会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 7. 发明授权
    • Self-regulating gas generator and method
    • 自调气发生器及方法
    • US09522371B2
    • 2016-12-20
    • US13465798
    • 2012-05-07
    • Stephen A. MarshDonald M. ParkerPeter N. Pintauro
    • Stephen A. MarshDonald M. ParkerPeter N. Pintauro
    • B01J7/00C01B3/36C01B3/06C01B13/02
    • B01J7/00C01B3/065C01B13/02Y02E60/362
    • A self-regulating gas generator that, in response to gas demand, supplies and automatically adjusts the amount of gas (e.g., hydrogen or oxygen) catalytically generated in a chemical supply chamber from an appropriate chemical supply, such as a chemical solution, gas dissolved in liquid, or mixture. In some embodiments, the gas generator may employ a piston, rotating rod, or other element(s) to expose the chemical supply to the catalyst in controlled amounts. In another embodiment, the self-regulating gas generator uses bang-bang control, with the element(s) exposing a catalyst, contained within the chemical supply chamber, to the chemical supply in ON and OFF states according to a self-adjusting duty cycle, thereby generating and outputting the gas in an orientation-independent manner. The gas generator may be used to provide gas for various gas consuming devices, such as a fuel cell, torch, or oxygen respiratory devices.
    • 一种自我调节气体发生器,其响应于天然气需求,供应并自动调节化学品供应室中催化产生的气体(例如氢气或氧气)的数量,从适当的化学物质(如化学溶液),溶解的气体 在液体或混合物中。 在一些实施方案中,气体发生器可以使用活塞,旋转杆或其它元件以以受控的量暴露出催化剂的化学物质。 在另一个实施例中,自调节气体发生器使用爆炸控制,其中包含在化学物质供应室内的催化剂的元素根据自调节占空比在ON和OFF状态下进入化学物质供应 ,从而以取向不依赖的方式产生和输出气体。 气体发生器可用于为各种燃气消耗装置(例如燃料电池,割炬或氧气呼吸装置)提供气体。
    • 8. 发明授权
    • Cartridge for controlled production of hydrogen
    • 用于控制生产氢气的墨盒
    • US09409772B2
    • 2016-08-09
    • US14259048
    • 2014-04-22
    • Intelligent Energy Limited
    • Daniel BraithwaiteWonhyoung RyuCourtney Aline HellandKei E YamamotoAndrew Philip PetersonMatthieu JonemannAdam Naegeli RodriguezGabriel Jose Parisi-Amon
    • C01B3/02C01B3/06
    • C01B3/02C01B3/065Y02E60/362
    • A reaction hydrogen production control mechanism is provided that includes, a solid sodium borohydride mixture, a liquid fuel reactant, at least one liquid delivery medium (LDM), a movable boundary interface (MBI) and a reaction zone, where the MBI is disposed to provide a constant contact between a reacting surface of the solid fuel mixture and the primary LDM to form the reaction zone. A reaction in the reaction zone includes a hydrolysis reaction. The MBI moves according to a spring, gas pressure, or an elastic membrane. Product paths are disposed to transfer reactants from the system. The product paths can include a channel on a surface of the solid fuel mixture, a channel disposed through the solid fuel mixture, a channel disposed about the solid fuel mixture, a contained region disposed about the solid fuel mixture, or a conduit abutting the solid fuel mixture.
    • 提供反应氢生产控制机制,其包括固体硼氢化钠混合物,液体燃料反应物,至少一种液体输送介质(LDM),可移动边界界面(MBI)和反应区,其中MBI被设置为 在固体燃料混合物的反应表面和初级LDM之间提供恒定的接触以形成反应区。 反应区中的反应包括水解反应。 MBI根据弹簧,气体压力或弹性膜移动。 处理产品路径以从系统传递反应物。 产品路径可以包括在固体燃料混合物的表面上的通道,通过固体燃料混合物设置的通道,围绕固体燃料混合物设置的通道,围绕固体燃料混合物设置的容纳区域,或邻接固体的导管 燃料混合物
    • 9. 发明申请
    • Hydrogen Generator with Locking Door
    • 带锁门的氢发电机
    • US20150340718A1
    • 2015-11-26
    • US14816027
    • 2015-08-02
    • Intelligent Energy Inc.
    • Russell H. Barton
    • H01M8/06B01J19/24C01B3/02B01J19/00
    • C01B3/02B01J3/03B01J19/24C01B3/0005C01B3/04C01B3/065H01M8/04208H01M8/065Y02E60/324Y02E60/362Y02E60/364
    • Disclosed is a hydrogen generator with a door that can be opened to replace a fuel unit and closed to seal the door. A lock responds directly to pressure within the chamber to prevent opening when the pressure exceeds a threshold value. The lock includes a locking member with a lug that engages a retainer to seal the door when the door is locked and is disengaged from the retainer when the door is unlocked. An opening mechanism moves the locking member to lock and unlock the door. A movable key is engaged with the opening mechanism and the locking member when the pressure in the chamber is at or below the threshold value and disengaged from one of the opening mechanism and the locking member by an actuator (e.g., a flexible diaphragm) so the door cannot be unlocked and opened when the pressure is above the threshold value.
    • 公开了一种具有可以打开以更换燃料单元并关闭以密封门的门的氢发生器。 锁定直接响应室内的压力以防止当压力超过阈值时打开。 锁具包括具有凸耳的锁定构件,当门被锁定时,该凸耳接合保持器以密封门,并且当门被解锁时从锁定件脱离。 打开机构使锁定构件移动以锁定并解锁门。 当腔室中的压力等于或低于阈值时,可移动键与打开机构和锁定构件接合,并且通过致动器(例如,柔性隔膜)与打开机构和锁定构件中的一个脱离接合,因此, 当压力高于阈值时,门不能解锁并打开。