Deodorization system and mobile garbage storage room
Through the coordinated work of the fresh air unit and the deodorizing unit, combined with the photocatalytic device and ultrasonic atomizer, the problem of difficult odor in the garbage station is solved, and the effect of efficient air purification and reducing secondary pollution is achieved.
Patent Information
- Application Number
- CN202422712073.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-11-07
AI Technical Summary
The odor in the garbage station is difficult to effectively remove, resulting in a negative impact on staff and the surrounding environment, especially in closed or semi-enclosed spaces, which leads to secondary pollution.
The joint work of the fresh air unit and the deodorizing unit is adopted. Through the fresh air unit, the fresh air provides fresh air flow from the top to the bottom. The deodorizing unit sucks and purifies the bottom odor, and further processing is carried out in combination with the photocatalytic device and the ultrasonic atomizer.
It realizes efficient air purification in the garbage storage area, reduces the impact of odor on the surrounding environment, and provides efficient, flexible and environmentally friendly solutions for urban and rural garbage disposal.
Smart Images

Figure CN223238664U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of garbage deodorization, in particular to a deodorization system and a mobile garbage storage room. Background Art
[0002] With the continuous development of cities, the amount of garbage generated in cities is increasing, and urban garbage needs to be collected and transported in a timely manner. Due to the different sizes of cities, larger cities generally build multiple garbage transfer stations in the city center because the garbage terminal treatment sites are far away from the city center to carry out local collection and centralized transportation of garbage; smaller cities will also set up at least one garbage station and then collect and transport the garbage to the garbage terminal treatment site.
[0003] During this process, due to the limitation of transportation capacity, centralized transfer will be carried out at certain fixed times every day. Then, the collected garbage will stay at the garbage station. When the garbage is piled up, the middle area of the garbage pile will be in an oxygen-deficient or even anaerobic environment. Due to the growth of anaerobic microorganisms, odor will be produced. This situation is more obvious in the summer when the temperature is higher.
[0004] The odor produced by general garbage includes the following components: sulfur-containing compounds (such as H2S), nitrogen-containing compounds (such as NH3), halogens and derivatives (such as Cl2), hydrocarbons and aromatic hydrocarbons, and oxygen-containing organic matter (such as alcohols, phenols, aldehydes, ketones, etc.).
[0005] These odors are not only pungent but also toxic, which can easily cause adverse sensory reactions and physical harm to garbage station workers, and even have a negative impact on the lives and production activities of surrounding residents.
[0006] Therefore, it is necessary to invent relevant devices or systems that can quickly and effectively treat the odor from garbage stations to minimize the negative impact caused by garbage odor. Utility Model Content
[0007] The purpose of the utility model is to provide a deodorization system and a mobile garbage storage room to solve the technical problem that the garbage odor in the garbage storage area in semi-enclosed spaces or enclosed spaces such as garbage treatment centers, garbage transfer stations, garbage transfer stations, and garbage collection sites is difficult to be removed in time, thereby causing secondary pollution.
[0008] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0009] The utility model discloses a deodorizing system for being installed in a garbage storage area, comprising a main structure, wherein the main structure is installed at a position near the top of the garbage storage area; the main structure comprises a first air duct and a second air duct, the first air duct is installed with a fresh air unit, and the second air duct is installed with a deodorizing unit; the fresh air unit is used to provide fresh air to the top of the garbage storage area, and the deodorizing unit is used to suck the odor at the bottom of the garbage storage area and purify it; one end of the first air duct is connected to the outside of the garbage storage area, and the other end of the first air duct is installed with a fresh air duct, the fresh air duct is arranged around the inner circumference of the top of the garbage storage area, and a plurality of air outlet branch pipes are provided on the fresh air duct, and the air outlet end of each air outlet branch pipe is located at the top of the garbage storage area; a deodorizing pipe is installed at one end of the second air duct, the deodorizing pipe is arranged around the inner circumference of the top of the garbage storage area, and a plurality of air intake branch pipes are provided on the deodorizing pipe, and the air intake end of each air intake branch pipe extends to the bottom of the garbage storage area.
