Method for producing alpha-arbutin by virtue of biological fermentation
A technology of biological fermentation and arbutin, applied in the direction of microorganism-based methods, biochemical equipment and methods, fermentation, etc., can solve the problems of high production cost, complicated synthesis process, and not very deep arbutin, and achieve good industrialization Easy production and process control and low production cost
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Embodiment 1
[0030] A method for producing α-arbutin by biological fermentation, the steps are as follows:
[0031] Step 1, adding 10 kg of wheat flour to water for liquefaction, specifically adding 100 kg of water to the wheat flour, stirring and mixing evenly, then heating to 80° C., and stirring for 30 minutes to obtain liquefied flour;
[0032] Step 2, adding bran, calcium carbonate, potassium dihydrogen phosphate and urea to the liquefied flour, adding 3 kg of bran, 0.4 kg of calcium carbonate, 0.2 kg of potassium dihydrogen phosphate, and disodium edetate 0.1kg, add urea 0.1kg, stir and mix evenly to obtain a mixed matrix;
[0033] Step 3, insert Aspergillus oryzae into the beef extract peptone medium, the inoculum size is 0.6%, and cultivate and activate at 40-42°C for 5 hours;
[0034] Step 4, insert the Aspergillus oryzae in step 3 into the mixed matrix of step 2, the inoculum amount is 0.3%, cultivate for 3 hours under the condition of 38-40°C, then add hydroquinone into the mix...
Embodiment 2
[0040] A method for producing α-arbutin by biological fermentation, the steps are as follows:
[0041] Step 1, adding 15kg of wheat flour to water for liquefaction, specifically adding 180kg of water to the wheat flour, stirring and mixing evenly, then heating to 82°C, and stirring for 35 minutes to obtain liquefied flour;
[0042] Step 2, adding bran, calcium carbonate, potassium dihydrogen phosphate and urea to the liquefied flour, adding 3kg of bran, 0.6kg of calcium carbonate, 0.45kg of potassium dihydrogen phosphate, and disodium edetate 0.3kg, add 0.3kg of urea, stir and mix evenly to obtain a mixed matrix;
[0043] Step 3, insert Aspergillus oryzae into beef extract peptone medium, the inoculum size is 0.7%, and cultivate and activate at 40-42°C for 7 hours;
[0044] Step 4, insert the Aspergillus oryzae in step 3 into the mixed matrix of step 2, the inoculum amount is 0.4%, cultivate for 4 hours under the condition of 38-40°C, then add hydroquinone in the mixed matrix...
Embodiment 3
[0050] A method for producing α-arbutin by biological fermentation, the steps are as follows:
[0051] Step 1, adding 12 kg of wheat flour to water for liquefaction, specifically adding 160 kg of water to the wheat flour, stirring and mixing evenly, then heating to 83° C., and stirring for 36 minutes to obtain liquefied flour;
[0052] Step 2, adding bran, calcium carbonate, potassium dihydrogen phosphate and urea to the liquefied flour, adding 6 kg of bran, 0.6 kg of calcium carbonate, 0.48 kg of potassium dihydrogen phosphate, and disodium edetate 0.2kg, add urea 0.36kg, stir and mix evenly to obtain a mixed matrix;
[0053] Step 3, insert Aspergillus oryzae into the beef extract peptone medium, the inoculum amount is 0.8%, and cultivate and activate at 40-42°C for 8 hours;
[0054] Step 4, insert the Aspergillus oryzae in step 3 into the mixed matrix of step 2, the inoculum amount is 0.5%, cultivate it at 38-40°C for 5 hours, then add hydroquinone into the mixed matrix, an...
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