Biological enzymolysis chicken blood peptide concentration device
By employing an inner cylinder and scraper tank structure in the bio-enzymatic hydrolysis chicken blood peptide concentration device, and utilizing the pressure difference generated by the liquid level difference, the problem of incomplete reverse osmosis membrane installation was solved, achieving efficient concentration and separation effects and improving concentration efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-03-27
AI Technical Summary
The lack of detailed specifications for the installation and support mechanisms of reverse osmosis membranes in existing technologies leads to low concentration efficiency and insufficient reverse osmosis membrane area.
A bio-enzymatic hydrolysis chicken blood peptide concentration device was designed, comprising a concentration tank, an inner cylinder, and a reverse osmosis membrane. The device maintains the osmosis concentration efficiency through the pressure difference generated by the liquid level difference, and is equipped with a scraper and spiral blade structure to avoid filter pore clogging and improve concentration efficiency.
It achieves a highly efficient concentration effect, with a large reverse osmosis membrane area, simple structure, and good practicality, and can effectively separate and collect high-concentration bio-enzymatic hydrolysed chicken blood peptide solution.
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Figure CN224040553U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of chicken blood peptide production, especially to a kind of biological enzymolysis chicken blood peptide concentration device. BACKGROUND
[0002] Biological enzymolysis chicken blood peptide needs to be concentrated when being produced and extracted.The prior art disclosed in Chinese Utility Model Patent No.CN206089712U proposes a whole blood peptide powder extraction device, which comprises: an enzymolysis tank for enzymolysis treatment of livestock blood; a solid-liquid separation device for solid-liquid separation treatment of the enzymolysis liquid obtained in the enzymolysis tank; an ultrafiltration membrane for filtering and removing impurities from the material liquid after solid-liquid separation; and a reverse osmosis membrane for concentration treatment of the permeate of the ultrafiltration membrane; the device can effectively obtain protein in livestock blood.
[0003] The structure of the reverse osmosis membrane used for concentration is specified in detail in the above prior art, but the mechanism for installing and supporting the reverse osmosis membrane is not specified in detail, so a biological enzymolysis chicken blood peptide concentration device loaded with the reverse osmosis membrane is proposed, which has practicality. SUMMARY
[0004] To solve the above technical problems, the utility model provides a biological enzymolysis chicken blood peptide concentration device with simple structure, large area of reverse osmosis membrane, high concentration efficiency and good practicability.
[0005] The biological enzymolysis chicken blood peptide concentration device of the utility model comprises a concentration tank, a sealing cover, a liquid adding pipe and a liquid outlet pipe, the inside of the concentration tank is provided with a concentration chamber, the upper end of the concentration tank is provided with a taking and placing opening, the taking and placing opening is communicated with the concentration chamber, the sealing cover is detachably installed on the taking and placing opening of the concentration tank, the liquid adding pipe and the liquid outlet pipe are installed on the side wall of the concentration tank, and the liquid adding pipe and the liquid outlet pipe are communicated with the concentration chamber of the concentration tank; the device further comprises an inner cylinder and a liquid pumping pipe, the inner cylinder is installed in the concentration chamber of the concentration tank, a large number of filter holes are arranged on the side wall of the inner cylinder, the reverse osmosis membrane is covered on the inner wall or outer wall of the side wall of the inner cylinder, and the lower end of the liquid pumping pipe extends into the inside of the inner cylinder after penetrating through the sealing cover; the liquid pumping pipe is used for discharging the permeate in the inside of the inner cylinder; in operation, the biological enzymolysis chicken blood peptide liquid is added into the concentration chamber of the concentration tank through the liquid adding pipe, the clear liquid in the biological enzymolysis chicken blood peptide liquid penetrates into the inside of the inner cylinder through the reverse osmosis membrane on the inner cylinder, the upper end of the liquid pumping pipe is connected with a liquid pumping pump, the liquid pumping pump runs to discharge the permeate in the inner cylinder through the liquid pumping pipe, so that the biological enzymolysis chicken blood peptide liquid in the concentration chamber of the concentration tank is concentrated, the inside of the inner cylinder and the concentration chamber of the concentration tank form a liquid level difference, the pressure difference generated by the liquid level difference maintains the permeation concentration efficiency of the reverse osmosis membrane on the inner cylinder, the structure is simple, the area of the reverse osmosis membrane is large, the concentration efficiency is high, and the device has good practicability.