[0010] Specifically, the garbage storage area described in this embodiment can be a semi-enclosed space or enclosed space used for storing, processing and transferring garbage, such as a garbage treatment center, a garbage transfer station, a garbage transfer station, and a garbage collection site. The deodorization system of the utility model is used to remove garbage odor from the garbage storage area.
[0011] During implementation, the trash bin is placed at the bottom (e.g., ground level) of the trash storage area. Fresh air generated by the fresh air unit enters the trash storage area from the top. The deodorizing unit draws air from the bottom, causing it to flow downward, filling the entire trash storage area and achieving deodorization. To further enhance the deodorization effect, the door to the trash storage area can be closed to increase the relative isolation of the interior space and ensure a higher proportion of odor in the air extracted by the deodorizing system.
[0012] In a specific implementation, an air inlet and an air outlet are respectively provided at both ends of the first air duct, the air inlet is connected to the outside of the garbage storage area, and the air outlet is connected to the fresh air pipeline through an air outlet connecting pipe;
[0013] The fresh air unit includes a first fan installed inside the first air duct, the air inlet of the first fan is connected to the internal space of the first air duct, and the air outlet of the first fan is connected to the air outlet of the first air duct and is connected to the fresh air pipeline through an air outlet connecting pipe;
[0014] An air intake and an air exhaust are respectively provided at both ends of the second air duct, the air intake being connected to the deodorization pipeline via an air intake connecting pipe; an exhaust pipe is installed at the exhaust port, and the exhaust pipe extends from the second air duct to outside the garbage storage area;
[0015] The deodorization unit includes a second fan installed in the second air duct, the air inlet of the second fan is connected to the internal space of the second air duct, and the air outlet of the second fan is connected to the exhaust pipe; the deodorization unit also includes a photocatalytic device installed between the intake pipe and the second fan, which is used to purify the odor in the second air duct.
[0016] Specifically, the photocatalytic device described in this solution uses a finished product that can be purchased on the market. The structure of the photocatalytic device itself is not described in detail. Its working principle is that nano-photocatalysts, such as titanium dioxide, produce a catalytic effect under the irradiation of ultraviolet light to decompose harmful substances and odor molecules in the air into harmless substances.
[0017] Preferably, the first blower is an ion blower. When drawing in outdoor air, it generates negative ions, providing a large amount of negative ions to the air in the garbage storage area, further purifying the air in the garbage storage area. The principle of the ion blower is to use an ionization tube. When air passes through the ionization tube, it is transformed into millions of positive and negative ions, thereby simulating fresh air. The ion blower used in this solution is a commercially available finished product, and the structure of the ion blower itself is not described in detail.
[0018] Preferably, the fresh air unit also includes a filter module installed in the first air duct at a position on the side of the first fan facing the air inlet, which is used to filter the air entering the first air duct to remove some solid matter, ensure the working effect of the ion fan, and extend the service life of the ion fan.
[0019] Preferably, the main structure includes an outer shell, the outer shape of the outer shell is square, and the interior of the outer shell is provided with a partition, which divides the interior of the outer shell into a first space and a second space, the first space is used as a first air duct, and the second space is used as a second air duct, the fresh air unit is installed in the first space, and the deodorization unit is installed in the second space; a mounting bracket is fixed to the outside of the bottom of the outer shell, and the mounting bracket is fixed with hanging ears at the positions corresponding to the four corners of the bottom of the outer shell, and is suspended and installed near the top of the garbage storage area through the hanging ears.
[0020] Preferably, a deodorizing spray device is further included, which includes an ultrasonic atomizer using a deodorizing agent as an atomizer, the atomizing outlet of the ultrasonic atomizer is connected to an atomizing delivery pipeline, the atomizing delivery pipeline is extended and arranged in the top middle area of the garbage storage area and / or the area above the lintel of the entrance and exit of the garbage storage area, and a plurality of mist outlets are evenly arranged on the atomizing delivery pipeline.
