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NYK Line has invested in Japan-based Sustainable Energy Co. which has developed its own integrated subcritical-water organic-waste power-generation system (ISOP) system, which decomposes organic substances using subcritical-water-treating technology and ultimately produces green energyproducts such as biofuels.
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.
Alfa Laval is introducing the E-PowerPack waste heat recovery system for ships. Able to convert waste heat directly into electrical power, the E-PowerPack uses Organic Rankine Cycle (ORC) technology to reduce ship fuel consumption and CO 2 emissions. The E-PowerPack will be a vital part of achieving the energy balance.
Meanwhile, wet waste feedstocks, such as animal manure and fats, oils, and greases (FOG), represent another important category of resources that could be utilized to produce MCCI bioblendstocks due to its abundant availability. Skaggs et al. demand in 2016. Skaggs et al. demand in 2016.
Energy company SGH2 is bringing the world’s biggest green hydrogen production facility to Lancaster, California. The SPEG process extracts all carbon from the waste feedstock, removes all particulates and acid gases, and produces no toxins or pollution. The facility will process 42,000 tons of recycled waste annually.
The Rice lab of chemist James Tour has successfully extracted valuable rare earth elements (REE) from waste at yields high enough to resolve issues for manufacturers while boosting their profits. The activation strategy is feasible for various wastes including coal fly ash, bauxite residue, and electronic waste.
Energy Vault, a company developing grid-scale gravity energy storage solutions, has entered into an energy storage system agreement with DG Fuels, a developer of renewable hydrogen and biogenic-based, synthetic sustainable aviation fuel (SAF) and diesel fuel. Under the terms of the agreement, Energy Vault agreed to provide 1.6
With this zero-waste car, the team wants to show that waste can be a valuable material with a multitude of applications. Luca, the world’s first Zero-Waste car. During the UBQ conversion process, the unsorted residual waste stream is reduced into its more basic natural components. Photo by Bart van Overbeeke.
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.
Metsä Fibre, part of Metsä Group, and Veolia recently signed a long-term partnership agreement on the refining of crude methanol generated in pulp production at the Äänekoski bioproduct mill into commercial biomethanol. The Kraft pulping process transforms wood chips into pulp, from which a broad range of paper products are made.
Nauticol Energy and Enhance Energy have entered into an agreement to work collaboratively for the capture and sequestration of up to one million tonnes of CO 2 each year from Nauticol’s planned $2-billion Blue Methanol facility to be built near Grande Prairie, Alberta. —Mark Tonner, CEO and co-founder of Nauticol.
The technology group Wärtsilä and Vantaa Energy Ltd., a Finnish energy company, have signed an agreement on a joint concept feasibility study for a Power-to-Gas facility at Vantaa Energy’swaste-to-energy plant in the city of Vantaa in the capital region.
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.
Italy-based integrated energy company Eni is launching the production of alternative sustainable aviation fuel (SAF). Eni is planning on significant increases in its HVO production, and very strong growth in biojet. (“HVO: HVO: Demand Outlook”). Eni plans to double its current bio-refining capacity of 1.1
and its shareholder and technical partner Japan Blue Energy Co. The waste-to-hydrogen facility, located at the Sunamachi Water Reclamation Center near Tokyo Bay, will process 1 ton of dried sewage sludge per day, to generate 40 to 50 kilograms of hydrogen per day, enough to fuel 10 passenger vehicles or 25 fuel-cell e-bikes.
Cemvita defines Gold Hydrogen as the biological production of hydrogen in the subsurface through the consumption of trapped or abandoned resources. The hydrogen production in this trial exceeded our expectations. Green hydrogen production, however, is energy intensive and expensive. It is growing at a CAGR of 54.7%
Raven SR plans to use INNIO’s Jenbacher engines [60 Hz] with a “Ready for H2” option to produce renewable energy. The energy system will power and heat Raven SR’s S-Series hydrogen production facility at a sanitary landfill in Richmond, California. The hydrogen product will be resold to power fuel cells in heavy-duty trucks.
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. Synova, SABIC Global Technologies B.V., Synova’s process.
Lithium Australia subsidiary VSPC reports significant progress towards improving the energy density of LFP (lithium ferro phosphate) Li-ion battery cells by adjusting its proprietary manufacturing processes to incorporate manganese into the cathode active material during production.
The US Department of Energy (DOE) announced up to $40 million in funding for a new Advanced Research Projects Agency-Energy (ARPA-E) program that will limit the amount of waste produced from advanced nuclear reactors, protecting the land and air and increasing the deployment and use of nuclear power as a reliable source of clean energy.