[0006] Preferably, the device further comprises a scraping groove, a swing arm, a gear ring, a motor and a gear one, the scraping groove is vertically installed on the outer wall of the inner cylinder, the scraping groove can rotate along the outer wall of the inner cylinder, the inner edge of the rear wall of the scraping groove scrapes the outer wall of the inner cylinder, the inner edge of the front wall of the scraping groove is provided with a gap with the outer wall of the inner cylinder, the inner end of the swing arm is rotatably sleeved on the liquid suction pipe, the inner end of the swing arm is concentrically installed with the gear ring, the gear ring is concentrically arranged with the lower end of the liquid suction pipe, the motor is installed on the outer wall of the liquid suction pipe through a support, the output shaft of the motor is concentrically installed with the gear one, the gear one is engaged with the gear ring, and the outer end of the swing arm is in transmission connection with the scraping groove; the motor drives the gear one to rotate, the gear one is engaged with the gear ring to drive the swing arm to rotate around the lower end of the liquid suction pipe, the swing arm drives the scraping groove to rotate around the inner cylinder, so that the inner edge of the rear wall of the scraping groove scrapes the outer wall of the inner cylinder, the adhered bio-enzymatic chicken blood peptide is scraped down and stored in the scraping groove, the filter holes of the inner cylinder are prevented from being blocked, and the reverse osmosis efficiency is improved.
[0007] Preferably, the device further comprises a spiral blade, a gear two, a gear ring two, a residue discharging pipe, a residue receiving groove and a residue discharging pipe, the spiral blade is rotatably installed in the scraping groove, the gear two is concentrically installed on the central shaft of the spiral blade, the gear ring two is concentrically installed on the upper end outer wall of the inner cylinder, the gear ring two is engaged with the gear two, the residue discharging pipe is installed on the upper end outer wall of the scraping groove, the residue discharging pipe is in communication with the inside of the scraping groove, the residue receiving groove is annularly installed on the inner wall of the concentration tank, the output end of the residue discharging pipe is located in the inside of the residue receiving groove, and the residue discharging pipe is installed on the outer wall of the concentration tank; when the scraping groove rotates around the inner cylinder, the gear two is engaged with the gear ring two, so that the gear two drives the spiral blade to rotate in the scraping groove, the bio-enzymatic chicken blood peptide in the scraping groove is lifted upward by the spiral blade and input into the residue receiving groove through the residue discharging pipe, and separation and collection of high-concentration bio-enzymatic chicken blood peptide liquid are realized.
[0008] Preferably, the device further comprises a residue discharging pipe, the residue discharging pipe is installed on the outer wall of the concentration tank, and the input end of the residue discharging pipe extends into the residue receiving groove; when the bio-enzymatic chicken blood peptide stored in the residue receiving groove reaches a set value, the valve of the residue discharging pipe is opened to discharge the bio-enzymatic chicken blood peptide, and separation and collection of high-concentration bio-enzymatic chicken blood peptide liquid are realized.
[0009] Preferably, the device further comprises a supporting arm, the outer end of the supporting arm is connected with the bottom of the scraping groove, and the inner end of the supporting arm is rotatably connected with the bottom center of the inner cylinder; the supporting arm rotatably supports the scraping groove, so that the scraping groove is more stable.
[0010] Preferably, the device further comprises a track wheel, the track wheel is rotatably installed on the upper end of the scraping groove, an annular track groove is arranged on the upper end outer wall of the inner cylinder, and the track wheel is in rolling connection with the annular track groove of the inner cylinder; the upper end of the scraping groove is in rolling connection with the upper end of the inner cylinder through the track wheel, so that the scraping groove is more stable and rotates more smoothly.
[0011] Preferably, the device further comprises an air extraction pipe and an air pressure gauge, the air extraction pipe is installed on the sealing cover and communicates with the concentration chamber of the concentration tank, and the air pressure gauge is installed on the sealing cover and has a probe extending into the concentration chamber of the concentration tank; the air extraction pipe is connected to an external vacuum system, air in the concentration chamber of the concentration tank is extracted through the air extraction pipe to form a low pressure in the concentration chamber of the concentration tank, and the air pressure in the concentration chamber of the concentration tank is detected through the air pressure gauge, so that the water in the biological enzymatic chicken blood peptide liquid in the concentration tank is evaporated faster, and the concentration efficiency is improved.
