Patents Assigned to Battelle Energy Alliance, LLC
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Publication number: 20120231253Abstract: Stable, high performance polymer compositions including polybenzimidazole (PBI) and a melamine-formaldehyde polymer, such as methylated, poly(melamine-co-formaldehyde), for forming structures such as films, fibers and bulky structures. The polymer compositions may be formed by combining polybenzimidazole with the melamine-formaldehyde polymer to form a precursor. The polybenzimidazole may be reacted and/or intertwined with the melamine-formaldehyde polymer to form the polymer composition. For example, a stable, free-standing film having a thickness of, for example, between about 5 ?m and about 30 ?m may be formed from the polymer composition. Such films may be used as gas separation membranes and may be submerged into water for extended periods without crazing and cracking. The polymer composition may also be used as a coating on substrates, such as metal and ceramics, or may be used for spinning fibers. Precursors for forming such polymer compositions are also disclosed.Type: ApplicationFiled: March 10, 2011Publication date: September 13, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: John R. Klaehn, Eric S. Peterson, Christopher J. Orme
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Publication number: 20120201341Abstract: Zirconium-based metal alloy compositions comprise zirconium, a first additive in which the permeability of hydrogen decreases with increasing temperatures at least over a temperature range extending from 350° C. to 750° C., and a second additive having a solubility in zirconium over the temperature range extending from 350° C. to 750° C. At least one of a solubility of the first additive in the second additive over the temperature range extending from 350° C. to 750° C. and a solubility of the second additive in the first additive over the temperature range extending from 350° C. to 750° C. is higher than the solubility of the second additive in zirconium over the temperature range extending from 350° C. to 750° C. Nuclear fuel rods include a cladding material comprising such metal alloy compositions, and nuclear reactors include such fuel rods. Methods are used to fabricate such zirconium-based metal alloy compositions.Type: ApplicationFiled: February 4, 2011Publication date: August 9, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventor: Robert Dominick Mariani
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Publication number: 20120192930Abstract: Single source precursors or pre-copolymers of single source precursors are subjected to microwave radiation to form particles of a I-III-VI2 material. Such particles may be formed in a wurtzite phase and may be converted to a chalcopyrite phase by, for example, exposure to heat. The particles in the wurtzite phase may have a substantially hexagonal shape that enables stacking into ordered layers. The particles in the wurtzite phase may be mixed with particles in the chalcopyrite phase (i.e., chalcopyrite nanoparticles) that may fill voids within the ordered layers of the particles in the wurtzite phase thus produce films with good coverage. In some embodiments, the methods are used to form layers of semiconductor materials comprising a I-III-VI2 material. Devices such as, for example, thin-film solar cells may be fabricated using such methods.Type: ApplicationFiled: February 2, 2011Publication date: August 2, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: ROBERT V. FOX, FENGYAN ZHANG, RENE G. RODRIGUEZ, JOSHUA J. PAK, CHIVIN SUN
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Patent number: 8231963Abstract: An armor system and method involves providing a core material and a stream of atomized coating material that comprises a liquid fraction and a solid fraction. An initial layer is deposited on the core material by positioning the core material in the stream of atomized coating material wherein the solid fraction of the stream of atomized coating material is less than the liquid fraction of the stream of atomized coating material on a weight basis. An outer layer is then deposited on the initial layer by positioning the core material in the stream of atomized coating material wherein the solid fraction of the stream of atomized coating material is greater than the liquid fraction of the stream of atomized coating material on a weight basis.Type: GrantFiled: September 29, 2010Date of Patent: July 31, 2012Assignee: Battelle Energy Alliance, LLCInventors: Henry S. Chu, Thomas M. Lillo, Kevin M. McHugh
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Patent number: 8226909Abstract: Catalytic structures include a catalytic material disposed within a zeolite material. The catalytic material may be capable of catalyzing a formation of methanol from carbon monoxide and/or carbon dioxide, and the zeolite material may be capable of catalyzing a formation of hydrocarbon molecules from methanol. The catalytic material may include copper and zinc oxide. The zeolite material may include a first plurality of pores substantially defined by a crystal structure of the zeolite material and a second plurality of pores dispersed throughout the zeolite material. Systems for synthesizing hydrocarbon molecules also include catalytic structures. Methods for synthesizing hydrocarbon molecules include contacting hydrogen and at least one of carbon monoxide and carbon dioxide with such catalytic structures.Type: GrantFiled: December 16, 2010Date of Patent: July 24, 2012Assignee: Battelle Energy Alliance, LLCInventors: Harry W. Rolllins, Lucia M. Petkovic, Daniel M. Ginosar
