This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
Markus Krebber (RWE), accompanied by Chairman of the Mining, Chemical and Energy Industries Union (IG BCE) Michael Vassiliadis, presented a project idea that envisions a new 2 GW offshore wind farm in the German North Sea to provide the Ludwigshafen chemical site with green electricity and enable CO 2 -free production of hydrogen.
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.
million for the next phase of Gigastack, a new renewable hydrogen project, as part of the Department for Business, Energy and Industrial Strategy (BEIS) Hydrogen Supply Competition. Producing hydrogen has traditionally been associated with high carbon emissions, but by using renewable electricity—e.g., The UK has awarded £7.5
Siemens Gamesa and Siemens Energy are joining forces to develop an innovative solution that fully integrates an electrolyzer into an offshore wind turbine as a single synchronized system to produce green hydrogen directly. It is a prime example of enabling us to store and transport wind energy, thus reducing the carbon footprint of economy.
In Germany, BSE Engineering and the Institute for Renewable Energy Systems at Stralsund University of Applied Sciences (IRES) have demonstrated the conversion of wind power into renewable methanol. The team uses green electricity to split water into hydrogen and oxygen in an electrolysis step. FlexMethanol.
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.
Mercedes-Benz Cars has entered into a power purchase agreement with Statkraft, Europe’s largest producer of renewable energy, enabling Mercedes-Benz Cars to source electricity directly from wind farms in Germany, whose subsidies from the Renewable Energy Act (EEG) expire after 2020. Statkraft is an important player in energy trading.
Audi’s e-gas plant. Audi has opened its e-gas plant in Werlte, making it the first automobile manufacturer to develop a chain of sustainable energy carriers. The Audi e-gas plant, which can convert 6MW of input power, utilizes renewable electricity for electrolysis to produce oxygen and hydrogen. Click to enlarge.
H2@Scale in Texas and Beyond intends to show that renewable hydrogen can be a cost-effective fuel for multiple end-use applications, including fuel cell electric vehicles, when coupled with large, baseload consumers that use hydrogen for clean, reliable stationary power. —Nico Bouwkamp, Frontier Energy’s H2@Scale project manager.
Researchers at the Fraunhofer IFF in Germany are designing the distributed and modular production and distribution of green hydrogen for industry, business and transportation throughout the value chain—a hydrogen factory of the future. We additionally want to supply electricity, gas and heat to industry.
McPhy Energy, a France-based developer and manufacturer of solid state hydrogen storage, presented the first system coupling an industrial-scale hydrogen generator with a 100 kg solid state hydrogen storage unit. The system inaugurates the first commercial product line for onsite industrial hydrogen users worldwide.
Minneapolis-based Xcel Energy will work with Idaho National Laboratory to demonstrate a system that uses a nuclear plant’s steam and electricity to split water. The resulting hydrogen will initially be used at the power plant, but it could eventually be sold to other industries. Earlier post.) Prairie Island.
The plant will use electricity from offshore wind turbines to produce renewable hydrogen for buses, trucks and potentially taxis. Hydrogen is widely used in heavy industry in Europe, but it is mainly produced by converting fossil fuels in a process which emits large amounts of greenhouse gases.
As a result, the real-world laboratory project has taken a significant step forward towards its goal of progressively establishing a regional hydrogen economy on an industrial scale. This will allow the decarbonization of industry, mobility and the heating market to be tested under real conditions.
Australian energy infrastructure company Jemena and gas supply company Coregas are partnering to advance the use of green hydrogen for the transport industry in New South Wales. This is the first time the New South Wales transport industry will have access to green hydrogen.
US electric power sector CO 2 emissions have declined 28% since 2005 because of slower electricity demand growth and changes in the mix of fuels used to generate electricity, according to the US Energy Information Administration (EIA). If electricity demand had continued to increase at the average rate from 1996 to 2005 (1.9%
An analysis of near-term spending plans on renewables by the biggest oil and gas companies shows that real investments in renewable energy will continue to pale in comparison to capex plans for greenfield fossil fuel projects. Indeed, much of Big Oil's reduction in greenhouse gas (GHG) emissions leans on the so-called natural gas bridge.
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.
As part of a larger £90 million (US$117 million) package of awards to cut carbon emissions in industry and homes, the UK is awarding £28 million (US$36.5 The Dolphyn project showcases a floating semi-submersible design with an integrated wind turbine, PEM electrolysis and desalination facilities. Contract value: £2.7 million (US$3.6
A modular, single-phase winding pattern increases the robustness and power density of the system by enabling single-phase inverter drives. The stator winding process and insulation have been successfully demonstrated through a mockup stator winding. High power density electric machine for turboelectric propulsion.
This year’s outlook is the first to highlight the significant impact that falling battery costs will have on the electricity mix over the coming decades. BNEF predicts that lithium-ion battery prices, already down by nearly 80% per megawatt-hour since 2010, will continue to tumble as electric vehicle manufacturing builds up through the 2020s.
The goal of the agreement is to reduce the greenhouse gas (GHG) emissions in the ocean transportation of sustainable wood pellets. This will include the “Wind Challenger”, a cargo ship design with a hard sail, which would reduce emissions by harnessing wind energy. The first Wind Challenger is scheduled to be released in 2022.
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. The current focus is on the amendment of the Energy Industry Act (EnWG).
