Field transporting and putting equipment for saline-alkali soil bacteriophage soil remediation agent

By designing a field transportation and application device for bacteriophage soil remediation agents for saline-alkali land, and using buffer and guide components to limit movement, the device prevents the bacteriophage soil remediation agents from tipping over and shaking during transportation. This solves the problems of packaging damage and sunlight exposure during transportation, ensuring the activity and stability of the remediation agent.

CN121569630APending Publication Date: 2026-02-27SHANDONG ACADEMY OF AGRICULTURAL SCIENCES
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Patent Information

Application Number
CN202610053701.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-15
Publication Date
2026-02-27

AI Technical Summary

Technical Problem

In existing saline-alkali soil remediation, bacteriophage soil remediation agents are prone to packaging damage and leakage during transportation due to inconvenient farmland terrain, and their activity and stability are easily affected by sunlight.

Method used

A field transport and application device for bacteriophage soil remediation agent in saline-alkali land was designed, including a frame, a buffer component, a material guiding component, and a sunshade frame. The buffer component provides cushioning and protection, the material guiding component provides limiting, and the sunshade frame provides sun protection, thus preventing the bacteriophage soil remediation agent from tipping over, shaking, and being exposed to sunlight during transportation.

Benefits of technology

It effectively prevents the bacteriophage soil remediation agent from tipping over and shaking during transportation, avoiding packaging damage and leakage, while protecting its activity and stability, ensuring the safety and effectiveness of the transportation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses field transporting and putting equipment for a saline-alkali soil phage soil remediation agent, and relates to the technical field of saline-alkali soil remediation, the field transporting and putting equipment comprises a frame body, the bottom of the frame body is provided with walking wheels and auxiliary wheels, and the walking wheels are rotatably installed on the two sides of the bottom of the frame body. According to the field transporting and putting equipment for the saline-alkali soil bacteriophage soil remediation agent, a motor is started by a worker, the output end of the motor drives a material guiding assembly to rotate, then the worker places a finished bottled bacteriophage soil remediation agent into the material guiding assembly from a transporting vehicle, and at the moment, the bottled remediation agent is limited by the material guiding assembly; and the repairing agent is conveyed into the buffering assembly along the material guiding assembly, the buffering assembly deforms due to the impact force on the buffering assembly when the repairing agent falls on the upper portion of the buffering assembly, the fallen bottle is buffered, and the phenomenon that the bottle is collided and damaged when falling is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of saline-alkali soil remediation, in particular to a field transportation and delivery device for a bacteriophage soil remediation agent for saline-alkali soil. BACKGROUND

[0002] Saline-alkali soil refers to land with high salt content that makes it difficult for plants to grow. In China, saline-alkali soil covers a large area and is mainly distributed in the northeast, north and northwest regions. The formation of saline-alkali soil is mainly due to the accumulation of soil salt caused by natural and human factors. Traditional methods for improving saline-alkali soil include water conservancy projects, agricultural technology improvement, biological improvement and chemical improvement, etc., but these methods have problems such as high cost and limited effect.

[0003] Bacteriophages are viruses that infect bacteria and have attracted widespread attention in the field of soil remediation in recent years. Bacteriophages can lyse harmful bacteria in the soil, reducing the production of toxins and harmful metabolites, thereby improving the soil environment. In the remediation of saline-alkali soil, bacteriophages can act on specific bacteria that cause soil salinization, helping to restore the physical and chemical properties and biodiversity of the soil.

[0004] Currently, when remediating saline-alkali soil, the bacteriophage soil remediation agent needs to be transported and delivered to the farmland. However, due to the inconvenient terrain of the farmland for the transportation vehicle to travel, manual transportation can easily cause the bacteriophage soil remediation agent to be violently shaken and squeezed, resulting in package damage and content leakage. SUMMARY

[0005] To achieve the above purpose, the present application realizes the following technical scheme: a field transportation and delivery device for a bacteriophage soil remediation agent for saline-alkali soil, comprising: a frame, the bottom of the frame is respectively provided with a walking wheel and an auxiliary wheel, the walking wheel is rotatably installed on both sides of the bottom of the frame, and the auxiliary wheel is rotatably installed on the surface of the side of the bottom of the frame away from the walking wheel;

[0006] A buffer assembly is used for buffering and protecting the finished bacteriophage soil remediation agent during transportation, one side of the outer surface of the buffer assembly is fixedly installed with a motor, the inside of the buffer assembly is fixedly installed with a sun protection rack, and the buffer assembly is fixedly installed in the inside of the frame;

