Effects of temperature, pH, and salinity on the growth kinetics of Pseudomonas sp. NB-1, a newly isolated cold-tolerant, alkali-resistant, and high-efficiency nitrobenzene-degrading bacterium
ABSTRACTStrain NB-1, which can efficiently degrade nitrobenzene, was identified as Pseudomonas frederiksbergensis. NB-1 was resistant to cold and alkali with the widest temperature (4-35 °C) and pH (5-11) adaptive range, compared with other reported nitrobenzene-degrading microorganisms. Based on th...
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Détails bibliographiques
Publié dans: | Environmental technology. - 1993. - 44(2023), 14 vom: 03. Juni, Seite 2171-2183
|
Auteur principal: |
Cui, Tingchen
(Auteur) |
Autres auteurs: |
Wang, Peng,
Li, Jialu,
Su, YaoMing,
Liu, Na,
Hong, Mei |
Format: | Article en ligne
|
Langue: | English |
Publié: |
2023
|
Accès à la collection: | Environmental technology
|
Sujets: | Journal Article
Nitrobenzene biodegradation
biokinetic modeling
response surface methodology
wide adaptability
nitrobenzene
E57JCN6SSY
Nitrobenzenes
Wastewater |