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
Greenlots, a member of the Shell Group and a provider of electric vehicle (EV) charging and energy management solutions, has installed charging infrastructure for a fleet of electrified commercial trucks as part of its ongoing partnership with Volvo Trucks.
A team of biologists and engineers modified Rhodopseudomonas palustris TIE-1 (TIE-1) so that it can produce a biofuel using only three renewable and naturally abundant source ingredients: carbon dioxide, solar panel-generated electricity and light. We hope that it can be a steppingstone for future sustainable solar fuel production.
Using current technologies, all evaluated biofuel, battery electric, and hydrogen fuel cell vehicle pathways offer significant C2G GHG emissions reduction compared to the current gasoline internal combustion engine vehicle. When fueled by hydrogen produced from landfill gas, the total dropped to 117 g CO 2 e/mi.
A new study by a team from Environmental Health & Engineering (EH&E) has found that greenhouse gas emissions from corn ethanol are 46% lower than those from gasoline—a decrease in emissions from the estimated 39% done by previous modeling. EH&E) and Adjunct Professor of Environmental Health at Harvard’s T.H. gCO 2 e/MJ (range of 37.6
Teijin and its joint development partner Applied Electric Vehicles have developed a polycarbonate solar roof for future mobility applications. Because the vehicle is light and very energy efficient, the benefits of solar charging the Blanc Robot are much greater than the results that can be achieved on a typical EV. Solar roof.
Minneapolis-based Xcel Energy will work with Idaho National Laboratory to demonstrate a system that uses a nuclear plant’s steam and electricity to split water. The new project is the first to pair a commercial electricity generator with high-temperature steam electrolysis (HTSE) technology. Earlier post.)
A team led by researchers from Oak Ridge National Laboratory (ORNL) is developing a lower-cost cast aluminum (Al) alloy capable of at least a 50 ˚C temperature increase over the current cylinder head alloys 319 and 356 for use in light duty engines. Materials for electric and hybrid drive systems.
The report is the culmination of MITEI’s three-year Mobility of the Future study, which is part of MIT’s Plan for Action on Climate Change. Understanding the future of personal mobility requires an integrated analysis of technology, infrastructure, consumer choice, and government policy.
The US Department of Energy (DOE) released findings from a new project—Transportation Energy Futures (TEF)—that concludes the United States has the potential to eliminate petroleum use and greenhouse gas (GHG) emissions by more than 80% in the transportation sector by 2050. Click to enlarge. Using less fuel in vehicles.
The study provides a comprehensive analysis of the cost and greenhouse gas (GHG) emissions of a variety of vehicle-fuel pathways; the levelized cost of driving (LCD); and the cost of avoided GHG emissions. Selected fuel pathways were constrained to those deemed to be nationally scalable in the future.
Con Edison and its partners Lion Electric and Posi-Plus are developing the country’s first all-electric bucket truck capable of performing the full range of work that electric utilities require of such vehicles. As of last year, every new light-duty vehicle that Con Edison buys is a plug-in hybrid or all-electric.
The US Environmental Protection Agency (EPA) announced two new proposed federal emissions standards spanning light-, medium- and heavy-duty vehicles for model year 2027 and beyond. The light-duty vehicle category includes passenger cars and light trucks consistent with previous EPA criteria pollutant and GHG rules.
The relative shift away from motor gasoline to diesel is driven by improving light-duty vehicle fuel economy and the growth in commercial transportation activity. Sources for fuel economy gains in light-duty vehicles. The OECD’s potential for future intensity improvements depend more on technological and logistical advances.
The BMW Group will begin sourcing aluminum produced using solar electricity with immediate effect. Generating the electricity needed to produce primary aluminum, i.e. aluminum obtained directly from the mineral compound alumina, is alone responsible for about 60% of the global aluminum industry’s greenhouse gas emissions.
Battery-electric AMG derivatives based on the new Mercedes Electric Vehicle Architecture (EVA) for luxury and premium-class vehicles. Extensive modifications to the drive, chassis, design and equipment will provide the hallmark AMG driving experience with all-electric drive. This is a P3 hybrid configuration.).
