Indoor air cleaning system
Abstract
An indoor air cleaning system is disclosed and includes gas detection modules, an air cleaning device, and a central control and regulation device. The gas detection module includes a microcontroller and a central control communication interface component. The microcontroller processes air pollution data and outputs regulation signals. The air cleaning device includes a fan, a filtering element and a driving control component. The central control and regulation device communicates through wired or wireless communication, providing control commands to the gas detection modules. The central control and regulation device controls the fan to guide the air pollution through the filtering element, and the indoor air quality is maintained based on the output pollution data. Consequently, the gas state reaches the air pollution data targeted by the gas detection modules based on the PM2.5 particle count accumulated in 24 hours, so as to meet a clean room requirement of ZAPClean Room 1˜9.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An indoor air cleaning system, comprising:
a plurality of gas detection modules for detecting air pollution and outputting air pollution data, which are calculated and processed to output a plurality of regulation signals; a plurality of air cleaning devices disposed in an indoor field, and each comprising a fan, a filtering element and a driving control component, wherein the plurality of gas detection modules are disposed within the plurality of air cleaning devices, and electrically connected to the fan and the driving control component, wherein the driving control component regulates an activation operation, airflow volume and noise of the fan according to the plurality of regulation signals received, and the fan is controlled to start guiding the air pollution passing through the filtering element for filtration; and at least one central control and regulation device connected to the plurality of gas detection modules, wherein the at least one central control and regulation device is connected under handshake communication protocol of wired communication or wireless communication to provide control instruction signals to the plurality of gas detection modules for regulating operations of the fans of the plurality of air cleaning devices, and the at least one central control and regulation device receives the air pollution data detected by the plurality of gas detection modules for displaying in real time; wherein a gas state of the air pollution in the indoor reaches the air pollution data, which is targeted by the plurality of the gas detection modules based on a cumulative number of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space for one of the plurality of air cleaning devices, so as to meet a clean room requirement of ZAPClean Room 1˜9.
2 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 500,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 0.7 pings (equal to 2.4 square meters, 25.6 square feet) for one air cleaning device, and include detection of suspended particulate matter PM 2.5≤0.02 μg/m 3 , detection of suspended particulate matter PM 10≤0.03 μg/m 3 , detection of bacteria and fungi≤2 CFU/m 3 , detection of formaldehyde≤0.032 ppm, detection of volatile organic compounds (TVOC)≤0.24 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤4 ppm, detection of ozone≤0.020 ppm, detection of methane≤9 ppm, detection of toluene≤43 ppm, detection of nitric oxide and nitrogen dioxide≤0.043 ppm, detection of sulfur dioxide≤0.032 ppm, detection of radon≤40 Bq/m 3 , detection of ammonia≤9 ppm, detection of chlorine≤0.43 ppm, detection of hydrogen cyanide≤4 ppm, detection of hydrogen sulfide≤4 ppm, detection of bromopropane≤0.04 ppm, detect acetaldehyde≤40 ppm, detection of mercury and its compounds≤0.004 mg/m 3 , detection of dioxin≤0.43 ng-TEQ/Nm 3 , detection of acrolein≤0.04 ppm, detection of dichloropropane≤30 ppm, detection of dichloromethane≤19 ppm, detection of acrylonitrile≤0.86 ppm, detection of 1,3-dichloropropene≤0.43 ppm, detection of nickel compounds≤0.43 mg/m 3 , detection of organic arsenic compounds≤0.22 ppm, detection of dichloroethylene≤84 ppm, detection of polychlorinated biphenyls≤0.004 mg/m3, detection of benzene≤0.43 ppm, detect ethylene oxide≤0.43 ppm, detection of polycyclic organic matter≤0.43 ppm, detection of beryllium and its compounds≤0.0009 mg/m 3 , detection of quinoline≤0.0004 ppm, detection of 1,3-butadiene≤2.15 ppm, detection of hexachlorobenzene≤0.43 ppm, detection of 1,1,2,2-tetrachloroethane≤0.43 ppm, detection of cadmium and its compounds≤0.022 mg/m 3 , detection of hydrazine≤0.04 ppm, detection of tetrachlorethylene≤19 ppm, detection of chloroform≤2 ppm, detection of lead and its inorganic compounds≤0.022 mg/m 3 , detection of trichlorethylene≤19 ppm, detection of chromium compounds≤0.22 mg/m 3 , detection of manganese and its inorganic compounds≤2.15 mg/m 3 , and detection of vinyl chloride≤0.43 ppm, for meeting the clean room requirement of ZAPClean Room 1.
