Flat plate corona cell for generating ozone
First Claim
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1. A flat plate corona cell for generating ozone, said cell comprising:
- a first conductive electrode plate member having an inside surface, and generally defining a first plane over at least a portion of said inside surface, said first conductive electrode plate member having a perimeter;
a second conductive electrode plate member having an inside surface, and generally defining a second plane over at least a portion of said inside surface, said second plane being generally parallel to said first plane, said second conductive electrode plate member having a perimeter;
a dielectric member interposed between said first and second conductive electrode plate members, said dielectric member defining at least one surface of at least one corona chamber;
a gas distribution chamber generally extending around the perimeter of said first and second conductive electrode plate members;
inlet means for introduction of a gas into said gas distribution chamber; and
outlet means for passage of a gas from said corona chamber, said outlet means comprising a port generally centrally located in at least one of said conductive electrode plate members, wherein a gas introduced into said inlet means is urged to flow in a generally converging radially inward pattern from said distribution chamber, through said corona chamber, and out through said outlet means.
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Abstract
A flat plate corona cell for generating ozone with a generally convergent radial gas flow. The net gas flow direction through the corona gap is from the outer edges of the cell inward towards an exit port in the approximate center of the cell. This eliminates parasitic arcing at the perimeter, greatly increases the life of the perimeter seal, and provides a homogenous gas flow which increases ozone output. The cell design allows both electrodes to be operated at high voltage, therefore reducing the effective kilovolts with respect to ground by half.
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Citations
13 Claims
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1. A flat plate corona cell for generating ozone, said cell comprising:
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a first conductive electrode plate member having an inside surface, and generally defining a first plane over at least a portion of said inside surface, said first conductive electrode plate member having a perimeter; a second conductive electrode plate member having an inside surface, and generally defining a second plane over at least a portion of said inside surface, said second plane being generally parallel to said first plane, said second conductive electrode plate member having a perimeter; a dielectric member interposed between said first and second conductive electrode plate members, said dielectric member defining at least one surface of at least one corona chamber; a gas distribution chamber generally extending around the perimeter of said first and second conductive electrode plate members; inlet means for introduction of a gas into said gas distribution chamber; and outlet means for passage of a gas from said corona chamber, said outlet means comprising a port generally centrally located in at least one of said conductive electrode plate members, wherein a gas introduced into said inlet means is urged to flow in a generally converging radially inward pattern from said distribution chamber, through said corona chamber, and out through said outlet means. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13)
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Specification