Carbon dioxide enrichment device and mosquito trapping device
The CO2 enrichment device with adjustable housing and mosquito trap addresses structural complexity and energy inefficiencies by extending air residence time and contact with adsorption materials, achieving efficient separation and mosquito control.
Patent Information
- Application Number
- CN202421779686.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-25
AI Technical Summary
The existing carbon dioxide enrichment and separation devices have complex structures and many equipment and materials, resulting in high production costs and poor separation effects. The air contact time between the enriched materials is short, so it is impossible to fully separate carbon dioxide.
An enrichment unit including a sealed base and a sealed shell is designed to control the sealed space through a lifting device, increase the air residence time, combine the adsorption material and the release device to ensure that the material is in full contact with carbon dioxide, and use the air pump to output carbon dioxide; at the same time, combined with the mosquito trapping device, use ultraviolet lamps and carbon dioxide to attract mosquitoes.
Simplify the device structure, reduce production costs, improve carbon dioxide separation efficiency, and improve mosquito killing effects by enhancing attraction.
Smart Images

Figure CN223094576U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of gas production devices and mosquito trapping, and particularly to a carbon dioxide enrichment device and a mosquito trapping device. Background Art
[0002] The statements in this section only provide background information related to the present disclosure and may not constitute prior art.
[0003] Existing carbon dioxide enrichment and separation devices have some problems in separating carbon dioxide from air. First, the structures of these devices are relatively complex, requiring more equipment and materials to achieve carbon dioxide enrichment and separation, increasing production costs and energy consumption. Second, due to the unreasonable device design (that is, in existing carbon dioxide enrichment devices, air does not stay in the device for too long, that is, it comes and goes quickly, resulting in insufficient carbon contact between air and the device), the enrichment material fails to fully contact carbon dioxide, resulting in poor separation effect and unable to achieve the expected separation effect.
[0004] In view of the above problems, it is necessary to optimize and improve the existing carbon dioxide enrichment and separation devices. Improvements can be made from the design structure, simplify the device structure, reduce the use of equipment and materials, and reduce production costs and energy consumption. At the same time, the selection and arrangement of the enrichment material can be optimized to ensure that it can fully contact carbon dioxide in the air and improve the separation effect. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a carbon dioxide enrichment device and a mosquito trapping device for the problems existing in the prior art, which can increase the residence time of air in the enrichment device, thereby increasing the carbon contact time between the two, enabling the enrichment material to fully contact carbon dioxide, and thus solving the above problems.
[0006] The technical solution of the utility model is as follows:
[0007] A carbon dioxide enrichment device, comprising:
[0008] An enrichment unit and a conveying unit, the conveying unit is used to output the carbon dioxide generated by the enrichment unit;
[0009] The enrichment unit includes a sealed base, a sealed housing and a material storage box. The sealed housing is installed above the sealed base through a lifting device; by lifting the sealed housing, a sealed space can be formed between the sealed housing and the sealed base; a material storage box is also arranged on the sealed base and within the sealed space, and an adsorption material for adsorbing carbon dioxide is stored in the material storage box; a release device is also arranged in the material storage box for releasing the carbon dioxide adsorbed on the adsorption material.
[0010] Further, the lifting device includes a lifting platform, a transmission lead screw, a nut, and a transmission motor; the sealed housing is installed on the lifting platform, and a nut is arranged on one side of the lifting platform; the transmission lead screw is vertically installed on one side of the sealed base, and the transmission motor is used to drive the transmission lead screw to rotate; the thread of the nut is matched with the thread of the transmission lead screw, and the lifting of the sealed housing is controlled by the rotation of the lead screw.
[0011] Further, the lifting device further includes a guiding structure, which plays a guiding role during the lifting process of the sealed housing.
[0012] Further, the guiding structure is guiding rods arranged on both sides of the transmission lead screw, and guiding rings matched with the guiding rods are arranged on the sealed housing.
[0013] Further, the releasing device is a heating plate, and the heating plate is installed in the material storage box through a heating plate bracket.
[0014] Further, the conveying unit is an air pump; the air pump is arranged inside the sealed base, an air outlet is arranged on the sealed base and within the sealed space, the air outlet is connected to the input end of the air pump through a pipeline, and the output end of the air pump outputs through a pipeline.
[0015] Further, a sealing strip is arranged at the bottom of the sealed housing.
