This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
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. The project is supported by DOE’s Hydrogen and Fuel Cell Technologies Office within the Office of Energy Efficiency and Renewable Energy.
Ricardo has developed a hydrogen-fueled research engine which could offer a renewable, economic and durable technology solution to accelerate zero-carbon emissions in heavy duty trucks, off-highway machines and marine vessels. —Adrian Greaney, Director of Technology and Digital at Ricardo Automotive and Industrial EMEA Division.
The US Department of Energy (DOE) is awarding $20 million in funding to a project to demonstrate technology that will produce clean hydrogen energy from nuclear power. This approach will allow clean hydrogen to serve as a source for zero-carbon electricity and represent an important economic product for nuclear plants beyond electricity.
Global renewable energy investment increased between 2013 and 2018, reaching its peak at US$351 billion in 2017, according to a new report by the International Renewable Energy Agency (IRENA) and Climate Policy Initiative (CPI). Renewable energy investment slightly declined in 2018, with modest growth through 2019.
The US Department of Energy (DOE) has selected Arizona State University to lead the seventh Clean Energy Manufacturing Innovation Institute. EPIXC is funded through the Office of Energy Efficiency and Renewable Energy’s Industrial Efficiency and Decarbonization Office.
Bloom Energy, a developer of solid oxide fuel cell power generators, announced the ability of its Energy Servers to operate on renewable hydrogen. At peak times, some US states and countries already have more renewable power than their grids can handle.
Siemens Energy, Duke Energy and Clemson University have teamed up to study the use of hydrogen for energy storage and as a low- or no-carbon fuel source to produce energy at Duke Energy’s combined heat and power plant located at Clemson University in South Carolina.
Nonprofit, academic, and observer partners include Clean Air Task Force, The University of Newcastle Australia, Queen Mary University of London, Columbia University, Stanford University’s Hydrogen Initiative, Breakthrough Energy, Bipartisan Policy Center, Center for Houston’s Future, Government of Alberta, Clean Hydrogen Future Coalition, Renewable (..)
In a speech at the National Press Club, US Energy Secretary Steven Chu said that the success of China and other countries in clean energy industries represents a new “Sputnik Moment” for the United States, and will require a similar mobilization of innovation to enable the US to compete in the global race for the jobs of the future.
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%. The generation of hydrogen from water using sunlight could potentially form the basis of a clean and renewable source of energy.
OXCCU, a company spun-out from the University of Oxford in 2021 that is focused on converting carbon dioxide and hydrogen into industrial and consumer products ( earlier post ), completed an £18-million (US$22.8 million) Series A financing round. Trafigura, TechEnergy Ventures and Doral Energy-Tech Ventures also participated in the financing.
Renewable hydrogen systems manufacturer Ways2H Inc. announced the completion of a facility in Tokyo that will convert sewage sludge into renewable hydrogen fuel for fuel cell mobility and power generation. A new facility in Tokyo that will convert sewage sludge into renewable hydrogen gas for fuel-cell vehicles is nearing completion.
The new ARPA-E selections focus on accelerating innovations in clean technology while increasing US competitiveness in rare earth alternatives and breakthroughs in biofuels, thermal storage, grid controls, and solar power electronics. University of Massachusetts, Amherst. University of Illinois. University. Description.
Available clean fuels for the state of Washington could meet a 2028 target of 11.2% The largest fuel pathways used to meet this target include electricity, lower carbon sources of ethanol blended into gasoline, biodiesel and renewable diesel. Biomethane and renewable aviation fuel also contribute.
In an open access paper published in Nature Communications , researchers from the University of Wollongong in Australia report that their capillary-fed electrolysis cell demonstrates water electrolysis performance exceeding commercial electrolysis cells, with a cell voltage at 0.5 2 and 85 °C of only 1.51 kWh/kg hydrogen (vs. Hodges et al.