[0007] The material guiding assembly is used for guiding and limiting when the finished bacteriophage soil remediation agent is transported, the material guiding assembly is rotatably installed at the bottom of the buffer assembly, the material guiding assembly is fixedly connected with the output end of the motor, and the material guiding assembly is rotatably installed below the sun protection frame through the buffer assembly. When the staff transports and puts the bacteriophage soil remediation agent, the sun protection frame is installed above the material guiding assembly, so that the activity and stability of the bacteriophage soil remediation agent are not affected by long-time sunlight irradiation during transportation, the staff starts the motor, the output end of the motor drives the material guiding assembly to rotate, then the staff puts the finished bottled bacteriophage soil remediation agent from the transport vehicle into the material guiding assembly, at this time, the material guiding assembly limits the bottled remediation agent, so that the bottled remediation agent is not shaken violently in the bottle during transportation, the remediation agent is transported to the buffer assembly along the material guiding assembly, and the impact force of the falling bottled remediation agent on the buffer assembly causes the buffer assembly to deform, so that the falling bottled remediation agent is buffered, and damage caused by collision of the falling bottled remediation agent is avoided.

[0008] Preferably, the buffer assembly comprises an inner support plate, two connecting plates are fixedly installed on the two sides of the outer surface of the inner support plate, a clamping plate is fixedly installed on the outer surface of the connecting plate, a buffer piece is fixedly installed on the surface of the connecting plate and the clamping plate away from the motor, two buffer pieces are arranged, and an accommodating piece is fixedly installed between the adjacent surfaces of the two buffer pieces. The remediation agent is transported to the upper side of the accommodating piece along the conveying belt, and the impact of the falling remediation agent on the accommodating piece causes the accommodating piece to drive the buffer piece to rotate and throw the remediation agent out of the accommodating piece. The accommodating piece buffers the bottle body, so that the bottle body is not damaged due to excessive falling force, and the remediation agent is not leaked.

[0009] Preferably, the clamping plate is fixedly installed in the inner part of the frame body, the connecting plate and the clamping plate are clamped on the outer surface of the sun protection frame, the inner support plate penetrates into the inner part of the material guiding assembly, the buffer piece is frictionally matched with the sun protection frame, and the accommodating piece is made of flexible material. When the bacteriophage soil remediation agent is transported to the farmland, the soil remediation agent is easily irradiated by sunlight for a long time due to the open terrain and lack of shelter in the farmland, so that the soil remediation agent is invalid.

[0010] Preferably, the buffer piece comprises a mounting block, an extension plate is fixedly installed on the top of the mounting block, a rotating shaft is rotatably installed in the inner part of the extension plate, a circular plate is fixedly installed on the outer surface of the rotating shaft, two circular plates are rotatably installed on the two sides of the outer surface of the extension plate through the rotating shaft, and a buffer block is fixedly installed between the adjacent surfaces of the two circular plates.

[0011] Preferably, the mounting block is fixedly installed on the outer surfaces of the connecting plate and the clamping plate, the buffer block is frictionally matched with the sun protection frame, and the accommodating piece is fixedly installed on the outer surface of the circular plate.

[0012] Preferably, the receiving member comprises a connecting pad, the top of the connecting pad is fixedly installed with a limiting elastic sheet, the surface of the side of the connecting pad away from the limiting elastic sheet is fixedly installed with a supporting plate, the top of the supporting plate is fixedly installed with a connecting sheet, the outer surface of the connecting sheet is fixedly installed with a receiving plate, and the surface of the receiving plate is provided with a limiting groove. When the repair agent falls above the receiving plate, the flexible receiving plate deforms under stress to buffer the bottle body. At this time, the bottle body falls from the limiting groove on the surface of the receiving plate to above the connecting pad. Since the connecting pad is connected with the circular plate, the connecting pad is driven by the weight of the bottle body to drive the circular plate and the buffer block to rotate downward to throw the repair agent along the limiting elastic sheet. After the repair agent is thrown out, the connecting pad drives the buffer block to rebound and reset, and the buffer block is in contact with the outer side of the sun protection rack to limit the buffer block.

[0013] Preferably, the connecting pad is fixedly installed on the outer surface of the circular plate, the receiving plate is arranged on the outer side of the material guiding assembly, the receiving plate is made of flexible material, and the receiving plate is extruded and matched with the connecting pad.

