Method for preparing water soluble royal jelly
A technology for royal jelly and water-solubility, which is applied in the field of preparation of water-soluble royal jelly, can solve the problems of increased production cost, complicated process, large difference in flavor of royal jelly, etc., and achieves the effects of increasing solubility and good stability.
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Embodiment 1
[0008] Embodiment 1. Take the qualified royal jelly and thaw it at room temperature at 20-35° C., add 1.5 times the amount of water, stir evenly, shear at high speed to make it homogeneous, and the particle fineness is ≤20 μm. Add protease, stir and enzymatically hydrolyze at 40°C for 2 hours; concentrate the membrane to 1 times the input amount of royal jelly; quickly cool to -40°C, freeze time ≤ 30 minutes, vacuum sublimation drying, product moisture ≤ 3%, 10-HDA content ≥ 4.0% ; Vacuum nitrogen filled packaging.
Embodiment 2
[0009] Embodiment 2. Take the qualified royal jelly and thaw it at room temperature (20-35° C.), add 2 times the amount of water, stir evenly, high-speed shear and homogeneous, particle fineness ≤ 20 μm. Add protease, stir at 42°C for 3 hours; vacuum concentrate (60°C, 0.08MPa vacuum) to 1.3 times the amount of royal jelly input; quickly cool to -50°C, freeze time ≤ 30 minutes, vacuum sublimation drying, product moisture ≤ 3 %, 10-HDA content ≥ 4.0%; vacuum packed with nitrogen.
[0010] Compared with the product of Example 1, the color is obviously darker, and the color of the finished product of Example 1 is light yellow powder like the freeze-dried pink color of common royal jelly, and Example 2 is a light brown powder.
Embodiment 3
[0011] Embodiment 3. Get the qualified royal jelly room temperature (20~35 ℃) to thaw, add 3 times the amount of water, stir evenly, add protease, 45 ℃ of stirring enzymolysis 4h; Membrane is concentrated to 1.5 times of royal jelly input amount; Fast refrigeration to -60°C, freezing time ≤ 30 minutes, vacuum sublimation drying, product moisture ≤ 3%, 10-HDA content ≤ 3.0%; vacuum nitrogen-filled packaging.
[0012] Compared with the products of Examples 1 and 2, the 10-HAD content decreased significantly.
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