Multifunctional nanometer carbon drink and preparing method thereof
A nano-carbon, multi-functional technology, applied in the direction of carbon active ingredients, food science, etc., can solve the problems of overnutrition and limited efficacy, and achieve the effect of easy standardization and simple operability
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[0027] Such as figure 1 Shown, the preparation method step schematic diagram of nano-carbon multifunctional drink of the present invention comprises the following steps:
[0028] Step S1: Preparation of nano-carbon slurry:
[0029] S11: Clean and sterilize raw materials, instruments and equipment;
[0030] S12: adding nano-carbon into water, ball milling for 2-12 hours, and then sand-milling the obtained slurry for 2-12 hours to prepare a nano-carbon slurry of 50-170 nm;
[0031] S13: detecting absorbance;
[0032] S2: Beverage preparation:
[0033] S21: Add the nanocarbon slurry obtained in S1 into water, stir until the liquid is uniform and stable, and prepare a nanocarbon dispersion with a nanocarbon content of 1 μg˜100,000 μg / ml;
[0034] S22: Sterilize the nano-carbon dispersion obtained in S21, and fill it to obtain a finished nano-carbon multifunctional beverage;
[0035] S23: Sampling and testing particle size, carbon content, heavy metal content and bacterial con...
Embodiment 1
[0039] S11: Clean and sterilize raw materials, instruments and equipment;
[0040] S12: Measure 1 kg of carbon airgel, add 100 kg of deionized water, ball mill for 2 hours, the ball milling speed is 200r / min, and then sand mill the slurry after ball milling for 2 to 12 hours, and the sanding speed is 800r / min , making 170nm nano-carbon airgel slurry;
[0041] S13: detecting absorbance;
[0042] S2: Beverage preparation:
[0043] S21: Take 1 kg of the nano-carbon airgel slurry obtained in S1, add it to 500L of ultrapure water, and stir while adding it dropwise until the liquid is uniform and stable, to prepare a nano-carbon dispersion with a nano-carbon content of 50 μg / ml;
[0044] S22: Steam sterilize the nano-carbon dispersion obtained in S21 at a steam temperature of 121° C. for 30 minutes, and fill to obtain a finished nano-carbon multifunctional beverage.
[0045] S23: Sampling and testing particle size, carbon content, heavy metal content and bacterial content;
[00...
Embodiment 2
[0048] S11: Clean and sterilize raw materials, instruments and equipment;
[0049] S12: Take 1kg of carbon airgel, add it to 100kg of deionized water, and mill it for 6 hours at a speed of 200r / min, then sand-mill the slurry after ball milling for 6 hours at a speed of 800r / min. Obtain 70nm nano-carbon airgel slurry;
[0050] S13: detecting absorbance;
[0051] S2: Beverage preparation:
[0052] S21: Take 1 kg of the nano-carbon airgel slurry obtained in S1, add it to 500L of ultrapure water, and stir while adding it dropwise until the liquid is uniform and stable, and a nano-carbon dispersion with a nano-carbon content of 50 μg / ml is prepared;
[0053] S22: Steam sterilize the nano-carbon dispersion obtained in S21 at a steam temperature of 121° C. for 30 minutes, and fill to obtain a finished nano-carbon multifunctional beverage.
[0054] S23: Sampling and testing particle size, carbon content, heavy metal content and bacterial content;
[0055] S24: packing into storage...
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