Patents Assigned to The United States of America as represented by the United State Department of Energy
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Patent number: 7740948Abstract: This disclosure addresses the issue of providing a metallic-ceramic overlay coating that potentially serves as an interface or bond coat layer to provide enhanced oxidation resistance to the underlying superalloy substrate via the formation of a diffusion barrier regime within the supporting base material. Furthermore, the metallic-ceramic coating is expected to limit the growth of a continuous thermally grown oxide (TGO) layer that has been primarily considered to be the principal cause for failure of existing TBC systems. Compositional compatibility of the metallic-ceramic with traditional yttria-stabilized zirconia (YSZ) top coats is provided to further limit debond or spallation of the coating during operational use. A metallic-ceramic architecture is disclosed wherein enhanced oxidation resistance is imparted to the surface of nickel-based superalloy or single crystal metal substrate, with simultaneous integration of the yttria stabilized zirconia (YSZ) within the metallic-ceramic overlayer.Type: GrantFiled: May 31, 2007Date of Patent: June 22, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventor: Mary Anne Alvin
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Patent number: 7722757Abstract: A method and device for the production of hydrogen from water and electricity using an active metal alloy. The active metal alloy reacts with water producing hydrogen and a metal hydroxide. The metal hydroxide is consumed, restoring the active metal alloy, by applying a voltage between the active metal alloy and the metal hydroxide. As the process is sustainable, only water and electricity is required to sustain the reaction generating hydrogen.Type: GrantFiled: September 29, 2006Date of Patent: May 25, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: William E. Miller, Victor A. Maroni, James L. Willit
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Patent number: 7718033Abstract: A one step method and system for producing nanofluids by a particle-source evaporation and deposition of the evaporant into a base fluid. The base fluid such (i.e. ethylene glycol) is placed in a rotating cylindrical drum having an adjustable heater-boat-evaporator and heat exchanger-cooler apparatus. As the drum rotates, a thin liquid layer is formed on the inside surface of the drum. A heater-boat-evaporator having an evaporant material (particle-source) placed within its boat evaporator is adjustably positioned near a portion of the rotating thin liquid layer, the evaporant material being heated thereby evaporating a portion of the evaporant material, the evaporated material absorbed by the liquid film to form nanofluid.Type: GrantFiled: July 12, 2006Date of Patent: May 18, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Milivoje Kostic, Mihajlo Golubovic, John R. Hull, Stephen U. S. Choi
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Patent number: 7715098Abstract: An apparatus and method for improving the contrast between incident projected light and ambient light reflected from a projection screen are described. The efficiency of the projection screen for reflection of the projected light remains high, while permitting the projection screen to be utilized in a brightly lighted room. Light power requirements from the projection system utilized may be reduced.Type: GrantFiled: February 8, 2008Date of Patent: May 11, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventor: William C. Sweatt
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Patent number: 7704746Abstract: The invention provides methods for the measurement of carbon dioxide leakage from sequestration reservoirs. Tracer moieties are injected along with carbon dioxide into geological formations. Leakage is monitored by gas chromatographic analyses of absorbents. The invention also provides a process for the early leak detection of possible carbon dioxide leakage from sequestration reservoirs by measuring methane (CH4), ethane (C2H6), propane (C3H8), and/or radon (Rn) leakage rates from the reservoirs. The invention further provides a method for branding sequestered carbon dioxide using perfluorcarbon tracers (PFTs) to show ownership.Type: GrantFiled: January 9, 2009Date of Patent: April 27, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Curt White, Arthur Wells, J. Rodney Diehl, Brian Strazisar
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Patent number: 7705513Abstract: A system for the generation of Electricity from Thermal Energy using the thermal magnetic properties of a Ferromagnetic, Electrically Conductive Material (FECM) in one or more Magnetic Fields. A FECM is exposed to one or more Magnetic Fields. Thermal Energy is applied to a portion of the FECM heating the FECM above its Curie Point. The FECM, now partially paramagnetic, moves under the force of the one or more Magnetic Fields. The movement of the FECM induces an electrical current through the FECM, generating Electricity.Type: GrantFiled: September 24, 2007Date of Patent: April 27, 2010Assignee: United States of America as represented by the United States Department of EnergyInventors: Phillip B. West, John Svoboda
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Patent number: 7699916Abstract: A corrosion resistant, electrically-conductive, durable plate at least partially coated with an anchor coating and a corrosion resistant coating. The corrosion resistant coating made of at least a polymer and a plurality of corrosion resistant particles each having a surface area between about 1-20 m2/g and a diameter less than about 10 microns. Preferably, the plate is used as a bipolar plate in a proton exchange membrane (PEMFC) fuel cell stack.Type: GrantFiled: May 28, 2008Date of Patent: April 20, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: J. David Carter, Jennifer R. Mawdsley, Suhas Niyogi, Xiaoping Wang, Terry Cruse, Lilia Santos
