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Exact(18)
The EFAs were conducted as follows: assessment of the factorality of the data, factor extraction, factor rotation, and interpretation.
In order to compare the yields of extraction in different solvents, the extraction factor (EF) of bioactive molecules from each extract has been calculated, considering the absorption values (A at λmax) recorded for each λmax, multiplied with the dilution factor (d) and applying the relation: EF=A(λ max )⋅d.
The yield of the extraction in different solvents was calculated using extraction factor (EF) of bioactive molecules from each extract, considering the absorption values (Amax) recorded for each λmax, multiplied with the dilution factor (d).
Extraction Factor.
The solute distribution ratio, the selectivity and the extraction factor suggest the efficiency of the IL used like solvent.
This is the basis for deciding the optimum conditions for each independent extraction factor as reported by Mandal et al. (2008).
Similar(42)
Statistical design and analysis of experiments were used throughout in order to determine the main effects and interactions of the solvent extraction factors, which were the extraction pH at equilibrium, temperature, extractant concentration and organic to aqueous phase ratio.
Statistical design and analysis of experiments were used in order to determine the main effects and interactions of the solvent extraction factors, which were the extraction pH at equilibrium, temperature, extractant concentration and organic to aqueous phase ratio.
The extraction factors are based on data published in [34].
Extraction factors were systematically optimized by response surface methodology.
The effects of three extraction factors on the yield of polysaccharides was examined.
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