Nickel biosorption by Acinetobacter baumannii and Pseudomonas aeruginosa isolated from industrial wastewater



Document title: Nickel biosorption by Acinetobacter baumannii and Pseudomonas aeruginosa isolated from industrial wastewater
Journal: Brazilian journal of microbiology
Database: PERIÓDICA
System number: 000291224
ISSN: 1517-8382
Authors: 1
2
Institutions: 1Universidad de Costa Rica, Laboratorio de Investigación en Bacteriología Anaerobia y Centro de Investigación en Enfermedades Tropicales, San José. Costa Rica
2Universidad de Costa Rica, Facultad de Microbiología, San José. Costa Rica
Year:
Season: Oct-Dic
Volumen: 37
Number: 4
Pages: 465-467
Country: Brasil
Language: Inglés
Document type: Artículo
Approach: Experimental
English abstract Nickel biosorption ability was evaluated in two bacterial strains: Acinetobacter baumannii UCR-2971 and Pseudomonas aeruginosa UCR-2957, resulting in greatest adsorption at pH 4.5 and a residence time of 100 minutes. Biosorption isotherms showed that the process follows the Langmuir model. The maximum adsorption rates (Nmax) were 8.8 and 5.7 mg·g-1 for A. baumannii and P. aeruginosa, respectively; however, affinity constants suggest that P. aeruginosa (K=1.28) has higher affinity for nickel than A. baumannii (K=0.68). It is suggested that both strains could be used for wastewater treatment, as long as the concentration of Ni2+ is within the range of mg·L-1
Portuguese abstract Foi avaliada a capacidade de adsorção do Ni2+ por duas bactérias, Acinetobacter baumannii e Pseudomonas aeruginosa, em pH 4.5 com tempo de contato de 100 minutos. Isotermas de adsorção foram calculadas com as duas linhagens. Observou-se que, para ambas, o processo de adsorção está de acordo com o modelo fisicoquímico de Langmuir. A captação máxima do Ni2+ (Nmax) foi 5.7 e 8.8 mg Ni2+ g-1 para P. aeruginosa e A. baumannii, respectivamente. Não obstante, P. aeruginosa apresenta uma constante de afinidade (K=1.28) maior que A. baumannii (K=0.68). Estes resultados indicam que ambas as linhagens são adequadas para o tratamento de águas contaminadas, desde que a concentração de níquel seja da ordem de mg·L-1
Disciplines: Química,
Ingeniería,
Biología
Keyword: Química inorgánica,
Ingeniería ambiental,
Bacterias,
Tratamiento de aguas,
Aguas residuales,
Biosorción,
Níquel,
Acinetobacter baumannii,
Pseudomonas aeruginosa,
Contaminación
Keyword: Chemistry,
Engineering,
Biology,
Inorganic chemistry,
Environmental engineering,
Bacteria,
Waste water,
Water treatment,
Biosorption,
Nickel,
Acinetobacter baumannii,
Pseudomonas aeruginosa,
Pollution
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