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    • 3. 发明专利
    • Method for coating polyester fiber with photocatalyst
    • 用光聚合物涂覆聚酯纤维的方法
    • JP2007229667A
    • 2007-09-13
    • JP2006056816
    • 2006-03-02
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • MATSUZAWA SADAONEGISHI NOBUAKIOKO YOSHIHISAHIRAKAWA TSUTOMU
    • B01J35/02B01J35/06B05D7/00B05D7/24D06M11/46D06M15/333D06M15/643D06M101/32
    • PROBLEM TO BE SOLVED: To provide a method for coating a polyester fiber with a photocatalyst by which a high-activity and hardly-exfoliative polyester-photocatalyst material in which the photocatalyst such as titanium dioxide is bonded densely and strongly to the surface of a polyester fiber material, can be produced while preventing the photocatalyst from being buried in a binder component to be used for coating the polyester fiber material.
      SOLUTION: The method for coating the polyester fiber with the photocatalyst comprises the steps of: forming a dry coating film of a polyvinyl acetate-based resin having a negative electric charge on the surface of the polyester fiber the surface of which is treated with silica; bringing the coating film-formed polyester fiber into contact with a liquid mixture of the photocatalyst with water, in which the weight ratio of (the photocatalyst):(water) is 0.0005:1 to 0.1:1 and the pH of which is ≤6.5, to bond the photocatalyst electrostatically to the coating film; and removing water at 0-40°C to coat the polyester fiber with the photocatalyst.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用光催化剂涂覆聚酯纤维的方法,通过该方法,其中光催化剂如二氧化钛的高活性和几乎不剥落的聚酯 - 光催化剂材料紧密地粘结到表面上 的聚酯纤维材料,可以防止将光催化剂埋入用于涂布聚酯纤维材料的粘合剂成分中。 解决方案:用光催化剂涂覆聚酯纤维的方法包括以下步骤:在其表面被处理的聚酯纤维的表面上形成具有负电荷的聚乙酸乙烯酯基树脂的干涂层 与二氧化硅; 使涂膜形成的聚酯纤维与光催化剂的液体混合物与水接触,其中(光催化剂):(水)的重量比为0.0005:1至0.1:1,pH为≤6.5 将光催化剂静电粘结到涂膜上; 并在0-40℃下除去水,用光催化剂涂覆聚酯纤维。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Toxic substance treatment method and device for treatment
    • 用于治疗的毒性物质治疗方法和装置
    • JP2009233590A
    • 2009-10-15
    • JP2008083523
    • 2008-03-27
    • Meidensha CorpNational Institute Of Advanced Industrial & Technology株式会社明電舎独立行政法人産業技術総合研究所
    • OKO YOSHIHISANEGISHI NOBUAKITAKEUCHI HIROSHINOGUCHI HIROSHIISHIGAKI TSUNEHISA
    • B01J35/02B01D53/86B01D53/94B01J23/72
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus which can be suitably used for detoxifying a toxic substance in a gas inexpensively without adding a reducing agent. SOLUTION: The toxic substance treatment device 1 is provided with a gas passing part 2 to which the gas is supplied, a photocatalyst filter 3 (photocatalyst member) which is brought into contact with the gas supplied within the gas passing part 2 and a light source 5 which irradiates the lights required for excitation of the photocatalyst included in the photocatalyst filter 3 to the photocatalyst filter 3. The photocatalyst filter 3 contains the photocatalyst having a metal, metal oxide or metal hydroxide with higher redox potential than that of the toxic substance included in the gas supported. When the toxic substance is nitrogen dioxide, the metal or metal oxide that is supported on the photocatalyst is copper or copper oxide. The photocatalyst is a titanium oxide photocatalyst. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种方法和装置,其可以适当地用于低成本地对无机废物中的有毒物质进行解毒而不添加还原剂。 < P>解决方案:有毒物质处理装置1设置有供给气体的气体通过部2,与气体通过部2内供给的气体接触的光催化剂过滤器3(光催化剂部件) 将光催化剂过滤器3中包含的光催化剂激发所需的光照射到光催化剂过滤器3的光源5.光催化剂过滤器3含有具有比氧化还原电位高的氧化还原电位的金属,金属氧化物或金属氢氧化物的光催化剂 气体中含有有毒物质。 当有毒物质是二氧化氮时,负载在光催化剂上的金属或金属氧化物是铜或氧化铜。 光催化剂是氧化钛光催化剂。 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Automatic performance evaluation device of atmosphere purifying photocatalytic material
    • 大气净化光电材料的自动性能评估装置
    • JP2008076262A
    • 2008-04-03
    • JP2006256646
    • 2006-09-22
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • SANO TAIZOOKO YOSHIHISAKOIKE KAZUHIDESAKAI EMIKOMATSUZAWA SADAOTAKEUCHI HIROSHI
    • G01N31/10B01J35/02B01J37/00
    • PROBLEM TO BE SOLVED: To provide an automatic performance evaluation device of an atmosphere purifying photocatalyst capable of accurately and stably sampling a low flow speed low concentration gas being a target substance and capable of accurately calculating the performance of a photocatalyst as a result.
      SOLUTION: The automatic performance evaluation device of the atmosphere purifying photocatalytic material has a means for supplying a low concentration harmful standard gas by constant amount, a mass for supplying air containing humidity or air containing no humidity by constant amount, a supply means of the low concentration harmful standard gas containing air, which contains a constant amount of humidity, connected through a gas mixing container from those means and a means for measuring the content of the low concentration harmful standard gas the low concentration harmful standard gas containing air which contains humidity and measuring the content of the low concentration harmful standard gas contained in the unreacted low concentration harmful standard gas obtained from a reactor and evaluate the capacity of the atmosphere purifying photocatalytic material from the measuring results of both of them.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供能够精确稳定地取样作为目标物质的低流速低浓度气体并能够精确计算光催化剂性能的气氛纯化光催化剂的自动性能评价装置,结果 。 气溶胶净化光催化材料的自动性能评价装置具有用于以恒定量供给低浓度有害标准气体的装置,用于供给含湿度的空气的质量或恒定量的不含湿度的空气的装置,供给装置 含有通过气体混合容器从这些装置连接的含有恒定量的湿气的低浓度有害标准气体的含有低浓度有害标准气体的含有空气的低浓度有害标准气体的装置, 含有湿度并测量从反应器获得的未反应的低浓度有害标准气体中所含的低浓度有害标准气体的含量,并根据它们的测量结果评估大气净化光催化材料的容量。 版权所有(C)2008,JPO&INPIT