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Harnessing carbon: A catalyst for CO2 transformation
Oil and Gas News
|January 2025
Carbon-based materials revolutionise CO2 conversion, offering sustainable pathways for reducing emissions and producing chemicals, as breakthroughs highlight electrocatalysis and thermocatalysis for scalable, efficient processes

AS the global challenge of climate change intensifies, scientists are increasingly turning to innovative technologies for carbon dioxide (CO2) conversion.
Carbon-based materials have emerged as a powerful solution in the quest to transform CO2 from a greenhouse gas into a valuable resource.
Recent advancements outlined by researchers Wenhang Wang, Yang Wang, Xiangjin Kong, Hui Ning, and Mingbo Wu from China's Liaocheng University and China University of Petroleum (East China) in their paper ‘Carbon-based material for CO2 catalytic conversion applications’ reveal groundbreaking methods for utilising these materials to drive sustainable chemical processes.
THE ROLE OF CARBON IN CO2 CONVERSION
The urgency of addressing CO2 emissions cannot be overstated.
With annual global emissions exceeding 35 billion tonnes and atmospheric concentrations nearing 420 ppm – well above the safe limit of 350 ppm – climate targets are under significant threat.
CO2, however, is not merely a pollutant but an untapped resource. Harnessing it through catalytic processes offers a dual benefit: reducing emissions while creating valuable chemicals and fuels.
At the forefront of this effort are carbon-based materials, which possess unique properties ideal for catalysis.
These include low cost, high stability, abundant availability, and the ability to tailor their structure and electronic properties.
In catalytic systems, carbon materials can serve as bulk catalysts, supports, or modifiers, enhancing the performance of reactions through improved stability, selectivity, and reactivity.
The study highlights two primary approaches to CO2 transformation: electrocatalysis and thermocatalysis.
Electrocatalysis leverages renewable energy sources like solar or wind power to drive the conversion of CO2 into fuels and chemicals under ambient conditions.
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