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Ping Pong

Steel As Good As Green Steel, Without Any Changes In The Existing Process

All energy intensive industries burn fossil fuels to meet the high power demands and Metal Industry is one of the largest energy consuming sector, releasing tremendous amount of CO2 emissions. Metals like Steel, Aluminum, Zinc, Copper and many more are used in our everyday life and forms the basis of the comfort, a modern human being has become so accustomed to.

Responsible for almost 15% of the world emissions, metal industry needs to integrate Carbon Capture to meet emission requirements on the path towards net zero.

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Large scale Application

We can capture CO2 ranging from a few tons to a few thousand tons per day. As the Steel & other Metal usage increases, so shall the production and the CO2 emissions will increase with it. This makes the large scale application of Carbon Capture very important.

Versatile Technology

The Solvent Oocanol-M has unique chemistry which makes it very suitable for Metal Industry. Steel, Aluminum, Zinc, Copper; these are the metals produced in high quantity, which means high CO2 emissions and our technology can address these emission issues easily.

Finding A New Revenue Source

More the CO2 emissions, more the availability of raw material for CO2 Utilization. The utilization of CO2 provides a stable revenue stream which results in tremendous financial gains. The CO2 Utilization sector is almost as profitable as the main business, if not more.

One Solution for Multiple Products

Metal is a large industrial sector and no other industry can survive without it. The cost-effectiveness of the Metal Industry is very important for any country's economy. But because of the fluctuations in the global prices of the raw materials and the energy sources, the profitability is threatened. Our technology provides a cushion from all these factors by providing a new source of revenue from Waste.

  • One ton of steel production results in 1.6 – 1.8 tons of CO2 emissions.

  • One ton of primary Aluminum production results in 1.4 – 1.8 tons of CO2 emissions and secondary Aluminum emissions are less in comparison.

  • The production of zinc produces around 3 tonnes of CO2 per ton of primary zinc while the secondary zinc production process or the recovery process emissions are less.

  • Almost similar is the data for the other metals that we use in everyday life like Copper, lead etc.

These numbers show a small glimpse of the potential of Carbon Capture & Utilization in the Metal Industry. With so much of raw material available for free, the profits by the implementation of our technology are boundless especially when our capture cost can go as low as US$ 30 per ton of CO2 capture.

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