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    • 3. 发明专利
    • Biochemical reactor
    • 生化反应器
    • JP2004089759A
    • 2004-03-25
    • JP2002250951
    • 2002-08-29
    • Taiho Ind Co Ltdタイホー工業株式会社
    • KURUI KAZUOSHIRAISHI HARUO
    • C12M1/02C02F3/08C12M1/40
    • C12M27/02C12M29/06Y02W10/15
    • PROBLEM TO BE SOLVED: To provide a biochemical reactor in which the flow rate control of descending flow in a treating vessel is easily performed.
      SOLUTION: In the biochemical reactor, a solution to be treated is circulated in the treating vessel in which the carriers carrying micro-organisms etc. are packed and a specified element and compound in the solution to be treated is decomposed and transformed by a biodegradable operation. The biochemical reactor is provided with a cylinder body which is vertically fixed and arranged in the treating vessel and a descending flow imparting means which forms a descending flow of the solution to be treated in the cylinder body. Therefore, the flow rate control of the descending flow is facilitated in the treating vessel.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种生化反应器,其中易于进行处理容器中下降流量的流量控制。 解决方案:在生物化学反应器中,待处理溶液在装有微生物等的载体的处理容器中循环,待处理溶液中的特定元素和化合物被分解和转化, 可生物降解的操作。 生化反应器具有垂直固定并布置在处理容器中的筒体,以及形成在筒体中待处理溶液的下降流的下降流动赋予装置。 因此,在处理容器中容易降低流量的流量控制。 版权所有(C)2004,JPO
    • 7. 发明专利
    • CLEANING METHOD AND CLEANING MATERIAL FOR AUTOMOTIVE BODY
    • JP2003154318A
    • 2003-05-27
    • JP2001355185
    • 2001-11-20
    • TAIHO IND CO
    • SUGIMOTO KOICHI
    • A47L13/16B08B1/00B08B3/04B08B7/04B60S3/04
    • PROBLEM TO BE SOLVED: To provide a cleaning method, by which a clean clay layer surface is recovered with the help of a cleaning solution and thereby, a cleaning operation can be continued and a cleaning material for an automotive body, while a conventionally a soiled face is concealed inside under a wax coat covering applied especially by a classical cleaning tool of this kind, with regard to the cleaning method by which, for example, iron powder, pitch, tar or the like sticking to an automotive body is easily removed and the body coat is not impaired during an ensuing waxing operation and the cleaning material for an automotive body. SOLUTION: The cleaning tool 3 with a clay layer 2 applied, in the thickness of 2 to 10 mm, at least over the entire face of an expanded resin molded product 1, is slided back and forth over a surface 10 to be cleaned in such a way that a lubricating water (liquid) 9 is interposed on the surface of the clay layer 2 so that the surface of the clay layer 2 comes into contact with the surface 10. Thus a solid matter or a liquid-state soil 11 sticking to the surface 10 is transferred to the clay layer 2, then the solid matter or the liquid-state soil 11 transferred to the surface of the clay layer 2 is removed using the cleaning solution 5 and the clean surface of the clay layer 2 is recovered.
    • 8. 发明专利
    • Nitrification and denitrification method in tank
    • 罐中的硝化和脱色方法
    • JP2003080291A
    • 2003-03-18
    • JP2001278451
    • 2001-09-13
    • Taiho Ind Co Ltdタイホー工業株式会社
    • MATSUMURA MASATOSHIITO AKIFUMISHIRAISHI HARUO
    • C12N1/00C02F3/10C02F3/34
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To provide a nitrification and denitrification method by which nitrification and denitrification can be carried out in a tank and reduction in a size and a cost is attained. SOLUTION: In the method, nitrogen in waste water is nitrified and denitrified in the tank. Two or more microorganism immobilization supports different from each other in oxygen permeability are put in the tank filled with waste water and ammonia nitrogen is converted to nitrous acid and nitric acid, further converted to gaseous nitrogen and removed in the tank under slightly aerobic conditions. The concentration of dissolved oxygen in the waste water in which microorganism immobilization supports are put, is kept at 0.5-1.5 mg/L while uniformly mixing the waste water in the tank. The mixing ratio between the two or more microorganism immobilization supports may be varied.
    • 要解决的问题:提供一种能够在罐中进行硝化和脱硝的硝化和脱氮方法,并且可以实现尺寸和成本的降低。 解决方案:在该方法中,废水中的氮在罐中被硝化和反硝化。 将两个或更多个氧气渗透性相互不同的微生物固定支架放入填充有废水的罐中,并将氨氮转化为亚硝酸和硝酸,进一步转化为气态氮,并在稍微有氧条件下在罐中除去。 将微生物固定支持的废水中的溶解氧浓度保持在0.5-1.5mg / L,同时将废水均匀地混合在罐中。 两种或更多种微生物固定化载体之间的混合比可以变化。