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    • 3. 发明专利
    • Dehumidification filter, desiccant air-conditioner using this dehumidification filter and air-conditioning method
    • 除湿过滤器,使用此除湿过滤器的空气调节器和空调方法
    • JP2010115643A
    • 2010-05-27
    • JP2009240716
    • 2009-10-19
    • Fuji Slate KkHokkaido UnivShizen Sozai Kenkyusho:KkWakkanai Green Factory:Kk国立大学法人北海道大学富士スレート株式会社有限会社稚内グリーンファクトリー株式会社自然素材研究所
    • NAGANO KATSUNORINAKABAYASHI SAYAYOSHIDA SHIGEOTOGAWA JUNYAKUROKAWA ASAMIMABUCHI YUZOMABUCHI ISATO
    • B01D53/28B01D53/26B01J20/12F24F3/14
    • PROBLEM TO BE SOLVED: To provide a dehumidification filter which has high dehumidifying function and the capability to easily and certainly regenerate itself at a lower temperature than conventionally set and ideally at normal temperatures and is very useful in terms of energy saving and device miniaturization, when this filter is applied to a desiccant rotor. SOLUTION: This dehumidification filter has the characteristics: a dehumidifying material formed of siliceous shale with numerous pores having an average pore diameter of 3-18 nm and a specific surface area of not less than 80 m 2 /g, is made to deposit on or to be included in a base material to be used for a desiccant rotor of a desiccant air-conditioner. The dehumidifying material is left at rest for 24 hours under environments at a temperature of 40°C and a relative humidity of 30%, and then is left at rest for two hours under environments at a temperature of 30°C and a relative humidity of 75%. In this case, the dehumidifying material shows a mass increase of not less than 60 mg/g. In addition, the dehumidifying material shows a mass decrease of not less than 60 mg/g when it is left at rest for two hours under environments at a temperature of 40°C and at a relative humidity of 30%. Besides, a deliquescent material adheres to, at least, the interior of the pore of the siliceous shale showing the difference between the mass increase and the mass decrease of not more than 20 mg/g. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种具有高除湿功能的除湿过滤器,并且能够在比常规设定的温度更低的温度下容易且可靠地再生,并且在正常温度下理想地再生,并且在节能和装置方面非常有用 当将该过滤器应用于干燥剂转子时,小型化。 解决方案:该除湿过滤器具有以下特征:由硅质页岩形成的除湿材料,具有许多孔,平均孔径为3-18nm,比表面积不小于80m 2 SP SP > / g,沉积在干燥剂空调器的干燥剂转子所用的基材中或被包含在基材中。 将除湿材料在温度40℃,相对湿度30%的环境下静置24小时,然后在30℃的温度和相对湿度的环境下静置2小时 75%。 在这种情况下,除湿材料的质量增加量不小于60mg / g。 此外,当在40℃的温度和30%的相对湿度的环境下静置2小时时,除湿材料的质量减少量不小于60mg / g。 此外,潮解材料至少粘附在硅质页岩的孔内,显示质量增加与质量减少之间的差异不超过20mg / g。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Kitchen air cleaning apparatus
    • 厨房空气清洁设备
    • JP2009213759A
    • 2009-09-24
    • JP2008062444
    • 2008-03-12
    • Fuji Slate KkHokkaido UnivShizen Sozai Kenkyusho:Kk国立大学法人 北海道大学富士スレート株式会社株式会社自然素材研究所
    • NAGANO KATSUNORIYOSHIDA SHIGEOMABUCHI YUZOMABUCHI ISATO
    • A61L9/16B01D46/10B01J20/12F24F7/00
    • F24C15/20
    • PROBLEM TO BE SOLVED: To provide a kitchen air cleaning apparatus capable of achieving space saving while securing excellent cleaning efficiency, permitting easy maintenance and management, and capable of suppressing the maintenance cost. SOLUTION: The kitchen air cleaning apparatus sucks contaminated air generated from the cooking of foodstuffs using an electric cooker from an air intake, cleans the contaminated air, and discharges the cleaned air from an air outlet. The kitchen air cleaning apparatus has an inorganic porous filter and a deodorant filter which are disposed in the order from the upstream side in a pathway communicating with the air intake and the air outlet. The inorganic porous filter has hygroscopic property, oil adsorptive property and hydrophilic gas adsorptive property. The deodorant filter has hydrophobic gas adsorptive property. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种厨房空气净化装置,其能够在确保优异的清洁效率的同时实现节省空间,容易维护和管理,并且能够抑制维护成本。

      解决方案:厨房空气净化装置使用来自进气口的电饭煲吸收从烹饪食物产生的污染空气,清洁被污染的空气,并将清洁的空气从出气口排出。 厨房空气净化装置具有无机多孔过滤器和除臭过滤器,该空气过滤器和除臭过滤器以与进气口和出气口连通的路径中的上游侧的顺序设置。 无机多孔过滤器具有吸湿性,吸油性和亲水性气体吸附性能。 除臭过滤器具有疏水性气体吸附性能。 版权所有(C)2009,JPO&INPIT

    • 10. 发明专利
    • Heat insulation structure of foundation
    • 基础热绝缘结构
    • JP2008144369A
    • 2008-06-26
    • JP2006329324
    • 2006-12-06
    • Dow Kakoh KkShizen Sozai Kenkyusho:Kkダウ化工株式会社株式会社自然素材研究所
    • YOSHIDA SHIGEOWAKANA SHIGERU
    • E04B1/80
    • PROBLEM TO BE SOLVED: To provide a heat insulation structure of a foundation allowing a person to check whether a termite trail is formed on a surface of a foundation erected part covered with a heat insulation layer of the foundation or in the inside of a heat insulating material or not visually, simply, and securely. SOLUTION: In this heat insulation structure of the foundation provided with the tabular heat insulating materials on a surface of at least either of the foundation erected parts erected like a wall from the ground and supporting a building skeleton, the tabular heat insulating material is divided into at least two upper and lower rows and is constituted by arranging the heat insulating materials arranged like belt plates on the right and left sides vertically in parallel, and the tabular heat insulating materials in at least one row being horizontally continuous are detachably attached to the foundation erected parts to form an inspection part allowing the person to check whether there is the termite trail in the foundation erected parts or not visually by attaching them to the foundation erected parts detachably. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种基座的隔热结构,其允许人们检查在由基础的隔热层覆盖的基础竖立部分的表面上或在基础的内部是否形成有白蚁痕迹 隔热材料,或者视觉上,简单和可靠地不可见。 解决方案:在该基座的隔热结构中,在从地面上竖起的墙体和支撑建筑物骨架的至少一个基础竖立部分的表面上设置有片状绝热材料,该板状绝热材料 被分成至少两个上排和下排,并且通过平行地布置在右侧和左侧上排列成类似带板的隔热材料而构成,并且至少一排水平连续的片状隔热材料可拆卸地附接 到基础竖立部件形成检查部件,允许人员通过将其可拆卸地附接到基础竖立部件来检查在基础竖立部件中是否存在白蚁轨迹或者不可视地。 版权所有(C)2008,JPO&INPIT