High mass transfer electrosprayer
First Claim
Patent Images
1. A high mass transfer electrohydrodynamic aerosol sprayer comprising:
- a spray nozzle in fluid communication with a source of fluid to be aerosolized, the spray nozzle having at least one spray tip near which the fluid exits the spray nozzle, forms a Taylor cone and is aerosolized by electrohydrodynamic spraying;
a gas flow deflector for directing a gas past the spray tip and sweeping at least a portion of the aerosol away from the spray tip, and a first voltage source maintaining the spray nozzle at a negative potential.
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Abstract
A electrohydrodynamic aerosol sprayer wherein a gas flow deflector is used for creating a gas flow past the spray nozzle to stabilize the Taylor cone and to transport at least a portion of the aerosol away from the region downstream of the spray nozzle. This stabilization of the cone and transport of aerosol improves the droplet size and distribution and may also reduce the deposit of droplets on the internal components of the device.
111 Citations
16 Claims
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1. A high mass transfer electrohydrodynamic aerosol sprayer comprising:
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a spray nozzle in fluid communication with a source of fluid to be aerosolized, the spray nozzle having at least one spray tip near which the fluid exits the spray nozzle, forms a Taylor cone and is aerosolized by electrohydrodynamic spraying;
a gas flow deflector for directing a gas past the spray tip and sweeping at least a portion of the aerosol away from the spray tip, and a first voltage source maintaining the spray nozzle at a negative potential. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
a discharge electrode; and
a second voltage source maintaining the discharge electrode at a positive potential relative to the potential of the spray nozzle.
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8. The high mass transfer electrohydrodynamic aerosol sprayer of claim 1 further comprising multiple spray nozzles.
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9. A high mass transfer electrohydrodynamic aerosol sprayer comprising:
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a spray nozzle in fluid communication with a source of fluid to be aerosolized, the spray nozzle having at least one spray tip near which the fluid exits the spray nozzle, forms a Taylor cone and is aerosolized by electrohydrodynamic spraying; and
a gas flow deflector for separating a gas flow into at least two portions, for directing a first portion of the gas past the spray tip to sweep at least a portion of the aerosol downstream from the spray tip and for further directing the second portion of the gas away from the spray tip but thereafter into contact with the first portion of the gas and the aerosol downstream of the spray tip. - View Dependent Claims (10, 11, 12, 13, 14, 15, 16)
the gas flow deflector is further capable of directing the first portion of the gas past the spray tip substantially parallel to the preferred direction of the Taylor cone. -
11. The high mass transfer electrohydrodynamic aerosol sprayer of claim 9 wherein the gas flow deflector directs the first portion of gas substantially completely around the spray nozzle.
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12. The high mass transfer electrohydrodynamic aerosol sprayer of claim 11 wherein the gas flow deflector directs the second portion of gas substantially completely around the first portion of gas and the aerosol downstream of the spray tip.
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13. The high mass transfer electrohydrodynamic aerosol sprayer of claim 9 which additionally includes a plurality of spray nozzles and a plurality of spray tips and wherein the gas flow deflector is capable of directing the first portion of gas substantially completely around the plurality of spray tips and of directing the second portion of gas substantially completely around the first portion of gas and the aerosol downstream of the spray tips.
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14. The high mass transfer electrohydrodynamic aerosol sprayer of claim 9 wherein the gas flow deflector surrounds the spray tip and has an inlet end and an outlet end and wherein the deflector is designed such that the gas velocity is lower near the outlet end than near the inlet end.
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15. The high mass transfer electrohydrodynamic aerosol sprayer of claim 14, wherein the cross sectional area available for the gas flow near the inlet end of the deflector is less than the cross sectional area near the outlet.
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16. The high mass transfer electrohydrodynamic aerosol sprayer of claim 9 wherein the flow resistance of the gas flow deflector is such that the first portion of gas is smaller than the second portion of gas.
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Specification