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CN-112451349-B - Medical ozone therapeutic apparatus capable of controlling ozone concentration of ozone liquid

CN112451349BCN 112451349 BCN112451349 BCN 112451349BCN-112451349-B

Abstract

The invention provides a medical ozone therapeutic apparatus capable of controlling ozone concentration of ozone liquid. The medical ozone therapeutic apparatus of the invention is added with a quantitative air pipe, a quantitative water pipe and a barometer on the basis of the existing medical ozone therapeutic apparatus. The quantitative air pipe is combined with the barometer, the ozone dosage of single participation reaction can be controlled, and the liquid water dosage of single participation reaction can be controlled by the quantitative water pipe. Because the volumes of the quantitative air pipe and the quantitative water pipe are fixed, the control of the ozone concentration in the ozone liquid can be realized by only controlling the ozone pressure in the quantitative air pipe. Therefore, the invention realizes the accurate control of the ozone concentration of the ozone liquid by accurately controlling the proportion of the ozone to the liquid water. In addition, the atomizer can atomize liquid water into water vapor, can be in full contact with ozone, and ensures that the ozone can be fully dissolved into the water. The refrigerating module can quickly cool and liquefy the mixed water vapor into ozone liquid, and effectively ensures that the ozone liquid is in a liquid state and is output outwards.

Inventors

  • LI CHUNYUAN
  • MO PIN

Assignees

  • 深圳杉源医疗科技有限公司

Dates

Publication Date
20260508
Application Date
20201208

Claims (6)

  1. 1. The medical ozone therapeutic apparatus capable of controlling the ozone concentration of the ozone liquid comprises a water tank for providing liquid water, an ozone generator for generating ozone and a mixing tank for mixing water and ozone, and is characterized by further comprising a quantitative air pipe, a quantitative water pipe, an air pressure gauge, an atomizer and a refrigerating module; The ozone generator is connected with the quantitative air pipe through an air pipe A and a one-way valve A, an ozone cavity with fixed volume is arranged in the quantitative air pipe, and the air pressure meter is connected into the ozone cavity and used for monitoring the air pressure in the ozone cavity in real time; The water tank is connected with the quantitative water pipe through a water pipe A and a one-way valve D, a liquid water cavity with fixed volume is arranged in the quantitative water pipe, the liquid water cavity is connected with an inlet of the atomizer through a water pipe B and a one-way valve C, the atomizer is used for atomizing the liquid water into water vapor, and an outlet of the atomizer is connected with the mixing box; the mixing box is internally provided with a mixing cavity for mixing water vapor and ozone, and the mixing cavity is internally provided with a plurality of ozone nozzles and a plurality of water vapor nozzles; The bottom of the mixing box is provided with a liquid outlet for outputting ozone liquid; The mixing box further comprises a soft bag and a clamping and expanding cylinder, wherein the inner cavity of the soft bag is communicated with the mixing cavity of the mixing box, and two outer side surfaces of the soft bag are fixedly connected with two clamping jaws of the clamping and expanding cylinder respectively.
  2. 2. The medical ozone therapeutic apparatus as defined in claim 1, wherein said refrigerating module is a semiconductor refrigerating sheet, a bottom wall of said mixing box is a heat conductive material, and said refrigerating module is attached to an outer side surface of said mixing box bottom wall.
  3. 3. The medical ozone therapeutic apparatus as defined in claim 1, wherein said mixing tank bottom is tapered.
  4. 4. The medical ozone therapeutic apparatus as defined in claim 1, wherein said plurality of ozone nozzles and said plurality of water vapor nozzles are respectively located on opposite sides of a mixing chamber of said mixing tank.
  5. 5. The medical ozone therapeutic apparatus according to any one of claims 1 to 4, further comprising a buffer tank and a quantitative output controller for controlling the single use amount, wherein a water inlet of the buffer tank is connected to a liquid outlet of the bottom of the mixing tank, and a water outlet of the buffer tank is connected to a water inlet of the quantitative output controller.
  6. 6. The medical ozone therapeutic apparatus according to claim 5, wherein the quantitative output controller comprises a measuring cylinder, an infusion down tube, a water level detection device, a water level controller, a stop valve and a guide rail, wherein scales for indicating the volume are marked on the outer side surface of the measuring cylinder, the stop valve is arranged between the buffer tank and the measuring cylinder, the upper port of the infusion down tube is connected with the stop valve, the lower port of the infusion down tube extends into the measuring cylinder, the water level detection device is fixed on the outer side surface of the lower port of the infusion down tube, the water level detection device and the stop valve are respectively and electrically connected with the water level controller, when the water level detection device detects that the liquid in the measuring cylinder reaches the set volume, the controller controls the stop valve to be closed, the outer side wall of the measuring cylinder is slidably arranged on the guide rail, and the measuring cylinder is pushed to slide up and down along the vertical direction of the guide rail.