[0016] A mosquito-catching device includes the above-mentioned carbon dioxide enrichment device, and further includes a base, and the carbon dioxide enrichment device is installed on the base through a bracket; a power grid device and an ultraviolet lamp are arranged below the carbon dioxide enrichment device; the conveying unit conveys the carbon dioxide generated by the enrichment unit to the power grid device; mosquitoes are attracted by the ultraviolet lamp and carbon dioxide together.
[0017] Further, a protective cover is further arranged above the base, and both the power grid device and the ultraviolet lamp are located inside the protective cover.
[0018] Further, an outer shell is further arranged outside the carbon dioxide enrichment device, and a plurality of ventilation openings are formed in the outer shell.
[0019] Compared with the prior art, the beneficial effects of the present utility model are:
[0020] 1. A carbon dioxide enrichment device, comprising: an enrichment unit and a delivery unit, wherein the delivery unit is used to output the carbon dioxide generated by the enrichment unit; the enrichment unit includes: a sealed base and a sealed outer shell, and the sealed outer shell is installed above the sealed base through a lifting device; by lifting the sealed outer shell, a sealed space can be formed between the sealed outer shell and the sealed base; a material storage box is further arranged on the sealed base and within the sealed space, and an adsorption material for adsorbing carbon dioxide is stored in the material storage box; a release device is further arranged in the material storage box for releasing the carbon dioxide adsorbed on the adsorption material; the sealed space formed by the up and down movement of the sealed outer shell can increase the residence time of air in the enrichment device, thereby increasing the carbon contact time between the two, enabling the enrichment material to fully contact with carbon dioxide.
[0021] 2. A mosquito trapping device that simultaneously uses an ultraviolet lamp and carbon dioxide to attract mosquitoes, with stronger attraction and greater temptation for mosquitoes, thereby improving the mosquito control effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a schematic structural diagram of a carbon dioxide enrichment device;
[0023] Figure 2 It is a schematic structural diagram of a carbon dioxide enrichment device after removing the sealed outer shell;
[0024] Figure 3 It is a schematic structural diagram of a carbon dioxide enrichment device after removing the sealed outer shell and the material storage box;
[0025] Figure 4 It is an internal schematic diagram of the sealed base;
[0026] Figure 5 It is a schematic structural diagram of a mosquito trapping device.
[0027] Reference numerals: 1 - sealed base, 2 - sealed outer shell, 3 - material storage box, 4 - driving lead screw, 5 - nut, 6 - driving motor, 7 - guide rod, 8 - heating plate, 9 - heating plate bracket, 10 - air pump, 11 - lifting platform, 12 - base, 13 - power grid device, 14 - ultraviolet lamp, 15 - protective cover, 16 - outer shell, 17 - ventilation port, 18 - sealing strip, 19 - air outlet. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] It should be noted that relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising a..." does not exclude the presence of additional identical elements in the process, method, article or device comprising said element.
[0029] The features and performance of the present utility model will be further described in detail below in conjunction with embodiments.
[0030] Embodiment 1
[0031] Please refer to Figures 1-4 , a carbon dioxide enrichment device, comprising:
[0032] an enrichment unit and a conveying unit, wherein the conveying unit is used to output the carbon dioxide generated by the enrichment unit;
[0033] The enrichment unit includes: a sealed base 1, a sealed outer shell 2 and a material storage box 3. The sealed outer shell 2 is installed above the sealed base 1 through a lifting device; by lifting the sealed outer shell 2, a sealed space can be formed between the sealed outer shell 2 and the sealed base 1; a material storage box 3 is also arranged on the sealed base 1 and within the sealed space, and an adsorption material for adsorbing carbon dioxide is stored in the material storage box 3; a release device is also arranged in the material storage box 3 for releasing the carbon dioxide adsorbed on the adsorption material.
[0034] That is, during use, first lift the sealed outer shell 2 through the lifting device to ensure that air enters the sealed outer shell 2, and then lower the sealed outer shell 2 through the lifting device to form a sealed space, so that the air can fully contact the adsorption material in the sealed space to enhance the separation effect; when carbon dioxide is needed, the carbon dioxide adsorbed on the adsorption material can be released through the release device.
