Corn starch lactosylation device
By installing an enzyme removal and filtration device in the corn starch lactic acidification equipment for heating enzyme removal and filtration purification, the problem of incomplete treatment of impurities and residual enzymes in corn starch is solved, thus improving the quality of the finished product.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-04-03
AI Technical Summary
Existing corn starch lactation equipment fails to effectively remove impurities and treat residual enzymes during production, resulting in poor product quality.
An enzyme removal and filtration device is installed to heat and filter the saccharified corn starch to remove enzymes and purify it, thereby improving the quality of the finished product.
By using heating to remove enzymes and filtration purification, the quality of the finished corn starch product was improved, and the problem of incomplete removal of impurities and residual enzymes was solved.
Smart Images

Figure CN224077406U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of corn starch lactose saccharification equipment, and in particular to a corn starch lactose saccharification device. Background Technology
[0002] Corn starch is a common raw material in the food industry, often used to produce lactose.
[0003] For example, in a class of prior art represented by the Chinese invention patent CN117866761B, which discloses a corn starch lactation device, the main structure includes a lactation tank, a closed ring, a closed plate, stirring blades, a disturbance plate, a pH adjustment tube, and a heating ring. The lactation tank holds the raw materials, the closed ring separates the lactation tank, the closed plate closes the closed ring during stirring to improve the stirring effect, the stirring blades stir the raw materials, the disturbance plate stirs and homogenizes the raw materials during saccharification and fermentation to improve the saccharification effect, the pH adjustment tube adjusts the pH value of the raw materials to improve the saccharification effect, and the heating ring heats the raw materials to improve the saccharification effect.
[0004] However, the existing technology and equipment still have the following problems when in use: the existing machines do not clean the impurities in the saccharified corn starch during production, resulting in poor product quality; and the existing machines do not treat the residual enzymes in the saccharified corn starch during production, which can easily lead to over-fermentation of the corn starch and poor product quality. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a corn starch lactic acidification device that improves the quality of the finished product by heating and filtering the saccharified corn starch through an enzyme removal and filtration device.
[0006] This utility model discloses a corn starch saccharification device, including a machine body; it also includes a liquefaction device, a conveying device, a power device, an enzyme removal and filtration device, and a stirring device. The liquefaction device, power device, enzyme removal and filtration device, and stirring device are all installed on the machine body, and the conveying device is installed on the liquefaction device. The machine body performs saccharification treatment on the liquefied starch, the liquefaction device uniformly liquefies the starch, the conveying device transports and mixes the starch with water, the power device provides power to the stirring device, the enzyme removal and filtration device removes enzymes and purifies the saccharified starch, and the stirring device stirs the liquefied starch during saccharification.
[0007] Preferably, the machine body includes two support bases, a base plate, two sets of brackets, a saccharification cylinder, an electric heater, a solenoid valve, a pH adjuster storage box, and pipes. The base plate is installed on the top of the two support bases, and both sets of brackets are installed on the top of the base plate. The saccharification cylinder is installed on the top of one set of brackets. The bottom of the saccharification cylinder is provided with a discharge port, and the top of the saccharification cylinder is provided with a feed port and a feed port. An electric heater is installed on the inner side wall of the saccharification cylinder. The solenoid valve is installed on the top of the feed port. The pH adjuster storage box is installed on the top of the solenoid valve. The pipes are installed at the discharge port. The saccharification cylinder holds liquefied starch, the electric heater heats the liquefied starch to promote starch saccharification, and the pH adjuster storage box holds pH adjuster.
[0008] Preferably, the liquefaction device includes a second support, a third support, a liquefaction cylinder, a fourth support, a first auger, multiple fifth supports, a first reducer, a first motor, and a second solenoid valve. The second support is installed at the top of the saccharification cylinder, the third support is installed at the top of the second support, and the third support has a discharge port second at its top. The liquefaction cylinder is installed at the top of the third support, the fourth support is installed at the top of the liquefaction cylinder, and the fourth support has a feed port third at its top. The first auger is rotatably installed on the third and fourth supports. Multiple fifth supports are installed on the inner sidewall of the liquefaction cylinder. The first reducer is fixedly installed at the top of the fourth support, and the first auger passes through the fourth support and is rotatably connected to the first reducer. The first motor is fixedly installed at the top of the first reducer, and the first motor provides power to the first auger through the first reducer. The second solenoid valve is installed at the discharge port second. The first motor provides power to drive the first auger to rotate. The rotation of the first auger stirs the starch and water inside the liquefaction cylinder, so that the starch is liquefied evenly.