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Patent number: 8229054Abstract: A conduction cooled neutron absorber may include a metal matrix composite that comprises a metal having a thermal neutron cross-section of at least about 50 barns and a metal having a thermal conductivity of at least about 1 W/cm·K. Apparatus for providing a neutron flux having a high fast-to-thermal neutron ratio may include a source of neutrons that produces fast neutrons and thermal neutrons. A neutron absorber positioned adjacent the neutron source absorbs at least some of the thermal neutrons so that a region adjacent the neutron absorber has a fast-to-thermal neutron ratio of at least about 15. A coolant in thermal contact with the neutron absorber removes heat from the neutron absorber.Type: GrantFiled: July 31, 2008Date of Patent: July 24, 2012Assignee: Battelle Energy Alliance, LLCInventors: Donna P. Guillen, Glen R. Longhurst, Douglas L. Porter, James R. Parry
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Publication number: 20120180630Abstract: Laminate armor and methods of manufacturing laminate armor are disclosed. Specifically, laminate armor plates comprising a commercially pure titanium layer and a titanium alloy layer bonded to the commercially pure titanium outer layer are disclosed, wherein an average thickness of the titanium alloy inner layer is about four times an average thickness of the commercially pure titanium outer layer. In use, the titanium alloy layer is positioned facing an area to be protected. Additionally, roll-bonding methods for manufacturing laminate armor plates are disclosed.Type: ApplicationFiled: December 1, 2008Publication date: July 19, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Henry S. Chu, Thomas M. Lillo, Thomas A. Zagula
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Publication number: 20120174758Abstract: Composite armor panels are disclosed. Each panel comprises a plurality of functional layers comprising at least an outermost layer, an intermediate layer and a base layer. An armor system incorporating armor panels is also disclosed. Armor panels are mounted on carriages movably secured to adjacent rails of a rail system. Each panel may be moved on its associated rail and into partially overlapping relationship with another panel on an adjacent rail for protection against incoming ordnance from various directions. The rail system may be configured as at least a part of a ring, and be disposed about a hatch on a vehicle. Vehicles including an armor system are also disclosed.Type: ApplicationFiled: July 27, 2009Publication date: July 12, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Henry S. Chu, Warren F. Jones, Jeffrey M. Lacy, Gary L. Thinnes
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Patent number: 8202716Abstract: Isolated and/or purified polypeptides and nucleic acid sequences encoding polypeptides from Alicyclobacillus acidocaldarius are provided. Further provided are methods of at least partially degrading, cleaving, or removing polysaccharides, lignocellulose, cellulose, hemicellulose, lignin, starch, chitin, polyhydroxybutyrate, heteroxylans, glycosides, xylan-, glucan-, galactan-, or mannan-decorating groups using isolated and/or purified polypeptides and nucleic acid sequences encoding polypeptides from Alicyclobacillus acidocaldarius.Type: GrantFiled: November 15, 2010Date of Patent: June 19, 2012Assignee: Battelle Energy Alliance, LLCInventors: David N. Thompson, William A. Apel, Vicki S. Thompson, David W. Reed, Jeffrey A. Lacey, Emily D. Henriksen
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Patent number: 8191618Abstract: A thermal management system for a vehicle includes a heat exchanger having a thermal energy storage material provided therein, a first coolant loop thermally coupled to an electrochemical storage device located within the first coolant loop and to the heat exchanger, and a second coolant loop thermally coupled to the heat exchanger. The first and second coolant loops are configured to carry distinct thermal energy transfer media. The thermal management system also includes an interface configured to facilitate transfer of heat generated by an internal combustion engine to the heat exchanger via the second coolant loop in order to selectively deliver the heat to the electrochemical storage device. Thermal management methods are also provided.Type: GrantFiled: October 2, 2006Date of Patent: June 5, 2012Assignee: Battelle Energy Alliance, LLCInventors: Kevin L. Gering, Daryl R. Haefner
