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He received a bachelor’s degree in electrical engineering in 1971 from Auburn University , in Alabama. Therefore Texas Instruments and similar companies sold universal digital building blocks such as multipliers and register files. Pedersen , a codeveloper of the DSP, received the IEEE Liebmann Award.
Researchers from the Cockrell School of Engineering at The University of Texas at Austin have developed a cobalt-free high-energy lithium-ion battery, eliminating the cobalt and opening the door to reducing the costs of producing batteries while boosting performance in some ways. student Steven Lee and Ph.D. graduate Wangda Li.
The US Department of Energy (DOE) has selected nine universities for awards for research projects that will continue to support innovation and development of advanced, lower emission coal technologies. million investment will be leveraged with additional funds from the universities to support $3.1 Brown University.
Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. They report on their work in a paper in the journal Nature Nanotechnology.
Texas Governor Rick Perry has awarded $2.75 million from the Texas Emerging Technology Fund (TETF) to Terrabon for its work in biofuel technology development. Further, the project will demonstrate the commercial viability of the desalination technology that also reduces the capital and operating costs of water purification.
Emory DeCastro, Advent’s Chief Technology Officer, added that these developments have the potential to drop overall fuel cell system costs by 25% and enable higher power density and simplify packaging constraints. The purpose of the development program is to use HT-PEM technology operating at 80 ?
The investment is part of DOE’s effort to reduce the cost of geothermal energy, making it more competitive with conventional sources of baseload electricity. Stanford University. This project will develop an advanced processing framework for survey data to reduce the cost of geothermal exploration. University of Hawaii.
The Clean Carbon Conductors team, with members from Rice University and DexMat Co, is designing enhanced-conductivity CNTs by improving fiber quality, alignment, packing density, and by electrochemically doping the CNTs. Each winning team has earned a $25,000 cash prize and a stipend for third-party conductivity testing in Stage 2.
The projects selected are located in 25 states, with 50% of projects led by universities, 23% by small businesses, 12% by large businesses, 13% by national labs, and 2% by non-profits. University of Massachusetts, Amherst. Development of a Dedicated, High-Value Biofuels Crop The University of Massachusetts, Amherst will develop an.
Researchers at the University of Texas at Austin, led by Prof. The ability to use commercially available bulk particles could significantly decrease the manufacturing cost of Li?S Arumugam Manthiram, have found that using phosphorus pentasulfide (P 2 S 5 ) as an electrolyte additive. S batteries with a Li S cathode.
Projects selected under this funding opportunity announcement will reduce both the costs of critical materials and the environmental impacts of production. Technology Holding LLC; Next Generation Separation Method for Rare Earths Partners: Massachusetts Institute of Technology DOE share: $499,673; Cost share: $124,999; Total costs: $624,672.
The Phase 1 semifinalists identified an impactful idea or solution to drive down costs of lithium extraction and, ultimately, help develop environmentally friendly, domestic sources of lithium. The Phase 1 semifinalists are: Boston University – Pober-Strauss. George Washington University – Ellexco. Rice University – LiSED.
John Goodenough at the University of Texas at Austin and colleague Kyu-Sung Park have written a perspective paper on Li-ion batteries (LIBs), published in the Journal of the American Chemical Society. More recently, at the University of Texas, Austin, Dr. Goodenough patented a new class of iron phosphate materials.
Engineers at the University of Pittsburgh Swanson School of Engineering are using membrane distillation technology to enable drillers to filter and reuse the produced water in the oil and gas industry, in agriculture, and other beneficial uses. The method is already being tested in Texas, North Dakota, and most recently in New Stanton, Pa.
University of Hawaii of Honolulu, Hawaii will receive $3 million to develop photoelectrodes for direct solar water splitting. University of Colorado, Boulder of Boulder, Colorado will receive $2 million to develop a novel solar-thermal reactor to split water with concentrated sunlight. FuelCell Energy Inc. FuelCell Energy Inc.
With the switch to 5G costing global carriers a 60% to 300% increase in infrastructure costs, GenXComm’s technology has the potential to save 5G providers billions of dollars, reducing the cost of implementing 5G by up to 80%.
In addition to SCS, the project team includes Mitsubishi Heavy Industries America, Schlumberger Carbon Services, Advanced Resources International, the Geological Survey of Alabama, EPRI, Stanford University, the University of Alabama, AJW Group, and the University of Alabama at Birmingham.
IH 2 technology has the capability to produce gasoline at a cost of less than $2.00 GTI has licensed the IH 2 technology to CRI Catalyst Company (CRI), in Houston, Texas. —Martin Linck. Based on assessments by the US Department of Energy’s National Renewable Energy Laboratory in Golden, Colo., per gallon, Linck said. Marker, T.
Researchers at Pacific Northwest National Laboratory (PNNL), with colleagues from Oregon State University, have developed PNNL a durable, inexpensive molybdenum-phosphide catalyst that efficiently converts wastewater and seawater into hydrogen. This integrated design increases productivity and lowers equipment costs.
The US Bureau of Ocean Energy Management, Regulation and Enforcement (BOEMRE) today recently signed a cooperative agreement with the University of Texas at Austin and a team of Arctic researchers for a comprehensive study of the Hanna Shoal ecosystem in the Chukchi Sea off Alaska’s northwest coast. Dr. Kenneth H.
million to 13 projects to help solve common challenges across the nuclear industry and improve reactor safety, performance and cost competitiveness. million investment in three university-led projects, helping to train and educate the next generation of nuclear energy scientists and engineers. University (Westinghouse).
The US Department of Energy (DOE) has selected 10 university projects to conduct advanced turbine technology research under the Office of Fossil Energy’s University Turbine Systems Research (UTSR) Program. Texas A&M University. Purdue University. University of Texas at Austin.
