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◆ AIChE Journal2026-02-17· Eutectic system

Reversible m <scp>ethyldiethanolamine</scp> ‐based deep eutectic solvents capture <scp> CO <sub>2</sub> </scp> : Experiments and molecular mechanisms

Yan Hou, Yue Zhang, Shaohui Tao, Lili Wang, Xiaoyan Sun, Shuguang Xiang, Xia Li, Guoxuan Li

原始摘要(英文原文)· Original abstract
Abstract Methyldiethanolamine (MDEA), an efficient and environmentally friendly absorbent, has been widely used in CO 2 capture. This study prepared and evaluated two novel ternary MDEA‐based deep eutectic solvents (DES1 and DES2) for CO 2 capture performance. Experimental results show that the maximum CO 2 absorption capacities of DES1 and DES2 were 0.1237 and 0.1016 g CO 2 /g DES, with viscosities of 14 and 9.6 mPa s at 50 wt% water content. After five absorption–desorption cycles, DES1 maintained 82% of its initial absorption efficiency. Nuclear magnetic resonance analysis confirms the successful synthesis of DESs, which effectively absorb CO 2 . After regeneration, the structure remains unchanged despite chemical absorption, indicating the reversibility of MDEA‐based DESs. Molecular‐level analysis indicates that the DES1 capture CO 2 process involves physical absorption and chemical reactions. Specifically, ethanolamine reacts with CO 2 to form carbamate, and the interaction energy between CO 2 and MDEA is −2699.40 kJ/mol.
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Reversible m <scp>ethyldiethanolamine</scp> ‐based deep eutectic solvents capture <scp> CO <sub>2</sub> </scp> : Experiments and molecular mechanisms — 科研速览 Science Skim