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At these conditions, extraction maximum extraction of total carotenoids as 163.47 mg/100 g dried peel.
The Response surface methodology was used to optimize the parameters for maximum extraction of lipids.
At these conditions, the maximum extraction of the DCF was 99.65%.
Lipid extraction using hexane:diethyl ether (1 2 ratio) resulted in maximum extraction of lipids.
Box Behnken design was used to optimize the operating conditions for maximum extraction of lycopene from the biomass.
A maximum extraction of 10.7% is obtained for 1/20 diluted blood, injected at 100 μL/min in the corner-edge design.
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The results reveal that Th(IV) is extracted into the organic phase as the extracted complex with a metal/extractant ratio of 1: 2. The maximum extraction capacity of Th(IV) with L2 and L3 is 995 mg/L and 1085 mg/L, respectively.
At 0.011 mol/L (1 g/L) of 3-HP, maximum extraction yields of 77% for n-decanol and 51% for oleyl alcohol were found for 0.46 mol/L TOA (20% v/v).
The influence of variables on the extraction method was investigated by response surface methodology (RSM) and composite design (CCD) to achieve maximum extraction yield of colchicine from the root of C. haussknechtii.
Based on the result of experimental design, the maximum extraction efficiency of flavonoid glycosides were obtained by selecting temperature at 140 °C, pressure at 600 psi, and time for 10 min.
Conclusively, the optimum experimental conditions such as the solid liquid ratio (1 12), extraction time (30 min) and soaking time (1 h) for the water extraction of baicalin were proposed which can provide the maximum extraction yield of baicalin.
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