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This award marks the first Advanced Class Gas Turbines in the industry specifically designed and purchased as part of a comprehensive plan to sequentially transition from coal, to natural gas and finally to renewable hydrogen fuel, and creates a roadmap for the global industry to follow. Earlier post.). and Hitachi, Ltd.
As the world looks to quickly decarbonize transportation and industry, hydrogen demand is expected to increase rapidly, from $130 billion today to $2.5 There is an accompanying need to develop new low-cost and low-carbon technologies for hydrogen production. T in 2025, according to the Hydrogen Council.
The technology group Wärtsilä is developing the combustion process in its gas engines to enable them to burn 100% hydrogen fuel. Wärtsilä has researched hydrogen as a fuel for 20 years, and has tested its engines with blends of up to 60% hydrogen and 40% natural gas. Hydrogen as part of the renewable electricity system of the future.
Baker Hughes and Snam have successfully completed testing of the world’s first “hybrid” hydrogen turbine designed for a gas network. The test paves the way to implement adoption of hydrogen blended with natural gas in Snam’s current transmission network infrastructure. 20 billion cubic meters globally).
Electrofuels provider Infinium announced an agreement with Amazon to begin using Infinium Electrofuels in the retailer’s middle mile fleet as an ultra-low carbon alternative to traditional fossil fuels. The clean burning electrofuels will be produced for Amazon at one of the first electrofuels production facilities, located in Texas.
Ingevity and Ozinga Energy are partnering to begin a field demonstration of adsorbed natural gas (ANG) bi-fuel pickup trucks. Developed by Adsorbed Natural Gas Products, Inc. ANGP is working with Ingevity as its adsorbent manufacturer because of Ingevity’s global leadership in activated carbons for more than 100 years.
The flagship project MethanQuest was launched in September 2018, and on it a total of 29 partners from research, industry and the energy sector have come together to work on processes for producing hydrogen and methane from renewables and for using them to achieve climate-neutral mobility and power generation.
Scientists from ExxonMobil, University of California, Berkeley and Lawrence Berkeley National Laboratory have developed a new material that could capture more than 90% of CO 2 emitted from industrial sources using low-temperature steam, requiring less energy for the overall carbon capture process. The liquid is then heated to 120-150
Researchers from the University of Birmingham have designed a novel adaptation for existing blast furnaces that could reduce CO 2 emissions from the steelmaking industry by nearly 90%. The novel recycling system captures the CO 2 from the top gas and reduces it to CO using a perovskite crystalline mineral lattice.
Evonik has introduced the silicon-carbon composite material Siridion Black as a new anode material for lithium-ion batteries. Siridon Black features an amorphous Si/C structure with a unique carbon concentration gradient for superior stability and a high specific capacity of more than 3,300 mAh/g. Source: Evonik.
Plus (formerly Plus.ai), a leading company in self-driving truck technology, announced a new initiative with global engine manufacturer Cummins to develop the industry’s first driver-in, supervised autonomous trucks powered by natural gas. This combination will bring to market natural gas supervised autonomous trucks in 2022.
A consortium comprising Engie Solutions, Siemens Gas and Power, Centrax, Arttic, German Aerospace Center (DLR) and four European universities is implementing the HYFLEXPOWER project funded by the European Commission under the Horizon 2020 Framework Program for Research and Innovation (Grant Agreement 884229). million, of which €10.5
Austria-based OMV, an international, integrated oil, gas and chemicals company, announced its intention to become a net-zero (Scope 1, 2 and 3) company by no later than 2050. The gradual decline foresees a decrease in crude oil production by around 30% and natural gas production by around 15% by 2030.
OXCCU, a company spun-out from the University of Oxford in 2021 that is focused on converting carbon dioxide and hydrogen into industrial and consumer products ( earlier post ), completed an £18-million (US$22.8 million) Series A financing round.
Examples of such technologies are: eCracker: Electrically heated steam cracker furnaces to produce petrochemicals at high temperatures (~850 °C); these temperatures will be reached in the eCracker using electricity instead of natural gas. Methane pyrolysis: Methane pyrolysis uses green electricity to split methane into hydrogen and carbon.
As part the trials, Teijin and Fujitsu will leverage a blockchain-based commercial platform launched in July 2022 to promote the sustainable use of recycled materials, tracing and management of greenhouse gas (GHG) emissions within the environmentally-conscious bicycle industry. Earlier post.) Earlier post.)
Researchers at The Ohio State University have used a chemical looping process to produce hydrogen from hydrogen sulfide gas—commonly called “sewer gas”. Hydrogen sulfide is emitted from manure piles and sewer pipes and is a key byproduct of industrial activities including refining oil and gas, producing paper and mining.
Li-Metal’s successful demonstration of lithium metal production from carbonate further advances the its vision to establish North American-based lithium metal production capacity that next-generation battery developers can leverage.
Proton ceramic electrochemical reactors can extract pure hydrogen from gas mixtures by electrolytically pumping protons across the membrane at 800 °C. The ceramic membrane reactor also separates carbon dioxide more efficiently, enabling the greenhouse gas to be easily transported and sequestered. —Harald Malerød-Fjeld.
project for industrial-scale production of green hydrogen via the electrolysis of water using ?renewable energy, this produces ‘green’ hydrogen, without generating direct carbon emissions. ?Hydrogen produced by reforming natural gas, which does result in CO 2 emissions. renewable power, producing zero emissions.
Norwegian state-owned energy company Equinor and Germany-based energy company RWE have agreed to work together to develop large-scale value chains for low carbon hydrogen. The cooperation has these main building blocks: Construction of new gas power plants (CCGTs), contributing to Germany’s phase-out roadmap for coal.
