Results 231 to 240 of about 29,388 (264)
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Kinetic models of biological hydrogen production by Enterobacter aerogenes
Biotechnology Letters, 2020Dark fermentative hydrogen production from glucose by Enterobacter aerogenes was studied. The kinetic models of modified Gompertz and Logistic were employed to investigate the progress of hydrogen production. The predicted maximum hydrogen production (Hmax) by modified Gompertz and Logistic was 11.92 and 11.28 mL, respectively.
Fatemeh Boshagh, Khosrow Rostami
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An efficient ribitol-specific dehydrogenase from Enterobacter aerogenes
Enzyme and Microbial Technology, 2015An NAD(+)-dependent ribitol dehydrogenase from Enterobacter aerogenes KCTC 2190 (EaRDH) was cloned and successfully expressed in Escherichia coli. The complete 729-bp gene was amplified, cloned, expressed, and subsequently purified in an active soluble form using nickel affinity chromatography.
Singh, Ranjitha +6 more
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Enterobacter aerogenes infection of Hoplochaetella suctoria
1983Knowledge of the microbial pathogens of earthworms is very fragmentary. Though many internal and external parasites have been reported, information about the relationships between earthworms and their parasites is scanty. Gates (1972) gave a good account of different bacteria, ciliates, sporozoans, cestoda, nematoda and insects encountered in different
I. Karuna Sagar, B. R. Rao, Bhat Jv
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Effects of Formate on Fermentative Hydrogen Production by Enterobacter aerogenes
Marine Biotechnology, 2005This paper describes the effects of formate on fermentative hydrogen production by Enterobacter aerogenes by way of batch culture. When 20 mM formate was added to pH 6.3 and pH 5.8 E. aerogenes glucose cultures (formate culture) at the beginning of cultivation, hydrogen evolution through both glucose consumption and decomposition of the extrinsic ...
Shigeharu Tanisho, Tatsuo Kurokawa
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[Resistance to imipenem in Enterobacter aerogenes].
Enfermedades infecciosas y microbiologia clinica, 1995In June, 1993, an Enterobacter aerogenes strain was isolated in the Hospital de la Creu Roja from Hospitalet de Llobregat (Barcelona), which was resistant against all beta-lactams, including imipenem. Since is unusual in Enterobacter sp. to isolate imipenem resistant strains, we decided to study its resistance mechanism.To study the E. aerogenes 174004/
E, Miró +4 more
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Enterobacter aerogenes outbreak in a neonatal intensive care unit
Pediatrics International, 1999Enterobacter aerogenes, a Gram-negative bacterium, is an important, although infrequent, cause of nosocomial bacteremia in the hospitalized pediatric and neonatal population. Enterobacter aerogenes was isolated for the first time in our neonatal intensive care unit (NICU) from blood culture of a 5-day-old neonate; 12 more cases were discovered in the ...
Ajay Kumar +4 more
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Thermodynamic study and optimization of hydrogen production by Enterobacter aerogenes
International Journal of Hydrogen Energy, 2002Abstract This paper investigates the influence of pH and temperature on hydrogen bioproduction by Enterobacter aerogenes (NCIMB 10102) utilizing starch hydrolysate as substrate. An optimum pH range corresponding to 6.1–6.6 is the main evidence of batch runs carried out at different pHs.
FABIANO, BRUNO, PEREGO, PATRIZIA
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Chloramphenicol and expression of multidrug efflux pump in Enterobacter aerogenes
Biochemical and Biophysical Research Communications, 2005Chloramphenicol has been reported to act as an inducer of the multidrug resistance in Escherichia coli. A resistant variant able to grow on plates containing 64 microg/ml chloramphenicol was obtained from the Enterobacter aerogenes ATCC 13048-type strain.
Jacqueline Chevalier +3 more
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Hydrogen Production by Facultative Anaerobe Enterobacter aerogenes
2007Enterobacter aerogenes is a facultative anaerobic bacterium. It grows under both aerobic and anaerobic conditions. In our experiments, it assimilated glucose at a rate as high as 17 mmol glucose/(g-dry cell h) and consequently evolved hydrogen at near-equal speed.
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Phosphodiesterase from Enterobacter aerogenes
Journal of the American Chemical Society, 1973Frank H. Westheimer, John A. Gerlt
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