[0021] In specific applications, the ultrasonic atomizer uses ultrasonic atomization equipment or ultrasonic humidifier equipment that can be purchased on the market, and uses deodorizing agents such as biological deodorants, biological bacteriophages that can be purchased on the market or self-developed as atomizing agents. The liquid reagent is atomized into ultrafine particles of 1 to 5 microns through ultrasonic high-frequency vibrations, and is dispersed into the space of the garbage storage area through the atomization delivery pipeline. It flows with the air flow in the space, decomposes the odor pollutants remaining in the space, and degrades them into simple inorganic substances such as non-toxic and harmless CO2, H2O, HNO3, etc., thereby achieving the purpose of further deodorization.
[0022] During the implementation of this embodiment, when the garbage storage area (such as a garbage station) is completely closed, the ultrasonic atomizer can be started intermittently to perform further degradation and deodorization treatment; when the garbage storage area (such as a garbage station) needs to have garbage bins for transportation or personnel entering and exiting, the entrance and exit doors of the garbage storage area (such as a garbage station) can be kept open, and the ultrasonic atomizer can be started to perform degradation and deodorization treatment. When odor overflows, the deodorizing agent mist output by the ultrasonic atomizer can drift and overflow with the airflow, and the odor components in the overflowing airflow can be subjected to degradation and deodorization treatment, thereby effectively alleviating the impact of odor on the surrounding environment.
[0023] On the second aspect, the utility model also discloses a mobile garbage storage room, which serves as a garbage storage area and is detachably installed with the deodorization system as described above. The mobile garbage storage room includes a bottom plate, and the four edges of the bottom plate are respectively extended upward with side panels, and the adjacent two side panels are detachably connected. The bottom of each side panel is detachably connected to the bottom plate, and the top of each side panel is detachably connected to a top panel, and one of the side panels is provided with a door; the main structure is detachably installed on the top panel, and the fresh air duct and deodorization duct are respectively detachably installed on the side panels.
[0024] In specific implementation, the mobile garbage storage room of the utility model is suitable as a temporary, movable semi-enclosed garbage bin storage site. The mobile garbage storage room of this solution can be moved as a whole or the various structures can be kept disassembled and transported to the site for assembly. The mobile garbage storage room of this solution is suitable for use in temporary emergency scenarios, such as disaster relief or garbage collection in areas where people gather in engineering projects. It can solve the technical problem of long cycle and high cost in rebuilding garbage storage areas in temporary scenarios, and also solve the technical problem that garbage storage areas in temporary scenarios do not have deodorization function.
[0025] Preferably, a plurality of clamps are pre-installed on the side panels for detachably fixing the pipe structures in the fresh air pipe and the deodorization pipe.
[0026] Preferably, the door is a sliding door, a rolling door or a hinged door.
[0027] Preferably, a deodorizing spray device is further included, which includes an ultrasonic atomizer with a deodorizing agent as an atomizer. The ultrasonic atomizer is detachably mounted on the top plate at a position close to a side panel where a door is provided, and the ultrasonic atomizer has multiple atomizing outlets, which are respectively directed towards the interior space of the mobile garbage storage room and the direction of the door.
[0028] The technical solution of the present invention has the following beneficial effects: The deodorization system of the present invention realizes the top-down flow of air in the garbage storage area through the coordinated work of the fresh air unit and the deodorization unit, thereby promoting the suction and purification of odors. It can also be combined with an ultrasonic atomizer to degrade and deodorize the air in the garbage storage area. It solves the technical problem that the odor of garbage in semi-enclosed or enclosed spaces such as garbage storage areas is difficult to remove in time, thereby causing secondary pollution. The deodorization system of the present invention not only improves the air quality inside the garbage storage area, but also reduces the impact of odor on the surrounding environment, providing an efficient, flexible and environmentally friendly solution for garbage disposal in cities and towns. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to make the purpose, technical solutions and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the accompanying drawings, in which:
[0030] Figure 1 This is a schematic structural diagram of a deodorization system according to a first embodiment of the present invention.
[0031] Figure 2 This is a schematic diagram of the fresh air duct layout of Example 1 of the present utility model.
[0032] Figure 3 This is a schematic diagram of the deodorization pipeline layout of Example 1 of the present utility model.
[0033] Figure 4 This is a schematic diagram of the deodorization system principle of Example 1 of the present utility model.
[0034] Figure 5 This is a schematic diagram of the main structure of Example 1 of the present utility model.
[0035] Figure 6 This is a schematic diagram of the internal structure of the main body of the first embodiment of the present invention.
