Temperature-controllable heating reaction device for extracting cholic acid from gall bladder
A reaction device, bile acid technology, applied in chemistry/physics/physicochemical fixed reactors, steroids, chemistry/physics/physicochemical processes, etc., can solve problems affecting experimental progress, common laboratory difficulties, extraction process Long time and other issues
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2020-03-06
- Estimated Expiration
- Not applicable · inactive patent
Smart Images

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Abstract
Description
technical field
[0001] The invention relates to the technical field of bile acid extraction, in particular to a temperature-controllable heating reaction device for extracting bile acid from gall. Background technique
[0002] At present, many experts in the field of veterinary medicine are conducting research on bile acids, and found that bile acids emulsify fat in animals to expand the contact area with lipase; regulate the activity of pancreatic lipase and lipoprotein esterase to improve their hydrolysis and metabolism of fat; Transport fat in the intestine and promote fat absorption. In addition, bile acids significantly reduce the catabolism of autologous fat by regulating the activity of hormone-sensitive lipase. In summary, bile acids can save energy raw materials, increase energy utilization, improve growth performance and slaughter performance, and are "positive energy" for resource conservation.
[0003] When conducting bile acid extraction experiments, the exist...
Examples
Embodiment 1
[0024] Embodiment 1, according to Figure 1-2 , when carrying out the bile acid extraction experiment, the experimental reagent is poured into the reactor 2 through the liquid injection box 3, and the liquid used for heating in the bath heating chamber 28 is heated to a certain level according to the required experimental temperature in the different reactor 2. temperature, and will be transported to the reactor 2 through the second pipeline 27, the reagent inside the reactor 2 is heated, and when the reagent inside the reactor 2 evaporates and flows upward after being heated, it enters the reflux device 4, and the reflux device 4 After the coolant is connected through the connecting pipe 6, the heat flow is condensed and returned to the reactor 2 for full dissolution after contacting the condensation bulb 5.
Embodiment 2
[0025] Embodiment 2, according to Figure 1-4, when the liquid inside the bath heat chamber 28 flows through the spiral tube 10, according to the temperature required in the next reactor 2, the second gear 16 is driven to rotate by an external controller, and passes between the second gear 16 and the first gear 15. The meshing effect drives the first gear 15 to drive the transfer pipe 17 to rotate. When the solution inside the threaded pipe 10 needs to be further heated or cooled, the first pipe 13 is connected to the heating chamber 24 or the cooling chamber 22 through the rotation of the transfer pipe 17 When the transfer pipe 17 is in communication with the heating chamber 24 or the cooling chamber 22, when the transfer pipe 17 is docked, the top plate 21 is pressed in the direction of the limit plate 18, and as the top plate 21 moves, the piston 19 moves And compress the spring 20, the air passage inside the limiting plate 18 is opened, the gas used for heating or cooling ...