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    • 4. 发明授权
    • Chemically modified mycological materials having absorbent properties
    • 具有吸收性能的化学改性真菌学材料
    • US09555395B2
    • 2017-01-31
    • US14448285
    • 2014-07-31
    • Sarah Jane AraldiGregory John TudrynCourtney Elizabeth HartAlex James Carlton
    • Sarah Jane AraldiGregory John TudrynCourtney Elizabeth HartAlex James Carlton
    • B01J20/24B01J20/30
    • B01J20/30B01J20/24Y02E50/16
    • A method of producing an absorbent biocompatible material which comprises mixing at least one mycological material, such as a fungus or fungal tissue, with at least one lignocellulosic material to provide a biocomposite material comprising the at least one mycological material and the at least one lignocellulosic material. The biocomposite material then is contacted with at least one substance that increases the hydrophilicity of the biocomposite material, thereby providing an absorbent biocomposite material that has a variety of uses, such as absorbent materials for use in vegetation propagation and preservation, animal bedding, animal litter, filler in diapers, cold chain materials for temperature regulation, ice packs, absorbent foams and mats, such as decorative floral arrangement foams, carpet mats, and absorbent booms applied to chemical spills.
    • 一种生产吸收性生物相容性材料的方法,其包括将至少一种真菌学物质如真菌或真菌组织与至少一种木质纤维素材料混合以提供包含至少一种真菌学材料和至少一种木质纤维素材料的生物复合材料 。 然后将生物复合材料与至少一种增加生物复合材料的亲水性的物质接触,从而提供具有各种用途的吸收性生物复合材料,例如用于植被繁殖和保存的吸收材料,动物床上用品,动物垫料 ,尿布中的填料,用于温度调节的冷链材料,冰袋,吸收泡沫和垫子,例如装饰花卉布置泡沫,地毯垫和应用于化学品泄漏的吸收臂。
    • 8. 发明授权
    • Capacitively operating touch panel device
    • 电容式操作触摸屏设备
    • US09377914B2
    • 2016-06-28
    • US14233250
    • 2012-06-21
    • Walter FixAndreas Ullmann
    • Walter FixAndreas Ullmann
    • G06F3/041G06F3/044
    • G06F3/044G06F2203/04112
    • A multi-layer body has a transparent first area which comprises a plurality of touch panels in the first area with a carrier substrate transparent in the first area, and a partially electrically conductive first layer transparent at least in the first area. The first layer has, in the first area, electrically conductive transmission areas, receiving areas and connection areas each formed by a pattern of electrically conductive, non-transparent tracks whose width in the first area is such that the electrically conductive transmission areas, receiving areas and connection areas are transparent. One of the electrically conductive transmission areas and one of the electrically conductive receiving areas are in each touch panel in the first layer and galvanically separated from each other on both sides of a gap separating them, wherein n transmission areas of different touch panels in the first layer are electrically connected to each other and to a contact area outside the first area in the first layer via one of the electrically conductive connection areas of the first layer, and m receiving areas of different touch panels in the first layer are electrically connected to each other and to a contact area formed outside the first area in the first layer via one of the electrically conductive connection areas formed in the first layer, wherein n≧ and m≧2.
    • 多层体具有透明的第一区域,其包括第一区域中的多个触摸面板,其中第一区域中具有透明的载体衬底,以及至少在第一区域中透明的部分导电的第一层。 第一层在第一区域中具有导电传输区域,接收区域和连接区域,每个区域和连接区域由导电的不透明轨道的图案形成,其第一区域中的宽度使得导电传输区域,接收区域 连接区域是透明的。 导电传输区域中的一个和导电接收区域中的一个位于第一层中的每个触摸面板中,并且在分离它们的间隙的两侧上彼此电隔离,其中第一个不同触摸面板的n个透射区域 层经由第一层的导电连接区域中的一个电连接到第一层中的第一区域外部的接触区域,并且第一层中的不同触摸面板的m个接收区域电连接到每个 通过形成在第一层中的导电连接区域之一形成在第一层的第一区域外侧的接触区域,其中n≥mm≥2。