Coated submicron feed-grade zinc oxide and preparation method thereof
A sub-micron, feed-grade technology, applied in animal feed, animal feed, additional food elements, etc., can solve the problem that the coating wall material cannot be degraded in time in the intestinal environment, affecting the biological valence of active ingredients, etc. The effect of saving feeding cost, reducing dosage, and reducing addition amount
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Embodiment 1
[0047] A coated submicron feed grade zinc oxide is characterized in that it comprises the following components in parts by weight:
[0048] Submicron Feed Grade Zinc Oxide 90 parts
[0049]28 parts of compound shielding agent;
[0050] Described composite shielding agent comprises the following components in parts by weight:
[0051] 80 parts potato starch
[0052] 4 parts ethyl cellulose
[0053] 3 parts absolute ethanol
[0054] 0.5 parts of magnesium stearate.
[0055] The particle diameter of the submicron feed grade oxidation described in the present invention is 0.5um.
[0056] The potato starch of the present invention has a particle size of 100um.
Embodiment 2
[0058] A coated submicron feed grade zinc oxide is characterized in that it comprises the following components in parts by weight:
[0059] Submicron Feed Grade Zinc Oxide 120 parts
[0060] 35 parts of composite shielding agent;
[0061] Described composite shielding agent comprises the following components in parts by weight:
[0062] 90 parts of potato starch
[0063] 6 parts ethyl cellulose
[0064] 4 parts absolute ethanol
[0065] Magnesium stearate 0.8 parts.
[0066] The particle diameter of the submicron feed grade oxidation described in the present invention is 10um.
[0067] The potato starch of the present invention has a particle size of 300um.
Embodiment 3
[0069] A coated submicron feed grade zinc oxide is characterized in that it comprises the following components in parts by weight:
[0070] Submicron Feed Grade Zinc Oxide 105 parts
[0071] Composite shielding agent 31.5 parts;
[0072] Described composite shielding agent comprises the following components in parts by weight:
[0073] 85 parts potato starch
[0074] 5 parts ethyl cellulose
[0075] 3.5 parts of absolute ethanol
[0076] Magnesium stearate 0.65 parts.
[0077] The particle diameter of the submicron feed grade oxidation described in the present invention is 5.25um.
[0078] The potato starch of the present invention has a particle diameter of 200um.
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