Optimization of lipase production by Enterobacter aerogenes was carried out using response surface methodology (RSM) where the statistical model was obtained by fractional factorial central composite design. The influence of various physico-chemical parameters, viz. temperature, oil concentration, inoculum volume, pH and incubation period on lipase production was examined. Optimization of physico-chemical parameters resulted 1.4- fold increase in lipase activity. The optimum levels of parameters were 34°C, oil concentration 3%, inoculum volume 7%, pH 7 and incubation time 60 h for obtaining a maximum lipase activity of 27.25 U/ml
A modified Response Surface Methodology was used for the optimization of lipase production by immobi...
Lipases are critical enzymes for industrial applications such as in the food and pharmaceutical fiel...
A lipase derived from Burkhoderia cenocepacia ST8 was optimized in this research. The experimental d...
A response surface approach has been used to study the production of an extracellular lipase from As...
A total of 6 isolates of Bacillus subtilis were isolated from oil mill waste collected in Namakkal d...
The Plackett–Burman design and the Box–Behnken design, statistical methodologies, were employed for ...
Response surface methodology was employed to optimize culture medium for production of lipase with R...
Statistical experimental design was employed to optimize medium compositions to enhance the activity...
Lipase is a lipids hydrolyze enzyme which are widely used in various industries such as chemical, ph...
Several medium formulations were screened for the production of a thermostable and organic solvent t...
Lipase-catalyzed production of triethanolamine-based esterquat by esterification of oleic acid (OA) ...
AbstractStatistical optimization is an effective technique for the investigation of complex processe...
Lipase-catalyzed production of triethanolamine-based esterquat by esterification of oleic acid (OA) ...
Lipases are enzymes that hydrolyze fats into fatty acids and glycerol at the water–lipid interface a...
Lipases catalyze hydrolysis of fat/lipid into their components. Microbial lipases are preferred than...
A modified Response Surface Methodology was used for the optimization of lipase production by immobi...
Lipases are critical enzymes for industrial applications such as in the food and pharmaceutical fiel...
A lipase derived from Burkhoderia cenocepacia ST8 was optimized in this research. The experimental d...
A response surface approach has been used to study the production of an extracellular lipase from As...
A total of 6 isolates of Bacillus subtilis were isolated from oil mill waste collected in Namakkal d...
The Plackett–Burman design and the Box–Behnken design, statistical methodologies, were employed for ...
Response surface methodology was employed to optimize culture medium for production of lipase with R...
Statistical experimental design was employed to optimize medium compositions to enhance the activity...
Lipase is a lipids hydrolyze enzyme which are widely used in various industries such as chemical, ph...
Several medium formulations were screened for the production of a thermostable and organic solvent t...
Lipase-catalyzed production of triethanolamine-based esterquat by esterification of oleic acid (OA) ...
AbstractStatistical optimization is an effective technique for the investigation of complex processe...
Lipase-catalyzed production of triethanolamine-based esterquat by esterification of oleic acid (OA) ...
Lipases are enzymes that hydrolyze fats into fatty acids and glycerol at the water–lipid interface a...
Lipases catalyze hydrolysis of fat/lipid into their components. Microbial lipases are preferred than...
A modified Response Surface Methodology was used for the optimization of lipase production by immobi...
Lipases are critical enzymes for industrial applications such as in the food and pharmaceutical fiel...
A lipase derived from Burkhoderia cenocepacia ST8 was optimized in this research. The experimental d...