Energy Fuels Inc. Energy Fuels expects to process this monazite at its 100%-owned White Mesa Mill starting in Q1-2021, recover the contained uranium, and produce a marketable mixed REE carbonate, representing an important step toward re-establishing a fully-integrated US REE supply chain. Chalmers, President and CEO of Energy Fuels.
, the developer of a gasification-based process that converts waste into clean hydrogen fuel for mobility, microgrids and power generation ( earlier post ), closed an investment from Pacific6 Enterprises, led by founding partner John C. Ways2H is a joint venture between US-based Clean Energy Enterprises, and Japan Blue Energy Corporation.
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.
The US Department of Energy (DOE) is awarding $100 million in funding for 10 Energy Frontier Research Centers (EFRCs) to accelerate the scientific breakthroughs needed to build a twenty-first-century energy economy.
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)
The floating nuclear power plant comes as a turn-key product, ready to be moored at an industrial harbor. An optional solution is to place a hydrogen or ammonia production plant next to the floating nuclear power plant utilizing the CO 2 -free fission energy to produce hydrogen and ammonia.
Following initial contracts with European suppliers, the BMW Group has now concluded further 2 -reduced-steel-for-global-production-network">agreements for the supply of CO 2 -reduced steel in the US and China. This manufacturing process has significant potential for CO 2 savings, compared to coal-based steel production in a blast furnace.
Utilization of renewable solar energy is crucial for addressing the global energy and environmental concerns and achieving sustainable development. In this regard, photocatalytic water splitting has attracted significant interest as a cost-effective means to convert sustainable solar energy into valuable chemicals. Credit: DICP.
Porsche and joint venture partner Customcells, a spin-off from Fraunhofer, also announced the launch of production of high-performance battery cells at Porsche’s Weissach Development Center. We are very pleased that together with BASF we are bringing an environmentally friendly cell technology to series-production readiness.
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. Despite the digital revolution, a sharp increase in global parcel volumes supports the global paper production.
The USDA ARS and BIOF are cooperating to develop production methods which can be used to increase the productivity of land in Florida formerly used for orange production prior to the devastation of the industry by citrus greening. Citrus greening is one of the world’s most serious citrus plant diseases.
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.
MP Materials has received a $3-million award from the Department of Energy (DOE) to complete a feasibility study, working with the University of Kentucky (UK), on a system to produce rare earth oxides, metals, and other critical materials recovered from coal by-products. Mountain Pass facility. Source: MP Materials.
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.
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. Before the reforming can take place the fuel needs to go from liquid to gas form by evaporation, a process that requires energy.
The California Sustainable Energy Entrepreneur Development (CalSEED) program announced that the fourth cohort of innovative clean energy concepts has been approved by the California Energy Commission (CEC); 28 companies out of 212 were selected to receive grants of $150,000 each.
a waste-to-fuels company, closed a $20-million strategic investment from Chevron USA, ITOCHU, Hyzon Motors and Ascent Hydrogen Fund. Raven SR plans to build modular waste-to-green hydrogen production units and renewable synthetic fuel facilities initially in California and then worldwide. Raven SR Inc., Earlier post.).
The European Union adopted strategies for energy system integration and hydrogen, paving the way “towards a more efficient and interconnected energy sector, driven by the twin goals of a cleaner planet and a stronger economy.”. Energy System Integration. The strategy sets out 38 actions to create a more integrated energy system.
Texas A&M University (TAMU) engineering researchers have devised a simple, proliferation-resistant approach for separating out different components of nuclear waste. A typical nuclear reactor uses only a small fraction of its fuel rod to produce power before the energy-generating reaction naturally terminates. —Jonathan Burns.
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.,
Sinopec’s hydrogen production plant has the advantages of covering a small area, having a short construction time, and having a green, environmentally friendly production process. The storage and transportation cost of methanol is also much lower than hydrogen, making methanol-to-hydrogen an attractive hydrogen production technology.
The program is designed to support early stage, transformative energy technologies. Waste into X (WiX); $5.0 The global demand for critical materials (CMs) and other metals continues to grow while their production from primary ore resources is limited. million; 1-5 awards. Mining Incinerated Disposal Ash Streams (MIDAS); $4.04
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.
Vertimass and European Energy have completed a Letter of Intent (LOI) to integrate technologies for capturing carbon dioxide and converting it into hydrocarbon products around the world. —Søren Knudsen Kær , Head of Technology, Power-to-X of European Energy. —Vertimass CEO Charles Wyman.
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