Zhou Jiayin, Guan Xiaofei
School of Physical Science and Technology, ShanghaiTech University, 393 Huaxia Middle Road, Shanghai, 201210, China.
ChemSusChem. 2025 Feb 16;18(4):e202401533. doi: 10.1002/cssc.202401533. Epub 2024 Nov 9.
Carbon dioxide (CO) capture is a crucial negative-emission technology for the mitigation of climate change and global warming. The urgent need of combating climate change motivates the research and development of economical, effective and environmentally benign processes for CO capture. Herein, we design and report a flow cell for the CO capture from air or flue gas in a precipitate-free and closed-loop manner. No ion-exchange membrane is used in the electrolyser. The water electrolysis produces acidic solution near the anode and alkaline solution near the cathode, while generating valuable hydrogen and oxygen byproducts. The dilute CO in air or flue gas is captured by the alkaline solution, which is then mixed with the acidic solution to release the concentrated CO. The process operates in a cyclic manner as driven by the water electrolysis and the mechanical pumping. No precipitation of calcium carbonate is involved for fixing CO, which may simplify the separation process and minimizing the materials loss. The simple process enabled by electrochemical pH gradient shows promise for efficient CO capture on both small and large scales.
二氧化碳(CO₂)捕集是缓解气候变化和全球变暖的一项关键负排放技术。应对气候变化的迫切需求推动了对经济、有效且环境友好的CO₂捕集工艺的研发。在此,我们设计并报道了一种流动电解槽,用于以无沉淀和闭环方式从空气中或烟道气中捕集CO₂。该电解槽未使用离子交换膜。水电解在阳极附近产生酸性溶液,在阴极附近产生碱性溶液,同时生成有价值的氢气和氧气副产物。空气中或烟道气中的稀CO₂被碱性溶液捕获,然后与酸性溶液混合以释放出浓缩的CO₂。该过程在水电解和机械泵送的驱动下以循环方式运行。固定CO₂不涉及碳酸钙沉淀,这可能简化分离过程并使材料损失最小化。由电化学pH梯度实现的简单工艺在小规模和大规模上高效捕集CO₂方面都显示出前景。