Conception of locating and completely cleaning indoor air pollution
A conception of locating and completely cleaning indoor air pollution is provided. A plurality of physical or chemical first devices are disposed to determine characteristics, concentrations and locations of air pollution. A fan, a physical second device or a chemical second device is selected and enabled in accordance with the position closest to the location of the air pollution to generate an airflow. Various mathematical operations and artificial intelligence operations are implemented to improve efficiency of locating the air pollution, draining the air pollution and completely cleaning the air pollution. A wired and wireless network is utilized to optimize efficacy of the physical second device or the chemical second device. The mathematical operations are utilized through the wired and wireless network to maximize effects of the physical second device and the chemical second device for completely cleaning the air pollution.
1 . A method for locating and completely cleaning indoor air pollution, comprising:
providing a plurality of physical first devices or a plurality of chemical first devices disposed in an indoor space to determine a characteristic, a concentration and a location of air pollution, wherein the air pollution occurs at any time and moves in the indoor space at any time; and
selectively enabling a fan, one of a plurality of physical second devices or one of a plurality of chemical second devices, that is closest to the location of the air pollution determined through the plurality physical first devices or the plurality of chemical first devices to generate an airflow, such that particles of the air pollution and molecules of the air pollution are drained to the enabled physical second device or the enabled chemical second device, so as to filter and completely clean the particles of the air pollution and the molecules of the air pollution, wherein the fan, each one the plurality of physical second devices and each one of the plurality chemical second devices are located separately in different enclosures;
wherein mathematical operations and artificial intelligence operations are implemented to improve efficiency of locating the air pollution, draining the air pollution and completely cleaning the air pollution, wherein a wired and wireless network is utilized to optimize efficacy of the enabled physical second device or the enabled chemical second device for locating the air pollution, draining the air pollution and completely cleaning the air pollution, wherein the mathematical operations are utilized through the wired and wireless network to maximize effects of the enabled physical second device and the enabled chemical second device for completely cleaning the air pollution,
wherein the physical first device or the chemical first device is a gas detection device, wherein the characteristic, the concentration and the location of the air pollution are detected to determine the air pollution data through the plurality of gas detection devices, wherein the air pollution data detected in the indoor space are received and compared by the plurality of gas detection devices, then the air pollution data are intelligently calculated to determine the characteristic and the concentration of the air pollution, and the highest one of the air pollution data is intelligently calculated to determine the location of the air pollution in the indoor space, wherein a controlling instruction is intelligently and selectively issued to enable the fan, the physical second device or the chemical second device that is closest to the location of the air pollution first, and then the controlling instruction is intelligently and selectively issued to enable all of other fan(s), rest of the plurality of physical second device(s) and rest of the plurality of chemical second device(s), so as to guide the airflow toward a direction, whereby the flow of the air pollution is accelerated to drain by the airflow toward the physical second device or the chemical second device that is closest to the location of the air pollution for filtering and completely cleaning so as to filter and completely clean the air pollution in the indoor space to form a clean and safe breathing air state.
2 . The method for locating and completely cleaning indoor air pollution according to claim 1 , wherein the air pollution is at least one selected from the group consisting of suspended particulate matter, carbon monoxide, carbon dioxide, ozone, sulfur dioxide, nitrogen dioxide, lead, total volatile organic compounds (TVOC), formaldehyde, bacteria, fungi, virus and a combination thereof.
3 . The method for locating and completely cleaning indoor air pollution according to claim 1 , wherein the gas detection device comprises a controlling circuit board, a gas detection main part, a microprocessor and a communicator, and the gas detection main part, the microprocessor and the communicator are integrally packaged on the controlling circuit board and electrically connected to the controlling circuit board, wherein the microprocessor controls the detection of the gas detection main part, the gas detection main part detects the air pollution and outputs a detection signal, and the microprocessor receives and processes the detection signal to generate air pollution data, and provides the air pollution data to the communicator for a wireless communication transmission externally.
4 . The method for locating and completely cleaning indoor air pollution according to claim 3 , wherein the wireless communication transmission is one selected from the group consisting of a Wi-Fi communication transmission, a Bluetooth communication transmission, a radio frequency identification communication transmission and a near field communication (NFC) transmission.