We think hydrogen-powered vehicles are ideally placed technologically to fit alongside battery-electric vehicles and complete the electric mobility picture. By commencing small-scale production of fuel cells today, we are demonstrating the technical maturity of this type of drive system and underscoring its potential for the future.
Vehicles that use fuels other than gasoline, such as diesel or electricity, will have different fuel savings and fuel cost. Diesel vehicles often have higher fuel economy than standard gasoline vehicles, but they also must use diesel fuel, which is more expensive than gasoline.
The selected projects, or cooperative research and development agreements (CRADAs), will leverage the Advanced Research on Integrated Energy Systems (ARIES) platform to enable the integration of hydrogen technologies in future energy systems, including energy storage and a specific focus on safety and risk mitigation. Award amount: $500,000).
At the same time, total miles traveled per year by cars, sport utility vehicles (SUVs) and light trucks will increase about 60%, reaching about 14 trillion in 2040. As personal mobility increases, average new-car fuel economy (including SUVs and light trucks) will improve as well, rising from about 30 miles per gallon (7.83
The California Fuel Cell Partnership (CaFCP) released a new foundational document for heavy-duty class 8 fuel cell electric trucks (FCETs), “ Fuel Cell Electric Trucks: A Vision for Freight Movement in California and Beyond ,” that envisions 70,000 trucks supported by 200 heavy-duty truck stations by 2035.
By 2040, hybrids are expected to account for about 35% of the global light-duty vehicle fleet, up from less than 1% in 2010. The growth reflects an expected 90% increase in electricity use, led by developing countries where 1.3 billion people are currently without access to electricity. Source: ExxonMobil. Click to enlarge.
High power density electric machine for turboelectric propulsion. Instead, a light-weight titanium rim is used to retain the permanent magnets. Instead, a light-weight titanium rim is used to retain the permanent magnets. The motor could then turn the electrical energy into mechanical work to power a plane’s propellers.
Hyundai Motor Group has developed a system that estimates the gross vehicle weight of a light duty commercial electric vehicle and optimizes performance accordingly. This technology is being considered by Hyundai Motor Group for use on futurelight duty electric commercial vehicles.
Intelligent Backup Power, making its debut on F-150 Lightning, gives customers the ability to use bidirectional power technology from their all-electric truck to provide up to 10 days of power to their homes during an outage, depending on home energy usage. Earlier post.). —PG&E Corporation CEO Patti Poppe. Earlier post.).
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. Light-Material Interactions in Energy Conversion (LMI). Center for Gas Separations Relevant to Clean Energy Technologies (CGS). FY 2014 EFRC Awards. Georgia Tech.
The locomotive will show the potential of hydrogen fuel-cell technology to reduce transportation air pollutant and greenhouse gas (GHG) emissions. The demonstration will facilitate the improvement of local air quality, a reduction in greenhouse gas emissions, noise and odor.
Along with hydrogen production and use, an energy transition will involve the synchronous upscaling of renewable electricity, batteries, and energy use technologies. In light of the sheer scale of the hydrogen challenge, several questions demand close consideration. Targets for hydrogen demand beyond 2050 are much greater.
Volvo Trucks North America announced today that third-party supply chain solutions provider NFI began piloting two Volvo VNR Electric trucks as part of the Volvo LIGHTS (Low Impact Green Heavy Transport Solutions) project, becoming the third company to deploy its battery-electric trucks.
SAE International has published the first global standard that specifies, in a single document, both the electric vehicle and supply equipment (EVSE) ground-system requirements for wireless charging of electric vehicles (EV). First paired GAs and VAs provided by the same manufacturer—a so-called “matched subsystem” was tested.