[0036] Figure 7 This is a schematic diagram of the deodorization system structure of Example 2 of the present utility model.
[0037] Explanation of the accompanying symbols: 100, garbage storage area; 101, garbage bin; 200, main structure; 201, air inlet; 202, air outlet duct; 203, air intake duct; 204, exhaust duct; 205, outer shell; 206, partition; 207, first space; 208, second space; 209, mounting bracket; 210, lifting ear; 301, first fan; 302, fresh air duct; 303, air outlet branch pipe; 304, filter module; 401, deodorization duct; 402, air intake branch pipe; 404, second fan; 405, photocatalytic device; 501, ultrasonic atomizer; 502, atomization delivery pipeline. DETAILED DESCRIPTION
[0038] In order to better understand the purpose, structure and function of the present invention, the following is a further detailed description of a deodorization system and a mobile garbage storage room of the present invention in conjunction with the accompanying drawings.
[0039] The utility model can be applied to the deodorization of garbage in garbage storage areas in closed or semi-closed spaces, solving the technical problem that the garbage odor in semi-closed spaces or closed spaces such as garbage treatment centers, garbage transfer stations, garbage transfer stations, and garbage collection sites is difficult to be removed in time, thereby causing secondary pollution.
[0040] In order to elaborate the structure of the present invention in detail, the present invention discloses the following embodiments.
[0041] Example 1
[0042] See also Figures 1 to 6 Based on the technical problems solved above, this embodiment discloses a deodorization system for installation in a garbage storage area 100, comprising a main structure 200, wherein the main structure 200 is installed near the top of the garbage storage area 100;
[0043] The main structure 200 includes a first air duct and a second air duct. A fresh air unit is installed in the first air duct, and a deodorizing unit is installed in the second air duct. The fresh air unit is used to provide fresh air to the top of the garbage storage area 100, and the deodorizing unit is used to extract and purify odors from the bottom of the garbage storage area 100.
[0044] One end of the first air duct is connected to the outside of the garbage storage area 100, and the other end of the first air duct is installed with a fresh air duct 302. The fresh air duct 302 is arranged around the inner circumference of the top of the garbage storage area 100. A plurality of air outlet branches 303 are evenly arranged on the fresh air duct 302, and the air outlet end of each air outlet branch 303 is located at the top of the garbage storage area 100.
[0045] A deodorizing pipe 401 is installed at one end of the second air duct, and the deodorizing pipe 401 is arranged around the inner circumference of the top of the garbage storage area 100. A plurality of suction branch pipes 402 are evenly arranged on the deodorizing pipe 401, and the suction end of each suction branch pipe 402 extends to the bottom of the garbage storage area 100.
[0046] Specifically, the garbage storage area 100 described in this embodiment can be a semi-enclosed space or enclosed space used for storing, processing, and transferring garbage, such as a garbage treatment center, a garbage transfer station, a garbage transfer station, and a garbage collection station. The deodorization system of the present invention is used to remove garbage odor from the garbage storage area 100.
[0047] During implementation of this embodiment, the trash bin 101 is placed at the bottom (e.g., floor) of the trash storage area 100. Fresh air generated by the fresh air unit enters the trash storage area 100 from the top. The fresh air is drawn from the bottom by the deodorizing unit, causing it to flow from top to bottom. This allows the fresh air to fill the entire trash storage area 100, achieving deodorization. To further enhance the deodorization effect, the door to the trash storage area 100 can be closed to increase the relative isolation of the interior space within the trash storage area 100 and ensure a higher proportion of odor in the air extracted by the deodorizing system.
[0048] For specific implementation, please refer to Figure 2 、 Figure 3 and Figure 4 An air inlet 201 and an air outlet are respectively provided at both ends of the first air duct, the air inlet 201 is connected to the outside of the garbage storage area 100, and the air outlet is connected to the fresh air duct 302 through the air outlet connecting pipe 202; the fresh air unit includes a first fan 301 installed inside the first air duct, the air inlet of the first fan 301 is connected to the internal space of the first air duct, and the air outlet end of the first fan 301 is connected to the air outlet of the first air duct and is connected to the fresh air duct 302 through the air outlet connecting pipe 202;
[0049] An air intake and an air exhaust are respectively provided at both ends of the second air duct. The air intake is connected to the deodorization pipeline 401 through an air intake connecting pipe 203. An exhaust pipe 204 is installed at the exhaust port. The exhaust pipe 204 extends from the second air duct to the outside of the garbage storage area 100.
