air purification system

The air purification system addresses the inefficiencies of existing ECS by using HEPA filters and UV light to filter and disinfect air, ensuring cleaner cabin air and reducing disease transmission risks in aircraft.

JP7737243B2Active Publication Date: 2025-09-10THE BOEING CO
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Patent Information

Application Number
JP2021099887
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-06-23
Filing Date
2021-06-16
Publication Date
2025-09-10
Estimated Expiration
2041-06-16

AI Technical Summary

Technical Problem

Existing aircraft environmental control systems (ECS) require significant space and energy, and their recirculation systems may not sufficiently reassure passengers about the cleanliness of the air they breathe, especially in close quarters where airborne diseases can spread.

Method used

An air purification system comprising a filter element and a fan, supported by an aircraft structure, which can be mounted in various locations within the cabin, using HEPA filters, adsorbents, and germicidal UV light to filter and disinfect air before recirculation, with optional internal power sources and control from multiple locations.

Benefits of technology

Enhances air purification in aircraft cabins, providing cleaner air to passengers and reducing the risk of airborne disease transmission by effectively filtering contaminants and pathogens, including bacteria and viruses, with flexible installation options and control methods.

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Abstract

To provide an air cleaning system mounted to an aircraft, such as an airliner.SOLUTION: A filter member includes a plurality of filter modules, and each of the plurality of filter modules includes a frame, a filter element connected to the frame and at least one engaging member. The at least one engaging member of each of the filter modules is configured to selectively engage with at least one engaging member of the other filter module to connect these filter modules in series.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The field of the disclosure relates generally to air purification systems, and more particularly to air purification systems onboard aircraft such as passenger aircraft. [Background technology]

[0002] The main routes of infection for airborne diseases include transmission through inhalation of air in close quarters. To prevent infection and provide peace of mind, measures are in place to disperse passengers in aircraft cabins to ensure distance from other passengers.

[0003] At least some known aircraft environmental control systems (ECS) include a recirculation system that uses a compressor to condition air taken in from outside the aircraft, mixes it with cabin air, and then sends the mixed air back into the passenger cabin. These systems use filters to capture contaminants such as bacteria and viruses before recirculating the air back into the passenger cabin. However, known recirculation systems require a lot of space inside the aircraft and consume a lot of energy when operating. Additionally, existing recirculation systems may not be sufficient to reassure passengers that the air they breathe is clean.

[0004] This section is intended to introduce the reader to various aspects of the art related to various aspects of the present disclosure, which are described and / or claimed below. The statements in this section are intended to provide the reader with background information that may be helpful to understanding the various aspects of the present disclosure. As such, they should be construed in this light, and not as admissions of prior art. Summary of the Invention

[0005] In one aspect, an air purification system for purifying air inside an aircraft is provided, the air purification system comprising an air purification device including a filter element and a fan configured to draw airflow through the filter element, and an aircraft structure configured to support the air purification device.

[0006] In another aspect, an aircraft is provided, the aircraft comprising an air purification system for purifying air within the aircraft, the air purification system including an air purification device including a filter member and a fan configured to draw airflow through the filter member, and the air purification system further comprising an aircraft structure configured to support the air purification device.

[0007] In yet another aspect, a method of cleaning air adjacent to passenger seats on an aircraft is provided, the method including supporting an air cleaning device using an aircraft structure, drawing an air flow into the air cleaning device using a fan, passing the air flow through a filter element of the air cleaning device, and exhausting the air flow adjacent to passengers for breathing in.

[0008] The features associated with the above-described aspects may be modified in various ways. Additionally, additional features may be incorporated into the above-described aspects. Such modifications and additional features may be included individually or in any combination. For example, the various features described in connection with the following exemplary embodiments may be incorporated into any of the above-described aspects, either alone or in combination. [Brief explanation of the drawings]