[0009] Preferably, the conveying device includes a mixing box, a support six, a hopper, a reducer two, a motor two, and an auger two. The mixing box is installed at the top of the feed inlet three of the support four. A water inlet is provided at the side end of the mixing box, and a feed inlet four is provided at the top of the mixing box. The support six and the hopper are both installed at the top of the mixing box. The reducer two is fixedly installed at the top of the support six, and the motor two is fixedly installed at the top of the reducer two. The auger two is rotatably installed on the support six and is rotatably connected between the support six and the reducer two. The auger two is rotatably installed in the feed inlet four. The motor two provides power to the auger two through the reducer two. The hopper holds a mixture of starch and enzyme preparation. The motor two provides power to drive the auger two to rotate. The rotation of the motor two conveys the mixture. At the same time, water is introduced into the water inlet of the mixing box, so that the water flushes the mixture into the liquefaction cylinder.
[0010] Preferably, the power unit includes a bracket seven, a motor three, a reducer three, two sprockets, and a chain. The bracket seven is installed on the side of the saccharification cylinder, the motor three is installed on the bracket seven, the reducer three is fixedly installed on the bottom of the motor three, one sprocket is rotatably installed on the bottom of the reducer three, and the motor three provides power to one of the sprockets connected to it through the reducer three. The other sprocket is rotatably installed on the bottom of the saccharification cylinder, and the chain is installed on the two sprockets. The motor three provides power to drive the sprockets to rotate, and the rotation of the sprockets drives the stirring device to rotate.
[0011] Preferably, the enzyme removal filtration device includes an electric heating pipe, a support eight, a solenoid valve three, a filter pipe, and a discharge pipe. The electric heating pipe is installed on the pipe, the support eight and the solenoid valve three are both installed at the bottom of the electric heating pipe, the filter pipe is installed at the bottom of the support eight and the solenoid valve three, and the filter pipe is installed at the top of another set of supports one. The discharge pipe is installed at the bottom of the filter pipe. The electric heating pipe heats and removes enzymes from the saccharified liquefied starch, and the filter pipe filters the enzyme-removed liquefied starch.
[0012] Preferably, the stirring device includes a screw conveyor, which is rotatably installed inside the saccharification cylinder and is fixedly connected to the sprocket through the saccharification cylinder; the screw conveyor is driven to rotate by the sprocket, and the rotation of the screw conveyor stirs the liquefied starch during saccharification, thereby improving the saccharification effect.
[0013] Preferably, the stirring device includes a stirring shaft, which is rotatably installed inside the saccharification cylinder and is fixedly connected to a sprocket through the saccharification cylinder; the stirring shaft is driven to rotate by the sprocket, and the rotation of the stirring shaft stirs the liquefied starch during saccharification, thereby improving the saccharification effect.
[0014] Compared with the prior art, the advantages of this utility model are: it can heat and remove enzymes from saccharified corn starch and filter and purify it, resulting in a higher quality finished product. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the isometric cross-sectional structure of Embodiment 1 of this utility model;
[0016] Figure 2 This is a schematic diagram of the isometric cross-sectional structure of Embodiment 2 of this utility model;
[0017] Figure 3 This is an isometric sectional view of the liquefaction unit and the conveying unit.
[0018] Figure 4 This is an isometric structural diagram of the conveying device;
[0019] Figure 5 This is a schematic diagram of the isometric cross-sectional structure of the power unit.
