Environment-friendly incineration device for rural garbage treatment

By designing environmentally friendly incineration devices with protection mechanisms and adsorption components, the problem of incomplete separation of waste incineration and waste gas impurities is solved, and efficient and safe waste disposal and environmentally friendly effects are achieved.

CN120251997AInactive Publication Date: 2025-07-04SHANXI PROVINCIAL AGRICULTURAL POLICY RESEARCH CENTER
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Patent Information

Application Number
CN202510441729.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-07-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing incineration devices cannot fully contact the garbage with high-temperature flames, and cannot effectively separate and collect impurities in the incineration waste gas, resulting in incomplete incineration process and environmental pollution.

Method used

An environmentally friendly incineration device including an incineration unit and an absorption unit is designed, using a protection mechanism, a heating mechanism and an adsorption assembly to ensure that the waste is fully exposed to the high-temperature flame and effectively separate and collect impurities in the incineration exhaust gas through the adsorption assembly.

Benefits of technology

It improves the completeness of waste incineration, reduces residual substances and pollutants emissions, reduces energy consumption and operating costs, and improves work safety and treatment efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an environment-friendly incineration device for rural garbage treatment, and belongs to the technical field of garbage incineration. Comprising an incineration unit, an absorption unit and a bearing frame extending into an inner cavity of a containing box, stacked garbage can be rapidly heated from the bottom of the stacked garbage through a heating output end formed between an output piece and an output cavity, and high-temperature flames can be sprayed out towards the two sides along the bottom of the inner cavity wall of the containing box; high-temperature flames ejected quickly and high-temperature airflow generated by the high-temperature flames can be spread to the periphery of the containing box along the bottom of the containing box, so that garbage subjected to incineration treatment in the inner cavity of the containing box can be in complete contact with the high-temperature flames; when impurities absorbed in the adsorption assembly need to be cleaned, only an assembly vertical plate needs to be pulled upwards, at the moment, the whole storage toothed plate is in a vertical state, the impurities in the storage toothed plate can vertically and downwards fall into an inner cavity of a bearing box, and therefore the collected impurities are collected in a centralized mode, and follow-up treatment and disposal are facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of waste incineration, and particularly relates to an environment-friendly incineration device for rural waste treatment. Background Art

[0002] Rural waste refers to the waste or garbage generated in rural areas, mainly including domestic waste, organic waste, recyclables and hazardous waste, etc. Domestic waste includes garbage generated in daily life such as food residues, paper, plastic bags, etc.; organic waste includes organic substances such as fruit peels, vegetable leaves, and discarded plants that can be used for composting; recyclables include waste paper, metals, glass, plastic bottles, etc. that can be reused resources; hazardous waste includes waste batteries, expired drugs, chemicals, etc. that are harmful to the environment and human health. There are certain challenges in the treatment of waste in rural areas.

[0003] During the process of rural waste treatment, incineration is one of the treatment methods. In this method, the incineration device is one of the indispensable equipment. Most of the existing incineration devices on the market cannot make the waste fully contact the high-temperature flame, and cannot effectively separate and collect the impurities in the incineration exhaust gas. For this reason, an environment-friendly incineration device for rural waste treatment is proposed. Summary of the Invention

[0004] The purpose of the present invention is to solve the deficiencies existing in the prior art, and to propose an environment-friendly incineration device for rural waste treatment.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] An environment-friendly incineration device for rural waste treatment, including an incineration unit and an absorption unit. The absorption unit is arranged on one side of the incineration unit. The incineration unit includes a protection mechanism and a heating mechanism horizontally installed between two groups of protection mechanisms. A storage mechanism is clamped at the interval between the two groups of protection mechanisms. The overall protection mechanism can wrap the entire storage mechanism from the outside to the inside, avoiding the situation that the waste in the treatment state flies around due to its unstable treatment state, and can prevent the staff from accidentally touching and getting scalded, improving work safety and protecting the operator from heat source damage. By providing a stable waste treatment environment and protecting the safety of the staff, the work efficiency and production efficiency can be improved, the interference of accidents to the work progress can be reduced, and the protection mechanism design meets the safety specifications and standards requirements, ensuring the safety and reliability during the waste treatment process.