3 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 1,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 1 ping (equal to 3.4 square meters, 36.6 square feet) for one air cleaning device, and include detection of suspended particulates PM 2.5≤0.04 μg/m 3 , detection of suspended particulates PM 10≤0.06 μg/m 3 , detection of bacteria and fungi≤5 CFU/m 3 , detection of formaldehyde≤0.038 ppm, detection of volatile organic compounds (TVOC)≤0.27 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤4 ppm, detection of ozone≤0.025 ppm, detection of methane≤10 ppm, detection of toluene≤48 ppm, detection of nitric oxide and nitrogen dioxide≤0.048 ppm, detection of sulfur dioxide≤0.036 ppm, detection of radon≤45 Bq/m 3 , detection of ammonia≤9 ppm, detection of chlorine≤0.48 ppm, detection of hydrogen cyanide≤5 ppm, detection of hydrogen sulfide≤5 ppm, detection of bromopropane≤0.05 ppm, detect acetaldehyde≤45 ppm, detect mercury and its compounds≤0.005 mg (mg/m 3 ), detection of dioxin≤0.48 ng-TEQ/Nm 3 , detection of acrolein≤0.05 ppm, detection of dichloropropane≤34 ppm, detection of dichloromethane≤22 ppm, detection of acrylonitrile≤0.96 ppm, detection of 1,3-dichloropropene≤0.48 ppm, detection of nickel compounds≤0.48 mg/m 3 , detection of organic arsenic compounds≤0.24 ppm, detection of dichloroethylene≤94 ppm, detection of polychlorinated biphenyls≤0.005 mg/m 3 , detection of benzene≤0.48 ppm, detection of ethylene oxide≤0.48 ppm, detection of polycyclic organic matter≤0.48 ppm, detection of beryllium and its compound≤0.0010 mg/m 3 , detection of quinoline≤0.0005 ppm, detection of 1,3-butadiene≤2.39 ppm, detection of hexachlorobenzene≤0.48 ppm, detection of 1,1,2,2-tetrachloroethane≤0.48 ppm, detection of cadmium and its compounds≤0.024 mg/m 3 , detection of hydrazine≤0.05 ppm, detection of tetrachlorethylene≤22 ppm, detection of chloroform≤3 ppm, detection of lead and its inorganic compounds≤0.024 mg/m 3 , detection of trichlorethylene≤22 ppm, detection of chromium compounds≤0.24 mg/m 3 , detection of manganese and its inorganic compounds≤2.39 mg/m 3 , detection of vinyl chloride≤0.48 ppm, for meeting the clean room requirement of ZAPClean Room 2.
4 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 2,500,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 1.5 pings (equal to 4.9 square meters, 52.3 square feet) for one air cleaning device, and include detection of suspended particulate matter PM 2.5≤0.11 μg/m 3 , detection of suspended particulate matter PM 10≤0.16 μg/m 3 , detection of bacteria and fungi≤10 CFU/m 3 , detection of formaldehyde≤0.044 ppm, detection of volatile organic compounds (TVOC)≤0.30 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤5 ppm, detection of ozone≤0.030 ppm, detection of methane≤11 ppm, detection of toluene≤53 ppm, detection of nitric oxide and nitrogen dioxide≤0.053 ppm, detection of sulfur dioxide≤0.040 ppm, detection of radon≤51 Bq/m 3 , detection of ammonia≤12 ppm, detection of chlorine≤0.53 ppm, detection of hydrogen cyanide≤5 ppm, detection of hydrogen sulfide≤5 ppm, detection of bromopropane≤0.05 ppm, detection of acetaldehyde≤51 ppm, detection of mercury and its compounds≤0.005 mg/m 3 , detection of dioxin≤0.53 ng-TEQ/Nm 3 , detection of acrolein≤0.05 ppm, detection of dichloropropane≤38 ppm, detection of dichloromethane≤25 ppm, detection of acrylonitrile≤1.06 ppm, detection of 1,3-dichloropropene≤0.53 ppm, detection of nickel compounds≤0.53 mg/m 3 , detection of organic arsenic compounds≤0.27 ppm, detection of dichloroethylene≤105 ppm, detection of polychlorinated biphenyls≤0.005 mg/m 3 , detection of benzene≤0.53 ppm, detection of ethylene oxide≤0.53 ppm, detection of polycyclic organic matter≤0.53 ppm, detection of beryllium and its compounds≤0.0011 mg/m 3 , detection of quinoline≤0.0005 ppm, detection of 1,3-butadiene≤2.66 ppm, detection of hexachlorobenzene≤0.53 ppm, detection of 1,1,2,2-tetrachloroethane≤0.53 ppm, detection of cadmium and its compounds≤0.027 mg/m 3 , detection of hydrazine≤0.05 ppm, detection of tetrachlorethylene≤25 ppm, detection of chloroform≤4 ppm, detection of lead and its inorganic compounds≤0.027 mg/m 3 , detection of trichlorethylene≤25 ppm, detection of chromium compounds≤0.27 mg/m 3 , detection of manganese and its inorganic compounds≤2.66 mg/m 3 , detection of vinyl chloride≤0.53 ppm, for meeting the clean room requirement of ZAPClean Room 3.