[0020] The attached diagram is labeled as follows: 01, machine body; 11, support base; 12, base plate; 13, bracket one; 14, saccharification cylinder; 15, electric heater; 16, solenoid valve one; 17, pH adjuster storage box; 18, pipeline; 02, liquefaction device; 21, bracket two; 22, bracket three; 23, liquefaction cylinder; 24, bracket four; 25, auger one; 26, bracket five; 27, reducer one; 28, motor one; 29, solenoid valve two; 03, conveying device; 31. Mixing box; 32. Support 6; 33. Hopper; 34. Reducer 2; 35. Motor 2; 36. Screwdriver 2; 04. Power unit; 41. Support 7; 42. Motor 3; 43. Reducer 3; 44. Sprocket; 45. Chain; 05. Enzyme removal filtration device; 51. Electric heating pipe; 52. Support 8; 53. Solenoid valve 3; 54. Filter pipe; 55. Discharge pipe; 06. Stirring device; 61. Screwdriver 3; 62. Stirring shaft. Detailed Implementation
[0021] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example 1
[0022] like Figure 1 As shown, the device includes a body 01; it also includes a liquefaction device 02, a conveying device 03, a power device 04, an enzyme removal and filtration device 05, and a stirring device 06. The liquefaction device 02, the power device 04, the enzyme removal and filtration device 05, and the stirring device 06 are all mounted on the body 01, and the conveying device 03 is mounted on the liquefaction device 02. The body 01 performs saccharification treatment on the liquefied starch, the liquefaction device 02 performs uniform liquefaction of the starch, the conveying device 03 transports and mixes the starch with water, the power device 04 provides power to the stirring device 06, the enzyme removal and filtration device 05 performs enzyme removal filtration and purification on the saccharified starch, and the stirring device 06 stirs the liquefied starch during saccharification.
[0023] like Figure 1As shown, the machine body 01 includes two support seats 11, a base plate 12, two sets of brackets 13, a saccharification cylinder 14, an electric heater 15, a solenoid valve 16, a pH adjuster storage box 17, and a pipe 18. The base plate 12 is installed on the top of the two support seats 11, and both sets of brackets 13 are installed on the top of the base plate 12. The saccharification cylinder 14 is installed on the top of one set of brackets 13. The bottom of the saccharification cylinder 14 is provided with a discharge port 1, and the top of the saccharification cylinder 14 is provided with a feed port 1 and a feed port 2. An electric heater 15 is installed on the inner side wall of the saccharification cylinder 14. The solenoid valve 16 is installed on the top of the feed port 1, the pH adjuster storage box 17 is installed on the top of the solenoid valve 16, and the pipe 18 is installed at the discharge port.
[0024] like Figure 3 As shown, the liquefaction device 02 includes a second support 21, a third support 22, a liquefaction cylinder 23, a fourth support 24, an auger 25, multiple fifth supports 26, a reducer 27, a motor 28, and a solenoid valve 29. The second support 21 is installed at the top of the saccharification cylinder 14, the third support 22 is installed at the top of the second support 21, and the third support 22 has a discharge port 2 at its top. The liquefaction cylinder 23 is installed at the top of the third support 22, the fourth support 24 is installed at the top of the liquefaction cylinder 23, and the fourth support 24 has a feed port 3 at its top. The auger 25 is rotatably installed on the third support 22 and the fourth support 24. Multiple fifth supports 26 are installed on the inner side wall of the liquefaction cylinder 23. The reducer 27 is fixedly installed at the top of the fourth support 24, and the auger 25 passes through the fourth support 24 and is rotatably connected to the reducer 27. The motor 28 is fixedly installed at the top of the reducer 27, and the motor 28 provides power to the auger 25 through the reducer 27. The solenoid valve 29 is installed at the discharge port 2.
[0025] like Figure 3 and Figure 4 As shown, the conveying device 03 includes a mixing box 31, a support 6 32, a hopper 33, a reducer 2 34, a motor 2 35, and an auger 2 36. The mixing box 31 is installed at the top of the feed inlet 3 of the support 4 24. A water inlet is provided on the side of the mixing box 31, and a feed inlet 4 is provided at the top of the mixing box 31. The support 6 32 and the hopper 33 are both installed at the top of the mixing box 31. The reducer 2 34 is fixedly installed at the top of the support 6 32. The motor 2 35 is fixedly installed at the top of the reducer 2 34. The auger 2 36 is rotatably installed on the support 6 32, and the auger 2 36 passes through the support 6 32 and is rotatably connected to the reducer 2 34. The auger 2 36 is rotatably installed in the feed inlet 4. The motor 2 35 provides power to the auger 2 36 through the reducer 2 34.
