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Light-duty vehicles, including sedans, SUVs, and pickup trucks, are currently responsible for 58% of US transportation sector emissions. Pickup trucks accounted for 14% of light-duty vehicle sales in the United States in 2020, and the market share of both pickups and SUVs has grown in recent years. years for sedans, 1.4
Ingevity and Ozinga Energy are partnering to begin a field demonstration of adsorbed natural gas (ANG) bi-fuel pickup trucks. Developed by Adsorbed Natural GasProducts, Inc. Already a strong supporter of alternative fuels, a large majority of Ozinga’s fleet of concrete trucks operate on compressed natural gas (CNG).
In this case—which reflects only current laws and regulations—renewable energy is the fastest-growing energy source through 2050, while petroleum remains the largest share of energy consumption throughout that period, followed by natural gas. Source: U.S. Energy Information Administration, Annual Energy Outlook 2022 (AEO2022).
Transform Materials has developed a novel and sustainable microwave plasma reactor process to convert natural gas into high-value hydrogen and acetylene, thereby opening up a new pathway for green chemical manufacturing. Oxidation of methane also introduces impurities in the product stream.
It builds on a project launched last year to demonstrate how hydrogen production facilities could be installed at operating nuclear power plants. This is a game-changer for both nuclear energy and carbon-free hydrogen production for numerous industries.
The Volvo Low Impact Green Heavy Transport Solutions (LIGHTS) Innovation Showcase, held at Volvo Trucks’ TEC Equipment dealership’s Fontana location, revealed the progress that has been achieved since the announcement of the Volvo LIGHTS project in late 2018. Earlier post.) Volvo Group contributed $36.7
Researchers at Uppsala University have developed photocatalytic composite polymer nanoparticles (“polymer dots”) that show promising performance and stability for the production of hydrogen from water and sunlight. An open-access paper on the work appears in the Journal of the American Chemical Society.
Researchers at Monash University in Australia have conducted a lifecycle analysis and net energy analysis (LCA/NEA) of a hypothetical large-scale solar-electrolysis plant for the production of green hydrogen. of hydrogen is currently produced via water electrolysis and only a fraction of this production is powered by renewable energy.
BMW has begun fuel cell system production at the company’s competence center for hydrogen in Munich. 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.
Audi is moving ahead with networked traffic lights in Düsseldorf. After Ingolstadt, the city on the Rhine is the second in Europe in which Audi is introducing its Traffic Light Information service. Vehicle-to-infrastructure (V2I) services like Audi Traffic Light Information increase efficiency, convenience and safety on the roads.
Daimler Trucks continues deliveries of the FUSO eCanter, its fully electric light-duty truck. Among the new customers is Calor, one of UK’s best-known gas suppliers. 16 FUSO eCanter from Daimler Trucks’ small series-production in Tramagal, Portugal, have been delivered to customers in the United Kingdom so far.
ABB will supply high voltage-capable chargers for the Volvo LIGHTS project. The Volvo LIGHTS project is a partnership among the Volvo Group, Volvo Trucks, and Greenlots along with several more industry leaders and stakeholders in transportation and electrical charging infrastructure. 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. A paper on the work appears in ACS Energy Letters. —Naomi Halas. Carter and Naomi J.
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. The team found that the largest components of total carbon intensity are ethanol production (29.6
General Motors plans to invest $918 million in four US manufacturing sites, including $854 million to prepare these facilities to produce the company’s sixth-generation Small Block V-8 engine and an additional $64 million in Rochester, New York and Defiance, Ohio for castings and components to support EV production.
A new report from a team at Argonne National Laboratory examines the changing characteristics for light-duty plug-in electric vehicles (PEVs) from 2010-2021, evaluating range, energy efficiency, costs, and performance. 2022) “Assessment of Light-Duty Plug-in Electric Vehicles in the United States, 2010 – 2021.” Gohlke et al.
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.
Energy company SGH2 is bringing the world’s biggest green hydrogen production facility to Lancaster, California. SGH2’s gasification process uses a plasma-enhanced thermal catalytic conversion process optimized with oxygen-enriched gas. Hydrogen can also reduce and potentially replace natural gas in all applications.
In 2018, 27% of new light-duty vehicles sold in the US had fuel economies of more than 30 miles per gallon (783 l/100 km), according to the US Department of Energy (DOE). By contrast, none of the light-duty vehicles produced in 1975 had fuel economy greater than 30 miles per gallon (mpg). In 1995, 4.4% In 2018, 2.4% Source: U.S.
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. The traditional thermal cracking of ammonia uses high heat and pressure to convert it to hydrogen gas.
Here we demonstrate the production of biogasoline with a direct upstream integration into processes in existing petrorefinery facilities that targets the 10% bio-based carbon in accordance with the current European Union directives (for 2020) for biofuels. Current bio- enrichment is done by ethanol blending downstream (below right).
Researchers in Israel have designed a separate-cell photoelectrochemical (PEC) water-splitting system with decoupled hydrogen and oxygen cells for centralized hydrogen production. 2019) “Decoupled Photoelectrochemical Water-Splitting System for Centralized Hydrogen Production,” Joule doi: 10.1016/j.joule.2019.12.006. Landman et al.