5 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field A is targeted according to a cumulative number of 5,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 2 pings (equal to 6.9 square meters, 74.7 square feet) for one air cleaning device, and include detection of suspended particulate matter PM 2.5≤0.20 μg/m3, detection of suspended particulate matter PM 10≤0.32 μg/m3, detection of bacteria and fungi≤30 CFU/m 3 , detection of formaldehyde≤0.05 ppm, detection of volatile organic compounds (TVOC)≤0.33 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤5 ppm, detection of ozone≤0.035 ppm, detection of methane≤12 ppm, detection of toluene≤59 ppm, detection of nitric oxide and nitrogen dioxide≤0.059 ppm, detection of sulfur dioxide≤0.044 ppm, detection of radon≤57 Bq/m 3 , detection of ammonia≤14 ppm, detection of chlorine≤0.59 ppm, detection of hydrogen cyanide≤6 ppm, detection of hydrogen sulfide≤6 ppm, detection of bromopropane≤0.06 ppm, detection of acetaldehyde≤57 ppm, detection of mercury and its compounds≤0.006 mg/m 3 , detection of dioxin≤0.59 ng-TEQ/Nm 3 , detection of acrolein≤0.06 ppm, detection of dichloropropane≤43 ppm, detection of dichloromethane≤28 ppm, detection of acrylonitrile≤1.18 ppm, detection of 1,3-dichloropropene≤0.59 ppm, detection of nickel compounds≤0.59 mg/m 3 , detection of organic arsenic compounds≤0.59 ppm, detection of dichloroethylene≤117 ppm, detection of polychlorinated biphenyls≤0.006 mg/m 3 , detection of benzene≤0.59 ppm, detection of ethylene oxide≤0.59 ppm, detection of polycyclic organic matter≤0.59 ppm, detection of beryllium and its compounds≤0.0012 mg/m 3 , detection of quinoline≤0.0006 ppm, detection of 1,3-butadiene≤2.95 ppm, detection of hexachlorobenzene≤0.59 ppm, detection of 1,1,2,2-tetrachloroethane≤0.59 ppm, detection of cadmium and its compounds≤0.030 mg/m 3 , detection of hydrazine≤0.06 ppm, detection of tetrachlorethylene≤28 ppm, detection of chloroform≤5 ppm, detection of lead and its inorganic compounds≤0.030 mg/m 3 , detection of trichlorethylene≤28 ppm, detection of chromium compounds≤0.30 mg/m 3 , detection of manganese and its inorganic compounds≤2.95 mg/m 3 , detection of vinyl chloride≤0.59 ppm, for the clean room requirement of ZAPClean Room 4.