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Patent number: 8189426Abstract: Earth analysis methods, subsurface feature detection methods, earth analysis devices, and articles of manufacture are described. According to one embodiment, an earth analysis method includes engaging a device with the earth, analyzing the earth in a single substantially lineal direction using the device during the engaging, and providing information regarding a subsurface feature of the earth using the analysis.Type: GrantFiled: August 23, 2011Date of Patent: May 29, 2012Assignee: Battelle Energy Alliance, LLCInventors: Phillip B. West, Stephen R. Novascone, Jerry P. Wright
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Publication number: 20120125726Abstract: Dissipative structures include at least one panel and a cell structure disposed adjacent to the at least one panel having interconnected cells. A deformable material, which may comprise at least one hydrogel, is disposed within at least one interconnected cell proximate to the at least one panel. Dissipative structures may also include a cell structure having interconnected cells formed by wall elements. The wall elements may include a mesh formed by overlapping fibers having apertures formed therebetween. The apertures may form passageways between the interconnected cells. Methods of dissipating a force include disposing at least one hydrogel in a cell structure proximate to at least one panel, applying a force to the at least one panel, and forcing at least a portion of the at least one hydrogel through apertures formed in the cell structure.Type: ApplicationFiled: June 3, 2010Publication date: May 24, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Benjamin R. Langhorst, Henry S. Chu
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Publication number: 20120125218Abstract: A timer key relating to monitoring a countdown time of a countdown routine of an electronic device is disclosed. The timer key comprises a processor configured to respond to a countdown time associated with operation of the electronic device, a display operably coupled with the processor, and a housing configured to house at least the processor. The housing has an associated structure configured to engage with the electronic device to share the countdown time between the electronic device and the timer key. The processor is configured to begin a countdown routine based at least in part on the countdown time, wherein the countdown routine is at least substantially synchronized with a countdown routine of the electronic device when the timer key is removed from the electronic device. A system and method for synchronizing countdown routines of a timer key and an electronic device are also disclosed.Type: ApplicationFiled: November 22, 2010Publication date: May 24, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Reston A. Condit, Michael A. Daniels, Gregory P. Clemens, Eric S. Tomberlin, Joel A. Johnson
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Publication number: 20120120887Abstract: A system is disclosed for supporting dynamic spectrum access in wireless networks. The system includes at least one cognitive base station configured to communicate over at least one licensed carrier. The system further includes a spectrum accountability server operably coupled to the at least one cognitive base station. The spectrum accountability server is configured to manage spectrum leases to dynamic spectrum access carriers according to a set of spectrum access rules, and the spectrum accountability server may further be configured to dynamically change the spectrum access rules in response to spectrum usage policies or spectrum availability, or both. A wireless communication network and related method for providing dynamic spectrum access to secondary users of a wireless network are also disclosed herein.Type: ApplicationFiled: November 1, 2011Publication date: May 17, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Juan D. Deaton, Luiz A. DaSilva
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Patent number: 8175578Abstract: Wireless device monitoring methods, wireless device monitoring systems, and articles of manufacture are described. According to one embodiment, a wireless device monitoring method includes accessing device configuration information of a wireless device present at a secure area, wherein the device configuration information comprises information regarding a configuration of the wireless device, accessing stored information corresponding to the wireless device, wherein the stored information comprises information regarding the configuration of the wireless device, comparing the device configuration information with the stored information, and indicating the wireless device as one of authorized and unauthorized for presence at the secure area using the comparing.Type: GrantFiled: May 7, 2007Date of Patent: May 8, 2012Assignee: Battelle Energy Alliance, LLCInventors: Steven H. McCown, Kurt W. Derr, Kenneth W. Rohde