The US DRIVE Cradle-to-Grave Working Group has published the “Cradle-to-Grave Lifecycle Analysis of US Light-Duty Vehicle-Fuel Pathways: A Greenhouse Gas Emissions and Economic Assessment of Current (2015) and Future (2025–2030) Technologies” Argonne National Lab Report. C2G GHG emissions of various vehicle-fuel pathways.
The US Environmental Protection Agency (EPA) released a proposed rulemaking for model year 2023-2026 light-duty vehicle greenhouse gas emissions standards, and outlined its plans to initiate a subsequent rulemaking to set standards for MY 2027 and beyond, to speed the transition of the light-duty vehicle fleet toward a zero emissions future.
There are now more than 29,000 electric vehicles registered in New York City and Westchester, including 1,262 added in February, the most recent month for which data are available, according to Con Edison, the electricity, gas and steam utility for New York CIty and Westchester County, NY. SmartCharge Registrations on the Rise.
The ranges of the levelized cost of driving (LCD) and cost of avoided carbon are narrower for the future technology pathways, reflecting the expected economic competitiveness of these alternative vehicles and fuels. Fuels or energy carriers in the study included gasoline, ethanol, diesel, CNG, LPG, hydrogen, and electricity.
Join MITEI’s Center for Energy Storage, which seeks to develop new energy storage technologies for use in renewables-heavy electric power systems, electricity-powered transportation, and other applications. Join MITEI’s Mobility Systems Center, its newest Low-Carbon Energy Center.
Light trains, urban and school buses, taxis, cars and trucks will all be gradually electrified. million electric vehicles on Québec roads is targeted by 2030. The government will support the development of a dynamic industrial ecosystem around electric vehicles, charging infrastructure and batteries. A target of 1.5
In parallel with the advancing electrification of its fleet, Volkswagen Group and its brands continue to rely on CNG (compressed natural gas) as an alternative drive technology for decarbonizing road transport; Volkswagen Group[ has revised and expanded its product range again with this in mind.
Researchers at Monash University in Australia are proposing a roadmap to renewable ammonia being produced in the future at a scale that is significant in terms of global fossil fuel use. of global greenhouse gas emissions (or about 1.4% The reaction between N 2 and H 2 requires temperatures in excess of 400 ?
Additional processing of domestically sourced tight light oil could marginally increase refinery efficiency, but these benefits could be offset by crude rebalancing, they found. In the future, if refineries produce incremental diesel through relatively inefficient pathways, diesel efficiency within a refinery would be expected to decrease.
The awardees went through a rigorous process including a review with CalSEED’s curated technical advisory committee, who volunteered their time and expertise to select the most promising future clean energy technologies. This novel technology would deliver safe, reliable, resilient, and cost-effective electric power in the grid.
Bird, a leader in electric shared micromobility services, unveiled the Bird Bike, a new e-bike that you can own. The future of transportation is all-electric. Our e-bike is safe, durable and provides a stylish aesthetic and advanced technology that delivers a fun alternative to congestion inducing, gas-powered cars.
SGH2’s gasification process uses a plasma-enhanced thermal catalytic conversion process optimized with oxygen-enriched gas. The end result is high purity hydrogen and a small amount of biogenic carbon dioxide, which is not additive to greenhouse gas emissions. But, until now, it has been too expensive to adopt at scale.
Nuvve Corporation, a San Diego-based vehicle-to-grid (V2G) technology company, is participating in a program to deliver resource adequacy to local utility San Diego Gas & Electric (SDG&E) and California’s electrical grid using a large stationary battery located on the University of California San Diego’s (UC San Diego’s) campus microgrid.
nanometer light is the precise and costly process of blasting flying droplets of molten tin with the most powerful commercial lasers on the planet. Chipmakers had been getting by with workaround after workaround for the then most advanced system, lithography using 193-nm light. A prime reason is that the source of this system’s 13.5-nanometer
Researchers from Chalmers University of Technology, Sweden, with colleagues from Delft Technical University, the Technical University of Denmark and the University of Warsaw, have developed ultra-fast hydrogen sensors that could the future performance targets for use in hydrogen-powered vehicles.
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