[0012] Compared with the prior art, the device has the following beneficial effects: when working, the biological enzymatic chicken blood peptide liquid is added into the concentration chamber of the concentration tank through the liquid adding pipe, the clear liquid in the biological enzymatic chicken blood peptide liquid penetrates into the inner cylinder through the reverse osmosis membrane on the inner cylinder, the upper end of the liquid extraction pipe is connected to a liquid extraction pump, the liquid extraction pump operates to discharge the penetrated liquid in the inner cylinder through the liquid extraction pipe, so that the biological enzymatic chicken blood peptide liquid in the concentration chamber of the concentration tank is concentrated, a liquid level difference is formed between the inside of the inner cylinder and the concentration chamber of the concentration tank, and the pressure difference generated by the liquid level difference maintains the penetration concentration efficiency of the reverse osmosis membrane on the inner cylinder; the device has a simple structure, a large area of the reverse osmosis membrane, high concentration efficiency and good practicability. BRIEF DESCRIPTION OF DRAWINGS
[0013] Fig. 1 is a structural schematic view of the device;
[0014] Fig. 2 is a front cutaway structural schematic view of the device;
[0015] Fig. 3 is an isometric structural schematic view of the device;
[0016] Fig. 4 is a structural schematic view of the inner cylinder, the liquid extraction pipe, the scraping and collecting groove, the upper swing arm, the gear ring and the motor and the like;
[0017] Fig. 5 is a structural schematic view of the inner cylinder, the liquid extraction pipe and the gear ring two and the like;
[0018] Fig. 6 is a structural schematic view of the scraping and collecting groove, the upper swing arm, the gear ring, the motor, the gear one, the spiral blade, the gear two, the gear ring two, the supporting arm and the track wheel and the like.
[0019] Markings in the drawings: 1, concentration tank; 2, sealing cover; 3, liquid adding pipe; 4, liquid outlet pipe; 5, inner cylinder; 6, liquid extraction pipe; 7, scraping and collecting groove; 8, upper swing arm; 9, gear ring; 10, motor; 11, gear one; 12, spiral blade; 13, gear two; 14, gear ring two; 15, residue discharging pipe; 16, residue receiving groove; 17, residue discharging pipe; 18, supporting arm; 19, track wheel; 20, air extraction pipe; 21, air pressure gauge. DETAILED DESCRIPTION
[0020] For the purpose of facilitating the understanding of the present application, the present application will be described more fully below with reference to the accompanying drawings. The present application can be implemented in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. Example 1
[0021] As Figs. 1-6As shown, a kind of biological enzymatic chicken blood peptide concentration device, including concentration tank 1, sealing cover 2, liquid feeding pipe 3 and liquid outlet pipe 4, the inside of concentration tank 1 is provided with concentration chamber, the upper end of concentration tank 1 is provided with taking and placing mouth, and the taking and placing mouth is communicated with concentration chamber, and sealing cover 2 is detachably installed on the taking and placing mouth of concentration tank 1, and liquid feeding pipe 3 and liquid outlet pipe 4 are installed on the side wall of concentration tank 1, and liquid feeding pipe 3 and liquid outlet pipe 4 are communicated with the concentration chamber of concentration tank 1;It also includes inner cylinder 5 and liquid pumping pipe 6, inner cylinder 5 is installed in the concentration chamber of concentration tank 1, a large number of filter holes are arranged on the side wall of inner cylinder 5, reverse osmosis membrane is covered on the inner wall or outer wall of the side wall of inner cylinder 5, the lower end of liquid pumping pipe 6 extends into the inside of inner cylinder 5 after passing through sealing cover 2, and liquid pumping pipe 6 is used to discharge the permeate in the inside of inner cylinder 5;It also includes scraping and collecting groove 7, upper swing arm 8, gear ring 9, motor 10 and gear one 11, scraping and collecting groove 7 is vertically installed on the outer wall of inner cylinder 5, and scraping and collecting groove 7 can rotate along the outer wall of inner cylinder 5, the inner edge of the rear side wall of scraping and collecting groove 7 scrapes the outer wall of inner cylinder 5, and the inner edge of the front side wall of scraping and collecting groove 7 is provided with a gap with the outer wall of inner cylinder 5, the inner end of upper swing arm 8 is rotatably sleeved on liquid pumping pipe 6, gear ring 9 is concentrically installed on the inner end of upper swing arm 8, gear ring 9 is concentrically arranged on the lower end of liquid pumping pipe 6, motor 10 is installed on the outer wall of liquid pumping pipe 6 by support, gear one 11 is concentrically installed on the output shaft of motor 10, gear one 11 is engaged with gear ring 9, and the outer end of upper swing arm 8 is drivingly connected with scraping and collecting groove 7;It also includes helical blade 12, gear two 13, gear ring two 14, slag discharge pipe 15, slag receiving groove 16 and slag outlet pipe 17, helical blade 12 is