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    • 11. 发明授权
    • Compressed adsorbent filter cake
    • 压缩吸附剂滤饼
    • US5614096A
    • 1997-03-25
    • US448939
    • 1995-05-24
    • Bernard CohenLee K. JamesonGerald L. Kochanny, Jr.
    • Bernard CohenLee K. JamesonGerald L. Kochanny, Jr.
    • A23F5/22B01J20/28B01D39/06
    • B01J20/28028A23F5/223B01J20/28033
    • A compressed adsorbent filter cake for removing caffeine from liquids. The filter cake is composed of a compressed matrix of fibrous material; and adsorbent particulate material integrated within the compressed matrix of fibrous material, so that passage of a liquid having a caffeine concentration ranging from about 20 to about 100 mg per 100 mL of liquid through the matrix for a contact time of less than about 2 minutes results in at least a 40 percent reduction in the caffeine concentration of the liquid. The compressed matrix of fibrous material may a compressed wet-laid fibrous mat. The adsorbent material may be selected from clay minerals and zeolites. Generally speaking, the filter can be adapted to provide at least a 40 percent reduction in the caffeine concentration for about 1 cup to about 40 cups of a liquid.
    • 用于从液体中去除咖啡因的压缩吸附滤饼。 滤饼由纤维材料的压缩基体组成; 以及整合在纤维材料的压缩基质内的吸附剂颗粒材料,使得每100mL液体中咖啡因浓度范围为约20至约100mg的液体通过基质,接触时间小于约2分钟 在液体的咖啡因浓度降低至少40%。 纤维材料的压缩基质可以是压缩的湿法成网纤维垫。 吸附剂材料可以选自粘土矿物和沸石。 一般来说,过滤器可以适合于提供约1杯至约40杯液体的咖啡因浓度的至少40%的降低。
    • 14. 发明授权
    • Ultrasonic unitized fuel injector with ceramic valve body
    • US06543700B2
    • 2003-04-08
    • US09915633
    • 2001-07-26
    • Lee Kirby JamesonBernard CohenLamar Heath Gipson
    • Lee Kirby JamesonBernard CohenLamar Heath Gipson
    • B05B304
    • F02M57/023F02M61/166F02M69/041
    • An ultrasonic fuel injector for injecting a pressurized liquid fuel into the combustion chamber of an internal combustion engine that uses an overhead cam for actuating the injector includes a valve body having an injector needle disposed therein forming a needle valve to meter the flow of fuel through the injector. The valve body is formed of ceramic material that is transparent to magnetic fields changing at ultrasonic frequencies. The injector needle includes a magnetostrictive portion disposed in the region of the valve body that is surrounded by a wire coil wound around the outside surface of the ceramic valve body. The wire coil is connected to a source of electric power that oscillates at ultrasonic frequencies. A sensor is configured to signal when the overhead cam is actuating the injector to inject fuel into the combustion chamber of the engine. The sensor is connected to a control that is connected to the power source and is configured to operate same only when the overhead cam is actuating the injector to inject fuel into the combustion chamber of the engine. When the power source activates the oscillating magnetic field in the coil and applies same to the magnetostrictive portion of the needle, ultrasonic energy is applied to the pressurized liquid. The method involves retrofitting a conventional injector with a needle having a magnetostrictive portion and with a ceramic valve body surrounded by wound wire coils configured and disposed to subject the magnetostrictive portion of the needle to ultrasonically oscillating magnetic fields.