[0009] [Figure 1] FIG. 1 is a schematic diagram illustrating an example of an air cleaning device. [Figure 2A-C] 2 is a schematic diagram showing an example of a combination of filter elements that can be used in the air purifying device shown in FIG. [Figure 3]FIG. 2 is a schematic diagram showing an example in which an air purification system using the air purification device shown in FIG. 1 is attached to a sidewall member of an aircraft. [Figure 4] FIG. 4 is a schematic diagram showing a second embodiment of an air purification device attached to a sidewall member of an aircraft. [Figure 5] FIG. 2 is a schematic diagram showing an example in which another air purification system using the air purification device shown in FIG. 1 is mounted on the ceiling of an aircraft cabin. [Figure 6] FIG. 2 is a schematic diagram showing an example in which another air purification system using the air purification device shown in FIG. 1 is installed on an aircraft seat. [Figure 7] FIG. 2 is a schematic diagram showing a control and power system of the air purifying device shown in FIG. DETAILED DESCRIPTION OF THE INVENTION

[0010] When the same reference numerals are used throughout the drawings, they represent the same parts. It should be noted that, although particular features of various embodiments may be shown in some drawings and not in others, this is for convenience only. Any illustrated feature may be referenced and / or claimed in combination with features shown in other drawings.

[0011] The air purification system of the present disclosure includes an air purification device located near each passenger. The device may be portable or mounted in a specific location within the aircraft cabin. For example, it may be mounted in the last row of the aircraft to provide an isolation area for sick passengers. The device may filter the air using any combination of a particle filter (e.g., HEPA), an adsorbent, and a germicidal ultraviolet light source. The device may be located in a sidewall assembly, a ceiling panel, an under-seat storage compartment, an empty seat, or a floor panel. In the event of an illness on board the aircraft, the exhaled air is filtered and disinfected by the air purification system before being circulated back into the cabin. The air purification device may be powered by the aircraft system or may have an internal power source. The device may be operated from a control panel located on the flight deck, a crew panel, a passenger in-flight entertainment panel, or the device itself to activate the fan and appropriate filter elements.

[0012] FIG. 1 is a schematic diagram illustrating an example air purification system 100 including an air purification device 101. In this example embodiment, the air purification system 100 includes an inlet 102 for receiving airflow from a source 104 and an outlet 106 for discharging the airflow to a predetermined location 108 (e.g., an enclosed space, a passenger cabin, or a compartment). The air purification system 100 includes a filter assembly 110 and a fan 112 disposed between the inlet 102 and the outlet 106, as described in more detail below. In operation, the fan 112 draws airflow 114 from the source 104 through the filter assembly 110, and then passes through a plenum 116 of the air purification system 100 before discharging the airflow 114 to the location 108. More specifically, the airflow 114 passes through the filter member 110 before being discharged toward the discharge destination 108, thereby removing contaminants from the air drawn into the air purification system 100 from the inlet source 104. The contaminants may be solid particulate matter such as dust, pollen, bacteria, and viruses, or gaseous matter. The filter member 110 may include any number of filter elements to enable the air purification system 100 to perform the functions of the present disclosure.

[0013] In certain embodiments, the air purification system 100 is installed onboard, for example, an aircraft (not shown) and is a system independent of the aircraft's environmental control system (ECS). More specifically, the air purification device 101 operates in conjunction with the ECS to further enhance air purification in the passenger cabin or crew area. In such embodiments, the inlet 104 and outlet 108 are the same, e.g., both in the passenger cabin, both in the cockpit, or both in the crew compartment. In addition to being usable on aircraft, the air purification system 100 can be used in any structure with air flow, such as a building, platform, or vehicle. Furthermore, the air purification device 101 can be used in any system where it is desirable to filter contaminants from the air.

[0014] 2A-2C are schematic diagrams illustrating exemplary combinations of filter elements that can be used in the filter member 110 of the air purification device 101. Examples of filter elements that can be included in the filter member 110 include, but are not limited to, high-efficiency particulate air (HEPA) filters, adsorbent filters, and functional filtering elements, such as regenerative heating elements, ultraviolet light emitting elements, and / or ozone conversion elements. Particulate filters function to remove particulate contaminants from the airflow 114 (see FIG. 1). More specifically, a "high particle-retention" HEPA filter is one that captures bacteria and viruses with greater than 99% efficiency (Mil Std 282 standard). A HEPA filter with a minimum capture efficiency of 99.97% for particles with a diameter of 0.3 μm will remove essentially all pathogens and particulate matter from the airflow passing through it.

[0015] The adsorptive filter media, such as, but not limited to, activated carbon, functions to remove gaseous pollutants from the airflow 114. These filters are selectively available on aircraft and can adsorb organic gases not captured by HEPA filters. The regenerative heating element functions to regenerate the adsorptive filter media. The ultraviolet light irradiation element functions to neutralize viruses and bacteria contained in the airflow 114. The ozone conversion element functions as, for example, a catalytic converter to produce oxygen from ozone-rich outside air.

