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    • 2. 发明授权
    • Wearable personal cooling and hydration system
    • 可穿戴个人冷却和水合系统
    • US07509692B2
    • 2009-03-31
    • US11127866
    • 2005-05-11
    • William ElkinsKenneth L. BlanchardMaurice Jordan
    • William ElkinsKenneth L. BlanchardMaurice Jordan
    • A41D1/04F28F7/00
    • A41D13/0053A41D2400/46A62B17/00A62B17/005F25B2400/24F25D17/02F25D2303/0822F25D2400/26
    • A heat transfer fluid pathway is provided driven by a pump which feeds the heat transfer fluid through a vest and cap or other heat transfer garment, where the heat transfer fluid draws heat away from the body of the wearer. A drinkable heat sink material is located within a removable cartridge located within a heat exchange pouch. The heat transfer fluid passes from the heat transfer garment to the heat exchange pouch where heat drawn from the wearer is transferred to the heat sink material within the cartridge. A temperature control valve is provided along with a bypass line so that an adjustable amount of the heat transfer fluid is routed to the heat exchange pouch for temperature control. A supply of elevated pressure air is optionally provided to maintain optimal contact for efficient heat transfer within the heat exchange garment and the heat exchange pouch.
    • 提供的传热流体通道由泵驱动,泵通过背心和帽或其它传热衣服供给传热流体,其中传热流体将热量从穿着者的身体吸走。 可饮用的散热器材料位于位于热交换袋内的可移除盒中。 传热流体从传热衣服传递到热交换袋,其中从穿戴者吸取的热量被转移到药筒内的散热器材料。 温度控制阀与旁路管线一起设置,使得可调节量的传热流体被引导到用于温度控制的热交换袋。 任选地提供高压空气的供应以保持最佳接触,以在热交换衣服和热交换袋内有效地传热。
    • 3. 发明申请
    • Cold Wall Horizontal Ammonia Converter
    • 冷壁水平氨转换器
    • US20090297427A1
    • 2009-12-03
    • US12128730
    • 2008-05-29
    • Kenneth L. Blanchard
    • Kenneth L. Blanchard
    • C01C1/04
    • C01C1/0417B01J8/0423B01J2208/00212B01J2219/00006C01C1/0411C01C1/0423C01C1/0476Y02P20/52
    • Systems and methods for producing ammonia. Nitrogen and hydrogen can be supplied to a reaction zone disposed inside an inner shell. The inner shell can be disposed inside an outer shell such that a space is formed therebetween. The reaction zone can include at least one catalyst bed in indirect heat exchange with the space. The nitrogen and hydrogen can be reacted in the reaction zone in the presence of at least one catalyst to form an effluent comprising ammonia. The effluent can be recovered from the inner shell and cooled to provide a cooled effluent stream. A cooling fluid can be provided to the outer shell such that the cooling fluid flows through at least a portion of the space and is in fluid communication with the exterior of the inner shell. At least a portion of the cooled effluent can provide at least a portion of the cooling fluid. The cooling fluid can then be recovered from the outer shell as an ammonia product.
    • 用于生产氨的系统和方法。 氮和氢可以供应到设置在内壳内的反应区。 内壳可以设置在外壳的内部,从而在它们之间形成空间。 反应区可以包括与空间间接热交换的至少一个催化剂床。 氮和氢可以在反应区中在至少一种催化剂的存在下反应,形成包含氨的流出物。 流出物可以从内壳回收并冷却以提供冷却的流出物流。 可以向外壳提供冷却流体,使得冷却流体流过空间的至少一部分并与内壳的外部流体连通。 冷却的流出物的至少一部分能够提供冷却流体的至少一部分。 然后冷却流体可以作为氨产物从外壳中回收。
    • 5. 发明授权
    • Cold wall horizontal ammonia converter
    • 冷壁水平氨转化器
    • US07867465B2
    • 2011-01-11
    • US12128730
    • 2008-05-29
    • Kenneth L. Blanchard
    • Kenneth L. Blanchard
    • C01C1/04
    • C01C1/0417B01J8/0423B01J2208/00212B01J2219/00006C01C1/0411C01C1/0423C01C1/0476Y02P20/52
    • Systems and methods for producing ammonia. Nitrogen and hydrogen can be supplied to a reaction zone disposed inside an inner shell. The inner shell can be disposed inside an outer shell such that a space is formed therebetween. The reaction zone can include at least one catalyst bed in indirect heat exchange with the space. The nitrogen and hydrogen can be reacted in the reaction zone in the presence of at least one catalyst to form an effluent comprising ammonia. The effluent can be recovered from the inner shell and cooled to provide a cooled effluent stream. A cooling fluid can be provided to the outer shell such that the cooling fluid flows through at least a portion of the space and is in fluid communication with the exterior of the inner shell. At least a portion of the cooled effluent can provide at least a portion of the cooling fluid. The cooling fluid can then be recovered from the outer shell as an ammonia product.
    • 用于生产氨的系统和方法。 氮和氢可以供应到设置在内壳内的反应区。 内壳可以设置在外壳的内部,从而在它们之间形成空间。 反应区可以包括与空间间接热交换的至少一个催化剂床。 氮和氢可以在反应区中在至少一种催化剂的存在下反应,形成包含氨的流出物。 流出物可以从内壳回收并冷却以提供冷却的流出物流。 可以向外壳提供冷却流体,使得冷却流体流过空间的至少一部分并与内壳的外部流体连通。 冷却的流出物的至少一部分能够提供冷却流体的至少一部分。 然后冷却流体可以作为氨产物从外壳中回收。