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Patent number: 7697243Abstract: The determination of the strength of an in-plane magnetic field utilizing one or more magnetically-soft, ferromagnetic member, having a shape, size and material whereas a single magnetic vortex is formed at remanence in each ferromagnetic member. The preferred shape is a thin circle, or dot. Multiple ferromagnetic members can also be stacked on-top of each other and separated by a non-magnetic spacer. The resulting sensor is hysteresis free. The sensor's sensitivity, and magnetic saturation characteristics may be easily tuned by simply altering the material, size, shape, or a combination thereof to match the desired sensitivity and saturation characteristics. The sensor is self-resetting at remanence and therefore does not require any pinning techniques.Type: GrantFiled: September 8, 2006Date of Patent: April 13, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Valentyn Novosad, Kristen Buchanan
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Patent number: 7692789Abstract: The invention is a system and method of detecting a concentration of an element in a soil sample wherein an opening or slot is formed in a container that supports a soil sample that was extracted from the ground whereupon at least a length of the soil sample is exposed via the opening. At each of a plurality of points along the exposed length thereof, the soil sample is ablated whereupon a plasma is formed that emits light characteristic of the elemental composition of the ablated soil sample. Each instance of emitted light is separated according to its wavelength and for at least one of the wavelengths a corresponding data value related to the intensity of the light is determined. As a function of each data value a concentration of an element at the corresponding point along the length of the soil core sample is determined.Type: GrantFiled: April 13, 2007Date of Patent: April 6, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Michael H. Ebinger, Ronny D. Harris
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Patent number: 7671280Abstract: The bird guard provides a device to protect electrical insulators comprising a central shaft; a clamp attached to an end of the shaft to secure the device to a transmission tower; a top and bottom cover to shield transmission tower insulators; and bearings to allow the guard to rotate in order to frighten birds away from the insulators.Type: GrantFiled: February 28, 2007Date of Patent: March 2, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventor: Dana M. Fairchild
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Patent number: 7668621Abstract: A robot platform includes perceptors, locomotors, and a system controller. The system controller executes instructions for repeating, on each iteration through an event timing loop, the acts of defining an event horizon, detecting a range to obstacles around the robot, and testing for an event horizon intrusion. Defining the event horizon includes determining a distance from the robot that is proportional to a current velocity of the robot and testing for the event horizon intrusion includes determining if any range to the obstacles is within the event horizon. Finally, on each iteration through the event timing loop, the method includes reducing the current velocity of the robot in proportion to a loop period of the event timing loop if the event horizon intrusion occurs.Type: GrantFiled: July 5, 2006Date of Patent: February 23, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventor: David J. Bruemmer
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Patent number: 7655935Abstract: A self-contained source of gamma-ray and neutron radiation suitable for use as a radiation surrogate for weapons-grade plutonium is described. The source generates a radiation spectrum similar to that of weapons-grade plutonium at 5% energy resolution between 59 and 2614 keV, but contains no special nuclear material and emits little ?-particle radiation. The weapons-grade plutonium radiation surrogate also emits neutrons having fluxes commensurate with the gamma-radiation intensities employed.Type: GrantFiled: May 15, 2007Date of Patent: February 2, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventor: Michael I. Frank
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Patent number: 7655193Abstract: An apparatus and method associated therewith to extract and sequester carbon dioxide (CO2) from a stream or volume of gas wherein said apparatus hydrates CO2 and reacts the resulting carbonic acid with carbonate. Suitable carbonates include, but are not limited to, carbonates of alkali metals and alkaline earth metals, preferably carbonates of calcium and magnesium. Waste products are metal cations and bicarbonate in solution or dehydrated metal salts, which when disposed of in a large body of water provide an effective way of sequestering CO2 from a gaseous environment.Type: GrantFiled: July 26, 2004Date of Patent: February 2, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Gregory H. Rau, Kenneth G. Caldeira
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Patent number: 7651669Abstract: Various aspects and applications or microsystem process networks are described. The design of many types of microsystems can be improved by ortho-cascading mass, heat, or other unit process operations. Microsystems having energetically efficient microchannel heat exchangers are also described. Detailed descriptions of numerous design features in microcomponent systems are also provided.Type: GrantFiled: September 30, 2005Date of Patent: January 26, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Robert S. Wegeng, Ward E. TeGrotenhuis, Greg A. Whyatt
