Patent classifications
B03C3/15
SYSTEM AND METHOD FOR REMOVING DUST FROM AIR
A system for removing dust from air (101) includes a dust removal system inlet (1011), a dust removal system outlet, and an electric field apparatus (1014). The electric field apparatus (1014) has an electric field apparatus inlet (3085), an electric field apparatus outlet (3088), a dust removal electric field cathode (3081) and a dust removal electric field anode (3082). The dust removal electric field cathode (3081) and the dust removal electric field anode (3082) are used to generate an ionization dust removal electric field. By means of the present system for removing dust from air (101), particulate matter can be effectively removed from air.
AIR DUST REMOVAL SYSTEM AND METHOD
An air dust removal system (101) and method, comprising a dust removal system inlet, a dust removal system outlet, and an electric field device. The electric field device comprises an electric field device inlet (1011), an electric field device outlet (1012), a dust removal electric field cathode (10142), and a dust removal electric field anode (10141). The dust removal electric field cathode (10142) and the dust removal electric field anode (10141) are used to generate an ionizing dust removal electric field. The present air dust removal system (101) and method may effectively remove particulate matter from the air.
AIR DUST REMOVAL SYSTEM AND METHOD
Abstract: An air dust removal system (101), comprising a dust removal system inlet, a dust removal system outlet, and an electric field device (1014). The electric field device (1014) comprises an electric field device inlet (1011), an electric field device outlet, a dust removal electric field cathode (10142) and a dust removal electric field anode (10141), the dust removal electric field cathode (10142) and the dust removal electric field anode (10141) being used for generating an ionizing dust removal electric field. The dust removal electric field anode (10141) comprises a first anode portion (101412) and a second anode portion (101411), the first anode portion (101412) being close to the electric field device inlet (1011), the second anode portion (101411) being close to the electric field device outlet, and at least one cathode support plate (10143) being provided between the first anode portion (101412) and the second anode portion (101411). The air dust removal system (101) is able to effectively remove particulate matters in the air.
AIR DUST REMOVAL SYSTEM AND METHOD
An air dust removing method, comprising the follow steps: providing an electret element (205) in a position without dust in an electric field when an ionization dust removing electric field has a power-on driving voltage; when the ionization dust removing electric field has no power-on driving voltage, using the electret element (205) to absorb particulate matters in the air.
AIR DUST REMOVAL SYSTEM AND METHOD
An air dust removing method, comprising the follow steps: providing an electret element (205) in a position without dust in an electric field when an ionization dust removing electric field has a power-on driving voltage; when the ionization dust removing electric field has no power-on driving voltage, using the electret element (205) to absorb particulate matters in the air.
AIR DUST REMOVAL SYSTEM AND METHOD
A method for reducing dust removal electric field couplings, comprising the following steps: selecting a dust removal electric field anode and/or dust removal electric field cathode parameter to reduce a number of electric field couplings. A dust removal electric field anode and/or dust removal electric field cathode size is selected so that the number of electric field couplings is less than or equal to 3. The number of electric field couplings is reduced, electric field energy consumption is low, electric field coupling consumption for an aerosol, water mist, oil mist and loose smooth particulate matter is reduced, and electric field energy is saved
AIR DUST REMOVAL SYSTEM AND METHOD
A method for reducing dust removal electric field couplings, comprising the following steps: selecting a dust removal electric field anode and/or dust removal electric field cathode parameter to reduce a number of electric field couplings. A dust removal electric field anode and/or dust removal electric field cathode size is selected so that the number of electric field couplings is less than or equal to 3. The number of electric field couplings is reduced, electric field energy consumption is low, electric field coupling consumption for an aerosol, water mist, oil mist and loose smooth particulate matter is reduced, and electric field energy is saved
SYSTEM AND METHOD FOR REMOVING DUST IN AIR
A system for removing dust in air (101) comprises a dust removal system inlet (1011), a dust removal system outlet, and an electric field device (1014). The electric field device (1014) comprises an electric field device inlet (3085), an electric field device outlet (3088), a dust removal electric field cathode (3081), and a dust removal electric field anode (3082). The dust removal electric field cathode (3081) and the dust removal electric field anode (3082) are configured to generate an ionizing dust removal electric field. The electric field device (1014) further comprises an auxiliary electric field unit. The ionizing dust removal electric field comprises a flow channel (3086). The auxiliary electric field unit is configured to generate an auxiliary electric field that is not perpendicular to the flow channel (3086). The system for removing dust in air (101) can effectively remove particles in the air.
DEVICE FOR PURIFYING A GASEOUS MEDIUM LOADED WITH PARTICLES
Disclosed is a device for purifying a gaseous medium loaded with particles including a shell closed at the ends thereof by an end plate protected by a disjoined shell, an electrostatic filtration chamber having a passage for the gaseous medium loaded with particles; the chamber including an emissive structure including serrated plates forming tips directed towards a collecting structure on either side of the emissive structure and designed to trap the particles contained in the gaseous medium; the end plate and the shell are each brought to a different predetermined potential so as to create an electric repulsion field in the vicinity of the end plate, directed towards the passage.
DEVICE FOR PURIFYING A GASEOUS MEDIUM LOADED WITH PARTICLES
Disclosed is a device for purifying a gaseous medium loaded with particles including a shell closed at the ends thereof by an end plate protected by a disjoined shell, an electrostatic filtration chamber having a passage for the gaseous medium loaded with particles; the chamber including an emissive structure including serrated plates forming tips directed towards a collecting structure on either side of the emissive structure and designed to trap the particles contained in the gaseous medium; the end plate and the shell are each brought to a different predetermined potential so as to create an electric repulsion field in the vicinity of the end plate, directed towards the passage.