[0007] Preferably, the protection mechanism includes protection clamping plates and strengthening blocks installed at one end of the protection clamping plates. Clamping brackets are arranged on both sides of the other end of the strengthening blocks. Assembly blocks are arranged at the other end of the protection clamping plates. Insertion holes are opened on the upper and lower sides of the side end face of the assembly blocks.

[0008] Preferably, the heating mechanism includes a positioning cross bar and a positioning block clamped between two groups of positioning cross bars, and an output mechanism is horizontally arranged at the bottom position of the side end face of the positioning block.

[0009] Preferably, the positioning cross bar is horizontally inserted into the inner cavity of the insertion hole, so that the protection mechanism and the heating mechanism form an integral whole.

[0010] Preferably, the output mechanism passes through the inner cavity of the insertion hole, so that the output mechanism horizontally passes through the space between the elastic sheet and the storage box.

[0011] Preferably, the output mechanism includes a receiving frame and an output sheet opened at the bottom of the receiving frame. Output cavities are arranged in a row on the lower end face of the output sheet. The receiving frame extending into the inner cavity of the storage box can quickly heat the stacked garbage from the bottom by using the heating output end formed between the output sheet and the output cavities. At this time, the high-temperature flame ejected from the inner cavity of the output cavity will directly contact the inner cavity wall of the storage box downward. The high-temperature flame will eject to both sides along the bottom position of the inner cavity wall of the storage box. The quickly ejected high-temperature flame and the high-temperature air flow generated by it will spread around along the bottom of the storage box, so that the garbage undergoing incineration treatment in the inner cavity of the storage box can fully contact the high-temperature flame, so that the garbage at the bottom and around it can fully contact the high temperature, promoting the full combustion of the garbage, reducing the residual substances, effectively eliminating harmful substances by the high-temperature flame and the air flow, reducing the pollutants in the waste gas emission, improving the environmental protection effect during the incineration process. During the incineration process, through effective heating and high-temperature treatment, the energy consumption can be reduced and the secondary pollutant emission can be reduced, meeting the requirements of energy conservation and emission reduction.

[0012] Preferably, the storage mechanism includes a storage box and an insertion hole opened at the bottom position of the side end face of the storage box. Auxiliary frames are arranged at both ends of the inner cavity of the storage box. The auxiliary frame is of an overall H-shaped structure. While pressing the garbage at the bottom, it can also clamp the garbage to be processed continuously added above, thereby increasing the functional diversity of the overall device. This device can not only effectively press the garbage at the bottom, but also clamp and process the garbage to be processed added above at the same time, realizing the diversification of functions. By realizing the processing of the garbage at the bottom and above in one device, the space and equipment investment are effectively saved, the efficiency and overall utilization rate of garbage treatment are improved. By integrating different functions into one device, the equipment structure and maintenance management are simplified, and the operation cost and energy consumption are reduced.

[0013] Preferably, the auxiliary frame includes an assembly frame and elastic sheets installed between four groups of assembly frames, each group of the elastic sheets is connected in series through a connecting block, and the garbage to be incinerated is dumped into the inner cavity of the storage box, and the garbage is dumped until the entire inner cavity of the storage box is filled, so that the garbage completely covers the surface of the auxiliary frame, and the arranged assembly frame can laterally support the arranged and combined elastic sheets and connecting blocks, and the combined structure formed by the elastic sheets and the connecting blocks can support the garbage to be processed. The garbage to be processed is statically stored in the inner cavity of the storage box. There will be some garbage to be processed with high humidity, among which the garbage with high humidity It will slowly settle down to the bottom of the inner cavity of the holding box. At this time, most of the upper surface of the garbage after being statically deposited for a period of time will be below the lower end surface of the elastic sheet. At this time, the elastic sheet and the associated block can reciprocate and move up and down in a wave-like manner with the assembly frame as a fulcrum. The garbage under the elastic sheet and the associated block is continuously pressed. Through continuous pressing, it can ensure that the garbage is stacked tightly to avoid gaps and irregular stacking, thereby reducing the possibility of incomplete combustion of garbage during incineration. The combined effect of factors such as increased density, uniform distribution, and complete combustion can ultimately improve the effect of garbage incineration treatment and reduce the emission of residual substances and pollutants.

