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and the University of Houston will work together to further understanding of the geology and composition of crude oil. This collaboration with a premier energy university reaffirms our commitment, as the market leader in instruments for this industry, to continue to develop new technologies and applications for our customers.
in close collaboration with GTI and The University of Texas at Austin, has launched a US Department of Energy project, Demonstration and Framework for H2@Scale in Texas and Beyond. At the Port of Houston, the project team will conduct a feasibility study for scaling up hydrogen production and use. Frontier Energy, Inc.,
The US Department of Energy (DOE) is awarding $12 million to support early-stage research for natural gas engines and off-road fluid power systems. Recipients of the three new cost-shared projects are: Colorado State University will receive $1.2 University of Minnesota will receive $1.1 University of Minnesota will receive $1.1
million to establish new geothermal energy and heat production from abandoned oil and gas wells. This work also supports the creation of new clean energy jobs, helping transition some of the oil and gas workforce to the production of renewable energy. ICE Thermal Harvesting (Houston, TX). University of Oklahoma (Norman, OK).
International energy company Statoil and the University of Texas at Austin (UT) have signed an Energy Partnership agreement providing the university with an annual funding of US$1 million for 5 years. However, the oil and gas industry is changing with more complex technological challenges.
A decade of research by Rice University scientists has produced a two-dimensional model to show how gas hydrates—ice-like substances in which gas molecules are encased in cages of water molecules—are formed under the ocean floor. Chatterjee is a scientist at Shell Global Solutions in Houston. Earlier post.).
To reduce the number of accidents in the global oil and gas industry caused by damaged pipelines, University of Houston researchers are developing an autonomous robot to identify potential pipeline leaks and structural failures during subsea inspections. Preliminary studies were funded by UH’s Subsea Systems Institute.
Particles of nitrogen-containing porous carbon polymerize CO 2 from natural gas under pressure at a wellhead. Scientists in the Rice University lab of chemist James Tour have developed materials that offer a lower cost, less energy-intensive way to separate carbon dioxide from natural gas at wellheads. Click to enlarge.
For the second year in a row, the student team from Laval University in Quebec, Canada took home the grand prize at the Shell Eco-marathon Americas, taking top place in the 2010 competition with 2,487.5 The challenge kicked off on Saturday, 27 March with 48 vehicles testing on the Houston, Texas street course. mpg US (0.538 L/100km).
The US Department of Energy’s (DOE) Office of Fossil Energy (FE) has selected 11 research projects that will help find ways to extract more energy from unconventional oil and gas resources while reducing environmental risks for awards totalling $12.4 The selections include $10.3
The US Department of Energy (DOE) is [link] about $11 million to 20 new projects to help states and local governments to develop the infrastructure, training, and regional planning needed to help meet the demand for alternative fuel cars and trucks, including vehicles that run on natural gas, electricity, and propane. Gas Technology.
The Gas Technology Institute (GTI) in Des Plaines, IL, recently added a new Pilot-Scale IH 2 Plant to broaden biomass-to-liquid hydrocarbon fuel conversion. GTI has licensed the IH2 technology to CRI Catalyst Company (CRI), an international company headquartered in Houston, TX, for worldwide deployment. Earlier post.).
Rice University researchers and colleagues at Princeton and Syzygy Plasmonics have developed a plasmonic photocatalyst for the direct decomposition of hydrogen sulfide gas into hydrogen and sulfur, as an alternative to the industrial Claus process. Image courtesy of Halas Group/Rice University).
The project, which is funded by the Office of Fossil Energy’s Oil and Natural Gas Program, is improving seismic imaging and understanding of complex compartmentalized reservoirs, called karst reservoirs, and helping operators add to the US supply of oil and natural gas.
Schlumberger, a new investor from the oil and gas industry, led the round with participation from GM Ventures and Osceola Capital Management, LLC. The new capital will be used to scale Alphabet Energy’s production for the oil and gas and automotive industries, both under intense regulatory pressure to curb emissions.