rotatably installed in scraping and collecting groove 7, gear two 13 is concentrically installed on the central shaft of helical blade 12, gear ring two 14 is concentrically installed on the upper end outer wall of inner cylinder 5, gear ring two 14 is engaged with gear two 13, slag discharge pipe 15 is installed on the upper end outer wall of scraping and collecting groove 7, and slag discharge pipe 15 is communicated with the inside of scraping and collecting groove 7, slag receiving groove 16 is annularly installed on the inner wall of concentration tank 1, and the output end of slag discharge pipe 15 is located in the inside of slag receiving groove 16, and slag outlet pipe 17 is installed on the outer wall of concentration tank 1, and the input end of slag outlet pipe 17 extends into slag receiving groove 16;It also includes slag outlet pipe 17, and slag outlet pipe 17 is installed on the outer wall of concentration tank 1, and the input end of slag outlet pipe 17 extends into slag receiving groove 16;It also includes supporting arm 18, the outer end of supporting arm 18 is connected with the bottom of scraping and collecting groove 7, and the inner end of supporting arm 18 is rotatably connected with the bottom center of inner cylinder 5;It also includes track wheel 19, track wheel 19 is rotatably installed on the upper end of scraping and collecting groove 7, and annular track groove is arranged on the upper end outer wall of inner cylinder 5, and track wheel 19 is rollingly connected with the annular track groove of inner cylinder 5.
[0022] The arm 18 rotates the scraping groove 7 to support the scraping groove 7 more stably, and the upper end of the scraping groove 7 is connected with the upper end of the inner cylinder 5 through the track wheel 19 to make the scraping groove 7 more stable and rotate more smoothly. During work, the biological enzyme chicken blood peptide liquid is added into the concentration chamber of the concentration tank 1 through the liquid adding pipe 3, the clear liquid in the biological enzyme chicken blood peptide liquid penetrates into the inner cylinder 5 through the reverse osmosis membrane on the inner cylinder 5, the upper end of the liquid pumping pipe 6 is connected with the liquid pumping pump, the liquid pumping pump drives the liquid in the inner cylinder 5 to be pumped out through the liquid pumping pipe 6, so that the biological enzyme chicken blood peptide liquid in the concentration chamber of the concentration tank 1 is concentrated, the inside of the inner cylinder 5 and the concentration chamber of the concentration tank 1 form a liquid level difference, and the pressure difference generated by the liquid level difference keeps the reverse osmosis membrane on the inner cylinder 5 in the state of penetration and concentration, so that the structure is simple, the area of the reverse osmosis membrane is large, the concentration efficiency is high, and the practicability is good.
[0023] The motor 10 drives the gear one 11 to rotate, the gear one 11 is engaged with the gear ring 9 to drive the upper swing arm 8 to rotate around the lower end of the liquid pumping pipe 6, the upper swing arm 8 drives the scraping groove 7 to rotate around the inner cylinder 5, the inner edge of the rear wall of the scraping groove 7 scrapes the outer wall of the inner cylinder 5, the biological enzyme chicken blood peptide attached to the inner cylinder 5 is scraped and stored in the scraping groove 7, the filter hole of the inner cylinder 5 is prevented from being blocked, and the reverse osmosis efficiency is improved. When the scraping groove 7 rotates around the inner cylinder 5, the gear two 13 is engaged with the gear ring two 14, so that the gear two 13 drives the spiral blade 12 to rotate in the scraping groove 7, the spiral blade 12 lifts the biological enzyme chicken blood peptide in the scraping groove 7 upward and inputs the biological enzyme chicken blood peptide into the residue receiving groove 16 through the residue discharging pipe 15. When the biological enzyme chicken blood peptide stored in the residue receiving groove 16 reaches a set value, the valve of the residue discharging pipe 17 is opened to discharge the biological enzyme chicken blood peptide, so that the high-concentration biological enzyme chicken blood peptide liquid is separated and collected. Example 2
[0024] As shown in Figs. 1-3 the embodiment 1, the embodiment 1 further comprises the air extraction pipe 20 and the air pressure gauge 21, the air extraction pipe 20 is installed on the sealing cover 2 and communicates with the concentration chamber of the concentration tank 1, the air pressure gauge 21 is installed on the sealing cover 2 and the probe of the air pressure gauge 21 extends into the concentration chamber of the concentration tank 1; the air extraction pipe 20 is connected with the external vacuum system, the air in the concentration chamber of the concentration tank 1 is extracted through the air extraction pipe 20 to form low pressure in the concentration chamber of the concentration tank 1, and the air pressure in the concentration chamber of the concentration tank 1 is detected through the air pressure gauge 21 to make the water in the biological enzyme chicken blood peptide liquid in the concentration tank 1 evaporate faster and improve the concentration efficiency.