[0014] Preferably, the absorption unit includes a carrying box and an adsorption component arranged and installed in the inner cavity of the carrying box.

[0015] Preferably, the adsorption component includes an assembly vertical plate and an absorption fan installed between two groups of assembly vertical plates, a barrier block is provided in the middle position of the outer end wall of the assembly vertical plate, a storage tooth plate is provided at the bottom of the absorption fan, the arranged adsorption component combination is placed in the inner cavity of the carrier box, each group of adsorption components is assembled through the barrier block, and some gaps are left between each group of adsorption components. The assembly vertical plate can absorb the waste gas generated by the incineration of garbage, and the absorbed waste gas passes through the inner cavity of the assembly vertical plate and is temporarily stored in the storage tooth plate. Because the storage tooth plate is arranged as a vertical tooth-shaped arrangement structure, it can absorb impurities in the waste gas. The impurities in the storage tooth plate will slowly fall along the upper end surface of the storage tooth plate, and because the bottom of the storage tooth plate is connected to the bottom of the inner cavity wall of the carrier box, when the impurities absorbed in the adsorption component need to be cleaned, the staff only needs to pull up the assembly vertical plate. At this time, the storage tooth plate is in a vertical state as a whole, and the impurities in the storage tooth plate will fall vertically downward into the inner cavity of the carrier box, thereby centrally collecting the collected impurities. The impurities in the exhaust gas are received and settled by the storage tooth plate with a vertical tooth arrangement structure, which helps to effectively separate and collect the impurities. The absorbed impurities can be centrally collected in the inner cavity carrier box, which is convenient for subsequent processing and disposal.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. The garbage to be processed is statically stored in the inner cavity of the storage box. There will be some garbage to be processed with relatively high humidity. The garbage with higher humidity will slowly deposit downward at the bottom of the inner cavity of the storage box. At this time, most of the upper surface of the garbage after static deposition for a period of time will be below the lower end surface of the elastic sheet. At this time, the elastic sheet and the connecting block can perform reciprocating and uniform up-and-down wavy motions with the assembly frame as the fulcrum. The garbage under the elastic sheet and the connecting block is continuously pressed. Through continuous pressing, it can be ensured that the garbage is stacked tightly, avoiding gaps and irregular stacking, thereby reducing the possibility of incomplete combustion of the garbage during the incineration process. The combined effects of factors such as increased density, uniform distribution, and complete combustion can ultimately improve the effect of garbage incineration treatment and reduce the emission of residual substances and pollutants.

[0018] 2. The receiving frame extending into the inner cavity of the storage box can quickly heat the stacked garbage from the bottom with the heating output end formed between the output sheet and the output cavity. At this time, the high-temperature flame ejected from the inner cavity of the output cavity will directly contact the inner cavity wall of the storage box downward. The high-temperature flame will spray out to both sides along the bottom position of the inner cavity wall of the storage box. The quickly sprayed high-temperature flame and the high-temperature air flow it generates will spread from the bottom of the storage box to its surroundings, enabling the garbage undergoing incineration treatment in the inner cavity of the storage box to fully contact the high-temperature flame, ensuring that the garbage at the bottom and its surrounding garbage can fully contact the high temperature, promoting complete combustion of the garbage, and reducing residual substances.

[0019] 3. The auxiliary frame is of an overall H-shaped structure. While pressing the garbage at its bottom, it can also clamp the garbage to be processed continuously added from above, thereby increasing the functional diversity of the overall device. This device can not only effectively press the garbage at the bottom, but also clamp and process the garbage to be processed added from above at the same time, realizing functional diversification. By processing the garbage at the bottom and above in one device, it effectively saves space and equipment investment, improves the efficiency and overall utilization rate of garbage treatment. By integrating different functions into one device, it simplifies the equipment structure and maintenance management, reduces the operating cost and energy consumption.

