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    • 1. 发明专利
    • PROCESS AND DEVICE FOR DRYING WASTE SUCH AS SLUDGE
    • JP2002153900A
    • 2002-05-28
    • JP2000353975
    • 2000-11-21
    • KANAI MASAO
    • KANAI MASAO
    • F26B3/24C02F1/02C02F11/00C02F11/12F26B11/16F26B21/00F26B23/00
    • PROBLEM TO BE SOLVED: To provide a drying process of waste such as sludge, by which an odor component in waste steam generated when such waste is dried, can be removed and the resulting waste steam free from such an odor component can be discharged to the outside, and also to provide a drying device for the drying process. SOLUTION: This drying device is provided with a drying vessel 5; a high- temperature oxidative deodorization furnace 3; a pipeline 15 for connecting the drying vessel 5 to the high-temperature oxidative deodorization furnace 3 so that waste steam generated by drying a material to be dried in the drying vessel 5, is introduced into the high-temperature oxidative deodorization furnace 3; a jacket 6 placed outside the drying vessel 5; and a pipeline 16 for connecting the high-temperature oxidative deodorization furnace 3 to the jacket 6 so that a high-temperature and high-humidity gas formed in the deodorization furnace 3 is introduced into the jacket 6 to heat a heat transfer surface 4 (inner wall surface of the drying vessel 5); wherein an odor component contained in the above waste steam is decomposed in the high-temperature oxidative deodorization furnace 3, and concurrently, the high-temperature and high- humidity gas is formed in the deodorization furnace 3 and introduced into the jacket 6 to heat the heat transfer surface 4 and thereafter, discharged to the outside of the device.
    • 2. 发明专利
    • PROCESS AND DEVICE FOR CARBONIZATION
    • JP2002121560A
    • 2002-04-26
    • JP2000315017
    • 2000-10-16
    • KANAI MASAO
    • KANAI MASAO
    • B09B3/00C02F11/10C10B53/00
    • PROBLEM TO BE SOLVED: To provide a process and device for carbonization which allows no generation of dioxins nor emission of harmful gases to the outside. SOLUTION: In a process for carbonizing a matter by introducing the matter to be carbonized into a carbonization tank 3 equipped inside with a heating surface 33 and a rotating blade means 34 and heating it, the matter to be carbonized is heated inside the carbonization tank 3 in an anaerobic atmosphere, a sludge and a gas generated in the carbonization tank 3 are led to a vaporized gas cooler 44 and cooled with water to be liquefied into a liquid, and the liquid is led to a dryer 45 to generate a dry sludge. Meanwhile, the gas which is not liquefied in the vaporized gas cooler 44 is emitted after it is made harmless by passing it through a platinum deodorizer 46. The waste vapor generated in the dryer 45 is led to a deodorizing/hot-air-generating oven 59 for oxidatively decomposing harmful gases and generating a high-temperature high-moisture gas, which is used as a heat source for the heating surface 33 of the carbonization tank 3.
    • 9. 发明专利
    • DRYING METHOD FOR MATERIAL TO BE DRIED
    • JPH0852301A
    • 1996-02-27
    • JP20924694
    • 1994-08-10
    • KANAI MASAO
    • KANAI MASAO
    • F26B3/20B01D1/22F26B17/22
    • PURPOSE:To provide a drying method in which material to be dried is pushed on the heat transfer surface by centrifugal force and dried while the material is whirled up. CONSTITUTION:In this drying method, the material 3 to be dried is pushed on the heat transfer surface 2 by centrifugal force while it is whirled up from a plurality of points of the lowermost part toward the upside, and dried by heat emitted from the heat transfer surface 2. At the time when the material 3 to be dried is whirled up, it is brought into contact with the heat transfer surface 2 and moisture is evaporated. The material 3 is whirled up so as to replace with the material having high moisture content. While the whirled-up material 3 is moved on the evaporation surface F facing the space A, the previously whirled-up material 3 is pushed up by the material which is whirled up from the rear. Consequently, the material 3 is continuously raised along the heat transfer surface 2.