Clean Energy. Clean Fuels Ohio. compressed natural gas (CNG) cylinder tracking system and Renewable. Region Clean Cities. Clean Cities. The I-40 Collaboration of Clean Cities, a partnership across Arkansas and. University, North. The Central Texas Fuel Independence Project will expand an interagency.
New hydrogen production technology developed at the University of British Columbia (UBC) will be tested in a $7-million project between UBC, the government of Alberta and Alberta utility company ATCO. UBC clean hydrogen technology deployed to Alberta in a $7-million collaboration. Hydrogen plant schematic. Image: MéridaLabs.
Researchers from Sun-Yat Sen University in China report in an open-access paper in ACS ES&T Engineering the development of a catalyst that destroys medications and other compounds already present in wastewater to generate hydrogen fuel, getting rid of a contaminant while producing something useful. 1c00003.
If you wanted to find out which AT&T Universe TV package came with HBO, it was a good place to be. Senator Wright is a climate change denier and is “suspicious of renewable energy.” That’s what they’re seeing at Marin Clean Energy and Sonoma Clean Power. . How does it do that?
Scientists from Stanford University, SLAC National Accelerator Laboratory and the Technical University of Denmark have identified a new nickel-gallium catalyst that converts hydrogen and carbon dioxide into methanol at ambient pressure and with fewer side-products than the conventional catalyst. —lead author Felix Studt, SLAC.
C-Zero’s technology, which was initially developed at the University of California, Santa Barbara, uses innovative thermocatalysis to split methane into hydrogen and solid carbon in a process known as methane pyrolysis.
SEVEN has a Universal Island console, specially designed home appliances and a multi-functional Smart Hub graphic user interface. Hyundai applied bio-paint to SEVEN’s exterior and hygienically-recycled and renewable materials throughout the interior. UVC Sterilization activates once the vehicle is vacated of its passengers.
In Germany, BSE Engineering and the Institute for Renewable Energy Systems at Stralsund University of Applied Sciences (IRES) have demonstrated the conversion of wind power into renewable methanol. In the future, the fuel-cell-suitable crude methanol as well as the cleaned methanol will be sold industrially as e-fuel.
The BMW Group and Pacific Gas and Electric Company (PG&E) announced an expanded partnership that further leverages renewable energy to sustainably power electric vehicles (EVs). ChargeForward is the first smart charging program to offer customers incentives for maximizing the integration of renewable energy while optimizing their EV charging.
Hydrokinetic energy is an abundant renewable resource that can boost grid resiliency and reduce infrastructure vulnerability, but it is currently a cost prohibitive option compared to other energy generating sources. The 11 SHARKS projects are: National Renewable Energy Laboratory. The University of Michigan.
Syzygy Plasmonics , LOTTE Chemical and LOTTE Fine Chemical (LOTTE Chemical HQ), and Sumitomo Corporation of Americas (SCOA) announced a joint development agreement to test a photocatalytic reactor for clean hydrogen production. Among other climate-focused goals, the company is setting the stage to advance the hydrogen economy in Korea.
Hyundai Motor Group will collaborate with the Saudi Arabian Oil Company (Aramco) and King Abdullah University of Science and Technology (KAUST) jointly to research and develop an advanced fuel for an ultra lean-burn, spark-ignition engine that aims to lower the overall carbon dioxide emissions of a vehicle.
Many materials deemed critical by the DOE are used in modern clean energy technologies—such as wind turbines, solar panels, electric vehicles, and energy-efficient lighting. Earlier post.). Industry partners that have joined to help advance CMI developed technologies include General Electric; OLI Systems, Inc.; SpinTek Filtration, Inc.;
I recently wrote about Stanford University’s commitment to go 100% renewable when it comes to electricity. The university claimed to be the “first research university to use 100% renewable electricity.” ” Being a research university, I assumed that Stanford had done its research.
A consortium of Progressive Energy, Essar, Johnson Matthey, and SNC-Lavalin will deliver the project comprising the development of a 100,000 Nm 3 per hour clean hydrogen production facility for deployment as part of the HyNet Cluster, using Johnson Matthey’s low-carbon hydrogen technology which enables carbon capture and storage.