[0016] As shown in Figures 2A to 2C, the multiple filter elements included in the filter member 110 are connected in a predetermined combination or arrangement order based on the type of each filter element. Furthermore, when the filter member 110 includes a particulate filter medium and an adsorbent filter medium, the particulate filter medium is arranged upstream of the adsorbent filter medium. This arrangement allows the particulate filter medium to remove particulate contaminants from the airflow 114, thereby reducing adhesion to the adsorbent filter medium. Similarly, when the filter member 110 includes an adsorbent filter medium and a regenerative heating element, the regenerative heating element is arranged upstream of the adsorbent filter medium. This arrangement heats the airflow 114 before it passes through the adsorbent filter medium, thereby promoting regeneration of the adsorbent contained in the adsorbent filter medium.

[0017] 2A, by way of example only, a first combination filter element 120 includes a first HEPA module 122 and a second HEPA module 124 connected in a predetermined order. In some embodiments, the first HEPA module 122 and the second HEPA module 124 have different filtering functions, thereby improving the filtering efficiency of the filter element as a whole.

[0018] 2B, the second combination of filter elements 126 includes a HEPA module 128 and an adsorption module 130 connected in a predetermined order. A regeneration unit 132 (shown by a dotted line) is optionally disposed between the HEPA module 128 and the adsorption module 130.

[0019] Referring to FIG. 2C, a third combination of filter members 134 includes a HEPA module 136 and an ultraviolet light unit 138 connected in a predetermined arrangement order.

[0020] 2A-2C are for illustrative purposes only, and filter member 110 can have any configuration, including different filter elements, multiple filter elements of the same type, or only one of the filter elements described above. For example, while each combination of filter members in FIGS. 2A-2C includes multiple filter elements, filter member 110 may also include only one of the filter elements described.

[0021] FIG. 3 is a schematic diagram showing an example in which an air purification system 100 using an air purification device 101 is mounted on a sidewall member 140 of an aircraft 142. The sidewall member 140 includes a sidewall 144 and a window 146. The sidewall 144 is provided with an inlet and an outlet corresponding to the inlet 102 and outlet 106 of the air flow 114, enabling operation of the air purification device 101. The air purification device 101 is attached to the sidewall 144, with the inlet 102 located at a low position near the feet of passengers and the outlet 106 located near the window 146. With this configuration, the air flow 114 is taken in from the inlet source 104, which does not contain freshly exhaled air, and is discharged from the outlet 106 to the outlet 108, which is located toward the faces of passengers. Therefore, air from which pollutants have been filtered is supplied to passengers.

[0022] FIG. 4 is a schematic diagram illustrating an example of a second air purification system 100a using an air purification device 101a mounted on a sidewall member 140 of an aircraft 142. In this exemplary embodiment, the air purification device 101a includes the same components as the air purification device 101, but has a different configuration. Unlike the L-shaped plenum portion 116, the plenum portion 116a of the air purification device 101a does not include a path in which the air flow 114 bends at a 90-degree angle. Furthermore, the air purification device 101a may include a different filter element than the device 101, and a corresponding change in configuration may be necessary. The sidewall 144 is provided with an inlet and an outlet corresponding to the inlet 102a and outlet 106a of the air flow 114, enabling operation of the air purification device 101a. The air purifying device 101a is attached to a side wall 144, with the inlet 102a located at a low position near the feet of passengers and the outlet 106a located near a window 146. With this configuration, the air flow 114 is taken in from the inlet 104, which does not contain freshly exhaled air, and the outlet 108 is located at a position where the air flow 114 discharged from the outlet 106a flows toward the faces of passengers. Therefore, air from which pollutants have been filtered is supplied to the passengers.

