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Green Hydrogen H2 News

Game-changing technology that uses coffee to generate hydrogen for green steel production in Australia

Arnes BiogradlijaBy Arnes Biogradlija22/03/20222 Mins Read
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The UNSW SMaRT Centre has published three scientific papers demonstrating the use of waste coffee grounds and hydrogen extracted from other wastes in its patented Green Steel technology.

The latest research breakthroughs on SMaRT@UNSW’s Green Steel Polymer Injection Technology (PIT) demonstrate that various wastes can be used to make steel more sustainably in electric arc furnaces through industrial trials with partner Molycop.

Wastes such as plastic and coffee grounds now join waste rubber tires as alternative sources of coke and coal, which were previously required for steel production, and can provide the element hydrogen, which significantly improves the manufacturing process’s efficiency and energy requirements.

UNSW SMaRT Centre Director, Professor Veena Sahajwalla said:  “Steelmakers have to meet the demands of quality requirements. The metal that gets produced doesn’t have any memory of whether the parent material that went in was coal or coffee.

“It gives you the kind of productivity requirements that any commercial operator will want,” Ms Sahajwalla said. “We’ve proven that it does the job at a comparable level, so we’re going to be at least sitting at an equivalent performance. If I’m going to be so bold and brave, I’d love to show that it can do even better.

“We (Australian steelmakers) are leaders in the space globally,” Ms Sahajwalla said. “We’re the first to be able to take all of these technological advances and show that it can be done.

“The ideal would be if we completely eliminate the coke,” Veena said. “If you have a combination of materials, you get a better outcome because you’re able to finetune and customise green steel and take the kinds of materials that do the best job.”

“This is not a waste, it’s a really useful resource,” she said. “It’s going to be an interesting shift towards valuing our waste resources and thinking about those inno­vative supply chains where recycling and manufacturing can be coupled together.”

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