[0050] The deodorization unit includes a second fan 404 installed in the second air duct, the air inlet of the second fan 404 is connected to the internal space of the second air duct, and the air outlet of the second fan 404 is connected to the exhaust pipe 204; the deodorization unit also includes a photocatalytic device 405 installed between the air intake pipe 203 and the second fan 404, which is used to purify the odor in the second air duct.
[0051] Specifically, the photocatalytic device 405 described in this embodiment adopts a finished product that can be purchased on the market. The structure of the photocatalytic device 405 itself is not described in detail. Its working principle is to use nano-photocatalysts, such as titanium dioxide, to produce a catalytic effect under the irradiation of ultraviolet light, thereby decomposing harmful substances and odor molecules in the air into harmless substances.
[0052] Specifically, the first fan 301, the second fan 404 and the photocatalytic device 405 are all started by an external power supply.
[0053] In this embodiment, the first fan 301 is an ion fan, which can generate negative ions when sucking in outdoor air, providing a large amount of negative ions for the air in the garbage storage area 100, thereby further purifying the air in the garbage storage area 100.
[0054] The principle of the ion blower is to use an ionization tube. When air passes through the ionization tube, it will form millions of positive ions and negative ions, which can simulate fresh air. The ion blower used in this embodiment is a finished product that can be purchased on the market, and the structure of the ion blower itself will not be repeated.
[0055] In this example, see Figure 4 The fresh air unit also includes a filter module 304 installed in the first air duct at a position on the side of the first fan facing the air inlet 201, which is used to filter the air entering the first air duct to remove some solid matter, ensure the working effect of the ion fan, and extend the service life of the ion fan.
[0056] In this example, see Figure 5 and Figure 6The main structure 200 includes an outer shell 205, and a partition 206 is provided inside the outer shell 205, which divides the interior of the outer shell 205 into a first space 207 and a second space 208. The first space 207 is used as a first air duct, and the second space 208 is used as a second air duct. The fresh air unit is installed in the first space 207, and the deodorization unit is installed in the second space 208; a mounting bracket 209 is fixed to the outer side of the bottom of the outer shell 205, and the mounting bracket 209 is fixed with hanging ears 210 at the positions corresponding to the four corners of the bottom of the outer shell 205, and is suspended and installed near the top of the garbage storage area 100 through the hanging ears 210.
[0057] The fresh air unit and the deodorization unit are encapsulated in the same housing 205, which is convenient for manufacture and installation. The lifting lug 210 provided on the mounting bracket 209 can be tied with a lifting rope or connected with a hanging steel bar, etc., and suspended on the top of the garbage storage area 100 to realize the installation of the main structure 200. This form is convenient for arranging the appropriate position for installation according to the actual shape of the top of the garbage storage area 100, and is also convenient for construction and has high flexibility.
[0058] See also Figure 4 The working process of the present invention is: first, the deodorization system is installed in the garbage storage area 100, and ensure that the end of the air intake branch pipe 402 is located at the bottom of the garbage storage area 100, and the air outlet branch pipe 303 is located at the top of the garbage storage area 100, and the first fan 301 and the second fan 404 are turned on. The first fan 301 draws in fresh air from outside the garbage storage area 100 and sends it to the top area of the garbage storage area 100 from the end of the air outlet branch pipe 303. The second fan 404 draws in air from the bottom of the garbage storage area 100, purifies it, and then discharges it into the outdoor air. In this way, the air in the garbage storage area 100 forms a flow trend, that is, fresh air flows from top to bottom, and then pushes the odor into the air intake branch pipe 402, which can enable the odor in the garbage storage area 100 to be efficiently purified and have a good purification effect.