[0026] like Figure 5As shown, the power unit 04 includes a bracket 41, a motor 42, a reducer 43, two sprockets 44, and a chain 45. The bracket 41 is installed on the side of the saccharification cylinder 14, the motor 42 is installed on the bracket 41, the reducer 43 is fixedly installed on the bottom of the motor 42, one sprocket 44 is rotatably installed on the bottom of the reducer 43, and the motor 42 provides power to one of the sprockets 44 connected to it through the reducer 43. The other sprocket 44 is rotatably installed on the bottom of the saccharification cylinder 14, and the chain 45 is installed on the two sprockets 44.
[0027] like Figure 1 As shown, the enzyme removal filtration device 05 includes an electric heating pipe 51, a support 52, a solenoid valve 53, a filter pipe 54, and a discharge pipe 55. The electric heating pipe 51 is installed on the pipe 18. The support 52 and the solenoid valve 53 are both installed at the bottom of the electric heating pipe 51. The filter pipe 54 is installed at the bottom of the support 52 and the solenoid valve 53. The filter pipe 54 is also installed at the top of another set of supports 13. The discharge pipe 55 is installed at the bottom of the filter pipe 54.
[0028] like Figure 1 As shown, the stirring device 06 includes a screw conveyor 61, which is rotatably installed inside the saccharification cylinder 14 and is fixedly connected to the sprocket 44 through the saccharification cylinder 14.
[0029] First, the starch-enzyme mixture is stored in hopper 33. Then, motor 2 35 is turned on, providing power to drive auger 2 36 to rotate. Motor 2 35 transports the mixture while simultaneously introducing water into the inlet of mixing box 31, flushing the mixture into liquefaction cylinder 23. Next, motor 1 28 is turned on, providing power to drive auger 1 25 to rotate. Auger 1 25 stirs the starch and water inside liquefaction cylinder 23, ensuring uniform liquefaction of the starch. Then, solenoid valve 2 29 is opened, allowing the liquefied starch to enter saccharification cylinder 14. Finally, electric heater 15, solenoid valve 1 16, and motor 3 42 are turned on. Electric heater 15 then liquefies the starch... The starch is heated to promote saccharification. The pH adjuster storage box 17 contains the pH adjuster. The solenoid valve 16 controls the pH value of the liquefied starch inside the saccharification cylinder 14 by opening and closing. The motor 3 42 provides power to drive the sprocket 44 to rotate. The rotation of the sprocket 44 drives the auger 3 61 to rotate. The rotation of the auger 3 61 stirs the liquefied starch during saccharification, improving the saccharification effect. The saccharified liquefied starch is fed into the electric heating pipe 51 through the pipe 18. The electric heating pipe 51 heats the saccharified liquefied starch to remove enzymes. The liquefied starch after enzyme removal enters the filter pipe 54 under gravity. The filter pipe 54 filters the liquefied starch after enzyme removal. Example 2
[0030] like Figure 2As shown, the device includes a body 01; it also includes a liquefaction device 02, a conveying device 03, a power device 04, an enzyme removal and filtration device 05, and a stirring device 06. The liquefaction device 02, the power device 04, the enzyme removal and filtration device 05, and the stirring device 06 are all mounted on the body 01, and the conveying device 03 is mounted on the liquefaction device 02. The body 01 performs saccharification treatment on the liquefied starch, the liquefaction device 02 performs uniform liquefaction of the starch, the conveying device 03 transports and mixes the starch with water, the power device 04 provides power to the stirring device 06, the enzyme removal and filtration device 05 performs enzyme removal filtration and purification on the saccharified starch, and the stirring device 06 stirs the liquefied starch during saccharification.
[0031] like Figure 2 As shown, the machine body 01 includes two support seats 11, a base plate 12, two sets of brackets 13, a saccharification cylinder 14, an electric heater 15, a solenoid valve 16, a pH adjuster storage box 17, and a pipe 18. The base plate 12 is installed on the top of the two support seats 11, and both sets of brackets 13 are installed on the top of the base plate 12. The saccharification cylinder 14 is installed on the top of one set of brackets 13. The bottom of the saccharification cylinder 14 is provided with a discharge port 1, and the top of the saccharification cylinder 14 is provided with a feed port 1 and a feed port 2. An electric heater 15 is installed on the inner side wall of the saccharification cylinder 14. The solenoid valve 16 is installed on the top of the feed port 1, the pH adjuster storage box 17 is installed on the top of the solenoid valve 16, and the pipe 18 is installed at the discharge port.
