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    • 7. 发明授权
    • Synthesis of a low trans-content edible oil, non-edible oil, or fatty acid in a solid polymer electrolyte reactor
    • 在固体聚合物电解质反应器中合成低反式含量食用油,非食用油或脂肪酸
    • US06218556B1
    • 2001-04-17
    • US08748210
    • 1996-11-12
    • Peter N. Pintauro
    • Peter N. Pintauro
    • C11B300
    • C11C3/12C25B3/04
    • An electrochemical process for hydrogenating an unsaturated fatty acid, mixtures of two or more fatty acids, or the unsaturated fatty acid constituents of an edible or non-edible oil's triglycerides is performed using a solid polymer electrolyte reactor. Membrane electrode assemblies consist of a cation exchange membrane onto which porous anode and cathode electrodes are attached. As the electrodes are permeable, reactant and products enter and leave the membrane/cathode and membrane/anode reaction zones via the back sides of the electrodes. Hydrogen is generated in situ by the electro-reduction of protons that are formed at the anode and which migrate through the ion exchange membrane for reaction with the fifty acids or fatty acid constituents. In the disclosed process, only protons (H+ ions) carry the current between the anode and the cathode. The need for a supporting electrolyte to conduct electricity has been circumvented. The disclosed process operates at a low to moderate temperature at atmospheric or moderate pressure without the use of a supporting electrolyte that will contaminate the oil. A novel partially hydrogenated oil product selected from the group consisting of a partially hydrogenated fatty acid, a partially hydrogenated triglyceride, and mixtures thereof is produced by the disclosed process. The product produced from the disclosed process has: a trans-isomer content lower than that of a similarly hydrogenated oil product formed in a high temperature chemical catalytic reaction process; a peroxide value of less than about 1.5%; free fatty acid content of less than about 0.02%; and, improved purity.
    • 使用固体聚合物电解质反应器进行用于氢化不饱和脂肪酸,两种或更多种脂肪酸的混合物或可食用或不可食用油的甘油三酸酯的不饱和脂肪酸组分的电化学方法。 膜电极组件由多孔阳极和阴极连接到其上的阳离子交换膜组成。 由于电极是可渗透的,反应物和产物经由电极的背面进入和离开膜/阴极和膜/阳极反应区。 通过在阳极处形成的质子的电还原原位生成氢,并通过离子交换膜迁移以与五十酸或脂肪酸组分反应。 在所公开的方法中,只有质子(H +离子)承载阳极和阴极之间的电流。 需要配套的电解质进行电力的设计已经被规避了。 所公开的方法在大气压或中等压力下在低至中等温度下操作,而不使用将污染油的支撑电解质。 通过公开的方法制备选自部分氢化的脂肪酸,部分氢化的甘油三酸酯及其混合物的新型部分氢化油产物。 从所公开的方法生产的产品具有:反式异构体含量低于在高温化学催化反应过程中形成的类似氢化油产物的反式异构体含量; 过氧化值小于约1.5%; 游离脂肪酸含量小于约0.02%; 并提高纯度。
    • 8. 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。
    • 9. 发明申请
    • SELF-REGULATING GAS GENERATOR AND METHOD
    • 自调节气体发生器和方法
    • US20130295002A1
    • 2013-11-07
    • US13465798
    • 2012-05-07
    • Stephen A. MarshDonald M. ParkerPeter N. Pintauro
    • Stephen A. MarshDonald M. ParkerPeter N. Pintauro
    • B01J7/00C01B13/02C01B3/02
    • 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。