[0059] The deodorization system disclosed in this embodiment has the following technical benefits: Through its efficient and structurally optimized design, the deodorization system of this embodiment provides an effective air purification solution for garbage storage areas. The system's coordinated operation of the fresh air unit and deodorization unit achieves top-down air flow within the garbage storage area, promoting the extraction and purification of odors. Its main structure, through the rational division of internal space, enables flexible installation and adaptability. The introduction of an ion blower not only enhances the air purification effect but also simulates a fresh air environment. The use of a photocatalytic device further decomposes harmful substances in the air, improving deodorization efficiency. Furthermore, the system's filtration module protects the blower and extends its service life. The entire system is easy to install and maintain, utilizing proven market technologies such as the ion blower and photocatalytic device to ensure reliability and environmental friendliness. Through these features, this system not only improves air quality within garbage storage areas but also reduces odor impact on the surrounding environment, providing an efficient, flexible, and environmentally friendly solution for garbage disposal in cities and towns.
[0060] Example 2
[0061] Based on Example 1, please refer to Figure 7 The deodorization system disclosed in this embodiment also includes a deodorization spray device, which includes an ultrasonic atomizer 501 using a deodorizing agent as an atomizer. The atomization outlet of the ultrasonic atomizer 501 is connected to an atomization delivery pipeline 502. The atomization delivery pipeline 502 extends and is arranged in the top middle area of the garbage storage area 100 and / or the area above the lintel of the entrance and exit of the garbage storage area 100. A plurality of mist outlets are evenly arranged on the atomization delivery pipeline 502.
[0062] The deodorization system of this embodiment is also applicable to garbage storage areas 100 in semi-enclosed or enclosed spaces used for storing, processing, and transferring garbage in garbage treatment centers, garbage transfer stations, garbage transfer stations, garbage collection sites, etc. In addition to being able to use the fresh air unit and the deodorization unit to implement the solution described in Example 1 to remove garbage odor from the garbage storage area 100, the ultrasonic atomizer 501 can also be used to further degrade and deodorize the air in the garbage storage area 100.
[0063] In specific applications, the ultrasonic atomizer 501 uses ultrasonic atomization equipment or ultrasonic humidifier equipment that can be purchased on the market, and uses deodorizing agents such as biological deodorants, biological bacteriophages that can be purchased on the market or self-developed as atomizing agents. The liquid reagent is atomized into ultrafine particles of 1 to 5 microns through ultrasonic high-frequency oscillation, and is dispersed into the space of the garbage storage area 100 through the atomization delivery pipeline 502. It flows with the air flow in the space, decomposes the odor pollutants remaining in the space, and degrades them into simple inorganic substances such as non-toxic and harmless CO2, H2O, HNO3, etc., thereby achieving the purpose of further deodorization.
[0064] During the implementation of this embodiment, when the garbage storage area 100 (e.g., a garbage station) is completely closed, the ultrasonic atomizer 501 can be intermittently started to perform further degradation and deodorization treatment; when the garbage storage area 100 (e.g., a garbage station) requires garbage bin transportation or personnel entry and exit, the entrance and exit doors of the garbage storage area 100 (e.g., a garbage station) can be kept open, and the ultrasonic atomizer 501 can be kept started to perform degradation and deodorization treatment. When odor overflows, the deodorizing agent mist output by the ultrasonic atomizer 501 can drift and overflow with the airflow, and degradation and deodorization treatment can be performed on the odor components in the overflowing airflow, thereby effectively alleviating the impact of odor on the surrounding environment.
[0065] It can be understood that the deodorization unit, fresh air unit and deodorization spray device unit in the deodorization system of the present invention can be fully assembled or partially assembled according to the actual situation under different demand conditions of different garbage storage or transfer sites (such as site scale, construction funds, deodorization effect, etc.), and all of them can achieve the deodorization effect of the garbage site to a certain extent and effectively alleviate the impact of odor on the surrounding environment; of course, the deodorization effect is best when the deodorization unit, fresh air unit and deodorization spray device unit are fully assembled.
[0066] Example 3
[0067] The present embodiment discloses a mobile garbage storage room, which uses the mobile garbage storage room as a garbage storage area, and is detachably installed with a deodorization system as described in Example 1; the mobile garbage storage room includes a bottom plate, and side panels are respectively extended upward on the four edges of the bottom plate, and the adjacent two side panels are detachably connected, the bottom of each side panel is detachably connected to the bottom plate, and the top of each side panel is detachably connected to a top panel, and a door is provided on one of the side panels; the main structure is detachably installed on the top panel, and the fresh air duct and deodorization duct are respectively detachably installed on the side panels.
