Huang Li-wei, Hitoki Matsuda
College of Biological and Environmental Engineering, Zhejiang University of Technology, Hangzhou 310032, China.
Huan Jing Ke Xue. 2006 Oct;27(10):1941-5.
The removals of NO by a wire-in-tube nonthermal plasma reactor combined with catalysis or in situ chemical absorption were investigated. Experimental results show that the plasma reduction of NO was much enhanced by the CuO catalyst in the reactor. On the other hand, for the catalytic reduction of NO, the reaction temperature was effectively decreased by the pulsed corona discharge. A NO reduction of 100% by the plasma reactor combined with CuO catalyst was achieved under the operation condition of inlet NO concentration 719 mg/m3, 1% CO, pulse voltage 18 kV and reaction temperature 473 K. For plasma combined with in situ absorption, it was found that NO removal was much higher than by the reactor without Ca(OH)2 sorbent. It was demonstrated that in situ absorption of NO oxidation products of NO2 and/or NO3 by Ca(OH)2 was responsible for the promotion of NO removal. NO removal of 100% was achieved for 1050 mg/m3 NO in a gas mixture of 2% O2 and 98% N2 with a pulse voltage of 18 kV.
研究了管式线式非热等离子体反应器结合催化或原位化学吸收去除NO的情况。实验结果表明,反应器中的CuO催化剂大大增强了NO的等离子体还原效果。另一方面,对于NO的催化还原,脉冲电晕放电有效地降低了反应温度。在进口NO浓度719 mg/m³、1% CO、脉冲电压18 kV和反应温度473 K的运行条件下,等离子体反应器与CuO催化剂结合实现了100%的NO还原。对于等离子体与原位吸收相结合的情况,发现NO去除率远高于没有Ca(OH)₂吸附剂的反应器。结果表明,Ca(OH)₂对NO氧化产物NO₂和/或NO₃的原位吸收促进了NO的去除。在脉冲电压为18 kV的2% O₂和98% N₂的气体混合物中,对于1050 mg/m³的NO实现了100%的NO去除。