Audi is adding a new member to its A3 family: the A3 Sportback 30 g-tron natural gas vehicle. Operation with natural gas or biomethane makes the compact model economical and more climate-friendly with low emissions. With full gas tanks, the car has an NEDC range of up to 495 (307.6 The A3 Sportback 30 g-tron 1.5
In February 2022, a team from Argonne National Lab published a report “Carbon Intensities of Refining Products in Petroleum Refineries with Co-Processed Biofeedstocks”. The company produces and markets biodiesel, renewable diesel, and renewable natural gas, and is currently building hydrogen fueling infrastructure in California.
The US Environmental Protection Agency (EPA) released its 28 th annual Inventory of US Greenhouse Gas Emissions and Sinks (GHG Inventory), which presents a national-level overview of annual greenhouse gas emissions from 1990 to 2019. The number of vehicle miles traveled (VMT) by light-duty vehicles (i.e., from 2018 to 2019.
However, during development, the project team was able to exceed the program expectation for engine-out NO x and exhaust temperature control in the catalyst warm-up mode and concluded that the tailpipe NO x targets can be met without the close coupled light-off SCR. Source: Achates Power. Standard calibration is.ideal for feeding the SCR.
Working with gas instead of liquid has several advantages. Furthermore, by using water in the gas phase instead of the liquid phase, we do not need expensive installations to purify the water. Hydrogen production based on renewable energy sources significantly helps reduce the emission of greenhouse gases.
Together, Hyzon and Transform Materials will evaluate proposals to develop facilities to produce low-to-negative carbon intensity hydrogen from various forms of methane, prioritizing biogas and renewable natural gas. The production of hydrogen as a co-product with acetylene provides significantly advantaged hydrogen cost structures.
These light-duty EVs fill the gap between full-sized trucks and small utility carts for low-speed logistics and cargo services in campus and urban environments. Beginning operations in 2017 and re-named in 2019, the Karma Innovation and Customization Center (KICC) is California-based Karma Automotive’s production hub.
The fuel supply can be freely combined according to user needs and the basic conditions of fuel production, storage and transportation, which is a highly adaptable, flexible and controllable zero-carbon/low-carbon power solution. times, and B10 reaches 1 million kilometers.
This, they suggest in a paper in Joule , will emerge via three overlapping technology generations: Generation 1 is based on an expansion of current-day Haber-Bosch ammonia production using CO 2 sequestration or offsets. Ammonia production is currently responsible for ~1.0% of global greenhouse gas emissions (or about 1.4%
From Lingen (Emsland) to Gelsenkirchen and from the Dutch border to Salzgitter, production, transport, storage and industrial acceptance of green hydrogen are to be connected in several steps between 2024 and 2030 under the umbrella of the overall project. In Lingen (Emsland) RWE produces green hydrogen via an electrolysis plant.
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.
Saudi Aramco emergency crews contained the fires at the plants; the company announced the production suspension of 5.7 Work is underway to restore production and a progress update will be provided in around 48 hours. The plant processes the majority of Arab Extra Light and Arab Light crude oils, as well as natural gas liquids (NGL).
We’ve been on the design team for the eCascadia for the last several years now, and it’s very nice to see our work and Freightliner’s work come to fruition with this product. —Todd Carlson, SCE principal manager of Fleet Asset Management, who manages the company’s fleet of more than 6,200 vehicles.
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. Solar park in the desert supplies green power for aluminum production. million cast components.
Department of Energy (DOE) selected 16 projects to receive nearly $25 million in federal funding for cost-shared projects to advance natural gas infrastructure technology development. AOI 2: Process-Intensified Technologies for the Upcycling of Flare Gas into Transportable, Value-Added Products.
At the time, about a decade ago, I was helping to refine a system for fabricating chips using extreme ultraviolet (EUV) light. To produce EUV light, we would focus an intense laser pulse onto 30-micrometer-wide droplets of tin flying through a chamber filled with low-density hydrogen.
Petroleum emissions from other sectors have fallen in recent years as equipment and processes that use petroleum fuels have been replaced by those using other fuels, in particular, natural gas. Natural gas is the least carbon-intensive fossil fuel, and for decades natural gas made up the smallest portion of US energy-related CO 2 emissions.
The vehicle manufacturing cycle includes impacts of raw material extraction, vehicle parts production, assembly, as well as its disposal and related materials recycling processes. When fueled by hydrogen produced from landfill gas, the total dropped to 117 g CO 2 e/mi.
The conversion reaction also produces light olefins—ethylene, propylene, and butenes—totalling a yield of 8.7%. Jet fuel can then be obtained from the products after industrially recognized treatments such as distillation or hydro-isomerization. The final product is usually a crystallized material. —Yao et al.
Using a hematite photocatalyst, a team led by researchers from Kobe University has succeeded in producing both hydrogen gas and hydrogen peroxide at the same time from sunlight and water. Recently, they have succeeded in increasing the light energy conversion efficiency by applying this technology to hematite (?-Fe under 600nm).
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.
Mass production of the all-new 2023 Honda CR-V hybrid began at Honda of Canada Mfg. The Indiana Auto Plant (IAP) and the East Liberty Auto Plant (ELP) in Ohio, which produced the previous CR-V Hybrid, will begin production of the 2023 CR-V hybrid in the coming months.
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