[0032] like Figure 3 As shown, the liquefaction device 02 includes a second support 21, a third support 22, a liquefaction cylinder 23, a fourth support 24, an auger 25, multiple fifth supports 26, a reducer 27, a motor 28, and a solenoid valve 29. The second support 21 is installed at the top of the saccharification cylinder 14, the third support 22 is installed at the top of the second support 21, and the third support 22 has a discharge port 2 at its top. The liquefaction cylinder 23 is installed at the top of the third support 22, the fourth support 24 is installed at the top of the liquefaction cylinder 23, and the fourth support 24 has a feed port 3 at its top. The auger 25 is rotatably installed on the third support 22 and the fourth support 24. Multiple fifth supports 26 are installed on the inner side wall of the liquefaction cylinder 23. The reducer 27 is fixedly installed at the top of the fourth support 24, and the auger 25 passes through the fourth support 24 and is rotatably connected to the reducer 27. The motor 28 is fixedly installed at the top of the reducer 27, and the motor 28 provides power to the auger 25 through the reducer 27. The solenoid valve 29 is installed at the discharge port 2.
[0033] like Figure 3 and Figure 4As shown, the conveying device 03 includes a mixing box 31, a support 6 32, a hopper 33, a reducer 2 34, a motor 2 35, and an auger 2 36. The mixing box 31 is installed at the top of the feed inlet 3 of the support 4 24. A water inlet is provided on the side of the mixing box 31, and a feed inlet 4 is provided at the top of the mixing box 31. The support 6 32 and the hopper 33 are both installed at the top of the mixing box 31. The reducer 2 34 is fixedly installed at the top of the support 6 32. The motor 2 35 is fixedly installed at the top of the reducer 2 34. The auger 2 36 is rotatably installed on the support 6 32, and the auger 2 36 passes through the support 6 32 and is rotatably connected to the reducer 2 34. The auger 2 36 is rotatably installed in the feed inlet 4. The motor 2 35 provides power to the auger 2 36 through the reducer 2 34.
[0034] like Figure 5 As shown, the power unit 04 includes a bracket 41, a motor 42, a reducer 43, two sprockets 44, and a chain 45. The bracket 41 is installed on the side of the saccharification cylinder 14, the motor 42 is installed on the bracket 41, the reducer 43 is fixedly installed on the bottom of the motor 42, one sprocket 44 is rotatably installed on the bottom of the reducer 43, and the motor 42 provides power to one of the sprockets 44 connected to it through the reducer 43. The other sprocket 44 is rotatably installed on the bottom of the saccharification cylinder 14, and the chain 45 is installed on the two sprockets 44.
[0035] like Figure 2 As shown, the enzyme removal filtration device 05 includes an electric heating pipe 51, a support 52, a solenoid valve 53, a filter pipe 54, and a discharge pipe 55. The electric heating pipe 51 is installed on the pipe 18. The support 52 and the solenoid valve 53 are both installed at the bottom of the electric heating pipe 51. The filter pipe 54 is installed at the bottom of the support 52 and the solenoid valve 53. The filter pipe 54 is also installed at the top of another set of supports 13. The discharge pipe 55 is installed at the bottom of the filter pipe 54.
[0036] like Figure 2 As shown, the stirring device 06 includes a stirring shaft 62, which is rotatably installed inside the saccharification cylinder 14, and the stirring shaft 62 passes through the saccharification cylinder 14 and is fixedly connected to the sprocket 44.
