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Washington State University researchers have developed an innovative way to convert waste polyethylene plastic to ingredients for jet fuel and other valuable products, making it easier and more cost-effective to reuse plastics. This work is a milestone for us to advance this new technology to commercialization. —Jia et al.
Power management company Eaton introduced a family of 48-volt DC-DC converters for diesel-powered commercial vehicles that can be used to power accessories such as antilock brakes and lighting. Unlike competitive offerings, Eaton’s DC-DC converters are operational in ambient temperatures up to 85 ?C
With the final site approval, NEO has now additionally doubled the initial target annual silicon anode production capacity to 240 tons on the same mass-production lines and has consequently renamed the semi-commercial plant into a commercial-scale plant facility to accommodate for industry capacity standards.
Researchers from the University of Houston, with colleagues at the University of São Paolo in Brazil, have demonstrated how copper-resistant bacterium from a copper mine in Brazil convert CuSO 4 (copper sulfate) ions into zero-valent Cu (metallic copper). An open-access paper on their research is published in Science Advances. Gracioso et al.
Researchers at Illinois Institute of Technology (IIT), with colleagues at the University of Pennsylvania and the University of Illinois at Chicago have developed an electrolyzer capable of converting carbon dioxide into propane in a manner that is both scalable and economically viable. —Esmaeilirad et al.
million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding clean hydrogen production with nuclear energy. A well-established downstream syngas-to-synfuel conversion process, such as Fischer-Tropsch synthesis, converts the syngas to liquid synfuel for a total projected cost of less than $4/gallon.
to support its commercial-scale, emissions-free hydrogen manufacturing technology. Monolith Materials is the first US manufacturer to produce “turquoise hydrogen” on a commercial scale. Monolith Materials, Inc. has received an investment from Mitsubishi Heavy Industries America, Inc. Monolith process.
HydroWing, in partnership with Tocardo, introduced the THyPSO (Tidal Hydrogen production, Storage and Offtake), a concept that creates green hydrogen from the sea, contributing to the wider global decarbonization of energy systems. THyPSO has capacity to hold up to two weeks’ worth of hydrogen production in pressurized storage tanks.
ZF Group has received several large-scale orders worth several billion euros from North American vehicle manufacturers for its automatic 8-speed PowerLine transmission—including the largest individual commercial-vehicle-related order in company history. In 2023, production will start in Gray Court, South Carolina.
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. and is commercialized worldwide by Ways2H.
estimated that with conversion by hydrothermal liquefaction (HTL) and upgrading, the wet waste resource availability in the United States could be converted to jet fuel that is equivalent to about 24% of the U.S. Skaggs et al. demand in 2016. GLE and $0.9/GLE.
Power management company Eaton’s eMobility business has been awarded a contract to supply a 24-to-12-volt DC-DC converter for use in a commercial heavy-duty battery electric vehicle (BEV) that will power accessories, such as antilock brakes and lighting. That capability makes the converter unique among product offerings in this space.
Methanol fuel cell developer and manufacturer Blue World Technologies ( earlier post ) is starting limited production—the first step in commercializing its methanol fuel cell technology. Methanol reforming is a relatively simple process that converts a mix of methanol and water into a hydrogen-rich gas.
Researchers at the Department of Energy’s Pacific Northwest National Laboratory have developed a new method to convert captured CO 2 into methane, the primary component of natural gas. Different methods for converting CO 2 into methane have long been known.
Oberon Fuels, producer of clean-burning dimethyl ether (DME) transportation fuel, has begun production of the first renewable DME (rDME) in the United States, and the only current commercialproduction of this in the world. It is the first time this feedstock has been used to make rDME at commercial scale.
Bosch is starting volume production of a new drive unit consisting of an electric motor and an integrated inverter for light commercial vehicles. The electric drive will make its debut at Daimler Truck, supplemented by a DC/DC converter and the vehicle control unit from Bosch for the drivetrain.
Transform Materials is a sustainable chemical technology company that uses microwave plasma to convert natural gas into acetylene and hydrogen. Its highly selective, cost-effective, net-carbon-negative process converts the methane in natural gas into high-value products suitable for direct use or downstream reactions.
The technologies work as a system that converts organic waste into renewable hydrogen gas for use as a biofuel. There are usually thousands of microbes that are required to convert a complex organic mixture from biomass into electrons. We waste about 40% of food that is produced in the world today, which generates methane in landfills.
Located near Beulah, North Dakota, the Synfuels Plant will be transformed into the largest and lowest-cost, blue hydrogen production facility in the United States. This production will use locally sourced feedstock and employ established production and carbon capture processes.
Watt Electric Vehicle Company ( WEVC ), a designer and manufacturer of low-to-medium volume EVs, both under its own brand and for third parties, revealed a lightweight and efficient chassis-cab product set to provide the foundation for next-generation electric light commercial vehicles.
Volkswagen is expanding its global production network for electric vehicles by now starting to make the all-electric ID.4 4) and Hanover will also commence production this year. Volkswagen has invested around €1 million in converting the Emden plant with its 8,000 employees. In addition, production of the iconic ID.
VERBIO has commenced production at its new plant in Nevada, Iowa. The plant will generate biomethane from corn stover (maize straw), and is the first large-scale commercial plant in the US to use the technology developed by VERBIO. VERBIO’s technology produces RNG from pure cellulosic material, such as corn stover or wheat straw.
Lightning Systems, a global developer of zero-emission solutions for commercial fleets, is partnering with the City of Boulder and transit provider Via Mobility Services to repower diesel buses with battery-electric systems. —Charlie Travis, director of business development and strategic accounts for Lightning Systems.