6 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 10,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 3 pings (equal to 9.9 square meters, 106.8 square feet) for one air cleaning device, and include detection of suspended particles PM 2.5≤0.4 μg/m 3 , detection of suspended particles PM 10≤0.64 μg/m 3 , detection of bacteria≤80 CFU/m 3 , detection of fungi≤60 CFU/m 3 , detection of formaldehyde≤0.05 ppm, detection of volatile organic compounds (TVOC)≤0.33 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤5 ppm, detection of ozone≤0.035 ppm, detection of methane≤12 ppm, detection of toluene≤59 ppm, detection of nitric oxide and nitrogen dioxide≤0.059 ppm, detection of sulfur dioxide≤0.059 ppm, detection of radon≤64 Bq/m 3 , detection of ammonia≤16 ppm, detection of chlorine≤0.66 ppm, detection of hydrogen cyanide detection≤7 ppm, detection of hydrogen sulfide detection≤7 ppm, detection of bromopropane≤0.07 ppm, detection of acetaldehyde≤64 ppm, detection of mercury and its compounds≤0.007 mg/m 3 , detection of dioxin≤0.66 ng-TEQ/Nm 3 , detection of acrolein≤0.07 ppm, detection of dichloropropane≤48 ppm, detection of methylene chloride≤32 ppm, detection of acrylonitrile≤1.31 ppm, detection of 1,3-dichloropropene≤0.66 ppm, detection of nickel compounds≤0.66 mg/m 3 , detection of organic arsenic compounds≤0.33 ppm, detection of dichloroethylene≤130 ppm, detection of polychlorinated biphenyls≤0.007 mg/m 3 , detection of benzene≤0.66 ppm, detection of ethylene oxide≤0.66 ppm, detection of polycyclic organic matter≤0.66 ppm, detection of beryllium and its compounds≤0.0013 mg/m 3 , detection of quinoline≤0.0007 ppm, detection of 1,3-butadiene≤3.28 ppm, detection of hexachlorobenzene≤0.66 ppm, detection of 1,1,2,2-tetrachloroethane≤0.66 ppm, detection of cadmium and its compounds≤0.033 mg/m 3 , detection of hydrazine≤0.07 ppm, detection of tetrachlorethylene≤32 ppm, detection of chloroform≤6 ppm, detection of lead and its inorganic compounds≤0.033 mg/m 3 , detection of trichlorethylene≤32 ppm, detection of chromium compounds≤0.33 mg/m 3 , detection of manganese and its inorganic compounds≤3.28 mg/m 3 , detection of vinyl chloride≤0.66 ppm, for the clean room requirement of ZAPClean Room 5.
7 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 25,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 5 pings (equal to 16.5 square meters, 177.9 square feet) for one air cleaning device, and include detection of suspended particles PM 2.5≤1.0 μg/m 3 , detection of suspended particles PM 10≤1.6 μg/m 3 , detection of bacteria≤200 CFU/m 3 , detection of fungi≤150 CFU/m 3 , detection of formaldehyde≤0.056 ppm, detection of volatile organic compounds (TVOC)≤0.37 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤6 ppm, detection of ozone≤0.040 ppm, detection of methane≤13 ppm, detection of toluene≤66 ppm, detection of nitric oxide and nitrogen dioxide≤0.066 ppm, detection of sulfur dioxide (SO 2 )≤0.049 ppm, detection of radon≤72 Bq/m 3 , detection of ammonia≤18 ppm, detection of chlorine≤0.73 ppm, detection of hydrogen cyanide≤7 ppm, detection of sulfide hydrogen≤7 ppm, detection of bromopropane≤0.07 ppm, detection of acetaldehyde≤72 ppm, detection of mercury and its compounds≤0.007 mg/m 3 , detection of dioxin≤0.73 ng-TEQ/Nm 3 , detection of acrolein≤0.07 ppm, detection of dichloropropane≤54 ppm, detection of dichloromethane≤36 ppm, detection of acrylonitrile≤1.46 ppm, detection of 1,3-dichloropropene≤0.73 ppm, detection of nickel compounds≤0.73 mg/m 3 , detection of organic arsenic compound≤0.36 ppm, detection of ethylene dichloride≤145 ppm, detection of polychlorinated biphenyls≤0.007 mg/m 3 , detection of benzene≤0.73 ppm, detection of ethylene oxide≤0.73 ppm, detection of polycyclic organic matter≤0.73 ppm, detection of beryllium and its compounds≤0.0013 mg/m 3 , detection of quinoline≤0.0007 ppm, detection of 1,3-butadiene≤3.65 ppm, detection of hexachlorobenzene≤0.73 ppm, detection of 1,1,2,2-tetrachloroethane≤0.73 ppm, detection of cadmium and its compounds≤0.036 mg/m 3 , detection of hydrazine≤0.07 ppm, detection of tetrachlorethylene≤36 ppm, detection of chloroform≤7 ppm, detection of lead and its inorganic compounds≤0.036 mg/m3, detection of trichlorethylene≤36 ppm, detection of chromium compounds≤0.36 mg/m 3 , detection of manganese and its inorganic compounds≤3.65 mg/m 3 , detection of vinyl chloride≤0.73 ppm, for the clean room requirement of ZAPClean Room 6.
