Study on Mechanism and Thermodynamics of NO Absorption by Acetylcholine‐chloride Type Deep Eutectic Solvents

Author:

Xiao Xinxin1,Liu Yixuan1,Chen Xingxing1,Bai Hongcun2,Xu Xiuli3,Yu Jianglong14,Dou Jinxiao1ORCID

Affiliation:

1. Key Laboratory of Advanced Coal and Coking Technology of Liaoning Province School of Chemical Engineering University of Science and Technology Liaoning Anshan 114051 China Homepage URL

2. State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering Ning Xia University Yinchuan 750021 China

3. Sinosteel Anshan Research Institute of Thermo-Energy Co., Ltd Liaoning 114044 China

4. Suzhou Industrial Park Monash Research Institute of Science and Technology Southeast University-Monash University Joint Graduate School Suzhou 215123 China

Abstract

AbstractNO absorption by using deep eutectic solvents (DESs) from flue gas has become one of great research interest. In this work, different DESs were prepared with acetylcholine chloride as a hydrogen‐bond acceptor. The effect of molar ratio of the hydrogen‐bond acceptor and different hydrogen‐bond donor, temperature, and different hydrogen‐bond donors on NO absorption by acetylcholine chloride DESs was investigated systematically. The absorption experiment of NO by acetylcholine‐methyl urea DES at an absorption capacity of 0.119 (g NO/g DES) when the molar ratio of acetylcholine chloride to methyl urea was 1 : 2 at 30–40 °C. The absorption mechanism of NO by acetylcholine chloride DESs was determined by Fourier transform infrared spectroscopy and 1H nuclear magnetic resonance combined with quantum chemical calculation. The results indicated that NO with acetylcholine‐methyl urea DESs by chemical absorption to form NONO structure, nitrogen‐oxygen double bonds (N=O), nitrogen‐oxygen single bonds (N−O), and nitrogen‐nitrogen single bonds (N−N). The simulation results showed that nitric oxide formed two hydrogen bonds with N atoms on methyl urea: C−N⋅⋅⋅N and O=N⋅⋅⋅N=O. Thermodynamic properties showed that the ▵rHom for NO absorption in acetylcholine‐chloride‐type DES was −15.39 kJ/mol, which was more efficient for NO absorption/desorption.

Funder

Natural Science Foundation of Liaoning Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Chemistry

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