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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 gasgrid, the new methanation plant provides for the generation of “green” methane.
Starting next year, the jointly developed pilot plant will produce major quantities of hydrogen using electricity from renewable sources, mostly from nearby wind power stations. This hydrogen can be stored, loaded into tank trailers or fed directly into the natural gasgrid, for use in generating heat or electricity.
The Audi e-gas plant in the city of Werlte in Lower Saxony ( earlier post ) produces CO 2 neutral-fuel (synthetic methane from water, renewable electricity and CO 2 ); it now also contributes toward stabilizing the public power grid. This therefore considerably increases the overall efficiency of the Power-to-Gas/biogas plant.
electricity provider National Grid faces a problem every time there is a soccer match on (or any other widely viewed televised event for that matter): During half-time, or a commercial break, an inordinate number of viewers go to turn on their tea kettles. In the U.K., In AI training , a similar phenomenon can occur every second.
Cyclonatix, Inc is developing an industrial-sized motor/controller to operate with either DC or AC power sources, for applications in electric vehicles, solar-powered pumps, HVAC&R, gas compressors, and other commercial and industrial machines which require high efficiency, variable speed/torque, and low cost.
and Pacific Gas and Electric Company (PG&E) on a new pilot project that will allow communication between electric vehicles (EVs) and the power grid. This project will demonstrate and test an electric vehicle’s ability to receive and respond to charge instructions based on the grid condition and the vehicle’s battery state.
Geologic storage of hydrogen gas could make it economically possible to produce and distribute large quantities of hydrogen fuel for a growing fuel cell electric vehicle market. In addition to cost savings, underground storage of hydrogen gas offers advantages in volume. Other fuels are already stored geologically.
Together with other highly-flexible controllable systems in the BMW Group production network, they will contribute to the stability of the public grid outside of the plant. Electricity generation from variable renewable electricity sources (VRE) such as wind and solar power has grown rapidly and is expected to continue to do so.
DERConnect will address an outstanding national need for large-scale testing capabilities across universities, national labs, industry, utility companies and Independent System Operators to validate future technologies for autonomous energygrids in real-word scenarios. Industry partners include Johnson Controls and Sunspec Alliance.
GE Global Research, Inline Gas Discharge Tube Breaker for Meshed MVDC Grids – $4,350,686. GE Global Research will develop a medium-voltage direct-current (MVDC) circuit breaker with exceptionally fast response time based on its innovative gas tube technology.
Ultrasupercritical plants operate at temperatures and pressures at which the liquid and gas phases of water coexist in equilibrium. In its first stage, natural gas is burned in a turbine to make electricity. He also said low-cost, low-carbon hydrogen fuel should be considered as part of the renewable energy mix.
In the future, 100% of additional purchased electricity will come from verifiable renewable sources, such as wind- and hydropower. Already existing highly efficient gas CHP systems additionally generate local heat and power at the factories. This corresponds to about three quarters of the required electricity in the German plants.
His team uses sophisticated simulation and modeling tools to address a dual challenge: scaling scientific discoveries from the lab while adapting to the dynamic realities of modern energygrids. Energy systems are not static, he emphasized. Does this new demand accelerate or hinder our ability to decarbonize the grid?
Engineers have discussed the assumed need for localized energy storage as the demand for electricity grows and tapping into EVs could be a clever way of avoiding having to construct warehouse-sized battery hubs. The companies are hoping to sell the concept as a way to help “decarbonize” the energygrid.
Using solar energy (or other renewable energy sources ) to split water delivers sustainability , while recent research has made key inroads toward efficiency and scalability. Hydrogen today comes primarily from natural gas, which pumps out a lot of carbon and methane pollution into the atmosphere.
The extent to which renewables should dominate Australia’s energygrids is a major issue in science and politics. Solar and wind are clearly now the cheapest form of electricity. The challenges posed by solar and wind generators are real. But the plan suggests a significant amount of gas will remain in the grid.
The extent to which renewables should dominate Australia’s energygrids is a major issue in science and politics. Solar and wind are clearly now the cheapest form of electricity. The challenges posed by solar and wind generators are real. But the plan suggests a significant amount of gas will remain in the grid.
“I can envision wide-scale urban power generation with solar on every roof and wind turbines on tall buildings, as well as rural, large, power farms,” Flanagan said in response to the same question. “The: 2020: 25% renewables, 70% gas, 5% fossil fuels. The 2030s: 40% gas, 50% renewable, and in 2050: 100% renewables.
Some have contended that the materials used in EV production are equivalent in environmental impact to driving a conventional gas car. Finally, technology is also making EVs more eco-friendly, and as our energygrid switches to use more renewable sources like wind and solar power, EVs become even better for the environment.
Advantages of Smart Energy Management for Fleets. The USEF delivers a single common standard to ensure that smart energy products and implementations easily integrate to create a more sustainable, green energy market. Implementing USEF enables large-scale deployment of smart energygrids.
Leverage artificial intelligence, the Internet of Things, big data, and cloud computing to improve business and industrial processes, optimize the supply chain and energy consumption, and reduce carbon footprints. Renewable energy innovations. Enrich and expand solar, wind, hydro, and geothermal energy generation and utilization.
economy away from dependence on fossil fuels like petroleum, coal and natural gas to 100 percent carbon-free electricity by 2035. Public Utility Commissions (PUCs)] and many state and federal agencies,” states a report by the non-profit group Americans for a Clean EnergyGrid. Permitting issues also bedevil wind power projects.
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