This will be the first volume production of fuel cells in Norway and a hub for the Norwegian hydrogen industry. We combine a best-in-class fuel cell solution with a long history of being a trusted engineering partner to leading companies in the global maritime industry. —Tore Enger, CEO of TECO 2030 ASA.
Leading Australian energy infrastructure company Jemena has signed a new deal to supply Australia’s emerging zero emission vehicle industry with renewably generated green hydrogen. Jemena’s Managing Director, Frank Tudor, said the deal will make hydrogen gas generated from solar and wind power available to the vehicle industry.
EIA also published its annual Summer ElectricityIndustry Outlook , which forecasts that continued US economic growth will increase electricity use by 0.4% EIA forecasts that retail sales of electricity to the industrial sector will grow by 2.8% of US electricity generation this summer, up from 9.6%
ABB introduced ABB Dynafin, a new propulsion system concept breaking new ground for efficiency in the marine industry. The new propulsion concept features a main electric motor that powers a large wheel rotating at a moderate 30-80 rounds per minute. ABB estimates the first prototype to be available in 2025.
Energy company RWE and steel producer ArcelorMittal have signed a memorandum of understanding to work together to develop, build and operate offshore wind farms and hydrogen facilities that will supply the renewable energy and green hydrogen required to produce low-emissions steel in Germany.
A plant for liquefied renewable natural gas (bio-LNG) is also in development. Shell wants to become a leading supplier of green hydrogen for industrial and transport customers in Germany. We will be involved in the whole process.mdfrom power generation, using offshore wind, to hydrogen production and distribution across sectors.
Ørsted, the world’s leading offshore wind developer, together with the major industrial companies in the North Sea Port cluster, have launched the SeaH2Land vision for a gigawatt scale project to reduce carbon emissions in the Dutch-Flemish industrial cluster with renewable hydrogen.
Equinor and RWE have joined the NortH2 project, which aims to produce green hydrogen using renewable electricity from offshore wind off the coast of Netherlands of about 4 gigawatts by 2030, and 10+ gigawatts by 2040, kickstarting the hydrogen economy in Northwest Europe.
After growing by more than 2% in 2019, global gas use is set to fall by around 4% in 2020, as the COVID-19 pandemic reduces energy consumption across the global economies. The report shows that medium-term growth will come from increasing cost-competitiveness and increased global access to gas. Low-carbon gas.
Statoil has made the final investment decision to build the world’s first floating wind farm: The Hywind pilot park offshore Peterhead in Aberdeenshire, Scotland. The wind farm will power around 20,000 households. Statoil is proud to develop the world’s first floating wind farm. Production start is expected in late 2017.
In addition to its regional and temporal scope, this study is distinct from earlier LCA literature in four key aspects: This study considers the lifetime average carbon intensity of the fuel and electricity mixes, including biofuels and biogas. This results in significantly lower battery production emissions than in earlier studies.
The partnership will support technological innovations that represent a first step towards reducing greenhouse gas emissions from RTFT’s titanium dioxide, steel and metal powders business by up to 70%. The partnership will support projects including: BlueSmelting. Increasing scandium production. Adding titanium metal to the portfolio.
The feed-stock reduction is achieved primarily by supplementing the process with oxygen and hydrogen produced by water electrolysis units that are powered by clean wind and solar generated electricity. DGF replaces the coal gasification used by others with biomass gasification and natural gas reforming. —Christopher J.
The partners from industry and power generation will use this facility to research into future breakthrough technologies which are needed to meet global climate goals over the long-term. The goal is to research real breakthrough technologies which will be applicable on an industrial scale in the next couple of decades. Earlier post.).
Project Volt Gas Volt is based on a long-term financing plan and the use of existing technologies for the large-scale conversion of surplus renewable electricity to methane, with subsequent reuse. Project VGV uses surplus electricity generated by renewable and nuclear sources to produce hydrogen via electrolysis. Earlier post.).
In countries that choose to continue or increase their use of nuclear power, it can reduce reliance on imported fossil fuels, cut carbon dioxide emissions and enable electricity systems to integrate higher shares of solar and wind power.
The global rare earth market, driven by demand from industries including electric vehicles and offshore wind, is expected to increase five-fold by 2030 and the NdPr oxide price is forecast to increase at a CAGR of 4.8 - 9.9%, underpinning strong economics for the investment. —Pensana’s Chairman, Paul Atherley.
A methanation plant expansion to the existing power-to-gas (PtG) facility in Falkenhagen, Germany has officially opened as part of the international €28-million (US$33.5-million) While the current facility feeds pure hydrogen (“WindGas”) directly into the gas grid, the new methanation plant provides for the generation of “green” methane.
Cepsa—the Spain-based multinational oil and gas company—will invest more than €3 billion to establish the Andalusian Green Hydrogen Valley, creating the largest green hydrogen hub in Europe in southern Spain. Due to the abundance of sun and wind in the Iberian Peninsula, the International.
thyssenkrupp recently introduced industrial-scale water electrolysis for large projects. The only inputs needed are water and renewable electricity from wind, hydro power or photovoltaics. thyssenkrupp says that its solution makes large-scale hydrogen production from electricity economically attractive. 20 MW module.
By 2030, hydrogen could play an important role in decarbonizing polluting, energy-intensive industries such as chemicals, oil refineries, power and heavy transport such as shipping, heavy-duty trucks and trains, by helping these sectors move away from fossil fuels. Doing so could deliver a 7% emissions reduction on natural gas.
We organize all of the trending information in your field so you don't have to. Join 5,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content