Environ Sci Technol. 2015 May 5;49(9):5697-703. doi: 10.1021/es505728f. Epub 2015 Apr 15.
To improve the hydrogen sulfide removal efficiency with the application of an iron-based imidazolium chloride ionic liquid (Fe(III)-IL) as desulfurizer, Fe(II) and N,N-dimethylformamide (DMF) are introduced to Fe(III)-IL to construct a new nonaqueous desulfurization system (Fe(III/II)-IL/DMF). Following desulfurization, the system can be regenerated using the controlled-potential electrolysis method. The addition of Fe(II) in Fe(III)-IL is beneficial for the hydrogen sulfide removal and the electrochemical regeneration of the desulfurizer. The addition of DMF in Fe(III/II)-IL does not change the structure of Fe(III/II)-IL but clearly decreases the acidity, increases the electrolytic current, and decreases the stability of the Fe-Cl bond in Fe(III/II)-IL. Fe(III/II)-IL/DMF can remove hydrogen sulfide and can be regenerated through an electrochemical method more efficiently than can Fe(III/II)-IL. After six cycles, the desulfurization efficiency remains higher than 98%, and the average conversion rate of Fe(II) is essentially unchanged. No sulfur peroxidation occurs, and the system remains stable. Therefore, this new nonaqueous system has considerable potential for removing H2S in pollution control applications.
为提高基于铁的咪唑啉氯化物离子液体(Fe(III)-IL)作为脱硫剂的硫化氢去除效率,将 Fe(II) 和 N,N-二甲基甲酰胺 (DMF) 引入 Fe(III)-IL 中,构建一种新的非水脱硫系统 (Fe(III/II)-IL/DMF)。脱硫后,可采用恒电位电解法对该体系进行再生。在 Fe(III)-IL 中添加 Fe(II) 有利于硫化氢的去除和脱硫剂的电化学再生。DMF 的加入不改变 Fe(III/II)-IL 的结构,但明显降低了酸度,增加了电解电流,降低了 Fe(III/II)-IL 中 Fe-Cl 键的稳定性。Fe(III/II)-IL/DMF 比 Fe(III/II)-IL 更有效地去除硫化氢,并可通过电化学方法再生。经过六次循环,脱硫效率仍保持在 98%以上,Fe(II)的平均转化率基本不变。无硫过氧化发生,体系稳定。因此,这种新型非水体系在污染控制应用中具有很大的去除 H2S 的潜力。