[0014] Preferably, the material guiding assembly comprises a conveying belt, the conveying belt is fixedly connected with the output end of the motor, the conveying belt is rotatably installed on the outer surface of the inner supporting plate, the side of the outer surface of the conveying belt is fixedly installed with a side connecting plate, a plurality of side connecting plates are arranged, the plurality of side connecting plates are fixedly installed on both sides of the top of the conveying belt, the outer surface of the side connecting plate is fixedly installed with a connecting plate, the outer surface of the connecting plate is fixedly installed with a semicircular frame, the top of the side connecting plate is fixedly installed with a connecting ring, and the conveying belt is fixedly installed with an anti-falling piece between the top. The staff places the bottle-shaped bacteriophage soil repair agent above the conveying belt. At this time, the semicircular frame and the connecting ring on both sides of the conveying belt limit the two sides of the bottle body, so that the bacteriophage soil repair agent is located in the middle of the conveying belt when placed. Since the conveying belt is an inclined device, the bacteriophage soil repair agent is transported downward from a high place. At this time, the bottle body slides in the semicircular frame and the connecting ring under the influence of inertia and inclines downward to contact the anti-falling piece, so that the anti-falling piece deforms under stress and is clamped on the outer side of the bottle body to limit the bottle-shaped bacteriophage soil repair agent.

[0015] Preferably, the anti-inverted card piece includes a fixed ring, the top of the fixed ring is fixedly installed with a support rod, the top of the support rod is fixedly installed with a rotating ball, the outer surface of the rotating ball is fixedly installed with a buffer pad, the outer surface of the fixed ring is fixedly installed with an external connecting rod, the outer surface of the external connecting rod is fixedly installed with a stabilizing plate, and the outer surface of the stabilizing plate is fixedly installed with a fixed block. When the conveying belt moves and transports, the bottled phage soil remediation agent is inclined downward under the influence of inertia, at this time, the bottle body appears to be tilted in the semi-circular frame and the connecting ring, the semi-circular frame and the connecting ring buffer the tilted bottle body, since the semi-circular frame and the connecting ring are both circular arc structures, the bottle body slides along the inner wall of the circular arc to the fixed ring, the buffer pad on the surface of the fixed ring is extruded to drive the rotating ball to rotate on the support rod, and the buffer pad is extruded to generate stress with the support ring, so that when the phage soil remediation agent is transported, the remediation agent in the bottle body is prevented from being shaken violently due to the tilting of the remediation agent.

[0016] Preferably, the fixed block is provided with two, the surface of the two fixed blocks is fixedly installed with a support ring, the support ring is extruded and matched with the buffer pad, the fixed ring is fixedly installed at the middle of the top of the conveying belt, and the support rod is provided with three, the three support rods are symmetrically arranged with the fixed ring as the center.

[0017] The application provides a field transportation and delivery device for saline-alkali soil phage soil remediation agent.

[0018] I. The field transportation and delivery device for saline-alkali soil phage soil remediation agent, when the staff transports and delivers the phage soil remediation agent, the sun protection frame is installed above the material guiding assembly to avoid that the phage soil remediation agent is irradiated by sunlight for a long time during conveying, which affects the activity and stability of the remediation agent, the staff starts the motor, the motor output end drives the material guiding assembly to rotate, then the staff places the finished bottled phage soil remediation agent from the transport vehicle into the material guiding assembly, at this time, the material guiding assembly limits the bottled remediation agent to prevent the bottle from tilting and the remediation agent from shaking violently in the bottle during transportation, the remediation agent is conveyed to the buffer assembly along the material guiding assembly, and the impact force of the falling bottle on the buffer assembly causes the buffer assembly to deform to buffer the falling bottle, so that the damage phenomenon caused by the collision of the falling bottle is avoided.

[0019] II. The field transport and delivery device for saline-alkali soil bacteriophage soil remediation agent, the bottle-shaped bacteriophage soil remediation agent is placed above the conveying belt by the staff, at this time the semi-circular frame and the connecting ring installed on both sides of the conveying belt limit the two sides of the bottle body, so that the bacteriophage soil remediation agent is located in the middle of the conveying belt when placed, since the conveying belt is an inclined device, the bacteriophage soil remediation agent is transported downward from a high place, at this time the bottle body is affected by inertia and slides in the semi-circular frame and the connecting ring, and is inclined downward to contact the anti-falling clamp, so that the anti-falling clamp is deformed under stress and clamped outside the bottle body to limit the bottle-shaped bacteriophage soil remediation agent.