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Publication number: 20120103561Abstract: Heat exchangers include a housing having an inlet and an outlet and forming a portion of a transition chamber. A heating member may form another portion of the transition chamber. The heating member includes a first end having a first opening and a second end having a second opening larger than the first opening. Methods of conveying a fluid include supplying a first fluid into a transition chamber of a heat exchanger, supplying a second fluid into the transition chamber, and altering a state of a portion of the first fluid with the second fluid. Methods of sublimating solid particles include conveying a first fluid comprising a material in a solid state into a transition chamber, heating the material to a gaseous state by directing a second fluid through a heating member and mixing the first fluid and the second fluid.Type: ApplicationFiled: November 3, 2010Publication date: May 3, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Terry D. Turner, Michael G. McKellar
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Publication number: 20120103428Abstract: A vaporization chamber may include at least one conduit and a shell. The at least one conduit may have an inlet at a first end, an outlet at a second end and a flow path therebetween. The shell may surround a portion of each conduit and define a chamber surrounding the portion of each conduit. Additionally, a plurality of discrete apertures may be positioned at longitudinal intervals in a wall of each conduit, each discrete aperture of the plurality of discrete apertures sized and configured to direct a jet of fluid into each conduit from the chamber. A liquid may be vaporized by directing a first fluid comprising a liquid into the inlet at the first end of each conduit, directing jets of a second fluid into each conduit from the chamber through discrete apertures in a wall of each conduit and transferring heat from the second fluid to the first fluid.Type: ApplicationFiled: November 3, 2010Publication date: May 3, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Terry D. Turner, Bruce M. Wilding, Michael G. McKellar, Lee P. Shunn
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Publication number: 20120103012Abstract: A system for vaporizing and sublimating a slurry comprising a fluid including solid particles therein. The system includes a first heat exchanger configured to receive the fluid including solid particles and vaporize the fluid and a second heat exchanger configured to receive the vaporized fluid and solid particles and sublimate the solid particles. A method for vaporizing and sublimating a fluid including solid particles therein is also disclosed. The method includes feeding the fluid including solid particles to a first heat exchanger, vaporizing the fluid, feeding the vaporized fluid and solid particles to a second heat exchanger and sublimating the solid particles. In some embodiments the fluid including solid particles is liquid natural gas or methane including solid carbon dioxide particles.Type: ApplicationFiled: November 3, 2010Publication date: May 3, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: Terry D. Turner, Michael G. McKellar, Bruce M. Wilding
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Publication number: 20120091354Abstract: A radiation detector is disclosed. The radiation detector comprises an active detector surface configured to generate charge carriers in response to charged particles associated with incident radiation. The active detector surface is further configured with a sufficient thickness for a partial energy deposition of the charged particles to occur and permit the charged particles to pass through the active detector surface. The radiation detector further comprises a plurality of voltage leads coupled to the active detector surface. The plurality of voltage leads are configured to couple to a voltage source to generate a voltage drop across the active detector surface and to separate the charge carriers into a plurality of electrons and holes for detection. The active detector surface may comprise one or more graphene layers. Timing data between active detector surfaces may be used to determine energy of the incident radiation. Other apparatuses and methods are disclosed herein.Type: ApplicationFiled: October 19, 2010Publication date: April 19, 2012Applicant: BATTELLE ENERGY ALLIANCE, LLCInventors: David W. Gerts, Robert S. Bean, Richard R. Metcalf
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Patent number: 8158088Abstract: A mixed extractant solvent that includes at least one dialkyloxycalix[4]arenebenzocrown-6 compound, 4?,4?,(5?)-di-(t-butyldicyclohexano)-18-crown-6, at least one modifier, and, optionally, a diluent. The dialkyloxycalix[4]arenebenzocrown-6 compound is 1,3-alternate-25,27-di(octyloxy)calix[4]arenebenzocrown-6, 1,3-alternate-25,27-di(decyloxy)calix[4]arenebenzocrown-6, 1,3-alternate-25,27-di(dodecyloxy)calix[4]arenebenzocrown-6, 1,3-alternate-25,27-di(2-ethylhexyl-1-oxy)calix[4]arenebenzocrown-6, 1,3-alternate-25,27-di(3,7-dimethyloctyl-1-oxy)calix[4]arenebenzocrown-6, 1,3-alternate-25,27-di(4-butyloctyl-1-oxy)calix[4]arenebenzocrown-6, or combinations thereof. The modifier is a primary alcohol. A method of separating cesium and strontium from an aqueous feed is also disclosed, as are dialkyloxycalix[4]arenebenzocrown-6 compounds and an alcohol modifier.Type: GrantFiled: November 10, 2008Date of Patent: April 17, 2012Assignee: Battelle Energy Alliance, LLCInventors: Dean R. Peterman, David H. Meikrantz, Jack D. Law, Catherine L. Riddle, Terry A. Todd, Mitchell R. Greenhalgh, Richard D. Tillotson, Richard A. Bartsch, Bruce A. Moyer, Laetitia H. Delmau, Peter V. Bonnesen