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    • 2. 发明专利
    • TREATMENT OF MEDICAL WASTE AND EQUIPMENT
    • JPH0557268A
    • 1993-03-09
    • JP19716391
    • 1991-07-11
    • KAWASAKI HEAVY IND LTD
    • KAMEDA TAKASHIKATAOKA SHIGENORINOMA KOICHI
    • A61L11/00A61G12/00B09B3/00
    • PURPOSE:To sterilize medical waste and to reduce its volume by holding medical waste mainly constituted of plastics into a vessel and irradiating microwave until moisture in medical waste is heated and vaporization of moisture is completed, and thereafter circulating hot air of 140-200 deg.C to heat medical waste at the sterilization temperature. CONSTITUTION:Medical waste 6 is introduced into a housing vessel 4 and this vessel 4 is held in a closed device main body 3. Then,a microwave generator 20 is actuated to the vessel 4 to heat and vaporize moisture and also hot air is circulated through a hot air circulation line 26 having a heater 22 and a circulation block 24 for hot air. Thereby medical waste is heated and sterilized. Control of the microwave generator 20 is performed by detecting the concentration of combustible gas in exhaust gas discharged from the closed device main body 3, the concentration of gaseous hydrogen chloride, the concentration of moisture or the concentration of bromine component. Further, this control is performed by the ratio of reflected electric power and incident electric power which are detected by a power monitor connected to the waveguide 46 of the microwave generator 20.
    • 4. 发明专利
    • AIR BUBBLE DIFFUSING DEVICE
    • JPH10263377A
    • 1998-10-06
    • JP9308897
    • 1997-03-26
    • KAWASAKI HEAVY IND LTD
    • KAMEDA TAKASHI
    • B01D53/50B01D53/18B01D53/77B01F3/04
    • PROBLEM TO BE SOLVED: To make it possible to uniformly disperse humidifying water into respective sub-headers mounted with plural pieces of blowing nozzles and to make the device compact by providing a main header in an approximately horizontal direction with throttling mechanism and humidifying water suction mechanisms near the junctures where plural pieces of these sub-headers are connected in approximately horizontal direction. SOLUTION: The air bubble spraying device consisting of the main header 20 in the approximately horizontal direction and the sub-headers 24 mounted with the plural blowing nozzles 22 connected approximately horizontally thereto is provided with the throttling mechanism 26 and the humidifying water suction mechanisms 28 near the junctures between the main header 20 and the sub-headers 24. The flow velocity of the gases flowing to sub-headers 24 through the throttling mechanism 26 is made higher than the flow velocity of the gases in the main header 20. The static pressure is changed to a dynamic pressure and the pressure of the throttling sections is dropped by the throttling mechanism 26 and, therefore, the humidifying water 30 is sucked by the humidifying water suction mechanisms 28. This humidifying water 30 is uniformly dispersed in the form of mists into the respective sub-headers 24 and the liquid level of the humidifying water in the main header 20 is lowered.
    • 5. 发明专利
    • EXHAUST GAS TREATMENT METHOD AND APPARATUS
    • JPH09243050A
    • 1997-09-16
    • JP7133096
    • 1996-03-01
    • KAWASAKI HEAVY IND LTD
    • KAMIMURA FUMIOITO SHIGEJIKAMEDA TAKASHIUEJIMA KENROKATAOKA SHIGENORIMARUI KAZUTO
    • F23L15/00B01D46/00B01D53/50B01D53/56B01D53/77B01D53/86F23J15/08
    • PROBLEM TO BE SOLVED: To provide an apparatus capable of efficiently and economically treating heavy oil combustion exhaust gas emitted from a heavy oil burning combustion equipment and plan compact construction of the apparatus, reduction of consumption of chemicals, retardation of corrosion and prevention of both deterioration of performance and clogging caused by dust. SOLUTION: After heavy oil combustion exhaust gas has been subjected to denitrification treatment, the exhaust gas is introduced into an air preheating device 14 to recover heat, and then exhaust gas from which heat has been recovered is introduced into a heat recovery device 20a made of a heat-resistant acid-resistant synthetic resin made tube of a medium circulating type gas/gas heater 18a, e.g. Teflon tube heat recovering device, to be cooled, and then the cooled exhaust gas is introduced into a dust collector 16 such as a dry electrostatic precipitator, a bag filer and the like to be subjected to dust removing treatment and the dust removed exhaust gas is subjected to desulfurization treatment before being introduced into a reheating device 26 of the medium circulating type gas/gas heater to be reheated and guided into a flue 28. An interior of the heat recovery device 20a of the gas/gas heater 20 is divided into a plurality of partitions parallelly with gas flow and purified water supply pipes are respectively connected with the partitions to periodically wash the heat resistant/acid resistant synthetic resin pipe with water.