8 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 50,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 7 pings (equal to 23.6 square meters, 254.2 square feet) for one air cleaning device, and include detection of suspended particles PM 2.5≤2.1 μg/m 3 , detection of suspended particles PM 10≤3.2 μg/m 3 , detection of bacteria≤500 CFU/m 3 , detection of fungi≤350 CFU/m 3 , detect formaldehyde≤0.068 ppm, detection of volatile organic compounds (TVOC)≤0.45 ppm, detection of carbon dioxide≤800 ppm, detection of carbon monoxide≤7 ppm, detection of ozone≤0.050 ppm, detection of methane≤16 ppm, detection of toluene≤81 ppm, detection of nitric oxide and nitrogen dioxide≤0.081 ppm, detection of sulfur dioxide≤0.061 ppm, detection of radon≤81 Bq/m 3 , detection of ammonia≤20 ppm, detection of chlorine≤0.81 ppm, detection of hydrogen cyanide≤8 ppm, detection of hydrogen sulfide≤8 ppm, detection of bromopropane≤0.08 ppm, detection of acetaldehyde≤81 ppm, detection of mercury and its compounds≤0.008 mg/m 3 , detection of dioxin≤0.81 ng-TEQ/Nm 3 , detection of acrolein≤0.08 ppm, detection of dichloropropane≤60.75 ppm, detection of methylene chloride≤40.5 ppm, detection of acrylonitrile≤1.62 ppm, detection of 1,3-dichloropropene≤0.81 ppm, detection of nickel compounds≤0.81 mg/m 3 , detection of organic arsenic compound≤0.41 ppm, detection of dichloroethylene≤162 ppm, detection of polychlorinated biphenyls≤0.08 mg/m 3 , detection of benzene≤0.81 ppm, detection of ethylene oxide≤0.81 ppm, detection of polycyclic organic matter≤0.81 ppm, detection of beryllium and its compounds≤0.0016 mg/m 3 , detection of quinoline≤0.0008 ppm, detection of 1,3-butadiene≤4.05 ppm, detection of hexachlorobenzene≤0.81 ppm, detect 1,1,2,2-tetrachloroethane≤0.81 ppm, detection of cadmium and its compounds≤0.041 mg/m 3 , detection of hydrazine≤0.08 ppm, detection of tetrachlorethylene≤40.5 ppm, detection of chloroform≤8.1 ppm, detection of lead and its inorganic compounds≤0.041 mg/m 3 , detection of trichlorethylene≤40.5 ppm, detecting chromium compounds≤0.41 mg/m 3 , detection of manganese and its inorganic compounds≤4.05 mg/m 3 , detection of vinyl chloride≤0.81 ppm, for the clean room requirement of ZAPClean Room 7.
9 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 100,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 10 pings (equal to 33.7 square meters, 363.1 square feet) for one air cleaning device, and include detection of suspended particles PM 2.5≤4.2 μg/m 3 , detection of suspended particles PM 10≤6.4 μg/m 3 , detection of bacteria≤1000 CFU/m 3 , detection of fungi≤750 CFU/m 3 , detection of formaldehyde≤0.08 ppm, detection of volatile organic compounds (TVOC)≤0.56 ppm, detection of carbon dioxide≤1000 ppm, detection of carbon monoxide≤8 ppm, detection of ozone≤0.055 ppm, detection of methane≤18 ppm, detection of toluene≤90 ppm, detection of nitric oxide and nitrogen dioxide≤0.090 ppm, detection of sulfur dioxide (SO 2 )≤0.068 ppm, detection of radon≤90 Bq/m 3 , detection of ammonia≤23 ppm, detection of chlorine≤0.90 ppm, detection of hydrogen cyanide≤9 ppm, detection of sulfide hydrogen≤9 ppm, detection of bromopropane≤0.09 ppm, detection of acetaldehyde≤90 ppm, detection of mercury and its compounds≤0.009 mg/m 3 , detection of dioxin≤0.9 Ong-TEQ/Nm 3 , detection of acrolein≤0.09 ppm, detection of dichloropropane≤67.5 ppm, detection of dichloromethane≤45 ppm, detection of