[0020] 4. The arranged adsorption components are combined and placed in the inner cavity of the carrier box. Each group of adsorption components is assembled through barrier blocks. Some gaps are left between each group of adsorption components. The assembled vertical plate can absorb the waste gas generated by garbage incineration. The absorbed waste gas passes through the inner cavity of the assembled vertical plate and is temporarily stored in the storage tooth plate. Because the storage tooth plate is arranged as a vertical toothed structure, it can receive impurities in the absorbed waste gas. The impurities in the received state will slowly descend along the upper end surface of the storage tooth plate. And because the bottom of the storage tooth plate is in a connected state with the bottom of the inner cavity wall of the carrier box, when it is necessary to clean the impurities absorbed in the adsorption component, the staff only needs to pull up the assembled vertical plate. At this time, the storage tooth plate is in a vertical state as a whole. The impurities in the storage tooth plate will fall vertically downward to the inner cavity of the carrier box, so as to collect the collected impurities in a centralized manner. The impurities in the waste gas are received and settled by the storage tooth plate with a vertical toothed structure, which helps to effectively separate and collect the impurities. The absorbed impurities can be collected in the inner cavity carrier box, which is convenient for subsequent treatment and disposal. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the three-dimensional structure of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention;

[0022] Figure 2 A schematic diagram of the protection mechanism structure of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention;

[0023] Figure 3 A schematic diagram of the heating mechanism structure of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention;

[0024] Figure 4 This is a schematic diagram of the output mechanism structure of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention;

[0025] Figure 5 This is a schematic diagram of the structure of a container mechanism of an environmentally friendly incineration device for rural garbage disposal proposed by the present invention;

[0026] Figure 6 This is a schematic diagram of the auxiliary frame structure of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention;

[0027] Figure 7 This is a schematic diagram of the structure of an absorption unit of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention;

[0028] Figure 8 This is a schematic diagram of the structure of an adsorption component of an environmentally friendly incineration device for rural garbage treatment proposed by the present invention.

[0029] In the figure: 1. Incineration unit; 11. Protection mechanism; 111. Protection splint; 112. Reinforcing block; 113. Clamping frame; 114. Assembly block; 115. Insertion hole; 12. Heating mechanism; 121. Positioning cross bar; 122. Positioning block; 123. Output mechanism; 1231. Receiving frame; 1232. Output piece; 1233. Output cavity; 13. Object holding mechanism; 131. Object holding box; 132. Interpenetrating hole; 133. Auxiliary frame; 1331. Assembly frame body; 1332. Elastic piece; 1333. Connecting block; 2. Absorption unit; 21. Bearing box; 22. Adsorption assembly; 221. Assembly vertical plate; 222. Absorption fan; 223. Blocking block; 224. Object placing toothed plate. Specific embodiments

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0031] Refer to Figures 1-8 , Embodiment 1, an environment-friendly incineration device for rural garbage treatment, including an incineration unit 1 and an absorption unit 2. The absorption unit 2 is arranged on one side of the incineration unit 1. The incineration unit 1 includes a protection mechanism 11 and a heating mechanism 12 horizontally installed between two groups of protection mechanisms 11. An object holding mechanism 13 is clamped at the interval between the two groups of protection mechanisms 11. The set protection mechanism 11 can wrap the entire object holding mechanism 13 from the outside to the inside, avoiding the situation that the garbage in the processing state flies randomly due to its unstable processing state, and can prevent the staff from accidentally touching and scalding, improving work safety, protecting the operator from heat source injury. By providing a stable garbage treatment environment and protecting the safety of the staff, work efficiency and production efficiency can be improved, reducing the interference of accidents on the work progress. The design of the protection mechanism 11 complies with safety specifications and standards, ensuring the safety and reliability in the garbage treatment process.

[0032] The protection mechanism 11 includes a protection splint 111 and a reinforcing block 112 installed at one end of the protection splint 111. Clamping frames 113 are arranged on both sides of the other end of the reinforcing block 112. An assembly block 114 is arranged at the other end of the protection splint 111. Insertion holes 115 are opened on both the upper and lower sides of the side end face of the assembly block 114;

[0033] Embodiment 2, the heating mechanism 12 includes a positioning cross bar 121 and a positioning block 122 clamped between two groups of positioning cross bars 121. An output mechanism 123 is horizontally arranged at the bottom position of the side end face of the positioning block 122. The positioning cross bar 121 is horizontally inserted into the inner cavity of the insertion hole 115, making the protection mechanism 11 and the heating mechanism 12 an integral whole.

