MOBILE PURIFICATION DEVICE HAVING HEATED FILTER FOR KILLING BIOLOGICAL SPECIES, INCLUDING COVID-19
An apparatus used with supplied power for treating air in an environment and method of use. A housing is mobile in the environment and has an intake and an exhaust. At least one prime mover is disposed in the housing and is operable to move the air in the environment through the housing from the intake to the exhaust. At least one permeable barrier is disposed in the housing and is configured to impede the moved air flow therethrough up to an impedance threshold. The permeable barrier is in electrical communication to the supplied power and is heated to a surface temperature.
1 . An apparatus used with supplied power for treating air in an environment for a pathogen, the apparatus comprising:
a housing being mobile in the environment and having an intake and an exhaust;
at least one prime mover disposed in the housing between the intake and the exhaust and being operable to move the air in the environment through the housing from the intake to the exhaust; and
at least one heater disposed in the housing and comprising a permeable barrier configured to allow the moved air flow therethrough, the permeable barrier of the at least one heater being connected in electrical communication to the supplied power, and the permeable barrier having an active surface area being configured to interact with the pathogen and being heated by the supplied power to a surface temperature directed to at least damage the pathogen.
2 . The apparatus of claim 1 , further comprising at least one particulate filter disposed in the housing upstream of the at least one heater.
3 . The apparatus of claim 1 , further comprising at least one cartridge being replaceable at the intake of the housing, the at least one cartridge having a plenum with an inlet and an outlet, the at least one cartridge having the at least one permeable barrier.
4 . The apparatus of claim 3 , wherein the at least one cartridge further comprises at least one filter disposed across the plenum and comprising a first material, the filter being configured to filter the moved air therethrough up to a filtration threshold.
5 . The apparatus of claim 4 , wherein the at least one cartridge comprises a plurality of sidewalls enclosing the plenum between an open side for the inlet and an opposing open side for the outlet.
6 . The apparatus of claim 5 , further comprising electrical insulation disposed between an edge of the permeable barrier and the sidewalls of the at least one cartridge.
7 . The apparatus of claim 1 , wherein the prime mover comprises one or more blowers or fans.
8 . The apparatus of claim 1 , wherein the apparatus comprises a power supply disposed on the housing and supplying the supplied power.
9 . The apparatus of claim 1 , wherein the permeable barrier of the at least one heater comprises a mesh, a foam, a screen, or a tortuous media.
10 . The apparatus of claim 1 , wherein the permeable barrier comprises nickel, nickel-based alloy, iron-based alloy, titanium, or steel alloy.
11 . The apparatus of claim 1 , wherein the permeable barrier of the at least one heater is configured to impede the air flow therethrough up to an impedance threshold of about 20 percent, giving the permeable barrier the porosity threshold of at least about 80 percent.
12 . The apparatus of claim 1 , wherein the permeable barrier of the at least one heater is heated to the surface temperature of at least greater than about 56° C. (133° F.).
13 . The apparatus of claim 1 , further comprising a controller disposed in electrical communication with the permeable barrier of the at least one heater and the at least one prime mover and being configured to control (i) the heating of the permeable barrier of the at least one heater by the supplied power, and (ii) the air flow through the housing from the intake to the exhaust generated by the at least one prime mover powered by the supplied power.
14 . The apparatus of claim 13 , further comprising a temperature sensor disposed adjacent the permeable barrier and disposed in electrical communication with the controller, the temperature sensor being configured to measure a temperature associated with the heating of the permeable barrier.
15 . The apparatus of claim 13 , wherein the controller is disposed in electrical communication with motor drive circuitry connected to the prime mover, the controller being configured to control the prime mover with the motor drive circuitry powered by the supplied power.
16 . The apparatus of claim 13 , further comprising a flow sensor disposed in the housing and disposed in electrical communication with the controller, the flow sensor being configured to measure the air flow passing through the housing, the controller configuring the control based on the measured air flow.
17 . A method for treating air in an environment for a pathogen, the method comprising:
moving air flow through a plenum in a mobile housing from an intake to an exhaust by powering a prime mover disposed in the plenum;
filtering the air flow a filter disposed across the plenum;
allowing the air flow a permeable barrier of a heater disposed across the plenum, the permeable barrier having an active surface area, the active surface area being configured to interact with the pathogen; and
heating the active surface area of the permeable barrier of the heater to a surface temperature directed to at least damage the pathogen by supplying a voltage potential across the permeable barrier.
18 . The method of claim 17 , wherein the prime mover comprises one or more blowers or fans.
19 . The method of claim 17 , wherein a power supply is disposed on the mobile housing and supplies the supplied power.
20 . The apparatus of claim 17 , wherein the permeable barrier of the heater comprises a mesh, a foam, a screen, or a tortuous media.