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A method for determining the optimum factors for TMW-4M3 is proposed.
The results indicate Box-Behnken design can help for the searching of optimum factors and improve R/O ratio.
The ideal flow pattern in any reactor is not always possible, but we can improve and avoid these problems by recognizing optimum factors.
The optimum factors for the SPME extraction were found to be 562.5 mg of NaCl, pH at 1 and an extraction time of 22 min.
The selected orthogonal array was L-8 and optimum factors for alkaline protease production by chosen strain were found to be pH 9.0, NaCl (12.5%), temperature (45 °C), inoculum size (5 ml) and agitation speed (0.78g).
Taking into account colorimetric parameters, the whole process was then analyzed by "Design Expert" software that finally gave following optimum factors: reaction temperature = 82.02 °C, synthesis time = 11.98 h and urea concentration = 37.5 g l−1.
Similar(52)
They led to the same optimum factor levels.
The optimum factor space was defined by three parameters: temperature, modifier concentration and buffer concentration.
The optimum factor space was defined by three parameters: buffer concentration, pH and concentration of acetonitrile as organic modifier.
The highest value of S/N ratio would be the optimum factor-level combination, because the product would have the minimum variance with this factor level.
From the analysis of different values of reduction enhancement factors which affect the test indices, an optimum factor combination for modification of parameters could be inferred.
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