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Novel inexpensive cobalt-nickel electrode for efficient water and urea electrolysis; yolk-shell nanoparticles

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Both half reactions of water electrolysis—hydrogen and oxygen evolution—are unfortunately slow and require a lot of power. Phosphorus doping increases the proportion of Ni 3+ relative to Ni 2+ in the hollow particles and allows for faster charge transfer, causing the electrocatalytic reactions to run faster. Zhang, S.L.,

Water 413
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NTNU researchers use reverse electrodialysis and waste heat for hydrogen production: Heat to H2

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A new approach developed by researchers at the Norwegian University of Science and Technology (NTNU) could alleviate that situation a bit by using waste heat from other industrial processes. Energy experts say that the waste heat from Norway’s businesses and industries is the equivalent of 20 TWh of energy. —Krakhella et al.

Waste 296
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Lithium Australia produces LFP cathode material and Li-ion batteries from mine waste

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Lithium Australia NL reported that its wholly owned subsidiary VSPC Ltd has successfully produced Li-ion battery cathode material, and Li-ion batteries (LIBs), from tri-lithium phosphate produced directly from mine waste using the SiLeach process. LFP and batteries from waste. SiLeach background. VSPC LFP SEM image.

Li-ion 287
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SEAT reduces waste by 34% since 2010, expects to achieve 60% reduction by 2025

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Since 2010, SEAT, a member of the Volkswagen Group, has improved its production-related environmental footprint by 34% on average with measures to emit less CO 2 and fewer volatile organic compounds, generate less waste and consume less water and energy. less waste. less waste. and 30.9%, respectively. and generated 34.2%

Waste 199
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China’s first integrated methanol-to-hydrogen and hydrogen refueling service station now in operation

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An upgrade from the previous fueling station offering oil, gas, hydrogen, electric charging services, the integrated complex can produce 1,000 kilograms of hydrogen a day, with a purity of 99.999%. As part of Sinopec’s commitment to becoming China’s No.1

Hydrogen 418
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Simple process transforms PET plastic into a nanomaterial for supercapacitors

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UC Riverside (UCR) engineers have developed a way to recycle PET (polyethylene terephthalate) plastic waste, such as soda or water bottles, into a nanomaterial useful for energy storage. An open-access paper on the work is published in the journal Energy Storage. —Professor Cengiz Ozkan.

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Energy Vault to provide 1.6 GWh of gravity energy storage to support DG Fuels SAF projects

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Energy Vault’s advanced gravity energy storage solutions are based on the proven physics and mechanical engineering fundamentals of pumped hydroelectric energy storage, but replace water with custom-made composite blocks, or “mobile masses”, which do not lose storage capacity over time.