[0034] The output mechanism 123 passes through the inner cavity of the insertion hole 132, so that the output mechanism 123 horizontally passes through the space between the elastic sheet 1332 and the storage box 131. The output mechanism 123 includes a receiving frame 1231 and an output sheet 1232 opened at the bottom of the receiving frame 1231. Output cavities 1233 are arranged on the lower end surface of the output sheet 1232. The receiving frame 1231 extending into the inner cavity of the storage box 131 can quickly heat the stacked garbage from the bottom with the heating output end formed between the output sheet 1232 and the output cavities 1233. At this time, the high-temperature flame ejected from the inner cavity of the output cavity 1233 will directly contact the inner cavity wall of the storage box 131 downward. At this time, the high-temperature flame will eject to both sides along the bottom position of the inner cavity wall of the storage box 131. The quickly ejected high-temperature flame and the high-temperature air flow generated by it will spread around the bottom of the storage box 131, so that the garbage undergoing incineration treatment in the inner cavity of the storage box 131 can fully contact the high-temperature flame, so that the garbage at the bottom and around it can fully contact the high temperature, promoting the full combustion of the garbage, reducing the residual substances. The high-temperature flame and air flow effectively eliminate harmful substances, reduce the pollutants in the waste gas emissions, and improve the environmental protection effect during the incineration process. During the incineration process, through effective heating and high-temperature treatment, the energy consumption can be reduced and the secondary pollutant emissions can be reduced, meeting the requirements of energy conservation and emission reduction.

[0035] Embodiment 3: The storage mechanism 13 includes a storage box 131 and an insertion hole 132 opened at the bottom position of the side end face of the storage box 131. Auxiliary frames 133 are arranged at both ends of the inner cavity of the storage box 131. The auxiliary frames 133 are of an overall H-shaped structure. While pressing the garbage at the bottom, it can also clamp a certain amount of the garbage to be processed continuously added above, thereby increasing the functional diversity of the overall device. This device can not only effectively press the garbage at the bottom, but also clamp and process the garbage to be processed added above at the same time, realizing the diversification of functions. By realizing the processing of the garbage at the bottom and above in one device, the space and equipment investment are effectively saved, the efficiency and overall utilization rate of garbage treatment are improved. By integrating different functions into one device, the equipment structure and maintenance management are simplified, and the operation cost and energy consumption are reduced.

[0036] Embodiment 4. The auxiliary frame 133 includes an assembled frame body 1331 and elastic sheets 1332 installed between four groups of assembled frame bodies 1331. Each group of elastic sheets 1332 is connected in series through a connecting block 1333. The garbage to be incinerated is poured into the inner cavity of the storage box 131 until the inner cavity of the storage box 131 is completely filled, so that the garbage completely covers the surface of the auxiliary frame 133. The provided assembled frame body 1331 can horizontally support the arranged and combined elastic sheets 1332 and connecting blocks 1333, and the combined structure formed by the elastic sheets 1332 and connecting blocks 1333 can support the garbage to be processed. When the garbage to be processed is statically stored in the inner cavity of the storage box 131, there will be some garbage to be processed with relatively high humidity. Among them, the garbage with higher humidity will slowly deposit downward at the bottom of the inner cavity of the storage box 131. At this time, most of the upper surface of the garbage after static deposition for a period of time will be below the lower end surface of the elastic sheet 1332. At this time, the elastic sheet 1332 and the connecting block 1333 can perform reciprocating and uniform up-and-down wavy movements with the assembled frame body 1331 as the fulcrum. The garbage under the elastic sheet 1332 and the connecting block 1333 is continuously pressed. Through continuous pressing, it can be ensured that the garbage is stacked tightly, avoiding gaps and irregular stacking, thereby reducing the possibility of incomplete combustion of the garbage during the incineration process. The combined action of factors such as increased density, uniform distribution, and complete combustion can ultimately improve the effect of garbage incineration treatment and reduce the emission of residual substances and pollutants.