[0035] In this embodiment, specifically, the lifting device includes: a lifting platform 11, a transmission lead screw 4, a nut 5 and a transmission motor 6; the sealed outer shell 2 is installed on the lifting platform 11, and a nut 5 is arranged on one side of the lifting platform 11; the transmission lead screw 4 is vertically installed on one side of the sealed base 1, and the transmission motor 6 is used to drive the transmission lead screw 4 to rotate; the thread of the nut 5 is matched with the thread of the transmission lead screw 4, and the lifting of the sealed outer shell 2 is controlled by the rotation of the lead screw.
[0036] In this embodiment, specifically, the lifting device further includes: a guiding structure that plays a guiding role during the lifting process of the sealed housing 2; preferably, the guiding structure is guiding rods 7 arranged on both sides of the transmission screw rod 4, and guiding rings that cooperate with the guiding rods 7 are arranged on the sealed housing 2; that is, through this guiding structure, it is ensured that the sealed housing 2 can move up and down smoothly.
[0037] In this embodiment, specifically, the releasing device is a heating plate 8, and the heating plate 8 is installed on the material storage box 3 through a heating plate bracket 9; that is, the adsorption material is heated by the heating plate 8, so that carbon dioxide adsorbed on the adsorption material is produced.
[0038] In this embodiment, specifically, the conveying unit is an air pump 10; the air pump 10 is arranged inside the sealed base 1, an air outlet 19 is arranged on the sealed base 1 and within the sealed space, the air outlet 19 is connected to the input end of the air pump 10 through a pipeline, and the output end of the air pump 10 outputs through a pipeline; that is, when carbon dioxide is produced, the produced carbon dioxide can be output through the air pump 10 for utilization.
[0039] In this embodiment, specifically, a sealing strip 18 is arranged at the bottom of the sealed housing 2.
[0040] Embodiment Two
[0041] Please refer to Figures 1-5 , a mosquito-catching device is also proposed based on the carbon dioxide enrichment device proposed in Embodiment One, and it specifically includes: a base 12, and the carbon dioxide enrichment device is installed on the base 12 through a bracket; a power grid device 13 and an ultraviolet lamp 14 are arranged below the carbon dioxide enrichment device; the conveying unit conveys the carbon dioxide generated by the enrichment unit to the power grid device 13; that is, mosquitoes are attracted by the ultraviolet lamp 14 and carbon dioxide together, and then the mosquitoes are killed by the power grid device 13.
[0042] In this embodiment, specifically, a protective cover 15 is further arranged above the base 12, and both the power grid device 13 and the ultraviolet lamp 14 are located inside the protective cover 15; through the protective cover 15, the safety of this mosquito-catching device is improved, and it is avoided that people accidentally touch the power grid device 13 and cause harm to the human body.
[0043] In this embodiment, specifically, an outer shell 16 is further arranged outside the carbon dioxide enrichment device, and a plurality of ventilation openings 17 are opened on the outer shell 16; that is, air can enter and exit through the ventilation openings 17; it should be noted that corresponding fans can also be arranged to accelerate the entry and exit of air.
[0044] In this embodiment, it should also be noted that a corresponding control module can be set to control devices such as the drive motor 6, the air pump 10, the power grid device 13, and the ultraviolet lamp 14 through the control module. At the same time, corresponding sensors, such as a carbon dioxide sensor, can be set in the sealed housing 2 to detect the carbon dioxide concentration in the sealed space and control the operation of devices such as the drive motor 6 and the air pump 10 according to the detection results.
[0045] It should be noted that the working principle of a mosquito-catching device proposed in this embodiment is as follows:
[0046] I. Working process of the carbon dioxide enrichment device
[0047] 1) Collect carbon dioxide: The sealed housing 2 rises to collect carbon dioxide for 120 minutes continuously.
[0048] 2) Heating: The sealed housing 2 descends (i.e., in the closed state) to form a sealed space, and then the heating plate 8 starts to heat for 30 minutes continuously.
[0049] 3) Release carbon dioxide: The sealed housing 2 remains in the closed state, the heating plate 8 continues to heat, the air pump 10 starts to work (preferably, two air pumps 10 are set in this embodiment, and the two air pumps 10 work alternately, alternating every 2 minutes), and at the same time, the power grid device 13 is started (continuously working for 1 hour after startup). The process of releasing carbon dioxide lasts for 30 minutes.
[0050] 4) When the day and night change, the carbon dioxide enrichment device starts to work again from collecting carbon dioxide in process 1).