[0020] III. The field transport and delivery device for saline-alkali soil bacteriophage soil remediation agent, when the bottle-shaped bacteriophage soil remediation agent is transported by the conveying belt, it is inclined downward under the influence of inertia, at this time the bottle body is inclined to fall in the semi-circular frame and the connecting ring, the semi-circular frame and the connecting ring buffer the inclined bottle body, since the semi-circular frame and the connecting ring are both circular arc structures, the bottle body slides along the inner wall of the circular arc to the fixed ring, so that the buffer pad installed on the surface of the fixed ring is extruded to drive the rotating ball to rotate on the supporting rod, and the buffer pad is extruded to generate stress with the supporting ring, thereby avoiding the bacteriophage soil remediation agent from being shaken violently when the bacteriophage soil remediation agent is transported.

[0021] IV. The field transport and delivery device for saline-alkali soil bacteriophage soil remediation agent, when the remediation agent falls above the flexible receiving plate, the receiving plate is deformed under stress to buffer the bottle body, at this time the bottle body falls above the connecting pad from the limiting slot on the surface of the receiving plate, since the connecting pad is connected with the circular plate, the connecting pad is affected by the weight of the bottle body to drive the circular plate and the buffer block to rotate downward to throw the remediation agent along the limiting spring, after the remediation agent is thrown, the connecting pad drives the buffer block to rebound and reset, and the buffer block is in contact with the outside of the sunshade frame to limit the buffer block.

[0022] V. The field transport and delivery device for saline-alkali soil bacteriophage soil remediation agent, the sunshade frame is installed between the clamping plate and the connecting plate, when the bacteriophage soil remediation agent is transported to the farmland, since the farmland terrain is relatively open and lacks shelter, the remediation agent is easily irradiated by sunlight for a long time when transported and delivered, causing the remediation agent to be ineffective, the remediation agent is conveyed to above the receiving member along the conveying belt, and the remediation agent is impacted to the receiving member when falling to drive the receiving member to rotate the buffer member to throw the remediation agent out of the receiving member, the bottle body is buffered by the receiving member to avoid damage to the bottle body caused by excessive falling force, causing the remediation agent to leak. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is an external structure diagram of the field transport and delivery device for saline-alkali soil bacteriophage soil remediation agent.

[0024] Figure 2It is another angle external structure schematic view of the field transport and release equipment of the saline-alkali soil bacteriophage soil remediation agent of the application;

[0025] Figure 3 It is the internal structure schematic view of the sun protection frame of the application;

[0026] Figure 4 It is the structure schematic view of the material guiding assembly of the application;

[0027] Figure 5 It is the structure schematic view of the material guiding assembly section of the application;

[0028] Figure 6 It is the structure schematic view of the anti-inverted clamping piece of the application;

[0029] Figure 7 It is the connection structure schematic view of the buffer assembly and the material guiding assembly of the application;

[0030] Figure 8 It is the enlarged structure schematic view of the buffer assembly of the application;

[0031] Figure 9 It is the connection structure schematic view of the buffer piece and the receiving piece of the application;

[0032] Figure 10 It is the structure schematic view of the receiving piece of the application.

[0033] In the figure: 1, motor; 2, walking wheel; 3, frame body; 4, buffer assembly; 41, buffer piece; 411, extension plate; 412, round plate; 413, buffer block; 414, mounting block; 415, rotating shaft; 42, receiving piece; 421, connecting pad; 422, linking piece; 423, material receiving plate; 424, limiting groove; 425, limiting elastic sheet; 426, supporting plate; 43, clamping plate; 44, connecting plate; 45, inner supporting plate; 5, material guiding assembly; 51, conveying belt; 52, anti-inverted clamping piece; 521, stabilizing plate; 522, fixed block; 523, supporting ring; 524, buffer pad; 525, supporting rod; 526, rotating ball; 527, fixed ring; 528, external connecting rod; 53, connecting ring; 54, semicircular frame; 55, side connecting plate; 56, linking plate; 6, auxiliary wheel; 7, sun protection frame. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0035] The first embodiment, asFigures 1 to 10 As shown, the present application provides a technical solution: a field transport and delivery device for saline-alkali soil bacteriophage soil remediation agent, comprising: a frame body 3, the bottom of the frame body 3 is provided with a walking wheel 2 and an auxiliary wheel 6, the walking wheel 2 is rotatably installed on both sides of the bottom of the frame body 3, and the auxiliary wheel 6 is rotatably installed on the surface of the side of the bottom of the frame body 3 away from the walking wheel 2;