Description

Medical ozone therapeutic apparatus capable of controlling ozone concentration of ozone liquid Technical Field The invention belongs to the field of ozone treatment equipment, and particularly relates to a medical ozone therapeutic apparatus capable of controlling ozone concentration of an ozone liquid. Background Ozone is a strong oxidant, the molecule of which is extremely unstable, can be decomposed to generate monoatomic oxygen and hydroxyl with extremely strong oxidizing ability, is a unique thawing bacterial preparation, can be quickly thawed into cell walls, damages the internal structures of microorganisms such as bacteria and viruses, and has extremely strong killing effect on various pathogenic microorganisms. Ozone is used for treating gynecological genital tract infection, and has unique curative effect, so that many hospitals in China, especially gynecological hospitals, compete with ozone therapy as the first line method for treating gynecological genital tract infection. The medical ozone therapeutic apparatus can output ozone liquid for direct treatment. Because the ozone liquid is formed after mixing and reacting ozone and liquid water, the proportion of the ozone liquid and the liquid water is not well controlled, so that the existing ozone therapeutic apparatus cannot accurately control the ozone concentration of the ozone liquid, and the ozone liquid with accurate ozone concentration cannot be output, thereby being unfavorable for realizing accurate treatment according to the actual condition of a patient. In view of the above problems, it is necessary to develop a medical ozone therapeutic apparatus capable of precisely controlling the ozone concentration of an ozone liquid. Disclosure of Invention The invention provides a medical ozone therapeutic apparatus capable of controlling ozone concentration of ozone liquid, which can solve the problem of inaccurate ozone concentration of the output ozone liquid caused by inaccurate control of the proportion of ozone to liquid water by the medical ozone therapeutic apparatus in the prior art. The invention is realized in such a way that a medical ozone therapeutic apparatus capable of controlling the ozone concentration of ozone liquid comprises a water tank for providing liquid water, an ozone generator for generating ozone, a mixing tank for mixing water and ozone, a quantitative air pipe, a quantitative water pipe, an air pressure meter, an atomizer and a refrigerating module; The ozone generator is connected with the quantitative air pipe through an air pipe A and a one-way valve A, an ozone cavity with fixed volume is arranged in the quantitative air pipe, and the air pressure meter is connected into the ozone cavity and used for monitoring the air pressure in the ozone cavity in real time; The water tank is connected with the quantitative water pipe through a water pipe A and a one-way valve D, a liquid water cavity with fixed volume is arranged in the quantitative water pipe, the liquid water cavity is connected with an inlet of the atomizer through a water pipe B and a one-way valve C, the atomizer is used for atomizing the liquid water into water vapor, and an outlet of the atomizer is connected with the mixing box; the mixing box is internally provided with a mixing cavity for mixing water vapor and ozone, and the mixing cavity is internally provided with a plurality of ozone nozzles and a plurality of water vapor nozzles; The bottom of the mixing box is provided with a liquid outlet for outputting ozone liquid. Further, the refrigerating module is a semiconductor refrigerating sheet, the bottom wall of the mixing box is made of a heat conducting material, and the refrigerating module is attached to the outer side face of the bottom wall of the mixing box. Further, the bottom of the mixing box is conical. Further, the ozone nozzles and the water vapor nozzles are respectively positioned at two opposite sides of the mixing cavity of the mixing box. Further, the mixing box further comprises a soft bag and a clamping and expanding cylinder, an inner cavity of the soft bag is communicated with a mixing cavity of the mixing box, and two outer side faces of the soft bag are fixedly connected with two clamping jaws of the clamping and expanding cylinder respectively. Further, the medical ozone therapeutic apparatus further comprises a buffer tank and a quantitative output controller for controlling the single liquid consumption, a water inlet of the buffer tank is connected with a liquid outlet at the bottom of the mixing tank, and a water outlet of the buffer tank is connected with a water inlet of the quantitative output controller. The quantitative output controller comprises a measuring cylinder, an infusion lower probe tube, a water level detection device, a water level controller, a stop valve and a guide rail, wherein the outer side face of the measuring cylinder is marked with scales for representing the volume, the stop valve is arr