Method for improving dissolution of effective ingredients of silybum marianum shells
An active ingredient, the technology of milk thistle, which is applied in the field of improving the dissolution of active ingredients of milk thistle shell, can solve the problems of unfavorable effective ingredient dissolution, high hardness of milk thistle shell, etc., and achieve improved yield, reduced solvent consumption, and shorter production cycle. shortened effect
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Embodiment 1
[0024] Take 15 kg of milk thistle seed shells, add 0.75 kg of water, stir for 5 minutes with a CH-200 tank mixer, turn off the mixer and moisten for 5 minutes, and separate through spiral rolling (380V, 5.5KW, screw shaft length 440mm, pressure 1.5T ), 15.6kg of milk thistle seed helical husks after separation, the husks were dried by high-frequency microwave (5.2GHZ), and dried for 2 minutes at a low temperature of 30° C. 14.7kg shell bar, denoted as shell bar 1.
[0025] In addition, a group of parallel experiments were conducted with the same experimental conditions as above, except that the shell strips were not subjected to high-frequency microwave drying treatment, but were directly vacuum-dried until the water content was below 3%, to obtain shell strips 1-1.
Embodiment 2
[0027] Take 15kg of milk thistle seed shells, add 1.30kg of water, stir for 8 minutes through CH-200 tank mixer, turn off the mixer and moisten for 7 minutes, and separate through spiral rolling (380V, 5.5KW, screw shaft length 440mm, pressure 1.5T ), 15.7kg of the separated milk thistle seed spiral shell bar, the separated milk thistle seed spiral shell bar was dried by high-frequency microwave (5.2GHZ), and dried at a low temperature of 40°C for 3 minutes to obtain a water content of 14.8 kg of milk thistle seed spiral husk strips with less than 3%, recorded as husk strips 2.
[0028] In addition, a group of parallel experiments were conducted with the same experimental conditions as above, except that the shell strips were not subjected to high-frequency microwave drying treatment, but were directly vacuum-dried until the moisture content was below 3%, to obtain shell strips 2-1.
Embodiment 3
[0030] Take 15kg of milk thistle seed shells, add 1.50kg of water, stir for 10 minutes with a CH-200 tank mixer, turn off the mixer and moisten for 10 minutes, and separate by spiral rolling (380V, 5.5KW, screw shaft length 420mm, pressure 2T) 15.6kg of milk thistle seed helical husk bar after separation, the milk thistle seed helical husk bar after separation is through high-frequency microwave drying (5.2GHZ), dry 3 minutes under the low temperature 45 ℃, obtain moisture content in 3 15kg of milk thistle seed spiral-shaped husk strips below %, denoted as husk strip 3.
[0031] In addition, a group of parallel experiments were conducted with the same experimental conditions as above, except that the shell strips were not subjected to high-frequency microwave drying treatment, but were directly vacuum-dried until the water content was below 3%, and the shell strips 3-1 were obtained.
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