GTI has licensed the IH 2 technology to CRI Catalyst Company (CRI), in Houston, Texas. Department of Energy (EERE Office of Biomass Program), CRI Catalyst Company, Cargill, Johnson Timber Corporation, Parabel, Aquaflow Bionomic Corporation, Blue Marble Biomaterials, National Renewable Energy Laboratory and Michigan Technological University.
Researchers at Rice University and the University of Houston created an efficient, simple-to-manufacture core/shell photoanode with a highly active oxygen evolution electrocatalyst shell (FeMnP) and semiconductor core (rutile TiO 2 ) for the photoelectrochemical oxygen evolution reaction (PEC-OER) for solar water splitting.
There is still a lack of new redox-active carbon dioxide carriers for effective electrochemical carbon dioxide capture from such point sources as flue gas. We intend to build an electrochemical modular system as a platform for a continuous conversion process of simulated flue gas to pure liquid fuels. —Haotian Wang.
A team of researchers from the University of Houston and the California Institute of Technology has developed an active and durable earth-abundant transition metal dichalcogenide-based hybrid catalyst for water-splitting that exhibits high hydrogen evolution activity approaching the state-of-the-art platinum catalysts.
The Houston Advanced Research Center ( HARC ) and the Harold Vance Department of Petroleum Engineering at Texas A&M University are establishing a collaborative research program to promote advanced technology for low-impact oil and gas drilling. University of Colorado. Utah State University.
Pennsylvania State University: Applying machine learning methodologies toward the study of microearthquakes (MEQs) and their linkages to probable zones of permeability, as well as the risks associated with induced seismicity in geothermal development. noun, adjective) and use these relationships to build structured (e.g.,
million to six new projects to develop new technologies, processes, or procedures that could result in improved understanding and management of systemic risk in offshore oil and gas operations. Oklahoma State University. Louisiana State University. University of Houston. Lead Organization. Description.
The new catalyst breaks those molecules into hydrogen gas and nitrogen gas, the largest component of Earth’s atmosphere. A reaction cell (left) and the photocatalytic platform (right) used on tests of copper-iron plasmonic photocatalysts for hydrogen production from ammonia at Syzygy Plasmonics in Houston.
The GRI also funds research that improves techniques for detecting oil and gas, spill mitigation, and technologies to characterize and remediate spills. The Research Consortia funded are: Lead Institution: The University of Texas at Austin, Marine Science Institute. Lead Institution: Texas A&M University at College Station.
A study lead by researchers at Rice University suggests that current approaches to manage the vapor intrusion risk into buildings in the vicinity of conventional fuel spills might need to be modified when dealing with some higher ethanol blend fuel (i.e., E20 up to E95) releases. E20 up to E95) releases.
Researchers from Rice, UCLA and the University of California, Santa Barbara (UCSB), describe the low-energy, low-temperature syngas production process in a paper in Nature Energy. Syngas is a mix of carbon monoxide and hydrogen gas that can be made from coal, biomass, natural gas and other sources. —Naomi Halas.
Syzygy Plasmonics, a technology company developing a high-performance photocatalyst for the industrial gas, chemical and energy industries, announced a $23-million Series B financing led by Horizons Ventures with participation from new global investors including Equinor Ventures. of global greenhouse gas (GHG) emissions.
Engineers from the University of Houston and the University of Texas report that waterflooding with a surfactant—thereby altering the wettability of oil reservoir rocks—can increase oil recovery from 62 to 85%. in contact with an oil phase rather than a water or gas phase. The key problem in applying CO 2.
The selected projects—spanning 22 states and coordinated at universities, national laboratories, and private companies—will advance technologies for a wide range of areas, including electric vehicles, offshore wind, storage and nuclear recycling. Cornell University. Stanford University. The Ohio State University.
