会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Photocatalyst, photocatalyst-carried ceramic porous body, decomposition cleaning method for toxic substance and gas cleaning device
    • 光催化剂,光催化淀粉陶瓷多孔体,有毒物质和气体清洁装置的分解清洗方法
    • JP2005111355A
    • 2005-04-28
    • JP2003348042
    • 2003-10-07
    • Meidensha CorpTokyoto Gesuido Service Kk東京都下水道サービス株式会社株式会社明電舎
    • NOGUCHI HIROSHI
    • B01J35/02
    • PROBLEM TO BE SOLVED: To provide a photocatalyst capable of quickly decomposing/cleaning a toxic substance.
      SOLUTION: In an immersion step 1, a ceramic porous body with a void diameter of 2-3 mm comprising cordierite is immersed into a sol solution of titanium oxide and is pulled up from the sol solution. Thereafter, in a removal step 2, the sol solution remaining in the pore is removed by a blower, and in a calcination step 3, the ceramic porous body removed of the sol solution in the pore is calcined at 500°C to obtain the titanium oxide porous body. In a second immersion step 4, the titanium oxide porous body is immersed into a basic water having pH adjusted to 9.6 for 1 hour, and in a drying step 5, the titanium oxide porous body after the immersion is dried at 110°C for 2 hours to complete the production of the titanium oxide porous body with excellent decomposition cleaning speed.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供能够快速分解/清洗有毒物质的光催化剂。 解决方案:在浸渍步骤1中,将包含堇青石的空隙直径为2-3mm的陶瓷多孔体浸入氧化钛溶胶溶液中并从溶胶溶液中拉出。 然后,在除去工序2中,通过鼓风机除去保留在孔中的溶胶溶液,在烧成工序3中,将除去孔内的溶胶溶液的陶瓷多孔体在500℃下煅烧,得到钛 氧化物多孔体。 在第二浸渍工序4中,将氧化钛多孔体浸入pH为9.6的碱性水中1小时,在干燥工序5中,将浸渍后的氧化钛多孔体在110℃下干燥2次 小时完成氧化钛多孔体的生产,具有优良的分解清洗速度。 版权所有(C)2005,JPO&NCIPI
    • 2. 发明专利
    • Structure of sludge concentration part
    • 泥浆浓度结构部分
    • JP2005021741A
    • 2005-01-27
    • JP2003187134
    • 2003-06-30
    • Sanki Eng Co LtdTokyoto Gesuido Service Kk三機工業株式会社東京都下水道サービス株式会社
    • MATSUDA MAKOTOHANDA DAISUKENONAKA TOKIONAKAGAWA KENICHI
    • B01D33/17C02F11/12
    • PROBLEM TO BE SOLVED: To adjust the concentration of the concentrated sludge discharged from a concentration tank to a desired concentration.
      SOLUTION: In the structure of a sludge concentration part equipped with a rotatable honeycomb screen 17a arranged in the concentration tank 16 and constituted so that a natural falling means 10 for supplying flocculated sludge 8 into the concentration tank 16 is connected to one part in the diametric direction of the honeycomb screen 17a of the concentration tank 16 and a concentrated sludge discharging opening part 16c for discharging concentrated sludge 12 to the outside of the concentration tank 16 is formed to the other part in the diametric direction of the honeycomb screen 17a of the concentration tank 16 and a weir plate 27 made liftable by a drive device 28 is provided to the concentrated sludge discharging opening part 16c. This structure of the sludge concentration part is also equipped with a concentration detecting means 33 for detecting the concentration of the concentrated sludge 12 discharged from the concentration tank 16 and a calculation control device 37 for calculating the rising and falling quantity of the weir plate 27 based on a detected concentration detection value V1 and issuing a weir plate raising and lowering command V2 to the drive device 28.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:将从浓缩罐排出的浓缩污泥的浓度调节至所需浓度。 解决方案:在具有设置在浓缩罐16中的可旋转蜂窝筛网17a的污泥浓缩部分的结构中,构成为将絮凝污泥8供给到浓缩罐16中的自然落下装置10连接到一个部分 在浓缩罐16的蜂窝筛网17a的直径方向和浓缩污泥12向浓缩罐16的外侧排出的浓缩污泥排出口部16c形成在蜂窝筛网17a的直径方向上的另一部分 和由驱动装置28可升降的堰板27设置在浓缩污泥排出口部16c上。 污泥浓缩部分的这种结构还配备有浓度检测装置33,用于检测从浓缩罐16排出的浓缩污泥12的浓度,以及计算控制装置37,用于计算堰板27的上升和下降量 检测浓度检测值V1,并向驱动装置28发出堰板升降指令V2。版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • INFRARED INSTRUMENT FOR MEASURING COMBUSTION ENERGY
    • JP2003156436A
    • 2003-05-30
    • JP2001354347
    • 2001-11-20
    • ORGANO KKTOKYOTO GESUIDO SERVICE KK
    • HAYASHI TOMOYUKIOE SHUHEIKAWAZOE SADAJI
    • G01N21/3554G01N21/35
    • PROBLEM TO BE SOLVED: To precisely measure a combustion energy value and a moisture value of a sludge cake. SOLUTION: A combination of infrared rays is selected corresponding to the measuring-objective sludge cake S, out of the infrared ray for moisture measurement of a narrow band having 1940 nm of main wavelength, the infrared ray for reducing a reflectance of disturbance comprising a narrow band having 1300 nm of main wavelength, the infrared ray for lipid absorbed easily by the lipid having a narrow band comprising 1,725 nm of main wavelength, the infrared ray for a fiber absorbed easily by the fiber having a narrow band comprising 1,800 nm of main wavelength, the infrared ray for a protein absorbed easily by the protein having a narrow band comprising 2,060 nm of main wavelength, and the infrared ray for a saccharide absorbed easily by the saccharide having a narrow band comprising 2,100 nm of main wavelength, and an interference filter F is used to transmit selectively the selected respective infrared rays. The transmission band of the interference filter F is brought into ±10 nm of half breadth. The combustion energy value and the moisture value are found, based on two working curves in response to the selected infrared rays, and reflected light quantities of the infrared rays.