Optimization of amylase production by Aspergillus niger cultivated on yam peels in solid state fermentation using response surface methodology
Kwatia Samuel, Pearl Dzogbefia Victoria, William Ofosu Isaac
Abstract
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Kwatia Samuel, Pearl Dzogbefia Victoria, William Ofosu Isaac
Abstract
Open-access reader
The study involved the production of amylase from Aspergillus niger grown on yam peels in solid state fermentation. The process parameters: temperature, pH (initial) and incubation time were optimized for maximum amylase production using central composite design (CCD) of response surface methodology (RSM). Temperature was the most significant (p<0.05) parameter and the maximum interaction occurred between temperature and incubation time. The results of the study indicated that amylase is maximized (30.95 U/ml-min) at optimized levels of 49.53°C, 5.95 and 104 h for temperature, pH (initial) and incubation periods, respectively. Key words: Response surface methodology (RSM), Aspergillus niger, central composite design, solid state fermentation (ssf), amylase, production, optimization.
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The study involved the production of amylase from Aspergillus niger grown on yam peels in solid state fermentation. The process parameters: temperature, pH (initial) and incubation time were optimized for maximum amylase production using central composite design (CCD) of response surface methodology (RSM). Temperature was the most significant (p<0.05) parameter and the maximum interaction occurred between temperature and incubation time. The results of the study indicated that amylase is maximized (30.95 U/ml-min) at optimized levels of 49.53°C, 5.95 and 104 h for temperature, pH (initial) and incubation periods, respectively. Key words: Response surface methodology (RSM), Aspergillus niger, central composite design, solid state fermentation (ssf), amylase, production, optimization.
Key concepts: Response surface methodology, Aspergillus niger, Solid-state fermentation, Central composite design, Amylase, Fermentation, Food science, Incubation