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September 10, 2025Advanced Materials0 citationsOpen Access

From Pollution to Value: Electrochemical Systems for Transforming Flue Gas into Chemicals and Fuels

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MWMeng WangAOAdnan OzdenTWTian Wang

Key Points

  • Electrochemical CO2 reduction can produce chemicals from flue gas emissions, reducing pollution.
  • Direct conversion of CO2 emissions can aid decarbonization in cement, steel, and power generation industries.
  • Emerging strategies including bicarbonate reduction and CO2 RR from amine-based capture show promise for high-rate electrosynthesis.
  • Mitigating impurities like oxygen and sulfur oxides in flue gas is critical for the development of effective conversion systems.

Abstract

Abstract Electrochemical CO 2 reduction reaction (CO 2 RR) can enable the production of fuels and chemicals from CO 2 emissions. Direct flue gas conversion can address the emissions from hard‐to‐abate sectors, including cement, steel, and power generation industries. Such integration with SCO 2 RR can also decarbonize the petrochemical industry and eliminate separation and purification steps. Here, recent progress and emerging opportunities for transformative flue‐gas‐tolerant systems for producing fuels and chemicals are reviewed. The review begins by analyzing recent progress in direct flue gas conversion and highlighting emerging micro‐reaction environment features. Next, performance degradation mechanisms associated with flue gas conversion in CO 2 RR systems are discussed. Following this, the bicarbonate reduction reaction (BRR) and CO 2 RR from amine‐based capture as emerging strategies for high‐rate, selective, and stable electrosynthesis of chemicals from feeds containing low CO 2 concentrations are highlighted. Finally, the mitigation of flue gas impurities such as oxygen, sulfur oxides, and nitrogen oxides, is discussed, and perspectives for emerging opportunities are shared.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68c187269b7b07f3a06113fchttps://doi.org/10.1002/adma.202509581
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