[0037] First, the starch-enzyme mixture is stored in hopper 33. Then, motor 2 35 is turned on, providing power to drive auger 2 36 to rotate. Motor 2 35 transports the mixture while simultaneously introducing water into the inlet of mixing box 31, flushing the mixture into liquefaction cylinder 23. Next, motor 1 28 is turned on, providing power to drive auger 1 25 to rotate. Auger 1 25 stirs the starch and water inside liquefaction cylinder 23, ensuring uniform liquefaction of the starch. Then, solenoid valve 2 29 is opened, allowing the liquefied starch to enter saccharification cylinder 14. Finally, electric heater 15, solenoid valve 1 16, and motor 3 42 are turned on. Electric heater 15 then liquefies the starch... The starch is heated to promote saccharification. The pH adjuster storage box 17 contains the pH adjuster. The solenoid valve 16 controls the pH value of the liquefied starch inside the saccharification cylinder 14 by opening and closing. The motor 3 42 provides power to drive the sprocket 44 to rotate. The rotation of the sprocket 44 drives the stirring shaft 62 to rotate. The rotation of the stirring shaft 62 stirs the liquefied starch during saccharification, improving the saccharification effect. The saccharified liquefied starch is fed into the electric heating pipe 51 through the pipe 18. The electric heating pipe 51 heats the saccharified liquefied starch to remove enzymes. The enzyme-removed liquefied starch enters the filter pipe 54 under gravity. The filter pipe 54 filters the enzyme-removed liquefied starch.
[0038] like Figures 1 to 5 As shown, this utility model discloses a corn starch lactic acidification device. During operation, the starch-enzyme mixture is first stored in the hopper 33. Then, motor 2 35 is turned on, providing power to drive auger 2 36 to rotate. Motor 2 35 transports the mixture while simultaneously introducing water into the inlet of the mixing box 31, flushing the mixture into the liquefaction cylinder 23. Next, motor 1 28 is turned on, providing power to drive auger 1 25 to rotate. Auger 1 25 stirs the starch and water inside the liquefaction cylinder 23, causing the starch to liquefy uniformly. Then, solenoid valve 2 29 is opened, allowing the liquefied starch to enter the saccharification cylinder 14. Finally, electric heater 15, solenoid valve 1 16, and electric... Machine 3 42, electric heater 15 heats liquefied starch to promote starch saccharification, pH adjuster storage box 17 contains pH adjuster, solenoid valve 16 controls the pH value of liquefied starch inside saccharification cylinder 14 by opening and closing, motor 3 42 provides power to drive sprocket 44 to rotate, sprocket 44 drives stirring shaft 62 to rotate, stirring shaft 62 to stir liquefied starch during saccharification, improving saccharification effect, saccharified liquefied starch enters electric heating pipe 51 through pipe 18, electric heating pipe 51 heats saccharified liquefied starch to remove enzymes, liquefied starch after enzyme removal enters filter pipe 54 under gravity, filter pipe 54 to filter liquefied starch after enzyme removal.
[0039] The electric heater 15, solenoid valve 16, motor 1 28, solenoid valve 29, motor 2 35, motor 3 42, two sprockets 44, chain 45, electric heating pipe 51, solenoid valve 3 53, and filter pipe 54 of this utility model are purchased from the market. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0040] The main function achieved by this utility model is to improve the quality of the finished product by heating and filtering the saccharified corn starch through the enzyme removal and filtration device 05. This solves the existing technical problems that the existing machines do not clean the impurities in the saccharified corn starch during production, resulting in poor product quality, and the existing machines do not treat the residual enzymes in the saccharified corn starch during production, which easily leads to over-fermentation of the corn starch and poor product quality.
[0041] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A corn starch lactic acidification device, comprising a body (01); characterized in that, It also includes a liquefaction device (02), a conveying device (03), a power device (04), an enzyme removal filtration device (05), and a stirring device (06). The liquefaction device (02), the power device (04), the enzyme removal filtration device (05), and the stirring device (06) are all installed on the machine body (01), and the conveying device (03) is installed on the liquefaction device (02). The machine body (01) performs saccharification treatment on the liquefied starch, the liquefaction device (02) performs uniform liquefaction of the starch, the conveying device (03) transports and mixes the starch with water, the power device (04) provides power to the stirring device (06), the enzyme removal filtration device (05) performs enzyme removal filtration purification on the saccharified starch, and the stirring device (06) stirs the liquefied starch during saccharification.
2. The corn starch lactose saccharification device as described in claim 1, characterized in that, The machine body (01) includes two support seats (11), a base plate (12), two sets of brackets (13), a saccharification cylinder (14), an electric heater (15), a solenoid valve (16), a pH adjuster storage box (17), and a pipe (18). The base plate (12) is installed on the top of the two support seats (11), and the two sets of brackets (13) are installed on the top of the base plate (12). The saccharification cylinder (14) is installed on the top of a set of brackets (13). The bottom of the saccharification cylinder (14) is provided with a discharge port, and the top of the saccharification cylinder (14) is provided with a feed port and a feed port. An electric heater (15) is installed on the inner side wall of the saccharification cylinder (14). The solenoid valve (16) is installed on the top of the feed port. The pH adjuster storage box (17) is installed on the top of the solenoid valve (16). The pipe (18) is installed at the discharge port.
