EP0806498A1

An apparatus for producing hydrogen and oxygen

Abstract

To achieve a simple configuration of cooling mechanism of an apparatus for producing hydrogen and oxygen and make it possible to freely select the type of heat exchanger without any restrictions so as to improve the cooling efficiency of the heat exchanger. A heat exchanger 7 for cooling deionized water in a deionized water tank 1 which contains an electrolytic cell 2 is installed outside the tank 1, an inlet 7a of the heat exchanger 7 is connected up with a deionized water flow outlet 10 that is below the level of the deionized water in the tank 1 by a pipe 9a, and an outlet 7b of the heat exchanger 7 is connected up with a deionized water flow inlet 11 that is beneath the above-mentioned deionized water flow outlet 10 in the tank 1 by a pipe 9b.

EP0806498A1, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 8 May 2017, 9.4 years ago.

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11 claims: 7 independent, 4 dependent

  1. 1
    An apparatus for producing hydrogen and oxygen having a deionized water tank that contains an electrolytic cell;characterized in that a heat exchanger for cooling deionized water in the deionized water tank is provided outside the deionized water tank.
  2. 4
    An apparatus for producing hydrogen and oxygen provided with an electrolytic cell having an anode chamber and a cathode chamber that are separated by an electrolyte membrane and located between electrode plates;and, a deionized water tank that contains said electrolytic cell;characterized in that both the anode chamber and the cathode chamber are formed as annular compartments being isolated on their inner circumferences and on their outer circumferences from the outside, thereby the entire electrolytic cell is cylindrical with a cavity at the center thereof, and that    a heat exchanger for cooling the deionized water in the deionized water tank is arranged in the central cavity of the electrolytic cell.
  3. 7
    An apparatus for producing hydrogen and oxygen as claimed in any of claims 4 to 6, comprising a plurality of said cylindrical electrolytic cells stacked together.
  4. 8
    An apparatus for producing hydrogen and oxygen as claimed in any of claims 4 to 7, wherein a path for discharging generated oxygen gas is formed to connect the anode chambers and a port of a discharging of oxygen gas on the outer circumference side of the cylindrical electrolytic cell.
  5. 9
    An apparatus for producing hydrogen and oxygen as claimed in any of claims 4 to 8, wherein the central axis of the central cavity of the cylindrical electrolytic cell is arranged to aline with the central axis of the deionized water tank.
  6. 10
    An apparatus for producing hydrogen and oxygen as claimed in any of claims 4 to 9, wherein the deionized water tank comprises a tank shell and a tank cover, the cylindrical electrolytic cell is disconnectably mounted on the inner side of the tank cover and the cylindrical electrolytic cell is arranged in such a way that when the tank cover is fitted in the deionized water tank shell the cylindrical electrolytic cell will be inside the tank shell.
  7. 11
    An apparatus for producing hydrogen and oxygen as claimed in any of claims 4 to 9, wherein the deionized water tank consists of a tank shell and a tank cover, the heat exchanger is disconnectably mounted on the inner side of the water tank cover, and the heat exchanger is arranged in such a way that when the water tank cover is fitted in the tank shell the heat exchanger will be inside the tank shell.