The technology could help offset the cost of geologic carbon storage. We may be able to bring down its costs by generating electricity on the side. Scientists from the University of Texas at Austin will analyze the environmental impacts of the process over its entire life span.
The project is expected to reduce the cost of energy from midsize turbines. Texas Tech University (Lubbock, Texas). This project is leveraging almost $10 million in private sector capital to develop a 450-kilowatt turbine, helping to complete the final turbine design, procurement, and prototype testing within 18 months.
The University of Texas at Austin Energy Poll has found that US consumers strongly support increased production of energy from domestic sources, particularly natural gas and renewables. The University of Texas at Austin Energy Poll reflects the views of 2,371 Americans surveyed during 5-16 March 2012.
Using an inexpensive polymer called melamine, researchers from UC Berkeley, Texas A&M and Stanford have created a cheap, easy and energy-efficient way to capture carbon dioxide from smokestacks. The low cost of porous melamine means that the material could be deployed widely.
Researchers at the University of Houston (UH), with colleagues from Central China Normal University and the Chinese University of Hong Kong, Hong Kong SAR, have developed a two-electrode catalyst that relies on one compound to produce hydrogen and oxygen efficiently from both seawater and freshwater.
Smith Dean’s Professor in the Department of Mechanical and Materials Engineering, said the new process could be scaled up and reduce electrode manufacturing costs by up to 15%, while also producing electrodes that can charge faster than conventionally produced electrodes.
The US Department of Energy (DOE) is awarding up to $15 million for three projects aimed at reducing the production costs of algae-based biofuels and bioproducts through improvements in algal biomass yields. Global Algae Innovations. Global Algae Innovations Inc., MicroBio Engineering, Inc. MicroBio Engineering, Inc.,
For 20 years, researchers have shown that CNT membranes offer tremendous promise for a wide variety of uses including the low-cost production of ethanol fuel, precision drug delivery, low-energy desalination of seawater, purification of pharmaceutical compounds, and high-performance catalysis for the production of fuels.
The selected organizations (and project descriptions) from this first call selection are: University of Connecticut. Penn State University. Texas A&M Experimental Station. University of Louisville. University of California, Irvine. The intended period of performance of each project is 24 months or less.
Researchers at the University of Houston, with their colleagues at Boston College, have created a new thermoelectric material—germanium-doped magnesium stannide (Mg 2 Sn 0.75 Opeil of Boston College, and Stephen Wilson of the University of California at Santa Barbara. —Liu et al. 2 under a temperature gradient of 150 °C?mm
Key to the cost-effectiveness of ATJ is reducing the production cost of the alcohol, as well as of the ATJ process itself. Byogy’s core technology started with a combination of biofuels processes that originated at Texas A&M University and expanded with an R&D and process integration effort spanning more than two years.
Credit: Dharmesh Patel/ Texas A&M University College of Engineering. Engineers could design microstructures to extend the life of materials, potentially saving on costs of repairs or replacement of metal components regularly exposed to water or hydrogen.
(DOE funding $75,161,246, total project value with cost share $150,322,492). In partnership with a consortium of local research institutions, this project deploy smart grid systems at partners’ university campus properties and technology transfer laboratories. Los Angeles Department of Water and Power. 24,063,978. 48,127,957.
This project will develop and optimize a novel, engineered microorganism that produces a biodiesel-equivalent fuel from renewable hydrogen and carbon dioxide, at costs of less than $2.50 NC State University. Medical University of South Carolina. Columbia University. A123 Systems, Rutgers University). per gallon.
Texas A&M University (College Station, TX) - A Geomechanical Analysis of Gas Shale Fracturing and Its Containment. Texas A&M University (College Station, TX) - Diagnosis of Multiple Fracture Stimulation in Horizontal Wells by Downhole Temperature Measurement for Unconventional Oil and Gas Wells.
A University of Texas at Arlington engineering researcher is working to determine how oversized a battery has to be while operating safely and efficiently during its lifetime of use by the US Navy. —David Wetz.
Vastly expanding sugarcane production in Brazil for conversion to ethanol could reduce current global CO 2 emissions by as much as 5.6%, according to a new study by an international team led by researchers from the University of Illinois. The carbon-related costs of converting the land to sugarcane fields were included in the analysis.
University chapters are the lifeblood of IEEE-Eta Kappa Nu , the organization’s honor society. There are 269 chapters at universities worldwide. Support provided by universities to chapters varies widely, however—which can limit activities. A strong chapter helps ensure that members have a fulfilling experience.
35 new businesses, non-profits, universities, and utilities signing on to DOE’s Workplace Charging Challenge and committing to provide electric vehicle charging access for their workforce. Binghamton University (State University of New York). Binghamton University (State University of New York). Tesla Motors, Inc.
Carbon Capture Projects: Lowering Absorption Process Uncertainty, Risks, and Costs by Predicting and Controlling Amine Degradation (LAUNCH). This project will result in improved reliability and lower costs of carbon storage sites. DOE Funding: $487,000; Non-DOE funding: $4,587,612; Total Value: $5,074,612.
BETO has targeted a performance goal of validating, at pilot scale, at least one technology pathway for hydrocarbon biofuel at a mature modeled cost of $3/GGE (gasoline gallon equivalent) with GHG emissions reduction of 50% or more compared to petroleum-derived fuel by 2017, and validating two additional pathways by 2022.
The deployment of highly autonomous vehicles (HAVs) is expected to deliver substantial benefits: reduced traffic congestion, decreased emissions, lower-cost of mobility and safer travel. It is crucial for public officials to proactively plan for autonomous vehicles using a data-driven approach aimed at tackling specific urban area needs.
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