Method for preparing maize germ powder rich in gamma-aminobutyric acid
A technology of corn germ powder and aminobutyric acid is applied in the field of corn deep processing, which can solve the problems of unrecoverable germ protein and waste of high-quality resources, and achieve the effect of increasing nutrients and efficacy and avoiding waste.
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Embodiment 1
[0021] Weigh 20kg of dry-processed corn germ and break it into 40-80 mesh powder, add 80L of n-hexane, stir for 1 hour at a temperature of 30°C and a stirring speed of 50 rpm, and perform the first degreasing deal with. Add 80 L of n-hexane again, stir for 1 hour at a temperature of 35° C. and a stirring speed of 50 rpm, and perform a second degreasing treatment. The twice defatted corn germ was collected by filtration. The defatted corn germ was then desolvated under reduced pressure at 30° C. for 6 hours to obtain 10.5 kg of defatted corn germ powder.
[0022] Weigh 10 kg of the above-mentioned defatted corn germ powder, add 600 L of phosphate buffer solution with a concentration of 0.06 mmol / L and a pH of 5.7 as the enrichment solution, and stir and react for 4 hours at 38°C with a stirring speed of 50 rpm. Set of gamma-aminobutyric acid. The above-mentioned corn germ after degreasing and enriching γ-aminobutyric acid was further ground with a colloid mill, and spray-dri...
Embodiment 2
[0025] Weigh 20kg of dry-processed corn germ and break it into 40-80 mesh powder, add 100L of n-hexane, stir for 2 hours at a temperature of 40°C and a stirring speed of 10 rpm for the first degreasing treatment . Add 100 L of n-hexane again, and stir for 2 hours at a temperature of 50° C. and a stirring speed of 10 rpm for a second degreasing treatment. The defatted corn germ was collected by filtration. The defatted corn germ was then desolvated under reduced pressure at 50° C. for 5 hours to obtain 10.2 kg of defatted corn germ powder.
[0026] Weigh 10 kg of the above-mentioned defatted corn germ powder, add 200 L of phosphate buffer solution with a concentration of 0.06 mol / L and add 13.3 g of calcium chloride (equivalent to 0.6 mmol / L of calcium chloride) to form a mixed solution with a pH of 5.7 The enrichment solution was stirred and reacted at 40°C and 10 rpm for 6 hours to enrich γ-aminobutyric acid. The degreased and enriched γ-aminobutyric acid corn germ was fur...
Embodiment 3
[0029] Weigh 20kg of dry-processed corn germ and break it into 40-80 mesh powder, add 120L of n-hexane, stir for 0.5 hours at a temperature of 50°C and a stirring speed of 100 rpm for the first degreasing treatment . Add 120 L of n-hexane again, and stir for 0.5 hour at a temperature of 40° C. and a stirring speed of 100 rpm for the second degreasing treatment. The defatted corn germ was collected by filtration. The defatted corn germ was then desolvated under reduced pressure at 40° C. for 4 hours to obtain 10.4 kg of defatted corn germ powder.
[0030]Take above-mentioned defatted corn germ powder 10kg, add by adding 0.22kg L-glutamic acid, 0.9g vitamin B6 (corresponding to the vitamin B6 of 0.02mmol / g L-glutamic acid) in 400L 0.08mol / L phosphate buffer solution and 2.44g of calcium chloride (calcium chloride equivalent to 0.1mmol / g L-glutamic acid) to form a mixed solution with a pH of 5.7 as the enrichment solution, and stirred and reacted at 50 rpm at 42°C for 8 hours t...
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