[0051] II. Working modes of the power grid device 13 and the ultraviolet lamp 14
[0052] 1) Ultraviolet lamp 14: The ultraviolet lamp 14 remains off during the day and on at night.
[0053] 2) Power grid device 13: The power grid device 13 remains off during the day and starts to work for one hour when the carbon dioxide enrichment device releases carbon dioxide.
[0054] The power grid device 13 remains on at night to continuously kill mosquitoes.
[0055] The above-described embodiments only represent the specific implementation manners of the present application. The description is relatively specific and detailed, but it should not be construed as a limitation on the protection scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the technical solution of the present application, several deformations and improvements can still be made, and these all belong to the protection scope of the present application.
[0056] This Background of the Invention section is provided to generally present the context of the present utility model. The work of the currently named inventors, to the extent described in this Background of the Invention section, and aspects of the work that are not prior art as of the filing date of this application are neither expressly nor impliedly admitted to be prior art to the present utility model.
Claims
1. A carbon dioxide enrichment device, characterized in that, Comprising: An enrichment unit and a conveying unit, wherein the conveying unit is used to output the carbon dioxide generated by the enrichment unit; The enrichment unit includes a sealed base (1), a sealed housing (2) and a material storage box (3). The sealed housing (2) is installed above the sealed base (1) through a lifting device. By lifting the sealed housing (2), a sealed space can be formed between the sealed housing (2) and the sealed base (1). A material storage box (3) is also provided on the sealed base (1) and within the sealed space, and an adsorption material for adsorbing carbon dioxide is stored in the material storage box (3). A release device is also provided in the material storage box (3) for releasing the carbon dioxide adsorbed on the adsorption material.
2. The carbon dioxide enrichment device according to claim 1, characterized in that, The lifting device includes a lifting platform (11), a transmission lead screw (4), a nut (5) and a transmission motor (6). The sealed housing (2) is installed on the lifting platform (11), and a nut (5) is provided on one side of the lifting platform (11). The transmission lead screw (4) is vertically installed on one side of the sealed base (1), and the transmission motor (6) is used to drive the transmission lead screw (4) to rotate. The thread of the nut (5) is matched with the thread of the transmission lead screw (4), and the lifting of the sealed housing (2) is controlled by the rotation of the lead screw.
3. The carbon dioxide enrichment device according to claim 2, characterized in that, The lifting device further includes a guiding structure, which plays a guiding role during the lifting process of the sealed housing (2).
4. The carbon dioxide enrichment device according to claim 3, characterized in that, The guiding structure is guiding rods (7) arranged on both sides of the transmission lead screw (4), and guiding rings matched with the guiding rods (7) are provided on the sealed housing (2).
5. The carbon dioxide enrichment device according to claim 1, wherein, The release device is a heating plate (8), and the heating plate (8) is installed in the material storage box (3) through a heating plate bracket (9).
6. The carbon dioxide enrichment device according to claim 1, characterized in that, The conveying unit is an air pump (10). The air pump (10) is arranged inside the sealed base (1), and an air outlet (19) is provided on the sealed base (1) and within the sealed space. The air outlet (19) is connected to the input end of the air pump (10) through a pipeline, and the output end of the air pump (10) is output through a pipeline.
7. The carbon dioxide enrichment device according to claim 1, characterized in that, A sealing strip (18) is provided at the bottom of the sealed housing (2).
8. A mosquito-catching device, characterized in that, An apparatus for enriching carbon dioxide according to any one of claims 1-7 further includes a base (12). The carbon dioxide enrichment apparatus is installed on the base (12) through a bracket. A power grid device (13) and an ultraviolet lamp (14) are provided below the carbon dioxide enrichment apparatus. The conveying unit conveys the carbon dioxide generated by the enrichment unit to the power grid device (13). Mosquitoes are attracted by the ultraviolet lamp (14) and carbon dioxide together.
9. The mosquito-catching device according to claim 8, characterized in that, A protective cover (15) is further provided above the base (12), and both the power grid device (13) and the ultraviolet lamp (14) are located within the protective cover (15).
10. A mosquito-catching device according to claim 8, characterized in that, An outer shell (16) is further provided outside the carbon dioxide enrichment apparatus, and a plurality of ventilation openings (17) are provided on the outer shell (16).