At the 69 th IAA Commercial Vehicles show, Volkswagen Commercial Vehicles is unveiling five new zero-emission vehicles:the I.D. The electric campaign is now gaining momentum at the 2018 IAA Commercial Vehicles show. BUZZ CARGO concept—the first commercial vehicle to be based on the new I.D. BUZZ CARGO.
a global supplier of hydrogen fuel cell-powered commercial vehicles, announced a joint venture to build up to 100 hydrogen hubs across the United States and globally. into locally produced, renewable hydrogen for Hyzon’s fleet of zero-emission commercial vehicles. Raven SR , a renewable fuels company, and Hyzon Motors Inc.,
The UK Department for Transport has shortlisted 8 industry-led projects to receive a share of £15 million (US$21 million) in the Green Fuels, Green Skies (GFGS) competition for the development of sustainable aviation fuels (SAF) production plants in the UK. Research indicates that by 2040 the SAF sector could generate between £0.7
ZF is presenting new electric drives for passenger cars and light commercial vehicles. These include the compact design of the drives, power electronics, and a resource-saving use of materials, which also makes the production of the drives more sustainable. New high voltage converter. Integrated differential gear.
At the IAA Commercial Vehicles Show, Cummins introduced a concept emissions control system capable of minimizing emissions to levels previously thought unfeasible, including a possible next level of Euro VII regulations anticipated during the coming decade. Low NO x integrated system concept from Cummins. Euro 7 Vision.
Researchers at the Korea Institute of Science and Technology (KIST) have developed a steam-carrier-adopted composite membrane reactor system to produce pure H 2 (>99.99%) from ammonia with high productivity (>0.35 Membrane reactor for production of H 2 from NH 3. mol-H 2 g cat ?1 Credit: KIST. 2020.118483.
A team of scientists from LanzaTech, Northwestern University and the Department of Energy’s Oak Ridge National Laboratory have engineered a microbe to convert molecules of industrial waste gases, such as carbon dioxide and carbon monoxide, into acetone and isopropanol (IPA). —Jennifer Holmgren, CEO of LanzaTech. In this case of C.
A team from the University of Calgary and Rice University has used flash joule heating (FJH) ( earlier post ) to convert low-value asphaltenes—a by-product of crude oil refining—into a high-value carbon allotrope, asphaltene-derived flash graphene (AFG). Flash graphene from asphaltenes. (A)
Researchers at the University of Cambridge, with colleagues at the University of Tokyo, have developed a standalone device that converts sunlight, carbon dioxide and water into formic acid, a carbon-neutral fuel, without requiring any additional components or electricity. —senior author Professor Erwin Reisner. —Dr Wang.
through its subsidiary dedicated to the deployment of technologies for the energy transition, NextChem , signed today a memorandum of understanding (MoU) to support the production of green hydrogen via electrolysis in the United States. (EGPNA), and Maire Tecnimont S.p.A.,
Scientists have found that coral-inspired biomaterials could lead to efficient biofuel production. The species were Marinichlorella kaistiae , which has commercial potential, and Symbiodinium sp. , Corals are one of the most efficient organisms at using, capturing and converting light to generate energy. Credit: SIO.
The investment will support acceleration of Infinium’s commercial developments globally. Infinium Electrofuels technology converts carbon dioxide waste and renewable power through its proprietary process to create hydrogen-based alternatives to traditional fossil-based fuels. Earlier post.) Infinium electrofuels process.
Lignin may be further converted into biodegradable bioplastics or used in ion exchange resins. The cellulose and hemicellulose is broken down and converted to its C 5 and C 6 sugars, leaving a high purity lignin as a byproduct. Management believes that this will lead to lower operating and feedstock costs.
Desktop Metal, a provider of mass-production additive-manufacturing (AM) solutions, has qualified the use of 4140 low-alloy steel for the Production System platform, which leverages patent-pending Single Pass Jetting (SPJ) technology designed to achieve the fastest build speeds in the metal additive manufacturing industry.
AW-Energy Oy is entering the commercial hydrogen market by introducing a combined WaveRoller and HydrogenHub process for the production of green hydrogen. In AW-Energy’s concept, wave energy complements solar power production to enable large-scale green hydrogen. The machine operates in near-shore areas (approximately 0.3-2
will more than double its annual production of renewable diesel with the completion of a second Honeywell Ecofining process unit with a capacity of 30,000 barrels per day (bpd). and is the largest commercial advanced biofuel facility in the United States. Diamond Green Diesel facility in Norco, La., and Darling Ingredients Inc.,
Toshiba Energy Systems & Solutions Corporation (Toshiba ESS) announced that its hydrogen-based autonomous energy supply system H2One, which Toshiba ESS delivered and installed on the rooftop of Toranomon Hills Business Tower (Minato-ku, Tokyo), has started full-scale operation with the opening of commercial facilities.
ZF’s Commercial Vehicle Solutions (CVS) division announced a joint development agreement with fuel cell and battery systems supplier, Freudenberg e-Power Systems. The initial focus of the agreement is to develop a highly integrated fuel cell e-drive solution for commercial vehicles.
The two companies plan to build the first US modular thermochemical waste-to-hydrogen production facility in California in the fourth quarter of 2020, with a pipeline of additional projects to follow in 2021. Ways2H Inc.,
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.
Chemical engineers at UNSW Sydney and University of Sydney have developed a hybrid plasma electrocatalytic process for the production of sustainable (“green”) ammonia. Traditional production of ammonia via the Haber-Bosch process consumes about 2% of the world’s energy and accounts for 1% of the industrial world’s carbon dioxide emissions.
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