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Patent number: 7651673Abstract: The present invention relates generally to the field of small scale pumping and, more specifically, to a method and system for very small scale pumping media through microtubes. One preferred embodiment of the invention generally comprises: method for small scale pumping, comprising the following steps: providing one or more media; providing one or more microtubes, the one or more tubes having a first end and a second end, wherein said first end of one or more tubes is in contact with the media; and creating surface waves on the tubes, wherein at least a portion of the media is pumped through the tube.Type: GrantFiled: May 18, 2009Date of Patent: January 26, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Zeke Insepov, Ahmed Hassanein
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Patent number: 7646272Abstract: A freely oriented portable superconducting magnet is disclosed. Coolant is supplied to the superconducting magnet from a repository separate from the magnet, enabling portability of the magnet. A plurality of support assemblies structurally anchor and thermally isolate the magnet within a thermal shield. A plurality of support assemblies structurally anchor and thermally isolate the thermal shield within a vacuum vessel. The support assemblies restrain movement of the magnet resulting from energizing and cooldown, as well as from changes in orientation, enabling the magnet to be freely orientable.Type: GrantFiled: October 12, 2007Date of Patent: January 12, 2010Assignee: The United States of America as represented by the United States Department of EnergyInventors: Eric N. Schmierer, F. Coyne Prenger, Dallas D. Hill
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Patent number: 7638026Abstract: This is a single stage process for treating spent nuclear fuel from light water reactors. The spent nuclear fuel, uranium oxide, UO2, is added to a solution of UCl4 dissolved in molten LiCl. A carbon anode and a metallic cathode is positioned in the molten salt bath. A power source is connected to the electrodes and a voltage greater than or equal to 1.3 volts is applied to the bath. At the anode, the carbon is oxidized to form carbon dioxide and uranium chloride. At the cathode, uranium is electroplated. The uranium chloride at the cathode reacts with more uranium oxide to continue the reaction. The process may also be used with other transuranic oxides and rare earth metal oxides.Type: GrantFiled: August 24, 2005Date of Patent: December 29, 2009Assignee: The United States of America as represented by the United States Department of EnergyInventors: James L. Willit, John P. Ackerman, Mark A. Williamson
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Patent number: 7632384Abstract: The present invention relates to a multi-functional sensor system that simultaneously measures cathode and anode electrode potentials, dissolved ion (i.e. oxide) concentration, and temperatures in an electrochemical cell. One embodiment of the invented system generally comprises: a reference(saturated) electrode, a reference(sensing) electrode, and a data acquisition system. Thermocouples are built into the two reference electrodes to provide important temperature information.Type: GrantFiled: November 18, 2005Date of Patent: December 15, 2009Assignee: The United States of America as represented by the United States Department of EnergyInventors: Laszlo Redey, Karthick Gourishankar, Mark A. Williamson
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Patent number: 7632482Abstract: The present invention relates generally to the field of nanotechnology, carbon nanotubes and, more specifically, to a method and system for nano-pumping media through carbon nanotubes. One preferred embodiment of the invention generally comprises: method for nano-pumping, comprising the following steps: providing one or more media; providing one or more carbon nanotubes, the one or more nanotubes having a first end and a second end, wherein said first end of one or more nanotubes is in contact with the media; and creating surface waves on the carbon nanotubes, wherein at least a portion of the media is pumped through the nanotube.Type: GrantFiled: December 4, 2006Date of Patent: December 15, 2009Assignee: The United States of America as represented by the United States Department of EnergyInventors: Zeke Insepov, Ahmed Hassanein
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Patent number: 7633980Abstract: An apparatus and method for transferring thermal energy from a heat load is disclosed. In particular, use of a phase change material and specific flow designs enables cooling with temperature regulation well above the fusion temperature of the phase change material for medium and high heat loads from devices operated intermittently (in burst mode). Exemplary heat loads include burst mode lasers and laser diodes, flight avionics, and high power space instruments. Thermal energy is transferred from the heat load to liquid phase change material from a phase change material reservoir. The liquid phase change material is split into two flows. Thermal energy is transferred from the first flow via a phase change material heat sink. The second flow bypasses the phase change material heat sink and joins with liquid phase change material exiting from the phase change material heat sink. The combined liquid phase change material is returned to the liquid phase change material reservoir.Type: GrantFiled: February 29, 2008Date of Patent: December 15, 2009Assignee: The United States of America as represented by the United States Department of EnergyInventors: Brian J. Comaskey, George F. Albrecht, Karl F. Scheibner, Earl R. Ault, Hubert Joachim Vollmer, J. Philip Brady, Jr.