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Greenergy will invest in Front End Engineering Design (FEED) of a project to produce low-carbon transportation fuels from waste tires. Topsoe’s proven HydroFlex technology has been chosen for hydroprocessing in both units. billion tires are discarded each year worldwide, creating significant waste. An estimated 1.5
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. In the recycling industry, the cost of recycling is key. —Hongfei Lin.
RWE's FUREC project, which aims to produce circular and green hydrogen from non-recyclable municipal solid waste in Limburg, the Netherlands, received a €108-million grant from the EU’s Innovation Fund. The CO 2 released during the hydrogen production is captured and can be stored or possibly used as a raw material by industry in the future.
Korea’s Doosan Heavy Industries & Construction has embarked on the development of technology for producing hydrogen using waste plastic and vinyl. The company has signed a business partnership MOU with RevoTech, a company that specializes in the continuous pyrolysis of waste plastic. —Doosan Heavy CSO Yongjin Song.
Now, researchers have detected a broad range of emerging synthetic antioxidants, called hindered phenol and sulfur antioxidants, in dust from electronic waste (e-waste) recycling workshops, possibly posing risks for the workers inside. An open-access paper on the work is published in ACS’ Environmental Science & Technology Letters.
Every year, Netherland-based student company TU/ecomotive produces an electric car with a team of 21 BA students from the Eindhoven University of Technology, with the aim of showing the world that a hypothetical, sustainable car of the future can be a reality today. Luca, the world’s first Zero-Waste car. Photo by Bart van Overbeeke.
NOVONIX Limited announced that its Battery Technology Solutions division successfully commissioned its 10 tonnes per annum (TPA) cathode pilot line. NOVONIX will use the pilot line to further demonstrate the manufacturability of the company’s long-life cathode materials and technology, including high-nickel (e.g.,
Idemitsu Kosan, one of Japan’s leading producers and suppliers of energy, has launched a feasibility study of clean hydrogen production in Japan generated from waste, including municipal waste. The goal is to launch a first hydrogen production facility around 2030 capable of processing 200-300 tons of waste per day.
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 industrialwaste gases, such as carbon dioxide and carbon monoxide, into acetone and isopropanol (IPA). —Jennifer Holmgren, CEO of LanzaTech. Abdalla, T.
The plant will feature SGH2’s technology, which will gasify recycled mixed paper waste to produce green hydrogen that reduces carbon emissions by two to three times more than green hydrogen produced using electrolysis and renewable energy, and is five to seven times cheaper. This is game-changing technology.
Topsoe and Steeper Energy , a developer of biomass conversion technologies, signed a global licensing agreement for a complete waste-to-fuel solution. The end-products include Sustainable Aviation Fuel (SAF), marine biofuel, and renewable diesel from waste biomass. Steeper Energy was founded in 2011 and is backed by TOM Capital.
At the site, landfill gas (LFG) will be the primary fuel to provide power for the non-combustion process that converts waste to hydrogen. The collaboration with Raven’s technology offers a strong renewable hydrogen alternative to electrolysis, using less electricity and no need for fresh water. Earlier post.).
Raven SR, a US-based renewable fuels company ( earlier post ), plans to build a waste-to-hydrogen production facility in Aragón, Spain, following the opening of its subsidiary Raven SR Iberia in Zaragoza, announced earlier this month. Raven SR plans to bring the modular project online in 2023.
A Korean research team has developed a technology that can be used to mass-produce aviation-grade fuels from wood wastes. Large volumes of lignin are generated as waste in the pulping processes that are used to produce paper. The pyrolysis of lignin produces an oil which has little industrial utility due to its high viscosity.
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. The methanol fuel cell system is based on High-Temperature PEM technology and methanol to hydrogen reforming.
A new approach developed by researchers at the Norwegian University of Science and Technology (NTNU) could alleviate that situation a bit by using waste heat from other industrial processes. Energy experts say that the waste heat from Norway’s businesses and industries is the equivalent of 20 TWh of energy.
Synova, SABIC Global Technologies B.V., an affiliate of Saudi Basic Industries Corporation (SABIC), and Technip Energies recently signed a Joint Development and Cooperation Agreement to collaborate on the development and realization of a commercial plant which will produce olefins and aromatics from plastic waste.
bp ventures has committed $10 million, leading the Series B investment round, in WasteFuel , a California-based biofuels company that will use proven, scalable technologies to convert bio-based municipal and agricultural waste into lower carbon fuels, such as biomethanol. billion metric tons by 2050.
Blue World Technologies has started the series production of its methanol fuel cells, marked with the official inauguration of the 8,500 m 2 Blue Aalborg Factory. The fuel cell factory, which initially has an annual production capacity of 250,000 individual fuel cells, is located in an industrial area at the Port of Aalborg in Denmark.
The National Circular Economy Roadmap found innovation is crucial to realizing Australia’s largest economic gains, which will come from designing new products and materials, including through advanced manufacturing, and in embracing new business models that will create domestic and export markets for waste streams.
The FLITE (Fuel via Low Carbon Integrated Technology from Ethanol) consortium, led by SkyNRG and with LanzaTech as the technology provider, will build the first-of-its-kind LanzaJet Alcohol to Jet (AtJ) facility. The facility will convert waste-based ethanol to sustainable aviation fuel (SAF) at a scale of more than 30,000 tons/yr.
Aemetis, a renewable fuels company focused on negative carbon intensity products ( earlier post ), has signed a 10-year, 450-million-gallon renewable diesel supply agreement with an industry-leading travel stop company, which is expected to generate more than $3 billion in revenue. The industrial site has 710,000 s.f.