3. The corn starch lactose saccharification device as described in claim 2, characterized in that, The liquefaction device (02) includes a second support (21), a third support (22), a liquefaction cylinder (23), a fourth support (24), an auger (25), multiple fifth supports (26), a first reducer (27), a first motor (28), and a second solenoid valve (29). The second support (21) is installed at the top of the saccharification cylinder (14), the third support (22) is installed at the top of the second support (21), and the third support (22) has a discharge port (2) at its top. The liquefaction cylinder (23) is installed at the top of the third support (22), and the fourth support (24) is installed at the top of the liquefaction cylinder (23). The end is provided with a feed inlet three, the auger one (25) is rotatably mounted on the bracket three (22) and the bracket four (24), multiple bracket five (26) are mounted on the inner side wall of the liquefaction cylinder (23), the reducer one (27) is fixedly mounted on the top of the bracket four (24), and the auger one (25) is rotatably connected between the bracket four (24) and the reducer one (27), the motor one (28) is fixedly mounted on the top of the reducer one (27), and the motor one (28) provides power to the auger one (25) through the reducer one (27), and the solenoid valve two (29) is installed at the discharge port two.
4. The corn starch lactose saccharification device as described in claim 3, characterized in that, The conveying device (03) includes a mixing box (31), a support six (32), a hopper (33), a reducer two (34), a motor two (35), and an auger two (36). The mixing box (31) is installed at the top of the feed inlet three of the support four (24). A water inlet is provided on the side of the mixing box (31). A feed inlet four is provided at the top of the mixing box (31). The support six (32) and the hopper (33) are both installed at the top of the mixing box (31). The reducer two (34) is fixedly installed at the top of the support six (32). The motor two (35) is fixedly installed at the top of the reducer two (34). The auger two (36) is rotatably installed on the support six (32). The auger two (36) passes through the support six (32) and is rotatably connected to the reducer two (34). The auger two (36) is rotatably installed in the feed inlet four. The motor two (35) provides power to the auger two (36) through the reducer two (34).
5. The corn starch lactose saccharification device as described in claim 2, characterized in that, The power unit (04) includes a bracket (41), a motor (42), a reducer (43), two sprockets (44) and a chain (45). The bracket (41) is installed on the side of the saccharification cylinder (14), the motor (42) is installed on the bracket (41), the reducer (43) is fixedly installed on the bottom of the motor (42), one sprocket (44) is rotatably installed on the bottom of the reducer (43), and the motor (42) provides power to one of the sprockets (44) connected to it through the reducer (43). The other sprocket (44) is rotatably installed on the bottom of the saccharification cylinder (14), and the chain (45) is installed on the two sprockets (44).
6. The corn starch lactose saccharification apparatus as described in claim 2, characterized in that, The enzyme removal filtration device (05) includes an electric heating pipe (51), a support eight (52), a solenoid valve three (53), a filter pipe (54), and a discharge pipe (55). The electric heating pipe (51) is installed on the pipe (18). The support eight (52) and the solenoid valve three (53) are both installed at the bottom of the electric heating pipe (51). The filter pipe (54) is installed at the bottom of the support eight (52) and the solenoid valve three (53). The filter pipe (54) is installed at the top of another set of support one (13). The discharge pipe (55) is installed at the bottom of the filter pipe (54).
7. The corn starch lactic acidification device as described in claim 5, characterized in that, The stirring device (06) includes a screw conveyor (61), which is rotatably installed inside the saccharification cylinder (14) and is fixedly connected between the screw conveyor (14) and the sprocket (44).
8. The corn starch lactose saccharification device as described in claim 5, characterized in that, The stirring device (06) includes a stirring shaft (62), which is rotatably installed inside the saccharification cylinder (14) and is fixedly connected to the sprocket (44) through the saccharification cylinder (14).
Citation Information
Patent Citations
A corn starch lactose device
CN117866761B