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The thing is you usually WANT Carbon in your Iron, so if you use Hydrogen DRI you have to further process the Iron to add the Carbon back in. There's a lot of p
by LarsAlereon 4y ago
The thing is you usually WANT Carbon in your Iron, so if you use Hydrogen DRI you have to further process the Iron to add the Carbon back in. There's a lot of potential for using mixtures of Hydrogen and Natural Gas to produce Iron with the exact desired Carbon content.
- moron4hire 4y agoIt seems to me that, when you want carbon in your iron (to make steel), you want a lot of control over how much carbon is in that steel. To start from a base iron that has no carbon in it whatsoever seems like it would be better for being more precise in your steel production.
- LarsAlereon 4y agoWhile you certainly can add or remove Carbon during processing, you get the lowest costs if your input Iron is as close as possible to the desired Carbon content for your application.
- moron4hire 4y agoAgain, it seems to me that, if you care about extreme precision in your steel-making process, cost is the least of your worries.
- ghastmaster 4y agoCarbon is wanted for steel production, but at specific levels. DRI is further worked to oxidize carbon and remove it before processing. Eliminating the carbon/oxygen from natural gas reduction allows a more controlled introduction of carbon and or less processing to make ready for steel production.
- metal_am 4y agoSteel is an incredible massive category. For high quality steels (duplex, maraging, PH stainless), you actually don't want much carbon. Since they talk about "aging properties" in the article, I'd imagine they're targeting the nicer stuff. This doesn't seem like a process intended for cheap steel.