FREYR Battery has awarded a strategic alliance frame agreement to South Korea-based Hana Technology. Hana Technology develops precision automation solutions for battery facilities and other industrial operations. We selected Hana Technology due to their proven track record with major Korean battery manufacturers.
Blue World Technologies has acquired 15% of Danish Power Systems , a developer and manufacturer of membrane electrode assemblies (MEAs) for high-temperature PEM fuel cells. Blue World Technologies will use the Danish Power Systems technology in their methanol fuel cell systems. CO 2 + 3 H 2.
ClearFlame Engine Technologies , a growing startup dedicated to the development of clean engine technology ( earlier post ), secured $2.5 The new funding will help ClearFlame deploy pilot Class 8 trucks with its patented technology. The new funding will help ClearFlame deploy pilot Class 8 trucks with its patented technology.
Designed to work with a car’s existing fuel, the onboard separation technology is the first to use chemistry—not a physical membrane—to separate ethanol-blended gasoline into high- and low-octane fuel components. That’s where PNNL’s onboard separation technology comes in. —Allan Tuan.
Bridgestone Americas is partnering with LanzaTech to address end-of-life tire waste. According to the Tire Industry Project operating under the umbrella of the World Business Council for Sustainable Development (WBCSD), more than one billion tires globally reach the end of their useful service life each year.
Australia-based Sparc Technologies has entered into a strategic partnership agreement with the Queensland University of Technology (QUT). The partnership will begin with a project in the battery anode space with the development of a novel process for the production of hard carbon from bio-waste.
Texas A&M University (TAMU) engineering researchers have devised a simple, proliferation-resistant approach for separating out different components of nuclear waste. What is left behind is an assortment of radioactive elements, including unused fuel, that are disposed of as nuclear waste in the United States. —Jonathan Burns.
thyssenkrupp’s proprietary water electrolysis technology for the production of. As part of the Carbon2Chem project, thyssenkrupp’s alkaline water electrolysis unit is already successfully supplying hydrogen for the production of chemicals from steel mill waste gases. In the following year the production of ammonia succeeded.
The UK government is awarding £54 million to 15 projects to develop technologies that remove carbon emissions from the atmosphere. The funding comes under Phase 2 of the Direct Air Capture and Greenhouse Gas Removal technologies competition. The competition is worth a total of £60 million (US$72 million). million (US$6.7
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.) The investment will support acceleration of Infinium’s commercial developments globally. Infinium electrofuels process.
Infinium, an electrofuels solution provider, announced the close of a funding round bringing together a consortium of investors including Amazon’s Climate Pledge Fund, Mitsubishi Heavy Industries (MHI), AP Ventures, Neuman & Esser, and the Grantham Environmental Trust. —Robert Schuetzle, CEO of Infinium.
a provider of on-site hydrogen production, received an equity investment of up to $157 million from Newlight Partners LP, a growth equity investor, with participation from existing investors Cottonwood Technology Funds, Sun Mountain Capital and new investor Fortistar. BayoTech, Inc.,
Initial life cycle assessments demonstrate either reduced carbon emissions compared with current methods of carbon black production or the use of bio-based or waste feedstock sources. A high-quality silica has been produced from this waste ash. A high-quality silica has been produced from this waste ash. Non-pneumatic tire.
Strategic Biofuels has selected Johnson Matthey’s (JM’s) Fischer Tropsch (FT) CANS technology—co-developed with bp—for its Louisiana Green Fuels project (LGF) in Caldwell Parish, Louisiana. million gallons of biofuels per year once in operation.
ClearFlame Engine Technologies, a startup developing net-zero engine technology ( earlier post ), announced the publication of an independent study that finds ClearFlame’s technology could help fleet owners and other heavy-duty truck operators lower total costs while meeting sustainability goals sooner than currently available alternatives.
The new Service Station can save costs on hydrogen production, storage and transportation by more than 20% compared to traditional hydrogen refueling stations; it is intended to become a pilot model to lead the development of China's hydrogen energy industry. Sinopec Fuel Oil Sales Co., As part of Sinopec’s commitment to becoming China’s No.1
Researchers at the Swiss Federal Institute of Technology (ETH) Zurich, Switzerland, have developed a carbon-supported platinum nanoparticle catalyst that can achieve complete hydrocracking of polypropylene into liquid hydrocarbons (C 5 –C 45 ). Polypropylene constitutes about 30% of all plastic waste.
Carrier is further expanding its electrification capabilities through a new alliance with ConMet , adding trailer wheel-based power generation that captures energy that otherwise would be wasted during braking events. —Tim White, President, Refrigeration, Carrier.
The more versatile the sorbent is, the more options there are for industry to supply the lithium we’re going to need for energy storage. The work is being conducted with industry partner All American Lithium, which is seeking to refine the technology in preparation for a commercial lithium plant in California. Lili Wu, Samuel F.
Fulcrum BioEnergy, a clean energy company pioneering the creation of renewable, drop-in transportation fuels from landfill waste, successfully produced a low-carbon synthetic crude oil using landfill waste as a feedstock at its Sierra BioFuels Plant, the world’s first commercial-scale landfill waste-to-fuels plant.
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
BASF is launching the pilot platform reciChain in the province of British Columbia (BC), Canada, as a response to plastic waste. The scalable blockchain solution will support the track and trace and monetization of plastics within the value chain, through innovative Digital Badge and Loop Count technology.
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