[0037] Embodiment 5, the absorption unit 2 includes a carrier box 21 and an adsorption component 22 arranged and installed in the inner cavity of the carrier box 21, the adsorption component 22 includes an assembly vertical plate 221 and an absorption fan 222 installed between two groups of assembly vertical plates 221, a barrier block 223 is provided in the middle position of the outer end wall of the assembly vertical plate 221, a placement tooth plate 224 is provided at the bottom of the absorption fan 222, the arranged adsorption components 22 are combined and placed in the inner cavity of the carrier box 21, each group of adsorption components 22 are assembled through the barrier block 223, and some gaps are left between each group of adsorption components 22, the assembly vertical plate 221 can absorb the waste gas generated by the incineration of garbage, and the absorbed waste gas passes through the inner cavity of the assembly vertical plate 221 and is temporarily stored in the placement tooth plate 224, because the placement tooth plate 224 is set to a vertical tooth shape The arrangement structure can receive impurities in the absorbed exhaust gas, and the impurities in the received state will slowly descend along the upper end surface of the placement tooth plate 224, and because the bottom of the placement tooth plate 224 is connected to the bottom of the inner cavity wall of the carrier box 21, when it is necessary to clean the impurities absorbed in the adsorption component 22, the staff only needs to pull up the assembly vertical plate 221. At this time, the placement tooth plate 224 is in a vertical state as a whole, and the impurities in the placement tooth plate 224 will fall vertically downward into the inner cavity of the carrier box 21, so as to centrally collect the collected impurities, and the impurities in the exhaust gas are received and settled by the placement tooth plate 224 with a vertical tooth arrangement structure, which helps to effectively separate and collect the impurities, and the absorbed impurities can be centrally collected in the inner cavity carrier box 21, which is convenient for subsequent processing and disposal.

[0038] In summary, an environment-friendly incineration device for rural garbage treatment includes an incineration unit 1 and an absorption unit 2. The absorption unit 2 is arranged on one side of the incineration unit 1. The incineration unit 1 includes a protection mechanism 11 and a heating mechanism 12 horizontally installed between two groups of protection mechanisms 11. A storage mechanism 13 is clamped at the interval between the two groups of protection mechanisms 11. The overall protection mechanism 11 can wrap the entire storage mechanism 13 from the outside to the inside, avoiding the situation where the garbage in the processing state flies randomly due to its unstable processing state, preventing the staff from accidentally touching and getting scalded, improving work safety, and protecting the operator from heat source damage. By providing a stable garbage treatment environment and protecting the safety of the staff, work efficiency and production efficiency can be improved, interference from unexpected events to the work progress can be reduced, and the design of the protection mechanism 11 meets safety specifications and standards requirements, ensuring the safety and reliability during the garbage treatment process. Pour the garbage to be incinerated into the inner cavity of the storage box 131 until the inner cavity of the storage box 131 is completely filled, so that the garbage completely covers the surface of the auxiliary frame 133. The assembled frame body 1331 can horizontally support the elastic pieces 1332 and the connecting blocks 1333 arranged in combination, and the combined structure formed by the elastic pieces 1332 and the connecting blocks 1333 can support the garbage to be processed. When the garbage to be processed is statically stored in the inner cavity of the storage box 131, there will be some garbage to be processed with relatively high humidity. Among them, the garbage with higher humidity will slowly deposit downward at the bottom of the inner cavity of the storage box 131. At this time, most of the upper surface of the garbage after static deposition for a period of time will be below the lower end surface of the elastic piece 1332. At this time, the elastic piece 1332 and the connecting block 1333 can perform reciprocating, uniform, up-and-down wavy motion with the assembled frame body 1331 as the fulcrum. The garbage below the elastic piece 1332 and the connecting block 1333 is continuously pressed. Through continuous pressing, it can be ensured that the garbage is stacked tightly, avoiding gaps and irregular stacking, thereby reducing the possibility of incomplete combustion of the garbage during the incineration process. The combined effects of increased density, uniform distribution, and complete combustion can ultimately improve the effect of garbage incineration treatment and reduce the emission of residual substances and pollutants;

