilized bacteria were investigated. The following immobilization conditions were observed to be optimal: PVA, 12%; sodium alginate, 1.1%; calcium chloride, 1.0%; inoculum concentration, 1.3 immobilized balls/mL of immobilized medium; pH, 10; and temperature, 30 °C. The immobilized ammonia-oxidizing bacteria exhibited strong ammonia oxidation ability even after being recycled four times. The ammonia nitrogen removal rate of the immobilized ammonia-oxidizing bacteria reached 90.30% under the optimal immobilization conditions. When compared with ammonia-oxidizing bacteria immobilized by sodium alginate alone, the bacteria immobilized by PVA and sodium alginate were superior with respect to pH resistance, the number of reuses, material cost, heat resistance, and ammonia oxidation ability.


Assuntos
Bactérias/química , Técnicas Microbiológicas/métodos , Amônia/metabolismo , Oxirredução , Álcool de Polivinil/química , Temperatura , Bactérias/metabolismo , Técnicas Microbiológicas/economia , Técnicas Microbiológicas/instrumentação , Células Imobilizadas/metabolismo , Células Imobilizadas/química , Ácido Glucurônico/química , Alginatos/química , Ácidos Hexurônicos/química , Concentração de Íons de Hidrogênio
7.
Electron. j. biotechnol ; 27: 44-48, May. 2017. tab
Artigo em Inglês | LILACS | ID: biblio-1010289

RESUMO

Background: Depletion of petroleum resources has enforced the search for alternative sources of renewable energy. Introduction of biofuels into the market was expected to become a solution to this disadvantageous situation. Attempts to cover fuel demand have, however, caused another severe problem­the waste glycerol generated during biodiesel production at a concentration of approximately 10% w/w. This, in turn, prompted a global search for effective methods of valorization of the waste fraction of glycerol. Results: Utilization of the waste fraction at 48 h with an initial glycerol concentration of 30 g·L-1 and proceeding with 62% efficiency enabled the production of 9 g·L-1 dihydroxyacetone at 50% substrate consumption. The re-use of the immobilized biocatalyst resulted in a similar concentration of dihydroxyacetone (8.7 g·L-1) in two-fold shorter time, with an efficiency of 85% and lower substrate consumption (35%). Conclusions: The method proposed in this work is based on the conversion of waste glycerol to dihydroxyacetone in a reaction catalyzed by immobilized Gluconobacter oxydans cell extract with glycerol dehydrogenase activity, and it could be an effective way to convert waste glycerol into a valuable product.


Assuntos
Células Imobilizadas/metabolismo , Di-Hidroxiacetona/metabolismo , Glicerol/metabolismo , Resíduos , Extratos Celulares , Células Imobilizadas/química , Gluconobacter oxydans , Biocombustíveis , Reciclagem , Energia Renovável , Glicerol/química
8.
Braz. j. microbiol ; 46(3): 667-672, July-Sept. 2015. ilus
Artigo em Inglês | LILACS | ID: lil-755816

RESUMO

Pyrethroid pesticide cypermethrin is a environmental pollutant because of its widespread use, toxicity and persistence. Biodegradation of such chemicals by microorganisms may provide an cost-effective method for their detoxification. We have investigated the degradation of cypermethrin by immobilized cells of Micrococcus sp. strain CPN 1 in various matrices such as, polyurethane foam (PUF), polyacrylamide, sodium alginate and agar. The optimum temperature and pH for the degradation of cypermethrin by immobilized cells of Micrococcus sp. were found to be 30 °C and 7.0, respectively. The rate of degradation of 10 and 20 mM of cypermethrin by freely suspended cells were compared with that of immobilized cells in batches and semi-continuous with shaken cultures. PUF-immobilized cells showed higher degradation of cypermethrin (10 mM and 20 mM) than freely suspended cells and cells immobilized in other matrices. The PUF-immobilized cells of Micrococcus sp. strain CPN 1 were retain their degradation capacity. Thus, they can be reused for more than 32 cycles, without losing their degradation capacity. Hence, the PUF-immobilized cells of Micrococcus sp. could potentially be used in the bioremediation of cypermethrin contaminated water.

.


Assuntos
Biodegradação Ambiental , Células Imobilizadas/metabolismo , Inseticidas/metabolismo , Micrococcus/metabolismo , Piretrinas/metabolismo , Alginatos , Ácido Glucurônico , Ácidos Hexurônicos , Micrococcus/classificação , Poliuretanos
9.
Braz. j. microbiol ; 45(3): 929-932, July-Sept. 2014. ilus, tab
Artigo em Inglês | LILACS | ID: lil-727022

RESUMO

The β-ketoester benzyl acetoacetate was enantioselectively reduced to benzyl (S)-3-hydroxybutanoate by seven microorganism species. The best result using free cells was obtained with the yeast Hansenula sp., which furnished 97% ee and 85% of conversion within 24 h. After immobilization in calcium alginate spheres, K.marxianus showed to be more stable after 2 cycles of reaction.


Assuntos
Acetoacetatos/metabolismo , Compostos de Benzil/metabolismo , Kluyveromyces/metabolismo , Pichia/metabolismo , Células Imobilizadas/metabolismo , Oxirredução , Fatores de Tempo
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