acrylonitrile≤1.80 ppm, detection of 1,3-dichloropropene≤0.90 ppm, detection of nickel compounds≤0.90 mg/m 3 , detection of organic arsenic compounds≤0.45 ppm, detection of dichloroethylene≤180 ppm, detection of polychlorinated biphenyls≤0.009 mg/m3, detection of benzene≤0.90 ppm, detection of ethylene oxide≤0.90 ppm, detection of polycyclic organic compounds≤0.90 ppm, detection of beryllium and its compounds≤0.0018 mg/m 3 , detection of quinoline≤0.0009 ppm, detection of 1,3-butadiene≤4.50 ppm, detection of hexachlorobenzene≤0.90 ppm, detect 1,1,2,2-tetrachloroethane≤0.90 ppm, detection of cadmium and its compounds≤0.045 mg/m 3 , detection of hydrazine≤0.09 ppm, detection of tetrachlorethylene≤45 ppm, detection of chloroform≤9 ppm, detection of lead and its inorganic compounds≤0.045 mg/m 3 , detection of trichlorethylene≤45 ppm, detection of chromium compounds≤0.45 mg/m 3 , detection of manganese and its inorganic compounds≤4.50 mg/m 3 , detection of vinyl chloride≤0.90 ppm, for the clean room requirement of ZAPClean Room 8.
10 . The indoor air cleaning system according to claim 1 , wherein the air pollution data for the gas state of the air pollution in the indoor field is targeted according to a cumulative number of 200,000,000 of PM2.5 inhaled suspended particles detected in 24 hours and a required indoor field space of 15 pings (equal to 48.2 square meters, 518.7 square feet) for one air cleaning device, and include detection of suspended particles PM 2.5≤8.5 μg/m 3 , detection of suspended particles PM 10≤12.7 μg/m 3 , detection of bacteria≤1500 CFU/m 3 , detection of fungi≤1000 CFU/m 3 , detection of formaldehyde≤0.08 ppm, detection of volatile organic compounds (TVOC)≤0.56 ppm, detection of carbon dioxide≤1000 ppm, detection of carbon monoxide≤9 detection of, detect ozone≤0.06 ppm, detection of methane≤20 ppm, detection of toluene≤100 ppm, detection of nitric oxide and nitrogen dioxide≤0.100 ppm, detection of sulfur dioxide≤0.075 ppm, detection of radon≤100 Bq/m 3 , detection of ammonia≤25 ppm, detection of chlorine≤1.00 ppm, detection of hydrogen cyanide≤10 ppm, detection of hydrogen sulfide≤10 ppm, detection of bromopropane≤0.1 ppm, detection of acetaldehyde≤100 ppm, detection of mercury and its compounds≤0.01 mg/m 3 , detection of dioxin≤1 ng-TEQ/Nm 3 , detection of acrolein≤0.1 ppm, detection of dichloropropane≤75 ppm, detection of dichloromethane≤50 ppm, detection of acrylonitrile≤2 ppm, detection of 1,3-dichloropropene≤1 ppm, detection of nickel compounds≤1 mg/m 3 , detection of organic arsenic compounds≤0.5 ppm, detection of dichloroethylene≤200 ppm, detection of polychlorinated biphenyls≤0.01 mg/m 3 , detection of benzene≤1 ppm, detection of ethylene oxide≤1 ppm, detection of polycyclic organic matter≤1 ppm, detection of beryllium and its compounds≤0.002 mg/m 3 , detection of quinoline≤0.001 ppm, detection of 1,3-butadiene≤5 ppm, detection of hexachlorobenzene≤1 ppm, detection of 1,1,2,2-tetrachloroethane≤1 ppm, detection of cadmium and its compounds≤0.05 mg/m 3 , detection of hydrazine≤0.1 ppm, detection of tetrachlorethylene≤50 ppm, detection of chloroform≤10 ppm, detection of lead and its inorganic compounds≤0.05 mg/m 3 , detection of trichlorethylene≤50 ppm, detection of chromium compounds≤0.5 mg/m 3 , detection of manganese and its inorganic compounds≤5 mg/m 3 , detection of vinyl chloride≤1 ppm, for the clean room requirement of ZAPClean Room 9.
