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Audi plans to cut water consumption in production in half by 2035

Green Car Congress

Audi has included the economical and efficient use of water as a key aspect of its Mission:Zero environmental program. The company plans to keep its own water consumption to a minimum and stop using drinking water in vehicle production in the future. Drinking water is a valuable and scarce resource: 2.2

Water 409
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New stable water-splitting catalyst doesn’t require expensive iridium

Green Car Congress

Researchers have developed a nickel-stabilized, ruthenium dioxide (Ni-RuO 2 ) anode catalyst for proton exchange membrane (PEM) water electrolysis. The Ni-RuO 2 catalyst shows high activity and durability in acidic OER for PEM water electrolysis. Illustration by Zhen-Yu Wu. 2 , suggesting potential for practical applications.

Water 411
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Researchers develop highly efficient organometal halide perovskite photoelectrodes for water splitting

Green Car Congress

Photoelectrochemical (PEC) water splitting based on solar energy is one promising approach for the production of green hydrogen. However, its widespread application is limited by a lack of efficient photoanodes for catalyzing the rate-limiting oxygen evolution reaction (OER), an important reaction in PEC water splitting. 202300951

Water 369
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Fraunhofer IFF team designing hydrogen factory of the future

Green Car Congress

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. The hydrogen factory of the future. © Fraunhofer IFF.

Hydrogen 435
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Sparc Hydrogen to test photocatalytic water splitting (PWS) reactor at CSIRO

Green Car Congress

The Sparc Green Hydrogen process combines concentrated solar (CS) with photocatalytic water splitting. The company’s key development allows for reduced photocatalyst use and integration with existing concentrated solar systems.

Water 396
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U-M, Ford open robotics complex to accelerate future of advanced, more equitable robotics and mobility

Green Car Congress

Artificial intelligence-designed "robot playground" outdoor obstacle course for testing robots on stairs, rocks, and water, surrounded by motion capture cameras. Key research will focus on: The future of moving goods more efficiently, as the pandemic further fuels online retail growth.

Ford 430
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thyssenkrupp’s water electrolysis technology qualified as primary control reserve in Germany; hydrogen production for the electricity market

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thyssenkrupp’s proprietary water electrolysis technology for the production of. In the future thyssenkrupp’s electrolysis plants will be able to act as large-scale buffers to stabilize the power grid and compensate fluctuations quickly and flexibly. —Christoph Noeres, Head of the Energy Storage & Hydrogen unit at thyssenkrupp.

Water 337