[0068] Specifically, a plurality of clamps are pre-installed on the side panels for detachably fixing the pipe structures in the fresh air pipe and the deodorization pipe.
[0069] Specifically, a lifting ring is pre-installed on the top plate for installing the main structure through a lifting rope.
[0070] Specifically, the mobile garbage storage room is a movable cabin.
[0071] Specifically, the side panels, bottom panel and top panel are detachably connected to each other via bolts.
[0072] Specifically, the door is a sliding door, a rolling door or a hinged door.
[0073] In specific implementation, the mobile garbage storage room of this embodiment is suitable as a temporary, movable semi-enclosed garbage bin storage site. The mobile garbage storage room of this embodiment can be moved as a whole or the various structures can be transported to the site for assembly with the state of being disassembled. The mobile garbage storage room of this embodiment is suitable for use in temporary emergency scenarios, such as disaster relief or garbage collection in areas where people gather in engineering projects. It can solve the technical problem of long cycle and high cost in rebuilding garbage storage areas in temporary scenarios, and also solve the technical problem of garbage storage areas not having deodorization function in temporary scenarios.
[0074] In this embodiment, a deodorizing spray device can also be arranged in the mobile garbage storage room. The deodorizing spray device includes an ultrasonic atomizer with a deodorizing agent as an atomizer. The ultrasonic atomizer is detachably mounted on the top plate at a position close to a side panel where a door is provided, and the ultrasonic atomizer has multiple atomizing outlets, respectively facing the interior space of the mobile garbage storage room and the direction of the door.
[0075] In this way, in addition to using the fresh air unit and the deodorization unit to achieve the function of removing the garbage odor, the ultrasonic atomizer can also be used to further degrade and deodorize the air in the mobile garbage storage room.
[0076] In specific applications, the ultrasonic atomizer uses ultrasonic atomization equipment or ultrasonic humidifier equipment that can be purchased on the market, and uses deodorizing agents such as biological deodorants, biological bacteriophages that can be purchased on the market or self-developed as atomizing agents. The liquid reagent is atomized into ultrafine particles of 1 to 5 microns through ultrasonic high-frequency vibrations, and is dispersed into the space of the mobile garbage storage room through the atomization conveying pipeline. It flows with the air flow in the space, decomposes the odor pollutants remaining in the space, and degrades them into simple inorganic substances such as non-toxic and harmless CO2, H2O, HNO3, etc., thereby achieving the purpose of further deodorization.
[0077] During the implementation of this embodiment, when the mobile garbage storage room is completely closed, the ultrasonic atomizer can be started intermittently to perform further degradation and deodorization treatment; when the mobile garbage storage room needs to transport garbage bins or people need to enter and exit, the door of the mobile garbage storage room can be kept open, and the ultrasonic atomizer can be started to perform degradation and deodorization treatment. When odor overflows, the deodorizing agent mist output by the ultrasonic atomizer drifts and overflows with the airflow, and the odor components in the overflowing airflow are subjected to degradation and deodorization treatment, thereby effectively alleviating the impact of odor on the surrounding environment.
[0078] It will be understood that the present invention is described with reference to certain specific embodiments / examples. Those skilled in the art will appreciate that various changes or equivalent substitutions may be made to these features and embodiments / examples without departing from the spirit and scope of the present invention. In light of the present invention, these features and embodiments / examples may be modified to suit specific circumstances and materials without departing from the spirit and scope of the present invention. The embodiments / examples described herein represent only a portion of the embodiments / examples of the present invention, and are not intended to be exhaustive. The components of the embodiments / examples of the present invention generally described and illustrated in the accompanying drawings may be arranged and designed in a variety of different configurations. Therefore, the following detailed description of the embodiments / examples of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments / examples of the present invention. Therefore, the present invention is not limited to the specific embodiments / examples disclosed herein. All other embodiments / examples deriving from the specific embodiments / examples disclosed herein without inventive effort by a person of ordinary skill in the art are intended to fall within the scope of protection of the present invention.
