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    • 31. 发明专利
    • DEODORIZING DEVICE
    • JP2000210347A
    • 2000-08-02
    • JP16510099
    • 1999-06-11
    • DENSO CORP
    • SUZUKI YOSHINOBUTAKAGI TOMOKIOKAMOTO YASUSHI
    • A61F5/441A61G9/00
    • PROBLEM TO BE SOLVED: To prevent the scatter of a focaluria odor in a room by generating an air stream passing through a focaluria odor generating part by means of a blower operation, sucking it into an air passage, deodorizing it through a deodorizer and blowing it from a blow out port in the direction of a diaper wearing person. SOLUTION: A caring person positions a deodorizing device at the side of a bed to permit a deodorizing part 12 to be positioned in a space under the bed. Then a blower 2 is operated, a fan 21 is rotated and the air stream from an air sucking port 111 to the passage 141 is generated. Thus, air 100 including the focaluria odor generated from the diaper is sucked into the passage 141, supplied to the deodorizer 3 and deodorized. A part of deodorized air is discharged into the room from a discharge port 121 and most of the remaining air is blown to the diaper wearing person from the passage 142 by way of the passage 142, sucked again and cleaned. Thus, the scatter of the focaluria odor is prevented.
    • 33. 发明专利
    • DEVICE FOR HUMIDIFICATION/DEHUMIDIFICATION
    • JP2002228189A
    • 2002-08-14
    • JP2001029980
    • 2001-02-06
    • DENSO CORP
    • SUZUKI YOSHINOBU
    • B60H3/00B01D53/26B60H3/02F24F3/14F24F3/147
    • PROBLEM TO BE SOLVED: To provide a device for humidification/dehumidification, in which air supply can be performed to a humidification side and dehumidification side with a single common fan, and the outer shape of the whole device can be made thin. SOLUTION: A annular rotary body 16 is provided to the outside periphery of a centrifugal fan 14, an air heater 20 is placed in correspondence with a part of the inside periphery of the rotary body 16. A number of air passages 17 are provided in the body 16 to allow air to flow from the inside periphery to the outside periphery. An adsorbent 18 for adsorbing moisture is provided to a partition wall 17a of the air passage 17. In the outside periphery of the rotary body 16, there are provided a first excite passage 23 to allow the air to flow, which has past the installation site of the heater 20 and part of the air passage 17, and second outlet passages 24, 24a to allow the air to flow, which has passed part of the air passage 17, in which the air heater 20 is not installed.
    • 34. 发明专利
    • AIR CLEANER
    • JP2001259470A
    • 2001-09-25
    • JP2000074240
    • 2000-03-16
    • DENSO CORP
    • NISHIKAWA KATSUMISUZUKI YOSHINOBU
    • F24F7/00A61L9/015A61L9/22B01D53/86B03C3/02B03C3/41B03C3/47
    • PROBLEM TO BE SOLVED: To provide an air cleaner capable of cleaning air by charging to polluted air by negative ion by applying negative high voltage to a discharge electrode and the dust collection and capable of blowing the clean air containing negative ion by decomposing the ozone generating together with the negative ion. SOLUTION: The air cleaner is provided with an ion generator 2 having the discharge electrode 21a and capable of charging the dust by generating corona discharge by applying high voltage to the discharge electrode 21a, an electric dust collecting part 6 having a counter electrode 31b for collecting the dust charged by the ion generator 2 and an ozone decomposition filter 4 provided with an ozone catalyst for decomposing the ozone generating at the ion generator 2 and a base material of the ozone catalyst formed of a conductive body, and these are disposed so that the negative ion is blown in a room by applying the negative high voltage to the discharge electrode 21a and the ozone decomposition filter 4.
    • 35. 发明专利
    • GAS TREATMENT APPARATUS
    • JP2000140562A
    • 2000-05-23
    • JP32478498
    • 1998-11-16
    • DENSO CORP
    • SUZUKI YOSHINOBUSAKAKIBARA HISASUKE
    • B01D53/38B01D53/32B01D53/40B01D53/42B01D53/74B01D53/86B01J19/08B01J21/06
    • PROBLEM TO BE SOLVED: To improve the efficiency in gas treatment by arranging honeycomb- structured catalysts in a ventilation duct so that the direction of flow of a gas to be treated crosses at right angles to the catalysts and by arranging, in the duct, discharge electrodes and earth electrodes so that the catalysts are inserted therebetween and so that the gas flows through the electrodes at right angles. SOLUTION: In a duct, discharge electrodes 2 and earth electrodes 3 are alternately arranged with catalysts 4 inserted therebetween, and a high voltage is applied beween electrodes 2 and 3 with a high-voltage generator 5. The discharge electrodes 2 are installed so that the electrode planes are at right angles to the inner bottom plane of the duct, and the discharge electrodes are connected to each other with a conductor 21 and to the (+)pole of the high-voltage generator 5, On the other hand, the earth electrodes 3 are installed so that the electrode planes are at right angles to the inner bottom plane of the duct and so that each earth electrode 3 is arranged at the back side of each discharge electrode 2 in parallel thereto, The earth electrodes 3 are connected to each other with a conductor 31 and to the (-) pole of the high-vol. generator 5. The catalysts 4 have a honeycomb structure and are arranged between electrodes 2 and 3 so that the catalyst planes are at right angles to the inner bottom plane of the duct.
    • 39. 发明专利
    • VEHICULAR AIR CONDITIONER
    • JPH10181331A
    • 1998-07-07
    • JP6478997
    • 1997-03-18
    • DENSO CORP
    • SUZUKI YOSHINOBUINASAWA HIDEAKISATO YASUHIROTAKECHI TETSUYATAKAHASHI TSUNESATOITO KOICHIKAMIMURA YUKIOOBARA SATOSHIITO HAJIME
    • B60H1/00
    • PROBLEM TO BE SOLVED: To improve heating ability in a double layer flow mode for letting flow by dividing inside air and outside air. SOLUTION: This device has a heater core 13 arranged so as to cross over a first air passage 8 at inside air side and a second air passage 9 at outside air and also the heater core 13 is arranged toward a hot water exit 13c side from a hot water entrance 13a side to form as one direction flow type that the hot water flows in one direction. The hot water entrance 13a is positioned at the first air passage 8 side and the hot water exit 13c is positioned at the second air passage 9 side. Whereby, inside air of the first air passage 8 is heat exchanged in the hot water entrance 13a side part or outside air of the second air passage 9 is heat exchanged in the hot water exit 13c side part in the heater core 13 at double layer flow mode for letting flow by dividing the inside air and the outside air. Since high temperature hot water from the hot water entrance 13a is first heat exchanged with the inside air and then heat exchanged with the outside air, temperature difference from the hot water and the inside air increases and heat exchange efficiency at this inside air side is improved and heat exchanger blowout air temperature at the inside air side increases.