[0025] As shown in Figs. 1-6As shown, the biological enzymolysis chicken blood peptide concentration device of the utility model, first, biological enzymolysis chicken blood peptide liquid is added to the concentration chamber of concentration tank 1 through liquid adding pipe 3, the clear liquid in biological enzymolysis chicken blood peptide liquid penetrates into the inside of inner cylinder 5 through the reverse osmosis membrane on inner cylinder 5, then the upper end of liquid pumping pipe 6 is connected with liquid pumping pump, and the liquid pumping pump runs and discharges the infiltrate in inner cylinder 5 through liquid pumping pipe 6, so that the biological enzymolysis chicken blood peptide liquid in the concentration chamber of concentration tank 1 is concentrated, the inside of inner cylinder 5 and the concentration chamber of concentration tank 1 form liquid level difference, the pressure difference generated by liquid level difference keeps the infiltration concentration efficiency of the reverse osmosis membrane on inner cylinder 5, then motor 10 drives gear one 11 to rotate, gear one 11 is engaged with gear ring 9, thereby driving upper swing arm 8 to rotate around the lower end of liquid pumping pipe 6, and upper swing arm 8 drives scraping groove 7 to rotate around inner cylinder 5, so that the rear wall inner edge of scraping groove 7 scrapes the outer wall of inner cylinder 5, and the adhered biological enzymolysis chicken blood peptide is scraped down, finally, when scraping groove 7 rotates around inner cylinder 5, gear two 13 is engaged with gear ring two 14, thereby making gear two 13 drive helical blade 12 to rotate in scraping groove 7, so that helical blade 12 lifts the biological enzymolysis chicken blood peptide in scraping groove 7 upwards and inputs into receiving residue groove 16 through residue discharging pipe 15, when the biological enzymolysis chicken blood peptide stored in receiving residue groove 16 reaches the setting, the valve of residue discharging pipe 17 is opened to discharge the biological enzymolysis chicken blood peptide, and the separation and collection of high-concentration biological enzymolysis chicken blood peptide liquid can be realized.
[0026] The main function realized by the utility model is:
[0027] 1. Simple structure, large area of reverse osmosis membrane, high concentration efficiency and good practicability;
[0028] 2. The adhered biological enzymolysis chicken blood peptide can be scraped down, the filter hole of inner cylinder 5 is prevented from being blocked, and the reverse osmosis efficiency is improved;
[0029] 3. The scraped biological enzymolysis chicken blood peptide can be discharged, and the separation and collection of high-concentration biological enzymolysis chicken blood peptide liquid can be realized.
[0030] The installation mode, connection mode or setting mode of the biological enzymolysis chicken blood peptide concentration device of the utility model are all common mechanical modes, and as long as the beneficial effects can be achieved, they can be implemented; the concentration tank 1, sealing cover 2, liquid adding pipe 3, liquid discharging pipe 4, inner cylinder 5, liquid pumping pipe 6, scraping groove 7, gear ring 9, motor 10, gear one 11, helical blade 12, gear two 13, gear ring two 14, receiving residue groove 16, track wheel 19, air pumping pipe 20 and air pressure gauge 21 of the biological enzymolysis chicken blood peptide concentration device of the utility model are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual, without the technical personnel in the field needing to pay creative labor.
[0031] All the technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing specific embodiments and are not intended to limit the present application. The term "and / or" used herein includes any and all combinations of one or more of the associated listed items.
[0032] The above is only the preferred embodiment of the present application, and it should be pointed out that for those skilled in the art, without departing from the technical principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications should be considered as the protection scope of the present application.