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.
Deepsea mining company TMC The Metals Company ( earlier post ) announced a strategic partnership with Low Carbon Royalties Inc. to finance the development and production of low-carbon fuels and energy transition metals. NORI and Low Carbon Royalties are a great fit.
FlyZero is the UK’s Aerospace Technology Institute (ATI) project aiming to realize zero-carbon emission commercial aviation by 2030. Funded by the Department for Business, Energy and Industrial Strategy, the project FlyZero began in early 2021 as an intensive research project investigating zero-carbon emission commercial flight.
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 carbon dioxide can then be permanently stored or used in various products or applications.
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.
Initiated by MAN with partners from industry and research institutes, it aims to define the steps necessary to produce a dual-fuel, medium-speed engine capable of running on diesel-fuel and ammonia. This will be done in close collaboration with MAN and will also form the basis for defining any requirements for exhaust-gas aftertreatment.
Dow and X-Energy Reactor Company entered into a joint development agreement (JDA) to demonstrate the first grid-scale advanced nuclear reactor for an industrial site in North America. Earlier post.) The Xe-100 is fueled with 220,000 graphite pebbles with TRISO (tri-structural isotropic) particle fuel.
A coalition of major oil & gas, power, automotive, fuel cell, and hydrogen companies have developed and released the full new report, a “ Road Map to a US Hydrogen Economy. ” In addition, if the right actions are taken now a competitive hydrogen industry can meet 14 percent of US energy demand by 2050. .; million jobs by 2050.
Cummins and Chevron USA, a subsidiary of Chevron Corporation announced a memorandum of understanding to leverage complementary positioning in hydrogen, natural gas, and other lower carbon fuel value chains. This collaboration is intended to encourage commercial and industrial adoption in North America.
The global capacity for carbon capture in 2030 is set to increase sixfold from today’s level, to 279 million tons of CO 2 captured per year, according to research company BloombergNEF’s (BNEF) newly released 2022 CCUS Market Outlook. Legislators have recognized this mismatch and are ramping up their support for the industry.
The industrial sector is responsible for more than 30% of the country’s greenhouse gas (GHG) emissions. To achieve deep decarbonization, industries must work together to find solutions that span the entire industrial sector, DOE said.
Pacific Gas and Electric Company (PG&E) is launching the US’ most comprehensive end-to-end hydrogen study and demonstration facility, which will examine the future potential of the zero-carbon fuel hydrogen as a renewable energy source for not only PG&E customers but the entire global natural gasindustry.
Industrial gases leader Air Products, and its subsidiary Air Products Canada Ltd., Canada’s clean energy diversification strategy and regulatory framework make clear that hydrogen is a key enabler for carbon neutrality by 2050. billion (CAD) net-zero hydrogen production and liquefaction facility expected onstream in 2024.
BayoTech is committed to addressing the global need for consistent, cost-effective, low-carbon supply of hydrogen. This saves customers money and reduces the carbon intensity associated with the legacy challenges of liquifying and transporting hydrogen.
Allianz Capital Partners, on behalf of Allianz insurance companies, has signed an agreement to acquire a minority stake in Ren-Gas Oy , a green hydrogen and power-to-gas project developer based in Finland. Allianz will provide funding of €25 million to Ren-Gas to support the company’s project portfolio towards execution.
Nucor Corporation, a North American manufacturer of steel and steel products, has made an equity investment in Electra , a Colorado-based start-up developing a process to produce carbon-free iron that can be used to make steel. Electra’s process results in zero carbon dioxide emissions.
The technology developed by the UBC researchers—thermal methane cracking (TMC)—can produce up to 200 kilograms of hydrogen a day using natural gas, without using water, while reducing or eliminating greenhouse gas emissions. Currently, hydrogen can cost up to $15 per kilogram. Image: MéridaLabs.
Elkem, a company developing silicones, silicon products and carbon solutions, officially inaugurated the world’s first carbon capture pilot for smelters. The Mobile Test Unit (MTU), delivered by Aker Carbon Capture, is now connected to Elkem’s plant in Rana, Norway, which produces high-purity ferrosilicon and microsilica.
Kawasaki Heavy Industries, Ltd., jointly announced that, toward the achievement of carbon neutrality, they will take on the challenge of expanding fuel options through the use of internal combustion engines at the (three-hour) Super Taikyu Race in Okayama on 13-14 November. Participating in races using carbon-neutral fuels.
has received an investment from Mitsubishi Heavy Industries America, Inc. Olive Creek 1 in Hallam, Nebraska is Monolith Materials’ first commercial-scale emissions-free production facility designed to produce approximately 14,000 metric tons of carbon black annually along with clean hydrogen. Monolith Materials, Inc. Monolith process.
The UK’s National Nuclear Laboratory (NNL) and DNV are partnering to explore the potential of nuclear-derived hydrogen to support the conversion of UK gas networks to hydrogen. This will enable consumers to continue using gas in homes, businesses and industry, in an effective way that is net-zero compliant.
New Zealand-based Fabrum and Chart Industries have formed a strategic partnership to collaborate on the manufacture and sale of Micro-Scale Liquefiers for hydrogen and other gases. The collaboration targets the rapidly increasing demand for liquefaction systems as industries work to decarbonize and transition to new energy sources.
Qiang Xu of Southern University of Science and Technology (SUSTech) have developed a promising method for carbon capture and storage using a single-crystalline guanidinium sulfate-based clathrate salt. Methane hydrate is studied for its ability to capture and trap gas molecules such as carbon dioxide under high pressure.
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