[0036] A buffer assembly 4 is used for buffering and protection when the finished bacteriophage soil remediation agent is transported, one side of the outer surface of the buffer assembly 4 is fixedly installed with a motor 1, the inside of the buffer assembly 4 is fixedly installed with a sunshade 7, and the buffer assembly 4 is fixedly installed in the inside of the frame body 3;

[0037] The buffer assembly 4 comprises an inner support plate 45, both sides of the outer surface of the inner support plate 45 are fixedly installed with a connecting plate 44, the outer surface of the connecting plate 44 is fixedly installed with a clamping plate 43, the surface of the side of the connecting plate 44 and the clamping plate 43 away from the motor 1 is fixedly installed with a buffer piece 41, the buffer piece 41 is provided with two, and a receiving piece 42 is fixedly installed between the adjacent surfaces of the two buffer pieces 41. The remediation agent is transported to the upper side of the receiving piece 42 along the conveying belt 51, and the receiving piece 42 drives the buffer piece 41 to rotate when the remediation agent falls and impacts the receiving piece 42, so that the remediation agent is thrown out of the receiving piece 42, and the bottle body is buffered by the receiving piece 42, so as to avoid damage to the bottle body caused by excessive falling force, and to avoid leakage of the remediation agent.

[0038] The clamping plate 43 is fixedly installed in the inside of the frame body 3, the connecting plate 44 and the clamping plate 43 are clamped on the outer surface of the sunshade 7, the inner support plate 45 penetrates in the inside of the material guiding assembly 5, the buffer piece 41 is frictionally matched with the sunshade 7, and the receiving piece 42 is made of flexible material. The sunshade 7 is installed between the clamping plate 43 and the connecting plate 44, and when the bacteriophage soil remediation agent is transported to the farmland, the farmland terrain is relatively open and lacks shelter, and the remediation agent is easily exposed to sunlight for a long time during transportation and delivery, resulting in failure of the remediation agent.

[0039] The material guiding component 5 is used for guiding and limiting the delivery of the finished bacteriophage soil remediation agent. The material guiding component 5 is rotatably mounted at the bottom of the buffer component 4 and is fixedly connected to the output end of the motor 1. The material guiding component 5 is rotatably mounted below the sunshade frame 7 via the buffer component 4. The material guiding component 5 includes a conveyor belt 51, which is fixedly connected to the output end of the motor 1. The conveyor belt 51 is rotatably mounted on the outer surface of the inner support plate 45. Side connecting plates 55 are fixedly mounted on the sides of the outer surface of the conveyor belt 51. Several side connecting plates 55 are provided, and each side connecting plate 55 is fixedly mounted on both sides of the top of the conveyor belt 51. Connecting plates 56 are fixedly mounted on the outer surface of the side connecting plates 55, and semi-circular frames 54 are fixedly mounted on the outer surface of the connecting plates 56. Connecting rings 53 are fixedly mounted on the top of the side connecting plates 55, and anti-tipping clips 52 are fixedly mounted at the top of the conveyor belt 51. The staff placed the bottle-shaped phage soil remediation agent above the conveyor belt 51. At this time, the semi-circular frames 54 and connecting rings 53 installed on both sides of the conveyor belt 51 limit the two sides of the bottle, so that the phage soil remediation agent is placed in the middle of the conveyor belt 51. Since the conveyor belt 51 is an inclined device, the phage soil remediation agent is transported from a high place to a low place. At this time, the bottle will slide within the semi-circular frames 54 and connecting rings 53 due to inertia, and tilt downwards to contact the anti-tipping clip 52. This causes the anti-tipping clip 52 to deform under force and lock on the outside of the bottle, thereby limiting the bottle-shaped phage soil remediation agent.

[0040] When transporting and dispensing the bacteriophage soil remediation agent, a sunshade 7 is installed above the material guiding component 5 to prevent the agent from being exposed to sunlight for extended periods during transport, which could affect its activity and stability. The staff starts the motor 1, causing its output to drive the material guiding component 5 to rotate. Then, the staff places the finished bottled bacteriophage soil remediation agent from the transport vehicle into the material guiding component 5. At this time, the material guiding component 5 limits the bottled remediation agent to prevent it from tipping over and violently shaking inside the bottle during transport. The remediation agent is transported along the material guiding component 5 to the buffer component 4. When the remediation agent falls onto the buffer component 4, the impact force causes the buffer component 4 to deform, cushioning the falling bottle and preventing damage from collision.