[0023] FIG. 5 is a schematic diagram showing an example in which an air purification system 100b using an air purification device 101 is mounted on a ceiling member 148 of a cabin of an aircraft 142. In the illustrated embodiment, the cabin ceiling member 148 includes a ceiling panel 150, a pair of opposing storage compartments 152, and an air distribution duct 154 of the ECS. The ceiling panel 150 is provided with an inlet and an outlet corresponding to the inlet 102 and outlet 106 of the air flow 114, enabling operation of the air purification device 101. The air purification device 101 is attached to the ceiling panel 150 so that the inlet 102 is located near the aisle 156 and the outlet 106 is located near the storage compartment 152. With this configuration, the air flow 114 is taken in from the inlet source 104, which does not contain recently exhaled air, and the outlet 108 is positioned so that the air flow 114 discharged from the outlet 106 flows toward the faces of passengers. Thus, passengers are supplied with freshly filtered air of contaminants.

[0024] FIG. 6 is a schematic diagram illustrating an example of an air purification system 100c using an air purification device 101 mounted on a seat 156 of an aircraft 142. In one embodiment, the aircraft 142 includes multiple air purification devices 101, which can be installed in any location, such as any combination of the systems 100, 100a, 100b, and 100c shown in FIGS. 3-6. In the embodiment shown in FIG. 6, the air purification device 101 is installed in a rack 158 below the seat 156. As an alternative or combination to the above configuration, the air purification device 101 (shown in dotted lines as an optional configuration) is installed under a floor panel 160 of the aircraft 142. As an alternative or combination to the above configuration, the air purification device 101 is installed in an empty seat 156 located next to or behind any seat. In general, the air purification device 101 may be installed anywhere on the aircraft 142, provided that the systems 100, 100a, 100b, and 100c are operable as described herein. Additionally, the air purification device 101 is portable, allowing the air purification device 101 to be installed anywhere on the aircraft 124.

[0025] As shown in FIG. 6 , the air purification system 100c includes an elongated tube 162 fluidly connected to the air outlet 106 and a mask 164 fluidly connected to the tube 162. In operation, a passenger removes the mask 164 from a stowed position (not shown) and places it on their face, covering their nose and mouth. With this configuration, airflow 114 is taken in from the inlet 104 under the seat 156, which does not contain freshly exhaled air. Furthermore, because the outlet 108 is the mask 164, the airflow 114 discharged from the air outlet 106 is directly supplied to the passenger through the tube 162. Thus, passengers receive a supply of air that has been freshly filtered to remove contaminants and are not exposed to unfiltered air in the aircraft cabin.

[0026] 7 is a schematic diagram illustrating the control and power system of the air purification device 101. In one embodiment, the air purification device 101 includes an internal power source 166, such as a battery, that provides power to the fan 112 and the filter element 110 as needed. For example, if the filter element 110 includes a regeneration unit or an ultraviolet light unit, the internal power source 166 provides power for the operation of the unit. Alternatively, or in combination with the above configuration, the air purification device 101 may be configured to be electrically connected to an external power source 168. In such an embodiment, the air purification device 101 may be connected to a power outlet (not shown) provided on the aircraft 142. In general, the air purification device 101 may be provided with power in any manner to perform the operations described herein.

[0027] In one embodiment, operation of the air cleaning device 101 is suitably controlled by the pilot or co-pilot from the flight deck 170. Alternatively, or in combination with the above configuration, operation of the air cleaning device 101 is suitably controlled from a crew panel 172 inside the aircraft cabin. Alternatively, or in combination with the above configuration, operation of the air cleaning device 101 can be controlled by a passenger, for example, from an in-flight entertainment panel 174. Generally, operation of the air cleaning device 101 is controlled from any location where an operator can control the air cleaning device 101 to activate the fan 112 or the appropriate filter element of the filter member. Because the aircraft 124 includes multiple air cleaning devices 101, in embodiments where the air cleaning devices 101 are controlled from the flight deck 170 or a crew panel, each air cleaning device can be individually controlled by the pilot or crew.

[0028] The air purification system of the present disclosure includes an air purification device located near each passenger. The device may be portable or mounted in a specific location in the aircraft cabin, such as the last row of the aircraft to provide an isolation area for sick passengers. The device can filter air using any combination of a particle filter (e.g., HEPA), an adsorbent, and a germicidal ultraviolet light source. The device may be located in a sidewall member, a ceiling panel, an under-seat storage compartment, an empty seat, or a floor panel. In the event of an illness on board an aircraft, the exhaled breath of the sick passenger is filtered and disinfected by the air purification system before being circulated back into the cabin. The air purification device may be powered by the aircraft system or may have an internal power source. The device can be operated from a control panel located on the flight deck, a crew panel, a passenger in-flight entertainment panel, or the device itself to activate the fan and appropriate filter elements. The air purification device can be used to isolate passengers from other passengers and effectively prevent the spread of infectious diseases. For example, this is useful for isolating seats farther back in an aircraft, or crew or flight attendant rest areas within an aircraft.