5 . The method for locating and completely cleaning indoor air pollution according to claim 3 , wherein the gas detection main part comprises:
a base comprising:
a first surface;
a second surface opposite to the first surface;
a laser loading region hollowed out from the first surface to the second surface;
a gas-inlet groove concavely formed from the second surface and disposed adjacent to the laser loading region, wherein the gas-inlet groove comprises a gas-inlet and two lateral walls, the gas-inlet is in communication with an environment outside the base, and a transparent window is opened on the two lateral walls and is in communication with the laser loading region;
a gas-guiding-component loading region concavely formed from the second surface and in communication with the gas-inlet groove, wherein a ventilation hole penetrates a bottom surface of the gas-guiding-component loading region; and
a gas-outlet groove concavely formed from the first surface, spatially corresponding to the bottom surface of the gas-guiding-component loading region, and hollowed out from the first surface to the second surface in a region where the first surface is not aligned with the gas-guiding-component loading region, wherein the gas-outlet groove is in communication with the ventilation hole, and a gas-outlet is disposed in the gas-outlet groove;
a piezoelectric actuator accommodated in the gas-guiding-component loading region;
a driving circuit board covering and attached to the second surface of the base;
a laser component positioned and disposed on the driving circuit board, electrically connected to the driving circuit board, and accommodated in the laser loading region, wherein a light beam path emitted from the laser component passes through the transparent window and extends in a direction perpendicular to the gas-inlet groove, thereby forming an orthogonal direction with the gas-inlet groove;
a particulate sensor positioned and disposed on the driving circuit board, electrically connected to the driving circuit board, and disposed at an orthogonal position where the gas-inlet groove intersects the light beam path of the laser component in the orthogonal direction, so that suspended particles of the air pollution source passing through the gas-inlet groove and irradiated by a projecting light beam emitted from the laser component are detected;
a gas sensor positioned and disposed on the driving circuit board, electrically connected to the driving circuit board, and accommodated in the gas-outlet groove, so as to detect the air pollution source introduced into the gas-outlet groove; and
an outer cover covering the base and comprising a side plate, wherein the side plate has an inlet opening and an outlet opening, the inlet opening is spatially corresponding to the gas-inlet of the base, and the outlet opening is spatially corresponding to the gas-outlet of the base;
wherein the outer cover covers the base, and the driving circuit board covers the second surface, thereby an inlet path is defined by the gas-inlet groove, and an outlet path is defined by the gas-outlet groove, so that the air pollution source is inhaled from the environment outside the base by the piezoelectric actuator, transported into the inlet path defined by the gas-inlet groove through the inlet opening, and passes through the particulate sensor to detect the particle concentration of the suspended particles contained in the air pollution source, and the air pollution source transported through the piezoelectric actuator is transported out of the outlet path defined by the gas-outlet groove through the ventilation hole, passes through the gas sensor for detecting, and then discharged through the outlet opening.
6 . The method for locating and completely cleaning indoor air pollution according to claim 5 , wherein the particulate sensor is used for detecting a suspended particulate information.
7 . The method for locating and completely cleaning indoor air pollution according to claim 5 , wherein the gas sensor comprises a volatile-organic-compound sensor for detecting a gas information of carbon dioxide or total volatile organic compounds.
8 . The method for locating and completely cleaning indoor air pollution according to claim 5 , wherein the gas sensor comprises a formaldehyde sensor for detecting a gas information of formaldehyde.
9 . The method for locating and completely cleaning indoor air pollution according to claim 5 , wherein the gas sensor comprises a bacteria sensor for detecting a gas information of bacteria or fungi.
10 . The method for locating and completely cleaning indoor air pollution according to claim 5 , wherein the gas sensor comprises a virus sensor for detecting a gas information of virus.
11 . The method for locating and completely cleaning indoor air pollution according to claim 1 , wherein the plurality of physical second devices or the plurality of chemical second devices are filtration device.
12 . The method for locating and completely cleaning indoor air pollution according to claim 11 , wherein the filtration device is a blocking and absorbing filter screen to form a physical removal device.
13 . The method for locating and completely cleaning indoor air pollution according to claim 12 , wherein the filter screen is a high efficiency particulate air (HEPA) filter screen.
14 . The method for locating and completely cleaning indoor air pollution according to claim 11 , wherein the filtration device is a filter element coated with a decomposition layer to form a chemical removal device.
15 . The method for locating and completely cleaning indoor air pollution according to claim 14 , wherein the decomposition layer is an activated carbon.
16 . The method for locating and completely cleaning indoor air pollution according to claim 14 , wherein the decomposition layer is a cleansing factor containing chlorine dioxide layer.
17 . The method for locating and completely cleaning indoor air pollution according to claim 14 , wherein the decomposition layer is an herbal protective layer extracted from ginkgo and Japanese Rhus chinensis to form an herbal protective anti-allergic filter.
18 . The method for locating and completely cleaning indoor air pollution according to claim 14 , wherein the decomposition layer is a silver ion.
19 . The method for locating and completely cleaning indoor air pollution according to claim 14 , wherein the decomposition layer is a zeolite.
20 . The method for locating and completely cleaning indoor air pollution according to claim 14 , wherein the filtration device is a filter element combined with a light irradiation element to form a chemical removal device.
21 . The method for locating and completely cleaning indoor air pollution according to claim 20 , wherein the light irradiation element is a photo-catalyst unit comprising a photo catalyst and an ultraviolet lamp.
22 . The method for locating and completely cleaning indoor air pollution according to claim 20 , wherein the light irradiation element is a photo-plasma unit comprising a nanometer irradiation tube.
23 . The method for locating and completely cleaning indoor air pollution according to claim 11 , wherein the filtration device is a filter element combined with a decomposition unit to form a chemical removal device.
24 . The method for locating and completely cleaning indoor air pollution according to claim 23 , wherein the decomposition unit is a negative ion unit.
25 . The method for locating and completely cleaning indoor air pollution according to claim 23 , wherein the decomposition unit is a plasma ion unit.
26 . The method for locating and completely cleaning indoor air pollution according to claim 11 , wherein the gas detection device is connected to the a cloud device through the wired and wireless network to analyze the air pollution data utilizing the mathematical operations through the wired and wireless network to maximize effects of the physical second device and the chemical second device that is closest to the location of the air pollution for completely cleaning the air pollution, wherein the artificial intelligence operations and big data comparison are implemented through the cloud device to find out the location of the air pollution in the indoor space, and the controlling instruction is intelligently and selectively issued through the wired and wireless network and transmitted to drive the fan, the physical filtration device or the chemical filtration device, so as to filter and completely clean the air pollution in the indoor space to form the clean and safe breathing air state.