[0041] The second embodiment is based on the first embodiment; please refer to [link / reference]. Figures 4 to 6As shown, the anti-tipping clip 52 includes a fixing ring 527, a support rod 525 fixedly installed on the top of the fixing ring 527, a rotating ball 526 fixedly installed on the top of the support rod 525, a buffer pad 524 fixedly installed on the outer surface of the rotating ball 526, an external rod 528 fixedly installed on the outer surface of the fixing ring 527, a stabilizing plate 521 fixedly installed on the outer surface of the external rod 528, and a fixing block 522 fixedly installed on the outer surface of the stabilizing plate 521. When the conveyor belt 51 moves and transports the phage soil remediation agent, the bottled phage soil remediation agent tilts downward due to inertia. At this time, the bottle body tilts within the semi-circular frame 54 and connecting ring 53. The semi-circular frame 54 and connecting ring 53 cushion the tilting bottle body. Since both the semi-circular frame 54 and connecting ring 53 are arc structures, the bottle body slides along the inner wall of the arc when tilting into the fixed ring 527. This causes the buffer pad 524 installed on the surface of the fixed ring 527 to be squeezed, which drives the rotating ball 526 to rotate on the support rod 525. This causes the buffer pad 524 to be squeezed against the support ring 523, thereby preventing the remediation agent from tilting and causing violent shaking inside the bottle when transporting the phage soil remediation agent.

[0042] Two fixing blocks 522 are provided, and support rings 523 are fixedly installed on the surfaces of the two fixing blocks 522. The support rings 523 are squeezed and adapted to the buffer pads 524. The fixing rings 527 are fixedly installed at the middle of the top of the conveyor belt 51. Three support rods 525 are provided, and the three support rods 525 are symmetrically arranged with the fixing rings 527 as the center.

[0043] The third embodiment is based on embodiments one and two; please refer to [link / reference]. Figures 7 to 10 As shown, the buffer 41 includes a mounting block 414, an extension plate 411 is fixedly mounted on the top of the mounting block 414, a rotating shaft 415 is rotatably mounted inside the extension plate 411, a circular plate 412 is fixedly mounted on the outer surface of the rotating shaft 415, two circular plates 412 are provided, the two circular plates 412 are rotatably mounted on both sides of the outer surface of the extension plate 411 through the rotating shaft 415, and a buffer block 413 is fixedly mounted between adjacent surfaces of the circular plates 412.

[0044] The mounting block 414 is fixedly installed on the outer surface of the connecting plate 44 and the snap-fit ​​plate 43, the buffer block 413 is frictionally adapted to the sunshade frame 7, and the receiving part 42 is fixedly installed on the outer surface of the round plate 412.

[0045] The receiving component 42 includes a connecting pad 421, a limiting spring 425 fixedly installed on the top of the connecting pad 421, a support plate 426 fixedly installed on the surface of the connecting pad 421 away from the limiting spring 425, a connecting piece 422 fixedly installed on the top of the support plate 426, a receiving plate 423 fixedly installed on the outer surface of the connecting piece 422, and a limiting groove 424 is formed on the surface of the receiving plate 423. When the repair agent falls above the receiving plate 423, the flexible receiving plate 423 deforms under force to cushion the bottle. At this time, the bottle falls from the limiting groove 424 on the surface of the receiving plate 423 to the top of the connecting pad 421. Since the connecting pad 421 is connected to the circular plate 412, the connecting pad 421 is affected by the weight of the bottle and drives the circular plate 412 and the buffer block 413 to rotate downward, so that the repair agent is thrown out along the limiting spring 425. After the repair agent is thrown out, the connecting pad 421 drives the buffer block 413 to rebound and reset, and makes the buffer block 413 contact the outer side of the sunshade frame 7 to limit the buffer block 413.

[0046] The connecting pad 421 is fixedly installed on the outer surface of the circular plate 412, and the receiving plate 423 is disposed on the outside of the material guiding assembly 5. The receiving plate 423 is made of flexible material and is squeezed and adapted to the connecting pad 421.