Claims
1. A deodorization system for installation in a garbage storage area, characterized in that: The vents are connected to the vents in the garbage storage area through a channel which is adapted to draw air from the vents to the vents, and from the channel which draws air from the vents to the vents.
2. The deodorization system according to claim 1, characterized in that An air inlet and an air outlet are respectively provided at both ends of the first air duct, the air inlet is connected to the outside of the garbage storage area, and the air outlet is connected to the fresh air pipeline through an air outlet connecting pipe; The fresh air unit includes a first fan installed inside the first air duct, the air inlet of the first fan is connected to the internal space of the first air duct, and the air outlet of the first fan is connected to the air outlet of the first air duct and is connected to the fresh air pipeline through an air outlet connecting pipe; An air intake and an air exhaust are respectively provided at both ends of the second air duct, the air intake being connected to the deodorization pipeline via an air intake connecting pipe; an exhaust pipe is installed at the exhaust port, and the exhaust pipe extends from the second air duct to outside the garbage storage area; The deodorization unit includes a second fan installed in the second air duct, the air inlet of the second fan is connected to the internal space of the second air duct, and the air outlet of the second fan is connected to the exhaust pipe; the deodorization unit also includes a photocatalytic device installed between the intake pipe and the second fan, which is used to purify the odor in the second air duct.
3. The deodorization system according to claim 2, characterized in that The first fan is an ion fan, which can generate negative ions when sucking in outdoor air, providing negative ions for the air in the garbage storage area, and further purifying the air in the garbage storage area.
4. The deodorization system according to claim 3, characterized in that: The fresh air unit further comprises a filter module installed in the first air duct at a position on the side of the first fan facing the air inlet, for filtering the air entering the first air duct.
5. The deodorization system according to claim 4, characterized in that: The main structure includes an outer shell, and a partition is provided inside the outer shell, which divides the inner shell into a first space and a second space. The first space is used as a first air duct, and the second space is used as a second air duct. The fresh air unit is installed in the first space, and the deodorization unit is installed in the second space. A mounting bracket is fixed to the outer side of the bottom of the outer shell, and the mounting bracket is fixed with hanging ears at the positions corresponding to the four corners of the bottom of the outer shell, and is suspended and installed near the top of the garbage storage area through the hanging ears.
6. The deodorization system according to claim 1, characterized in that It also includes a deodorizing spray device, which includes an ultrasonic atomizer using a deodorizing agent as an atomizer. The atomizing outlet of the ultrasonic atomizer is connected to an atomizing delivery pipeline. The atomizing delivery pipeline is extended and arranged in the top middle area of the garbage storage area and / or the area above the lintel of the entrance and exit of the garbage storage area. A plurality of mist outlets are evenly arranged on the atomizing delivery pipeline.
7. A mobile garbage storage room, characterized in that: A mobile garbage storage room is used as a garbage storage area, and a deodorization system as described in any one of claims 1 to 5 is detachably installed; the mobile garbage storage room includes a bottom plate, and side panels are respectively extended upward from the four edges of the bottom plate, and the adjacent two side panels are detachably connected, the bottom of each side panel is detachably connected to the bottom plate, and the top of each side panel is detachably connected to a top panel, and one of the side panels is provided with a door; the main structure is detachably installed on the top panel, and the fresh air duct and deodorization duct are respectively detachably installed on the side panels.
8. The mobile garbage storage room according to claim 7, characterized in that: A plurality of clamps are pre-installed on the side panels for detachably fixing the pipe structures in the fresh air pipe and the deodorization pipe.
9. The mobile garbage storage room according to claim 7, characterized in that: The door is a sliding door, a rolling door or a hinged door.
10. The mobile garbage storage room according to claim 7, characterized in that: It also includes a deodorizing spray device, which includes an ultrasonic atomizer with a deodorizing agent as an atomizer. The ultrasonic atomizer is detachably mounted on the top plate at a position close to a side panel where a door is provided, and the ultrasonic atomizer has multiple atomizing outlets, which are respectively directed towards the interior space of the mobile garbage storage room and the direction of the door.