11 . The indoor air cleaning system according to claim 1 , further comprising a cloud computing service device, wherein the cloud computing service device receives signals of the air pollution data, which are detected and outputted by the gas detection modules in the plurality of air cleaning devices through wireless communication of a router, and stored to form a database of the air pollution data, wherein the cloud computing service device intelligently computes and compares based on the air pollution data wherein the control command is intelligently selected and issued through wireless communication of the router, transmitted to the gas detection modules in the plurality of air cleaning devices for receiving, then transmitted to the driving control component to regulate the activation operation of the fan, wherein the fan is controlled to start guiding the air pollution passing through the filtering element for filtration, therefore the gas state in the indoor field is cleaned to meet the clean room requirement.
12 . The indoor air cleaning system according to claim 11 , wherein the gas detection modules in the plurality of air cleaning devices are connected to the at least one central control and regulation device through wired communication to receive the signals of the air pollution data, the central control and regulation device transmits the signals of the air pollution data to the router for receiving through wireless communication, and then the signals of the air pollution data are received by the router and transmitted to the cloud computing service device, so as to be stored to form the database of the air pollution data, wherein the cloud computing service device intelligently computes and compares based on the air pollution data, the control command is intelligently selected and issued to the at least one central control and regulation device for communication connection, and then the control command is transmitted by the at least one central control and regulation device to the gas detection modules in the plurality of air cleaning devices through wired communication connection for receiving, and then transmitted to the driving control component to regulate the activation operation of the fan, wherein the fan is controlled to start guiding the air pollution passing through the filtering element for filtration, so that the gas state in the indoor field is cleaned to meet the clean room requirement.
13 . The indoor air cleaning system according to claim 11 , wherein the gas detection modules in the plurality of air cleaning devices are connected to the at least one central control and regulation device under handshake communication protocol of wired communication or wireless communication, wherein when the wireless communication or the wired communication is disconnected, it allows to regulate and select an activation mechanism with the wired communication or the wireless communication that can operate transmission, wherein the cloud computing service device receives the air pollution data through the activation mechanism with the wired communication or the wireless communication that can operate the transmission, intelligently computes and compares based on the air pollution data, and then intelligently selects and issues the control command to be transmitted to the gas detection modules in the plurality of air cleaning devices for receiving under the connection of the activation mechanism with the wired communication or the wireless communication that can operate transmission, and then the control command is transmitted to the driving control component to regulate the activation operation of the fan, wherein the fan is controlled to start guiding the air pollution passing through the filtering element for filtration, so that the gas state in the indoor field is cleaned to meet the clean room requirement.
14 . The indoor air cleaning system according to claim 11 , wherein the gas detection modules in the plurality of air cleaning devices are connected to the at least one central control and regulation device under the handshake communication protocol of the wired communication or the wireless communication, wherein when the wireless communication and the wired communication are both disconnected, it allows to autonomously compute and compare the air pollution data outputted by the gas detection modules based on the air pollution data, and then transmit the control command to the driving control component to regulate the activation operation of the fan, wherein the fan is controlled to start guiding the air pollution passing through the filtering element for filtration, so that the gas state in the indoor field is cleaned to meet the clean room requirement.
15 . The indoor air cleaning system according to claim 11 , further comprising at least one gas detection module disposed in an outdoor field and at least one gas detection module disposed in the indoor field for detecting the air pollution in the outdoor field and the indoor field, wherein the air pollution data detected by the gas detection modules of the outdoor field and the indoor field are the air pollution data of carbon dioxide (CO 2 ), wherein the cloud computing service device receives the air pollution data of the indoor field and the outdoor field for storing to form the database of the air pollution data, and intelligently computes and compares the air pollution data of the indoor field and the outdoor field, wherein when the air pollution data of the indoor field is greater than the air pollution data of the outdoor field, the cloud computing service device issues the control command to be transmitted to the air cleaning device through wireless communication or wired communication, and the air cleaning device is a gas exchanger, wherein the gas exchanger is a fresh air fan, a complete heat exchanger or a combination thereof, wherein the gas detection module in the gas exchanger receives the control command through the wireless communication or the wired communication and transmits the control command to the driving control component to regulate the activation operation of the fan, so that it allows to introduce gas from the outdoor field into the indoor field for ventilation.
