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集成湿式洗涤器-电化学电池系统中从烟气混合物中联合脱除氮氧化物和二氧化硫的实验研究

Experimental aspects of combined NOx and SO2 removal from flue-gas mixture in an integrated wet scrubber-electrochemical cell system.

作者信息

Chandrasekara Pillai K, Chung Sang Joon, Raju T, Moon Il-Shik

机构信息

Department of Chemical Engineering, Sunchon National University, # 315 Maegok Dong, Suncheon 540-742, Chonnam, Republic of Korea.

出版信息

Chemosphere. 2009 Jul;76(5):657-64. doi: 10.1016/j.chemosphere.2009.04.013. Epub 2009 Jun 4.

Abstract

The objective of this work was to study the effect of some operating conditions on the simultaneous removal of NO(x) and SO2 from simulated NO-SO2-air flue-gas mixtures in a scrubber column. The gaseous components were absorbed into 6M HNO3 electrolyte in the scrubber in a counter-current mode, and were oxidatively removed by the Ag(II) mediator oxidant electrochemically generated in an electrochemical cell set-up. The integration of the electrochemical cell with the scrubber set-up ensured continuous regeneration of the Ag(II) mediator and its repeated reuse for NO(x) and SO2 removal purpose, thereby avoiding: (1) the usage of chemicals continuously for oxidation and (2) the production of secondary waste. The influences of packing material (raschig glass rings, raschig poly(vinylidene) fluoride rings, Jaeger tri-pack perfluoroalkoxy spheres), feed concentrations of NO and SO2 (100-400 ppm NO and 100-400 ppm SO2), superficial gas velocity (0.061-0.61ms(-1)) and liquid velocity (0.012-0.048 ms(-1)) were investigated. The raschig glass rings with high surface area provided highest NO removal efficiency. NO and NO(x) showed decreasing abatement at higher feed concentrations. The removal of nitrogen components was faster and also greater, when SO2 co-existed in the feed. Whereas the gas flow rate decreased the removal efficiency, the liquid flow rate increased it for NO and NOx. The flow rate effects were analyzed in terms of gas/liquid residence time and superficial liquid velocity/superficial gas velocity ratio. SO2 removal was total under all conditions.

摘要

这项工作的目的是研究在洗涤塔中一些操作条件对从模拟的NO - SO₂ - 空气烟气混合物中同时去除NOₓ和SO₂的影响。气态成分以逆流模式被吸收到洗涤塔中的6M HNO₃电解液中,并通过在电化学装置中电化学产生的Ag(II) 介质氧化剂进行氧化去除。电化学装置与洗涤塔装置的整合确保了Ag(II) 介质的连续再生及其用于去除NOₓ和SO₂目的的重复使用,从而避免了:(1) 持续使用化学品进行氧化;(2) 产生二次废物。研究了填料(拉西玻璃环、拉西聚偏二氟乙烯环、耶格三组合全氟烷氧基球体)、NO和SO₂的进料浓度(100 - 400 ppm NO和100 - 400 ppm SO₂)、表观气速(0.061 - 0.61 m·s⁻¹)和液速(0.012 - 0.048 m·s⁻¹)的影响。具有高表面积的拉西玻璃环提供了最高的NO去除效率。在较高的进料浓度下,NO和NOₓ的去除率降低。当进料中同时存在SO₂时,氮成分的去除更快且更多。而气体流速降低了去除效率,液体流速则提高了NO和NOₓ的去除效率。从气/液停留时间和表观液速/表观气速比的角度分析了流速的影响。在所有条件下SO₂的去除都是完全的。

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