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    • 1. 发明专利
    • Porous composite body, and method for producing the same
    • 多孔复合体及其制造方法
    • JP2007070161A
    • 2007-03-22
    • JP2005259039
    • 2005-09-07
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • TOWATA ATSUYAIIDA YASUOYASUI KYUICHITSUJIUCHI TORUKOZUKA TERUYUKIOTA KAZUNORIOOHASHI MASAYOSHI
    • C04B38/00B01D39/16B01D71/02C04B38/06
    • PROBLEM TO BE SOLVED: To provide a porous material composed of an accumulated body of porous bodies each having an inorganic porous structure of a metallic compound(s) and holding the outer shell shape of a granular biological material, to provide a method for producing the same, and to provide a functional member.
      SOLUTION: The porous material is formed in such a manner that a metallic compound(s) is precipitated, covered or mixed on the surface of a granular biological material or into a solution. The porous material is composed of an accumulated body of porous bodies each having a porous membrane structure of the metallic compound(s) and holding the outer shell shape of the biological material. The production method uses the same. The functional member is obtained by using the same. According to this invention, the porous material having bimodal pores of macropores whose pore shape and pore size are relatively uniformly arranged and mesopores composed as a wall can be easily produced and provided by an environment-friendly means. The porous material can be suitably used as porous materials such as an absorber, a separation material, a catalyst and a filter utilizing the characteristics of its high adsorption performance.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种多孔体,其由具有金属化合物的无机多孔结构并保持粒状生物材料的外壳形状的多孔体的积体构成,以提供一种方法 用于制造它们,并提供功能性成员。 解决方案:多孔材料以这样一种方式形成,使金属化合物沉淀,覆盖或混合在粒状生物材料的表面或溶液中。 多孔材料由多孔体的堆积体组成,每个多孔体具有金属化合物的多孔膜结构并保持生物材料的外壳形状。 生产方法使用相同。 通过使用它来获得功能元件。 根据本发明,可以容易地制造具有细孔形状和孔径相对均匀布置的大孔的双峰孔和由壁构成的中孔的多孔材料,并且通过环境友好的方式提供。 多孔材料可以适当地用作多孔材料,例如吸收剂,分离材料,催化剂和利用其高吸附性能的特性的过滤器。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Method and system for recovering dyestuff for nondestructive test of ceramics
    • 用于恢复陶瓷非破坏性试验的方法和系统
    • JP2007229605A
    • 2007-09-13
    • JP2006053750
    • 2006-02-28
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • OTA KAZUNORIKUME MASAICHIWATARI KOJI
    • C02F1/28B01J20/10B01J20/34
    • PROBLEM TO BE SOLVED: To provide a method and a system for recovering dyestuffs contained in dyestuff waste water to be discharged when a nondestructive test is performed on ceramics and to provide a dyestuff adsorbent. SOLUTION: The method for recovering dyestuffs for the nondestructive test of ceramics comprises the steps of: introducing dyestuff waste water into an adsorbent column packed with the dyestuff absorbent to adsorb dyestuffs in dyestuff waste water; stopping the introduction of the dyestuff waste water into the adsorbent column before the amount of the dyestuffs to leak out of the adsorbent column is increased; and introducing an organic solvent for desorbing dyestuffs into the adsorbent column to desorb the adsorbed dyestuffs, discharge the desorbed dyestuffs from the adsorbent column and recover dyestuffs and the organic solvent for desorbing dyestuffs. The system for recovering dyestuffs for the nondestructive test of ceramics and the dyestuff adsorbent are provided. As a result, a technique for recovering dyestuffs in dyestuff waste water in high efficiency can be provided, by which colored sludge is not generated, a load to be imposed on the environment can be decreased, the cost of disposal can be saved and the dyestuff-recovered waste water can be reused as various kinds of industrial water. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种在对陶瓷进行非破坏性试验时回收待排出的染料废水中含有的染料的方法和系统,并提供染料吸附剂。 解决方案:回收用于陶瓷无损检测的染料的方法包括以下步骤:将染料废水引入填充有染料吸收剂的吸附塔中,以吸附染料废水中的染料; 在染料从吸附剂柱中泄漏出来的量之前,停止将染料废水引入吸附塔; 并将吸附剂脱色剂的有机溶剂引入吸附塔中脱附吸附的染料,从吸附塔排出脱附的染料,回收染料和脱色剂的有机溶剂。 提供了回收用于陶瓷和染料吸附剂非破坏性试验的染料体系。 结果,可以提供高效率地回收染料废水中的染料的技术,通过该技术不会产生有色污泥,可以降低对环境的负担,可以节省处理成本, - 回收废水可以重复用作各种工业用水。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Hollow complex and its manufacturing method
    • 中空复合及其制造方法
    • JP2006326557A
    • 2006-12-07
    • JP2005157776
    • 2005-05-30
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • TOWATA ATSUYAIIDA YASUOYASUI KYUICHITSUJIUCHI TORUKOZUKA TERUYUKIOTA KAZUNORIOOHASHI MASAYOSHI
    • B01J20/28A61K8/19B01J20/02B01J20/04B01J20/06B01J20/08B01J20/10C01B13/32C01B33/12C01G23/04C01G25/02
    • PROBLEM TO BE SOLVED: To provide a porous hollow particle which has an inorganic porous structure of a metallic compound and maintains the shell shape of a particulate biomaterial, its manufacturing method, and a functional member.
      SOLUTION: The porous hollow particle is made by precipitating the metallic compound on the surface of the particulate biomaterial or covering the surface with the metallic compound, has the porous structure of the metallic compound, and maintains the shell shape of the particulate biomaterial. The functional member contains the hollow particle as a component. The manufacturing method can easily manufacture micron-sized porous hollow particle of which the particle shape and particle diameter are relatively uniform by an environment-friendly method. The porous hollow particle can be suitability used as a particulate material for, for example, an adsorbent, a separation material, pigment, a cosmetic, a catalyst, and paint by using its characteristics, such as high adsorptive capacity, a high light-reflex property, and a high friction function.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种多孔中空颗粒,其具有金属化合物的无机多孔结构并保持颗粒状生物材料的壳形状,其制造方法和功能构件。 解决方案:多孔中空颗粒是通过将金属化合物沉淀在颗粒生物材料的表面上或用金属化合物覆盖表面而制成的,具有金属化合物的多孔结构,并保持颗粒状生物材料的壳形状 。 功能性构件包含中空颗粒作为组分。 该制造方法可以通过环保方法容易地制造其颗粒形状和粒径相对均匀的微米级多孔中空颗粒。 多孔中空颗粒可以适用于例如吸附剂,分离材料,颜料,化妆品,催化剂和涂料的颗粒材料,通过使用其特性,例如高吸附能力,高反射光 性能和高摩擦功能。 版权所有(C)2007,JPO&INPIT