Method for producing epsilon-poly-L-lysine by reflux technique
A lysine and lysine fermentation technology, applied in the field of ε-poly-L-lysine production by reflux process, can solve environmental pollution and other problems, and achieve the effects of reducing environmental pollution, saving costs and reducing losses
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[0018] What embodiment 1 and embodiment 2 basically describe is existing production technology;
Embodiment 3 and Embodiment 5
[0019] What embodiment 3 and embodiment 5 basically describe is the existing circulating production technology;
[0020] Example 4 and Example 6 are innovative processes compared with Example 3 and Example 5, respectively.
Embodiment 1
[0022] 5L fermenter, put into 2.7L culture medium, inoculate 300mL of Streptomyces albicans seed culture solution, cultivate at 30°C, automatically control to 30% when DO drops to 30%, cultivate in aerobic environment for 96h, and air flow rate of 3L / min~7.5 L / min. When the pH dropped to about 5.8, ammonia water (25-28%) was added to maintain the pH at 5.8 until the residual sugar concentration in the fermentation broth dropped to 10g / L, and the residual sugar concentration was maintained at about 10g / L by flow addition. The pH was no longer controlled to naturally drop to 4 and controlled at 4. Feed addition: glucose 800g / L, (NH 4 ) 2 SO 4 80g / L.
[0023] After culturing for 96h, the fermentation was completed, the cells and some solids were removed by centrifugation, the supernatant was eluted with D152 weakly acidic cation exchange resin, the early eluate was collected, filtered, concentrated in vacuo, and dried in a cyclone dryer to obtain ε- Poly-L-Lysine. The late ...
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