The Plackett–Burman design and the Box–Behnken design, statistical methodologies, were employed for the optimization lipase and biosurfactant production by Ochrobactrum intermedium strain MZV101 in an identical broth medium for detergent applications. Environmental factor pH determined to be most mutual significant variables on production. A high concentration of molasses at high temperature and pH has a negative effect on lipase and biosurfactant production by O. intermedium strain MZV101. The chosen mathematical method of medium optimization was sufficient for improving the industrial production of lipase and biosurfactant by bacteria, which were respectively increased 3.46- and 1.89-fold. The duration of maximum production became 24 h sh...
Evaluation of twelve medium components on lipase production by Bacillus sphaericus MTCC511 in submer...
Lipases catalyze hydrolysis of fat/lipid into their components. Microbial lipases are preferred than...
Aim: To optimize lipase production by Bacillus megaterium in submerged fermentation. Study Design:...
The Plackett–Burman design and the Box–Behnken design, statistical methodologies, were employed for ...
Optimization of lipase production by Enterobacter aerogenes was carried out using response surface m...
Abstract Microbial conversion for the synthesis of high added-value compounds, such as biosurfactant...
A total of 6 isolates of Bacillus subtilis were isolated from oil mill waste collected in Namakkal d...
Lipase is a lipids hydrolyze enzyme which are widely used in various industries such as chemical, ph...
<p>The production of biofuel using thermostable bacterial lipase from hot spring bacteria out of low...
Several medium formulations were screened for the production of a thermostable and organic solvent t...
Statistical experimental design was employed to optimize medium compositions to enhance the activity...
AbstractSurfactants are amphipathic molecules which reduce surface tension, widely used in pharmaceu...
AbstractStatistical optimization is an effective technique for the investigation of complex processe...
A response surface approach has been used to study the production of an extracellular lipase from As...
This work reports on the exploitation of Beta vulgaris for biosurfactant production by Bacillus lich...
Evaluation of twelve medium components on lipase production by Bacillus sphaericus MTCC511 in submer...
Lipases catalyze hydrolysis of fat/lipid into their components. Microbial lipases are preferred than...
Aim: To optimize lipase production by Bacillus megaterium in submerged fermentation. Study Design:...
The Plackett–Burman design and the Box–Behnken design, statistical methodologies, were employed for ...
Optimization of lipase production by Enterobacter aerogenes was carried out using response surface m...
Abstract Microbial conversion for the synthesis of high added-value compounds, such as biosurfactant...
A total of 6 isolates of Bacillus subtilis were isolated from oil mill waste collected in Namakkal d...
Lipase is a lipids hydrolyze enzyme which are widely used in various industries such as chemical, ph...
<p>The production of biofuel using thermostable bacterial lipase from hot spring bacteria out of low...
Several medium formulations were screened for the production of a thermostable and organic solvent t...
Statistical experimental design was employed to optimize medium compositions to enhance the activity...
AbstractSurfactants are amphipathic molecules which reduce surface tension, widely used in pharmaceu...
AbstractStatistical optimization is an effective technique for the investigation of complex processe...
A response surface approach has been used to study the production of an extracellular lipase from As...
This work reports on the exploitation of Beta vulgaris for biosurfactant production by Bacillus lich...
Evaluation of twelve medium components on lipase production by Bacillus sphaericus MTCC511 in submer...
Lipases catalyze hydrolysis of fat/lipid into their components. Microbial lipases are preferred than...
Aim: To optimize lipase production by Bacillus megaterium in submerged fermentation. Study Design:...