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The Future of EV Battery Reuse: Opportunities & Challenges

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Energy Storage Demand Renewable Energy Integration : Second-life batteries can store solar and wind energy for later use. This ongoing development is supporting sustainable battery lifecycle practices and contributing to more efficient energy use to optimize resources and promote cleaner energy solutions.

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Smart Charging Activity is Picking-Up: CPOs & Fleets Benefit from V2G

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According to Bloomberg, this is because there is a bigger overall electricity market and V2G revenue slows down more gradually in this market when the energy stored in EV fleets get utilized by the power system. This allows utilities to utilize cleaner energy sources that help to decarbonize the electrical grid.

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Wärtsilä and partners to cooperate in wind-to-hydrogen-to-electricity project; other power-to-X fuels

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The project will be based in Vaasa and will focus on enabling a new way to store renewable energy. The system will use renewable energy to produce hydrogen to be stored and reprocessed. The stored hydrogen can be utilized both in energy production and transportation applications.

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GlobalData: hydrogen to become game changer as large-scale source of cleaner power

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Hydrogen has the ability to assist in variable power output from renewable energy sources such as solar PV and wind. Hydrogen serves as one of the leading alternatives for energy storage and seems to be favoured as a low-cost alternative for storing huge quantities of electricity over days, week and also months.

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Opinion: Reinventing fuel-based power for a more secure and resilient grid

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It is, however, a challenge that is being made all the greater as we continue to decentralize power generation with more distributed, variable and inflexible sources, such as wind and solar. Increasingly, wind and solar are replacing fossil fuels as our principle source of energy. 100% wind and solar is not feasible on its own.

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CARB approves 2022 Scoping Plan; aggressive targets for reductions in petroleum use, air pollution and greeenhouse gas emissions

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The updated modeling also includes 3 million climate-friendly homes by 2030 (and 7 million by 2035), 6 million heat pumps deployed by 2030, no new fossil gas capacity in the electricity sector, and 20 gigawatts of offshore wind capacity by 2045.

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Ford Europe leading project investigating DME and OME1 as low carbon, near zero particulate fuels; power-to-liquids pathways using CO2

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They can be generated from fossil natural gas or bio-gas or through a power-to-liquids process that uses renewable sources such as solar or wind power together with CO 2 captured from the air. Like liquefied petroleum gas, DME must be stored in a slightly pressurized tank. OME1 can be stored in a conventional tank system.