[0039] The receiving rack 1231 extending into the inner cavity of the storage box 131 can quickly heat the stacked garbage from the bottom with the heating output end formed between the output piece 1232 and the output cavity 1233. At this time, the high-temperature flame ejected from the inner cavity of the output cavity 1233 will directly contact the inner cavity wall of the storage box 131 downward. At this time, the high-temperature flame will spray out to both sides along the bottom position of the inner cavity wall of the storage box 131. The quickly ejected high-temperature flame and the high-temperature air flow generated by it will spread around the bottom of the storage box 131, so that the garbage undergoing incineration treatment in the inner cavity of the storage box 131 can fully contact the high-temperature flame, enabling the garbage at the bottom and around it to fully contact the high temperature, promoting complete combustion of the garbage, reducing residual substances, effectively eliminating harmful substances with the high-temperature flame and air flow, reducing pollutants in the waste gas emissions, and improving the environmental protection effect during the incineration process. During the incineration process, through effective heating and high-temperature treatment, energy consumption can be reduced and secondary pollutant emissions can be decreased, meeting the requirements of energy conservation and emission reduction;

[0040] The auxiliary rack 133 is of an overall H-shaped structure. While pressing the garbage at its bottom, it can also clamp the garbage to be processed continuously added above, thereby increasing the functional diversity of the overall device. This device can not only effectively press the garbage at the bottom, but also clamp and process the garbage to be processed added above at the same time, realizing functional diversification. By realizing the treatment of the bottom and upper garbage in one device, space and equipment investment are effectively saved, the efficiency and overall utilization rate of garbage treatment are improved. By integrating different functions into one device, the equipment structure and maintenance management are simplified, and the operation cost and energy consumption are reduced;

[0041] The provided protection mechanism 11 can wrap the entire storage mechanism 13 from the outside to the inside as a whole, preventing the garbage in the processing state from flying around due to its unstable processing state, and can prevent the staff from being accidentally touched and scalded, improving work safety and protecting the operator from heat source damage. By providing a stable garbage treatment environment and protecting the safety of the staff, work efficiency and production efficiency can be improved, interference to the work progress caused by unexpected events can be reduced, and the design of the protection mechanism 11 meets safety specifications and standards requirements, ensuring the safety and reliability during the garbage treatment process;

[0042] The adsorption components 22 are arranged and combined and placed in the inner cavity of the carrier box 21. Each group of adsorption components 22 is assembled by a barrier block 223. Some gaps are left between each group of adsorption components 22. The assembly vertical plate 221 can absorb the waste gas generated by the incineration of garbage. The absorbed waste gas passes through the inner cavity of the assembly vertical plate 221 and is temporarily stored in the placement tooth plate 224. Because the placement tooth plate 224 is set to a vertical tooth arrangement structure, it can receive impurities in the absorbed waste gas. The impurities in the received state will slowly descend along the upper end surface of the placement tooth plate 224, and because the bottom of the placement tooth plate 224 is on the carrier The bottom of the inner cavity wall of the carrier box 21 is in a connected state. When it is necessary to clean the impurities absorbed in the adsorption component 22, the staff only needs to pull up the assembly vertical plate 221. At this time, the storage tooth plate 224 is in a vertical state as a whole. The impurities in the storage tooth plate 224 will fall vertically downward to the inner cavity of the carrier box 21, so as to collect the collected impurities. The impurities in the exhaust gas are received and settled by the vertical tooth-shaped arrangement structure storage tooth plate 224, which helps to effectively separate and collect the impurities. The absorbed impurities can be collected in the inner cavity carrier box 21 for subsequent processing and disposal.

[0043] The above is the entire working principle of the present invention.

[0044] In the present invention, the installation method, connection method or setting method of all the above components are common mechanical methods, and the specific structures, models and coefficient indicators of all its components are its own technology. As long as it can achieve its beneficial effects, it can be implemented, so it will not be elaborated.