Claims
1. A bio-enzymatic hydrolysis chicken blood peptide concentration device, comprising a concentration tank (1), a sealing cap (2), a liquid addition pipe (3), and a liquid outlet pipe (4), wherein the concentration tank (1) is provided with a concentration chamber inside, and a pick-up and drop-off port is provided at the upper end of the concentration tank (1), the pick-up and drop-off port being connected to the concentration chamber; the sealing cap (2) is detachably installed on the pick-up and drop-off port of the concentration tank (1); the liquid addition pipe (3) and the liquid outlet pipe (4) are installed on the side wall of the concentration tank (1), and the liquid addition pipe (3) and the liquid outlet pipe (4) are connected to the concentration chamber of the concentration tank (1); characterized in that, It also includes an inner cylinder (5) and a liquid extraction pipe (6). The inner cylinder (5) is installed in the concentration chamber of the concentration tank (1). The side wall of the inner cylinder (5) is provided with a large number of filter holes. The reverse osmosis membrane covers the inner or outer wall of the side wall of the inner cylinder (5). The lower end of the liquid extraction pipe (6) passes through the sealing cover (2) and extends into the interior of the inner cylinder (5). The liquid extraction pipe (6) is used to discharge the permeate inside the inner cylinder (5).
2. The bio-enzymatic hydrolysis chicken blood peptide concentration device as described in claim 1, characterized in that, It also includes a scraping groove (7), an upper swing arm (8), a gear ring (9), a motor (10), and a gear (11). The scraping groove (7) is vertically installed on the outer wall of the inner cylinder (5). The scraping groove (7) can rotate along the outer wall of the inner cylinder (5). The inner edge of the rear side wall of the scraping groove (7) scrapes the outer wall of the inner cylinder (5). The inner edge of the front side wall of the scraping groove (7) is separated from the outer wall of the inner cylinder (5). The inner end of the upper swing arm (8) is rotated and fitted onto the liquid extraction pipe (6). The inner end of the upper swing arm (8) is concentrically installed with the gear ring (9). The gear ring (9) is concentrically set with the lower end of the liquid extraction pipe (6). The motor (10) is installed on the outer wall of the liquid extraction pipe (6) through a bracket. The output shaft of the motor (10) is concentrically installed with the gear (11). The gear (11) meshes with the gear ring (9). The outer end of the upper swing arm (8) is connected to the scraping groove (7) for transmission.
3. The bio-enzymatic hydrolysis chicken blood peptide concentration device as described in claim 2, characterized in that, It also includes a spiral blade (12), a second gear (13), a second gear ring (14), a slag discharge pipe (15), a slag receiving trough (16), and a slag discharge pipe (17). The spiral blade (12) is rotatably installed in the scraping and collecting trough (7). The second gear (13) is concentrically installed on the central axis of the spiral blade (12). The second gear ring (14) is concentrically installed on the upper outer wall of the inner cylinder (5). The second gear ring (14) meshes with the second gear (13). The slag discharge pipe (15) is installed on the upper outer wall of the scraping and collecting trough (7). The slag discharge pipe (15) is connected to the inside of the scraping and collecting trough (7). The slag receiving trough (16) is annularly installed on the inner wall of the thickening tank (1). The output end of the slag discharge pipe (15) is located inside the slag receiving trough (16). The slag discharge pipe (17) is installed on the outer wall of the thickening tank (1). The input end of the slag discharge pipe (17) extends into the slag receiving trough (16).
4. The bio-enzymatic hydrolysis chicken blood peptide concentration device as described in claim 3, characterized in that, It also includes a slag discharge pipe (17), which is installed on the outer wall of the concentrator (1), and the input end of the slag discharge pipe (17) extends into the slag receiving trough (16).
5. The bio-enzymatic hydrolysis chicken blood peptide concentration device as described in claim 2, characterized in that, It also includes a support arm (18), the outer end of which is connected to the bottom of the scraping groove (7), and the inner end of which is rotatably connected to the bottom center of the inner cylinder (5).
6. The bio-enzymatic hydrolysis chicken blood peptide concentration device as described in claim 2, characterized in that, It also includes a track wheel (19), which is rotatably installed on the upper end of the scraping groove (7). An annular track groove is provided on the upper outer wall of the inner cylinder (5), and the track wheel (19) is rotatably connected to the annular track groove of the inner cylinder (5).
7. The bio-enzymatic hydrolysis chicken blood peptide concentration device as described in claim 1, characterized in that, It also includes a suction pipe (20) and a pressure gauge (21). The suction pipe (20) is installed on the sealing cover (2) and is connected to the concentration chamber of the concentration tank (1). The pressure gauge (21) is installed on the sealing cover (2) and the probe of the pressure gauge (21) extends into the concentration chamber of the concentration tank (1).
Citation Information
Patent Citations
Whole blood peptide powder extraction element
CN206089712U