Febrifuge powder and production process thereof
A production process and antipyretic technology, which is applied in the field of medicine, can solve the problems of short duration of drug effect and slow antipyretic, and achieve the effects of reduced volatility, fast and continuous antipyretic, and improved stability
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Embodiment 1
[0020] A production process for cooling heat sink, comprising the following steps:
[0021] 1) Gypsum 40g, Bupleurum 10g, Pueraria 15g, Scutellaria baicalensis 10g, Cimicifuga 10g, Reed root 30g, Raw licorice 10g and Commelina 20g are pulverized with a pulverizer, passed through a 65-mesh sieve, and then air-dried at 70°C After the water content is below 5%, carry out ultrafine pulverization, and the particle size is controlled below 30 μm;
[0022] 2) Pulverize mint 6g with a pulverizer until all pass through a 65-mesh sieve, and set aside;
[0023] 3) Put the particles prepared in step 1) and step 2) into a jet mill unit for ultrafine pulverization until the particle size of the powder is between 30 μm and 40 μm to obtain the antipyretic powder.
[0024] The clinical use of the prepared antipyretic powder: the age distribution of patients ranged from 16 years old to over 60 years old, a total of 153 cases, 20.26% of them had fever subsided within half a day, 48.37% within 1...
Embodiment 2
[0027] A production process for cooling heat sink, comprising the following steps:
[0028] 1) Gypsum 35g, Bupleurum 8g, Pueraria 10g, Scutellaria baicalensis 8g, Cimicifuga 8g, reed rhizome 25g, raw licorice 8g and Commelina 15g were pulverized with a pulverizer, passed through a 80-mesh sieve, and then dried by blasting at 70°C After the water content is below 3%, carry out ultrafine pulverization, and the particle size is controlled below 30 μm;
[0029] 2) Pulverize mint 5g with a pulverizer until all pass through a 65-mesh sieve, and set aside;
[0030] 3) Put the particles prepared in step 1) and step 2) into a jet mill unit for ultrafine pulverization until the particle size of the powder is between 30 μm and 40 μm to obtain the antipyretic powder.
[0031] The antipyretic powder prepared by the invention is mainly used for the treatment of exogenous fever with aversion to cold, head and body pain, sore throat and polydipsia.
Embodiment 3
[0033] A production process for cooling heat sink, comprising the following steps:
[0034] 1) Gypsum 45g, Bupleurum 10g, Pueraria 15g, Scutellaria baicalensis 10g, Cimicifuga 10g, Reed root 30g, Raw licorice 10g and Commelina 15g were pulverized with a pulverizer, passed through a 80-mesh sieve, and then dried by blasting at 60°C After the water content is below 5%, carry out ultrafine pulverization, and the particle size is controlled below 30 μm;
[0035] 2) Pulverize mint 6g with a pulverizer until all pass through an 80-mesh sieve, and set aside;
[0036] 3) Put the particles prepared in step 1) and step 2) into a jet mill unit for ultrafine pulverization until the particle size of the powder is between 30 μm and 40 μm to obtain the antipyretic powder.
[0037] The antipyretic powder prepared by the invention is mainly used for the treatment of exogenous fever with aversion to cold, head and body pain, sore throat and polydipsia.
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