16 . The indoor air cleaning system according to claim 11 , wherein the air cleaning device is a circulation filter device, wherein the gas detection module in the circulation filter device transmits the air pollution data externally to the cloud computing service device through wireless communication or wired communication to form a database of the air pollution data, and the cloud computing service device intelligently computes and compares the air pollution data, and intelligently selects and issues the control command to be transmitted to the gas detection module through the wireless communication or the wired communication for receiving, and then the control command is transmitted to the driving control component to regulate the activation operation of the fan of the circulation filter device, wherein the air pollution is guided to pass through the filtering element for filtering and entering space of the indoor field, so that the gas state in the indoor field is cleaned to meet the clean room requirement.
17 . The indoor air cleaning system according to claim 11 , wherein the air cleaning device is a negative pressure exhaust fan or a hood exchanger, which is disposed in a kitchen unit of the indoor field, wherein the gas detection module in the negative pressure exhaust fan or the hood exchanger transmits the air pollution data externally to the cloud computing service device through wireless communication or wired communication to form the database of the air pollution data, and the cloud computing service device intelligently computes and compares the air pollution data, and intelligently selects and issues the control command to be transmitted to the gas detection module through the wireless communication or the wired communication for receiving, and then the control command is transmitted to the driving control component to regulate the activation operation of the negative pressure exhaust fan or the hood exchanger, wherein the air pollution is guided to pass through the filtering element for filtration, and the air pollution in the indoor field is discharged to an outdoor field at an accelerated rate.
18 . The indoor air cleaning system according to claim 11 , wherein the air cleaning device is a bathroom exhaust fan, which is disposed in a bathroom unit of the indoor field, wherein the gas detection module in the bathroom exhaust fan transmits the air pollution data externally to the cloud computing service device through wireless communication or wired communication to form the database of the air pollution data, and the cloud computing service device intelligently computes and compares the air pollution data, and intelligently selects and issues the control command to be transmitted to the gas detection module through the wireless communication or the wired communication for receiving, and then the control command is transmitted to the driving control component to regulate the activation operation of the bathroom exhaust fan, wherein the air pollution is guided to pass through the filtering element for filtration, and the air pollution in the indoor field is discharged to an outdoor field at an accelerated rate, wherein the bathroom unit of the indoor field is allowed to implement a temperature and humidity control, and the temperature and humidity control is implemented to maintain a temperature of 25° C.±3° C. and a humidity of 50%±10% in the indoor field.
19 . The indoor air cleaning system according to claim 1 , wherein the air cleaning device further comprises a relay and a communication interface device, wherein the relay is electrically connected to input an AC voltage outputted by the power conversion component and cooperatively connected to a microcontroller to output the regulation signal, so that the AC voltage is outputted and provided to the driving control component for power control and regulation, wherein the communication interface device is connected to input a required DC voltage outputted by the power conversion component, cooperatively connected to the microcontroller to output the regulation signal, and connected to the driving control component for communication connection and transmission through a communication control line to regulate a wind speed of the fan of the air cleaning device, wherein the air cleaning device further comprises an ultraviolet lamp component, the ultraviolet lamp component comprises a relay, and the relay is connected to input an AC voltage outputted from the power conversion component and cooperatively connected to the microcontroller to output the regulation signal, so that the AC voltage is outputted and provided to a power switch, and the power switch is connected to control starting and regulation of an ultraviolet lamp, wherein the ultraviolet lamp is arranged on one side of the filtering element for sterilizing the air pollution, wherein the filtering element is an ultra low particulate air (ULPA) filter, a high efficiency particulate air (HEPA) filter or a combination thereof.
20 . The indoor air cleaning system according to claim 11 , wherein the cloud computing service device comprises a wireless network cloud computing service module, a cloud control service unit, a device management unit and an application program unit, wherein the cloud computing service device intelligently computes a cleanliness according to a number of suspended particles passing through the indoor field in real time, and intelligently selects and issues the control command to be transmitted to the gas detection modules in the plurality of air cleaning devices for receiving, and then the control command is transmitted to the driving control component to timely regulate the activation operation of the fan of the air cleaning device, so as to randomly change and adjust the airflow volume and the actuation time period based on the cleanliness of the number of suspended particles in real time, whereby the cleaning efficiency of the indoor field is improved, the environmental noise of the indoor field is reduced, an internal circulation directional airflow is generated in the indoor field, and the air pollution is guided to pass through the filtering element multiple times for filtration, so that the gas state in the indoor field is cleaned to meet a clean room requirement.Join the waitlist — get patent alerts
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