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Task-specific ionic liquids for efficient ammonia absorption

机译:特定任务的离子液体,可有效吸收氨

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A computational-experimental study was carried out to select ionic liquids with optimized properties for absorption of ammonia (NH3). Firstly, a quantum-chemical COSMO-RS analysis was performed to analyze the solute-solvent intermolecular interactions determining the gas-liquid equilibrium data. Subsequently, a rational COSMO-RS screening of Henry's law coefficient of NH3 over 272 ionic liquids was done to select potential high-capacity ammonia solvents. Finally, further experimental studies were carried out to evaluate the suitability of selected ILs as NH3 absorbents, in terms of thermal stability, liquid-phase window and ammonia solubility. Experimentally was demonstrated that both absorption and desorption proceed quite rapidly and complete desorption was achieved at room temperature. From the results obtained we propose two commercially available task-specific ILs, [EtOHmim][BF4] and [choline][NTf2], whose characteristics would allow using new easy-to-regenerate NH3 absorption systems operating in absorption-desorption cycles at near-ambient temperature and atmospheric pressure.
机译:进行了一项计算实验研究,以选择具有最佳吸收氨(NH3)性能的离子液体。首先,进行了量子化学COSMO-RS分析,以分析溶质-溶剂之间的分子间相互作用,从而确定气液平衡数据。随后,对272种离子液体中的NH3的亨利定律进行了合理的COSMO-RS筛选,以选择潜在的高容量氨溶剂。最后,进行了进一步的实验研究,以从热稳定性,液相窗口和氨溶解度方面评估所选IL作为NH3吸收剂的适用性。实验证明,吸收和解吸都非常迅速地进行,并且在室温下实现了完全解吸。根据获得的结果,我们提出两种可商购的任务特定IL,[EtOHmim] [BF4]和[胆碱] [NTf2],它们的特性将允许使用在吸收-解吸循环中以近于吸收速率运行的新型易于再生的NH3吸收系统-环境温度和大气压。

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