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    • 1. 发明专利
    • METHOD FOR PURIFICATION OF WASTEWATER WITH DEEP SHAFT AERATION PROCESS
    • JPH10314786A
    • 1998-12-02
    • JP12674097
    • 1997-05-16
    • TAKENAKA DOBOKUTAKENAKA KOMUTEN CO
    • MORISHIMA AKIRATSUJIMOTO YUKIOOSAWA TAKEHIKO
    • C02F3/08C02F3/22
    • PROBLEM TO BE SOLVED: To remove surely sludge in wastewater by a method wherein a fixed microbe is introduced into an aeration tank to execute oxidation decomposition treatment of wastewater, sludge and treating water which are discharged from the aeration tank are introduced into a precipitation tank to precipitate the sludge, the treating water is introduced to a inter-gravel contact tank, and excess sludge in the treating water is eliminated. SOLUTION: Fixed part perishables 2 are introduced into an aeration tank 1 having a downcomer part 1a and a riser pipe part 1b in parallel, and wastewater 3 to be purified is made to flow into the downcomer part 1a of the aeration tank 1. Aeration treatment is executed, and oxidation decomposition treatment of the wastewater 3 is executed with a stuck microbe 2 while fixed part perishables 2 is made to flow together with the wastewater 3. A separated sludge 4 together with treating water 5 is exhausted from the riser pipe part 1b. The sludge 4 and the treating water 5 which are exhausted from the aeration tank 1 are introduced into a precipitation tank 6, the sludge 4 is settled onto a tank bottom part, and supernatant treating water 5' is exhausted. The treating water 5' exhausted from the precipitation tank 6' is conduced into an inter-gravel contact tank 7, passed through between the gravels 9 to eliminate excess sludge 8 in the treating water 5', and purified water is discharged.
    • 6. 发明专利
    • Heating device
    • 加热装置
    • JP2003052795A
    • 2003-02-25
    • JP2001241855
    • 2001-08-09
    • Takenaka Komuten Co Ltd株式会社竹中工務店
    • HARAKAWA KENICHITSUJIMOTO YUKIOKAWASHIMA TETSUFUMIINAOKA TORUMIYATA HIROKI
    • A61L2/08A61L2/10
    • PROBLEM TO BE SOLVED: To provide a heating device with which an object to be heated can be heated in the dry status. SOLUTION: In a far infrared radiation device 10, a floor 12 is heated by irradiating the floor 12 with far infrared rays from a prescribed number of heaters 24 or heating air in the gap to the floor 12 by far infrared rays while clamping the top end of a handle part 18 and moving a main body 14 of device to the floor 12 by an operator. Therefore, the floor 12 can be sterilized by heating in the dry status, it is not necessary for the operator to wear boots and workability in sterilization can be improved. Further, since the floor 12 is heated by using far infrared rays, the far infrared radiation device 10 is suitable for a purpose, with which it is enough only to heat the surface of the floor 12 like the sterilization of the floor 12. In comparison with a induced heating system or microwave heating system for heating the entire floor 12, energy efficiency can be improved and even unwanted parts can be prevented from being overheated.
    • 要解决的问题:提供一种可在干燥状态下加热被加热物体的加热装置。 解决方案:在远红外线辐射装置10中,通过用规定数量的加热器24的远红外线照射地板12或者通过远红外线将间隙中的空气加热到地板12来加热地板12,同时夹紧顶端 的手柄部分18,并且由操作者将装置的主体14移动到地板12。 因此,地板12可以通过在干燥状态下的加热来消毒,操作者不需要穿靴子,并且可以提高在灭菌中的可操作性。 此外,由于通过使用远红外线来加热地板12,因此远红外线辐射装置10适合于仅与地板12的灭菌一样加热地板12的表面就足够了。相比之下 利用用于加热整个地板12的感应加热系统或微波加热系统,可以提高能量效率,并且可以防止甚至不希望的部件过热。
    • 8. 发明专利
    • ULTRA-SUBMERGED AERATION TYPE SEWAGE TREATMENT APPARATUS
    • JPS6268593A
    • 1987-03-28
    • JP20764985
    • 1985-09-19
    • TAKENAKA KOMUTEN CO
    • OSAWA TAKEHIKOYABE SEIICHIODAWARA KENJITSUJIMOTO YUKIO
    • C02F3/22
    • PURPOSE:To reduce an installation area, by providing a pressure feed means for feeding sludge mixed water from an ultra-submerged aeration tank to a deaeration tank and arranging the deaeration tank in a center well while connecting the lower part of the deaeration tank to the pressure feed means. CONSTITUTION:Sludge mixed water containing sludge and fine air bubbles is transferred to the lower part 5a of a deaeration tank 5 fro the outlet 2c of a riser tank 2b through piping 3 by the head between an ultra-submerged aeration tank 2 and the deaeration tank 5. The sludge mixed water flowing in the lower part 5s of the deaeration tank 5 receives rising force by the head between the ultra-submerged aeration tank 2 and the deaeration tank 5 and passes through an air bubble separating packing material bed 5 in the form of an upwardly directed stream by said rising force to reach the opening part 5c of the upper part 5b of the deaeration tank 5. Fine air bubbles are grown into coarse bubbles by the adhesion and precipitation of air bubbles to the surfaces or internal surfaces of fiber lumps 6a and dispersed to the open air. By this method, an installation area can be reduced.