Researchers from Oregon State University College of Engineering, with colleagues from Cornell University and the Argonne National Laboratory, have used advanced experimental tools to provide a clearer understanding of an electrochemical catalytic process that’s cleaner and more sustainable than deriving hydrogen from natural gas.
VICO has been producing conventional gas resources from the Sanga-Sanga block for more than 40 years, and the signature of this PSC is expected to mark the first significant development of CBM in Indonesia. Coalbed methane (CBM) or coal seam gas (CSG) is natural gas that is extracted from coal beds. interest in the contract.
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. Ren, who is also M.D.
University of California, San Diego. The University of California, San Diego, seeks to address this issue by developing a low-atomic-number renewable wall for fusion devices that contains a slurry composed of carbon, ceramics, and a volatile binder. University of Houston. University of California, Los Angeles.
The project will leverage Texas’ extensive resources—wind power, solar energy, underground salt-dome storage formations, hydrogen pipelines, natural gas infrastructure, international port operations, and a large, concentrated industrial infrastructure—to demonstrate the potential of DOE’s H2@Scale initiative.
The Gas Technology Institute (GTI) has signed an exclusive worldwide licensing agreement with CRI/Criterion Inc., GTI says that renewable gasoline (RG) produced by the IH 2 process results in more than 90% lower greenhouse gas emissions than petroleum-based fuels. Source: GTI. Click to enlarge. CRI/Criterion Inc.,
Houston-based Ingrain , a provider of digital rock physics services to oil and gas companies worldwide, is now using a Carl Zeiss SMT AURIGA CrossBeam workstation to improve the analysis of shale rock’s porosity and permeability in order to more accurately predict the shale’s suitability for the commercial extraction of oil or gas.
BASF and the South Korean company Samsung Heavy Industries (SHI) have developed a new concept to prevent the sloshing of liquefied natural gas (LNG) during its transport in tankers. In preparation for transport, the gas is cleaned, liquefied at -162 °C, and then loaded onto tankers that carry liquid cargo.
The vehicles and infrastructure being funded include the use of natural and renewable gas, propane, ethanol, biodiesel, electricity, and hybrid technologies. New Jersey Clean Cities Coalition’s New Jersey Compressed Natural Gas Refuse Trucks, Shuttle Buses and Infrastructure. Total DOE award: $14,999,658. Total DOE award: $14,997,240.
Javelina controls approximately sixty million cubic feet per day (MMcf/d) of hydrogen production through a combination of hydrogen entrained in the refineries’ waste gas that the facility processes, and hydrogen produced through a steam methane reformer process. Howard closed on the purchase of Javelina in February of this year.
A study by researchers at the University of Texas found that in general, use of plug-in hybrid electric vehicles (PHEVs) can lead to an increase in ozone during nighttime hours (due to decreased scavenging from both vehicles and EGU stacks) and a decrease in ozone during daytime hours. The results are less clear in Dallas and Houston.
The projects would also help improve air quality in underserved areas of major American cities, including New York, Los Angeles, Houston, Chicago, San Francisco, Oakland, and Salt Lake City. Gas Technology Institute: Houston to Los Angeles (H2LA)–I-10 Hydrogen Corridor Project.
Rice University and Houston-based M-I SWACO, the world’s largest producer of drilling fluids for the petrochemical industry, recently signed an agreement for research funds to develop a graphene additive that will improve the productivity of wells.
million 13 projects aimed at reducing risks while enhancing the environmental performance of drilling for natural gas and oil in ultra-deepwater settings. The Board of Regents of the University of Oklahoma — Intelligent Casing-Intelligent Formation Telemetry System. Brief descriptions of the selected projects follow: ?.
Results of a 14-week study by Rice University researchers suggest that algae monocultures for biofuel feedstock can be grown in open tank bioreactors using municipal wastewater as a nutrient source. The research was supported by Rice University. Various formulations of algae were tested in each tank. 67-79 doi: 10.4490/algae.2015.30.1.067.
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