Raju Thasan, Chung Sang Joon, Moon Il Shik
Department of Chemical Engineering, Sunchon National University, Sunchon-540 742, Korea.
Environ Sci Technol. 2008 Oct 1;42(19):7464-9. doi: 10.1021/es801174k.
The objective of this work is to develop a sustainable process for simultaneous removal of waste gases such as NO, NO2, and SO2 by an electrochemically generated Ag(I)/Ag(II) redox mediator system. High removal efficiency was achieved for NO and SO2 by the wet scrubbing method at room temperature and atmospheric pressure. This removal is achieved through oxidation and absorption by contacting the gaseous stream with redox mediator ions that offer specific or selective solubility for the solute gases to be recovered in a wet scrubber. The process parameters such as gas velocity, liquid velocity, Ag(I) concentration, and HNO3 concentration were investigated to explore the possibility of complete removal of waste gases. The Ag(I)/Ag(II)-based mediated electrochemical oxidation process proved to be quite effective for simultaneous removal of NO, NO(x), and SO2 from the simulated flue gas mixtures containing NO and SO2 over a wide concentration range of 100-400 ppm. Studies were carried out with individual gas components for the mixture, and the effect of input NO and input SO2 concentrations on the NO(x) and SO2 removal efficiencies at 20 degrees C was examined. Complete oxidation of NO to NO2 with 100% NO removal efficiency and 92% NO(x) removal efficiency was achieved along with 100% SO2 removal efficiency, highlighting a potentially far greater efficiency of the Ag(I)/Ag(II)-based system in functionality and selectivity. Active research work in this direction is anticipated in the near future.
这项工作的目标是开发一种可持续的工艺,通过电化学产生的Ag(I)/Ag(II)氧化还原介质系统同时去除NO、NO2和SO2等废气。在室温和大气压下,采用湿式洗涤法对NO和SO2实现了高去除效率。这种去除是通过使气流与氧化还原介质离子接触进行氧化和吸收来实现的,氧化还原介质离子对要在湿式洗涤器中回收的溶质气体具有特定或选择性溶解性。研究了气体流速、液体流速、Ag(I)浓度和HNO3浓度等工艺参数,以探索完全去除废气的可能性。基于Ag(I)/Ag(II)的介导电化学氧化工艺被证明在100 - 400 ppm的宽浓度范围内,对于从含有NO和SO2的模拟烟气混合物中同时去除NO、NO(x)和SO2非常有效。对混合物中的单个气体成分进行了研究,并考察了在20℃下输入NO和输入SO2浓度对NO(x)和SO2去除效率的影响。实现了NO完全氧化为NO2,NO去除效率为100%,NO(x)去除效率为92%,同时SO2去除效率为100%,突出了基于Ag(I)/Ag(II)的系统在功能和选择性方面潜在的更高效率。预计在不久的将来会在这个方向上开展积极的研究工作。