Solid-oxide-fuel-cell manufacturer Bloom Energy is entering the commercial hydrogen market by introducing hydrogen-powered fuel cells and electrolyzers that produce renewable hydrogen. The Bloom Energy Servers are a proven market leader in clean, reliable, and resilient on-site power.
IBM Quantum is an industry-first initiative to build universal quantum systems for business and science applications. IBM announced that bp has joined the IBM Quantum Network to advance the use of quantum computing in the energy industry. In 2020, bp announced its net zero ambition and its new strategy.
Produced using hydrocarbon materials and a new polymer structure, Ionomr’s polymer-based solutions avoid a range of environmental problems associated with the production, use and disposal of fluorine-containing polymers predominantly used in clean technologies today.
Maintaining grid reliability amid increasing renewable energy penetration involves fundamental changes to power system operation and the resources leveraged to provide grid services. In addition to EPRI, NREL, and the University of Washington, the UNIFI consortium currently includes: Three DOE national laboratories.
Ten of these projects are new while the rest received renewed funding based both on their achievements to date and the quality of their proposals for future research. University of California, Berkeley. Center for Gas Separations Relevant to Clean Energy Technologies (CGS). University of California, Riverside.
A reliable, US supply of lithium is essential to enabling a 100% clean energy economy and strengthening our energy security. —Kelly Speakes-Backman, Principal Deputy Assistant Secretary for Energy Efficiency and Renewable Energy. Rice University – Team LiSED: “Lithium Selective ElectroDialysis”.
EPIC is a multi-year, research investment program focused on electricity-related innovations, finding new energy solutions and bringing clean energy ideas to the marketplace. The seven awards approved will fund applied R&D projects that will develop utility-scale renewable energy generation technologies. Alternative Fuel and Vehicles.
These conductivity-enhanced materials have the potential to lower the costs and impacts of adding renewables and electric cars to the grid, maximize next-generation energy storage technologies, and support electrification for energy-intensive sectors. Advanced Manufacturing Office.?.
—James Turner, Professor of Mechanical Engineering, Clean Combustion Research Center, King Abdullah University of Science and Technology (KAUST). Achates Power prefers compression ignition in its OP engines because it enables combustion in the middle of the combustion chamber for clean, efficient combustion and minimal heat loss.
The US Department of Energy (DOE) announced nearly $8 million for nine cooperative projects that will complement existing H2@Scale efforts and support DOE’s Hydrogen Shot goal to drive down the cost of clean hydrogen by 80% within the decade. NREL, Renewable Innovations, Inc., Award amount: $1,722,089). Award amount: $500,000).
The California Energy Commission awarded more than $24 million in grants today for clean energy freight transportation projects in Los Angeles and Long Beach and more than $12 million for other clean transportation projects. Several other ARFVTP-funded projects were also approved. Recipients included Motiv Power Systems, Inc.,
Australia-based Hysata, which is commercializing capillary-fed electrolysis technology developed at the University of Wollongong ( earlier post ) has closed its oversubscribed Series A funding round of $42.5 2022) “A high-performance capillary-fed electrolysis cell promises more cost-competitive renewable hydrogen.” Hoang, A.L.,
The financing was led by Breakthrough Energy Ventures with participation from Mercuria, John Deere and Clean Energy Ventures. The company’s engine technology enables low-carbon, renewable fuels such as ethanol to be integrated easily into existing diesel engine platforms, offering a lower-emission, lower-cost solution than diesel fuel.
Addressing climate change requires not only a clean electrical grid, but also a clean fuel to reduce emissions from industrial heat, long-haul heavy transportation, and long-duration energy storage. However, they note, a clean US hydrogen economy will require a comprehensive strategy and a 10-year plan. —Arun Majumdar.
We organize all of the trending information in your field so you don't have to. Join 5,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content