[0045] The above embodiments are preferred implementation modes of the present invention, but the implementation modes of the present invention are not limited to the above embodiments. Any other changes, modifications, substitutions, combinations, and simplifications that do not deviate from the spirit and principles of the present invention should be equivalent replacement methods and are included in the protection scope of the present invention.

[0046] In the present invention, unless otherwise specified, the directional words contained in the terms such as "up, down, left, right, front, back, inside, outside, vertical, horizontal" only represent the orientation of the term in normal use, or are common names understood by those skilled in the art, and should not be regarded as limitations on the term. At the same time, number series nouns such as "first", "second" and "third" do not represent specific quantities and orders, but are merely used to distinguish names. Moreover, the terms "include", "comprise" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or equipment that includes a series of elements includes not only those elements, but also includes other elements that are not explicitly listed, or also includes elements inherent to such process, method, article or equipment.

Claims

1. An environment-friendly incineration device for rural waste treatment, comprising an incineration unit (1) and an absorption unit (2). The absorption unit (2) is arranged on one side of the incineration unit (1), and is characterized in that, The incineration unit (1) includes a protection mechanism (11) and a heating mechanism (12) horizontally installed between two groups of protection mechanisms (11), and a storage mechanism (13) is clamped at the interval between the two groups of protection mechanisms (11).

2. The environmentally friendly incineration device for rural waste treatment according to claim 1, characterized in that, The protection mechanism (11) includes a protection clamping plate (111) and a strengthening block (112) installed at one end of the protection clamping plate (111). Clamping brackets (113) are arranged on both sides of the other end of the strengthening block (112). An assembly block (114) is arranged at the other end of the protection clamping plate (111), and insertion holes (115) are opened on both the upper and lower sides of the side end face of the assembly block (114).

3. An environment-friendly incineration device for rural waste treatment according to claim 1, characterized in that, The heating mechanism (12) includes a positioning cross bar (121) and a positioning block (122) clamped between two groups of positioning cross bars (121), and an output mechanism (123) is horizontally arranged at the bottom position of the side end face of the positioning block (122).

4. An environment-friendly incineration device for rural waste treatment according to claim 3, characterized in that, The positioning cross bar (121) is horizontally inserted into the inner cavity of the insertion hole (115), so that the protection mechanism (11) and the heating mechanism (12) become an integral body.

5. An environment-friendly incineration device for rural garbage disposal according to claim 3, characterized in that, The output mechanism (123) passes through the inner cavity of the insertion hole (132), so that the output mechanism (123) horizontally passes through the interval between the elastic sheet (1332) and the storage box (131).

6. The environmentally friendly incineration device for rural waste treatment according to claim 3, characterized in that, The output mechanism (123) includes a receiving bracket (1231) and output sheets (1232) opened at the bottom of the receiving bracket (1231), and output cavities (1233) are arranged in a row on the lower end face of the output sheets (1232).

7. An environment-friendly incineration device for rural waste treatment according to claim 1, characterized in that, The storage mechanism (13) includes a storage box (131) and an insertion hole (132) opened at the bottom position of the side end face of the storage box (131), and auxiliary brackets (133) are arranged at both ends of the inner cavity of the storage box (131).

8. An environment-friendly incineration device for rural waste treatment according to claim 7, characterized in that, The auxiliary bracket (133) includes an assembly frame body (1331) and elastic sheets (1332) installed between four groups of assembly frame bodies (1331), and each group of elastic sheets (1332) is connected in series through a connecting block (1333).

9. An environment-friendly incineration device for rural garbage disposal according to claim 1, characterized in that, The absorption unit (2) includes a bearing box (21) and an adsorption assembly (22) arranged in a row in the inner cavity of the bearing box (21).

10. An environment-friendly incineration device for rural waste treatment according to claim 9, characterized in that, The adsorption assembly (22) includes an assembly vertical plate (221) and an absorption fan (222) installed between two groups of assembly vertical plates (221). A blocking block (223) is opened at the middle position of the outer end wall of the assembly vertical plate (221), and a storage toothed plate (224) is arranged at the bottom of the absorption fan (222).

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