[0029] The systems and methods of the present disclosure are not limited to the specific embodiments described herein, and the components of the systems and / or steps of the methods may be used independently and separately from other components and / or steps described herein.

[0030] It should be noted that although particular features of various embodiments may be shown in some drawings and not in others, this is for reasons of convenience only, and in accordance with the principles of the present disclosure, any illustrated feature may be referenced and / or claimed in combination with features shown in other drawings.

[0031] In this specification, the use of an element or step in the singular does not necessarily exclude a plurality of elements or steps unless specifically stated otherwise. In addition, references to "one embodiment" or "exemplary embodiment" of the present invention do not intend to exclude the existence of other embodiments that incorporate features recited in the embodiment.

[0032] This description uses examples to disclose various embodiments, including the best mode, and also enables those skilled in the art to practice various embodiments, including making and using any devices or systems, and performing the incorporated methods. The patentable scope of this disclosure is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples should be considered within the scope of the claims if they contain elements that do not differ from the literal language of the claims, or if they contain equivalent elements that have only insubstantial differences from the literal language of the claims.

Claims

1. 1. An air purification system for purifying the air inside an aircraft, comprising: An air purification device including a filter element including at least an adsorbent filter material and a regeneration heating element that regenerates the adsorbent filter material, and a fan configured to draw an air flow through the filter element; an aircraft structure configured to support the air cleaning device; An air purification system, wherein at least a portion of the air purification device is mounted in a rack under a passenger seat, and the air purification device is operable via an in-flight entertainment panel.

2. The air cleaning system of claim 1 , wherein the aircraft structure includes at least one of a sidewall member, a ceiling panel, the passenger seat, and a floor panel.

3. The air purification system according to claim 1 or 2, wherein the air purification device is a portable type that can be moved within the cabin of the aircraft.

4. 4. The air purification system according to claim 1, wherein the air purification device is remotely controlled from at least one of a flight deck and a crew panel.

5. The air purification system according to any one of claims 1 to 4, wherein the air purification device includes an internal power supply.

6. The air purification system according to any one of claims 1 to 5, wherein the air purification device receives power from the aircraft.

7. 7. The air purification system of claim 1, wherein the air purification device includes an inlet positioned away from exhaled air and an outlet positioned to deliver filtered air toward the passenger's face.

8. The air purification system according to any one of claims 1 to 7, wherein the filter member includes at least one of a particle filter, an adsorbent, and an ultraviolet light source.

9. The air purification system according to any one of claims 1 to 8, further comprising a tube and a mask connected in fluid communication with the air outlet of the air purification device, for directly supplying sterilized air to a passenger.

10. 10. The air purification system of claim 1, wherein the air purification device is configured to sterilize air that is inhaled by passengers.

11. The air purification system according to any one of claims 1 to 10, wherein the air purification device is configured to sterilize air exhaled by a passenger.

12. The air purification system of any one of claims 1 to 11, wherein the air purification device is configured to remove gaseous compounds.

13. An aircraft, an air purification system for purifying the air inside the aircraft, the air purification system comprising: An air purification device including a filter element including at least an adsorbent filter material and a regeneration heating element that regenerates the adsorbent filter material, and a fan configured to draw an air flow through the filter element; an aircraft structure configured to support the air cleaning device, At least a portion of the air cleaning device is mounted in a rack under a passenger seat, and the air cleaning device is operable via an in-flight entertainment panel.

14. 1. A method for purifying air adjacent to passenger seats in an aircraft, comprising: supporting the air cleaning device using an aircraft structure; using a fan to draw airflow through the air cleaning device; passing the air flow through a filter member of the air cleaning device; and discharging the airflow adjacent to a passenger so that the airflow can be inhaled. At least a portion of the air purification device is mounted in a rack under a passenger seat, and the air purification device is operable via an in-flight entertainment panel; The method, wherein the filter element includes at least an adsorbent filter medium and a regenerative heating element for regenerating the adsorbent filter medium.

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