[0047] During use, when transporting and dispensing the bacteriophage soil remediation agent, a sunshade 7 is installed above the material guiding component 5 to prevent the bacteriophage soil remediation agent from being exposed to sunlight for a long time during transportation, which would affect the activity and stability of the agent. The staff starts the motor 1, which drives the material guiding component 5 to rotate. Then, the staff places the finished bottled bacteriophage soil remediation agent from the transport vehicle into the material guiding component 5. At this time, the material guiding component 5 limits the bottled remediation agent to prevent the bottle from tipping over during transportation and the remediation agent from shaking violently inside the bottle. The remediation agent is transported along the material guiding component 5 to the buffer component 4. When the remediation agent falls on the buffer component 4, the impact force on the buffer component 4 causes the buffer component 4 to deform, cushioning the falling bottle and preventing damage from collision.

[0048] The sunshade frame 7 is installed between the snap-fit ​​plate 43 and the connecting plate 44. When the bacteriophage soil remediation agent is transported to the farmland, the farmland is relatively open and lacks shade. The remediation agent is easily exposed to sunlight for a long time during transportation and application, which can cause the remediation agent to become ineffective.

[0049] The staff placed the bottle-shaped phage soil remediation agent above the conveyor belt 51. At this time, the semi-circular frames 54 and connecting rings 53 installed on both sides of the conveyor belt 51 limit the two sides of the bottle, so that the phage soil remediation agent is placed in the middle of the conveyor belt 51. Since the conveyor belt 51 is an inclined device, the phage soil remediation agent is transported from a high place to a low place. At this time, the bottle will slide within the semi-circular frames 54 and connecting rings 53 due to inertia, and tilt downwards to contact the anti-tipping clip 52. This causes the anti-tipping clip 52 to deform under force and lock on the outside of the bottle, thereby limiting the bottle-shaped phage soil remediation agent.

[0050] When the conveyor belt 51 moves and transports the phage soil remediation agent, the bottled phage soil remediation agent tilts downward due to inertia. At this time, the bottle body tilts within the semi-circular frame 54 and connecting ring 53. The semi-circular frame 54 and connecting ring 53 cushion the tilting bottle body. Since both the semi-circular frame 54 and connecting ring 53 are arc structures, the bottle body slides along the inner wall of the arc when tilting into the fixed ring 527. This causes the buffer pad 524 installed on the surface of the fixed ring 527 to be squeezed, which drives the rotating ball 526 to rotate on the support rod 525. This causes the buffer pad 524 to be squeezed against the support ring 523, thereby preventing the remediation agent from tilting and causing violent shaking inside the bottle when transporting the phage soil remediation agent.

[0051] The repair agent is conveyed along the conveyor belt 51 to the top of the receiving part 42. When the repair agent falls, it impacts the receiving part 42, causing the receiving part 42 to drive the buffer part 41 to rotate and throw the repair agent out of the receiving part 42. The receiving part 42 cushions the bottle body to avoid damage to the bottle body caused by excessive falling force, which would lead to leakage of the repair agent.

[0052] When the repair agent falls above the receiving plate 423, the flexible receiving plate 423 deforms under force to cushion the bottle. At this time, the bottle falls from the limiting groove 424 on the surface of the receiving plate 423 to the top of the connecting pad 421. Since the connecting pad 421 is connected to the circular plate 412, the connecting pad 421 is affected by the weight of the bottle and drives the circular plate 412 and the buffer block 413 to rotate downward, so that the repair agent is thrown out along the limiting spring 425. After the repair agent is thrown out, the connecting pad 421 drives the buffer block 413 to rebound and reset, and makes the buffer block 413 contact the outer side of the sunshade frame 7 to limit the buffer block 413.

[0053] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0054] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A field transport and application device for a bacteriophage soil remediation agent for saline-alkali land, characterized in that, include: The frame (3) is provided with a walking wheel (2) and an auxiliary wheel (6) at its bottom. The walking wheel (2) is rotatably mounted on both sides of the bottom of the frame (3), and the auxiliary wheel (6) is rotatably mounted on the surface of the bottom of the frame (3) away from the walking wheel (2). Buffer component (4), the buffer component (4) is used for buffer protection during the delivery of finished phage soil remediation agent, a motor (1) is fixedly installed on one side of the outer surface of the buffer component (4), a sunshade frame (7) is fixedly installed inside the buffer component (4), and the buffer component (4) is fixedly installed inside the frame (3); The material guiding component (5) is used for guiding and limiting the delivery of the finished phage soil remediation agent. The material guiding component (5) is rotatably installed at the bottom of the buffer component (4). The material guiding component (5) is fixedly connected to the output end of the motor (1). The material guiding component (5) is rotatably installed below the sunshade frame (7) through the buffer component (4).

2. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 1, characterized in that: The buffer assembly (4) includes an inner support plate (45). Connecting plates (44) are fixedly installed on both sides of the outer surface of the inner support plate (45). A snap-fit ​​plate (43) is fixedly installed on the outer surface of the connecting plate (44). A buffer element (41) is fixedly installed on the surface of the connecting plate (44) and the snap-fit ​​plate (43) away from the motor (1). There are two buffer elements (41). A receiving element (42) is fixedly installed between the adjacent surfaces of the two buffer elements (41).

3. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 2, characterized in that: The snap-fit ​​plate (43) is fixedly installed inside the frame (3), the connecting plate (44) and the snap-fit ​​plate (43) are snapped onto the outer surface of the sunshade frame (7), the inner support plate (45) passes through the inside of the material guide assembly (5), the buffer (41) is frictionally adapted to the sunshade frame (7), and the receiving part (42) is made of flexible material.

4. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 3, characterized in that: The buffer (41) includes a mounting block (414), an extension plate (411) is fixedly mounted on the top of the mounting block (414), a rotating shaft (415) is rotatably mounted inside the extension plate (411), a circular plate (412) is fixedly mounted on the outer surface of the rotating shaft (415), two circular plates (412) are provided, and the two circular plates (412) are rotatably mounted on both sides of the outer surface of the extension plate (411) through the rotating shaft (415), and a buffer block (413) is fixedly mounted between adjacent surfaces of the circular plates (412).

5. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 4, characterized in that: The mounting block (414) is fixedly installed on the outer surface of the connecting plate (44) and the snap-fit ​​plate (43), the buffer block (413) is frictionally adapted to the sunshade frame (7), and the receiving part (42) is fixedly installed on the outer surface of the round plate (412).

6. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 3, characterized in that: The receiving component (42) includes a connecting pad (421), a limiting spring (425) is fixedly installed on the top of the connecting pad (421), a support plate (426) is fixedly installed on the surface of the connecting pad (421) away from the limiting spring (425), a connecting piece (422) is fixedly installed on the top of the support plate (426), a receiving plate (423) is fixedly installed on the outer surface of the connecting piece (422), and a limiting groove (424) is formed on the surface of the receiving plate (423).

7. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 6, characterized in that: The connecting pad (421) is fixedly installed on the outer surface of the circular plate (412), and the receiving plate (423) is disposed on the outside of the material guiding assembly (5). The receiving plate (423) is made of flexible material and is squeezed to fit the connecting pad (421).

8. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 1, characterized in that: The material guiding assembly (5) includes a conveyor belt (51), which is fixedly connected to the output end of the motor (1). The conveyor belt (51) is rotatably mounted on the outer surface of the inner support plate (45). A side plate (55) is fixedly installed on the side of the outer surface of the conveyor belt (51). Several side plates (55) are provided, and several side plates (55) are fixedly installed on both sides of the top of the conveyor belt (51). A connecting plate (56) is fixedly installed on the outer surface of the side plate (55). A semi-circular frame (54) is fixedly installed on the outer surface of the connecting plate (56). A connecting ring (53) is fixedly installed on the top of the side plate (55). An anti-tipping clip (52) is fixedly installed between the tops of the conveyor belt (51).

9. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 8, characterized in that: The anti-tipping clip (52) includes a fixing ring (527), a support rod (525) is fixedly installed on the top of the fixing ring (527), a rotating ball (526) is fixedly installed on the top of the support rod (525), a buffer pad (524) is fixedly installed on the outer surface of the rotating ball (526), ​​an external rod (528) is fixedly installed on the outer surface of the fixing ring (527), a stabilizing plate (521) is fixedly installed on the outer surface of the external rod (528), and a fixing block (522) is fixedly installed on the outer surface of the stabilizing plate (521).

10. The field transport and application equipment for a bacteriophage soil remediation agent for saline-alkali land according to claim 9, characterized in that: Two fixing blocks (522) are provided, and support rings (523) are fixedly installed on the surface of the two fixing blocks (522). The support rings (523) are squeezed and adapted to the buffer pad (524). The fixing ring (527) is fixedly installed at the middle of the top of the conveyor belt (51). Three support rods (525) are provided, and the three support rods (525) are symmetrically arranged with the fixing ring (527) as the center.