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首页> 外文期刊>Fuel Processing Technology >Removal of NO in flue gas using vacuum ultraviolet light/ultrasound/chlorine in a VUV-US coupled reactor
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Removal of NO in flue gas using vacuum ultraviolet light/ultrasound/chlorine in a VUV-US coupled reactor

机译:使用Vuv-US偶联反应器中的真空紫外线/超声/氯去除烟气中的烟气

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摘要

Removal process of NO and integrated removal process of NO and SO2 using vacuum ultraviolet light (VUV)/ultrasound (US)/chlorine system in a VUV-US coupled reactor were developed. The feasibility, key influencing factors and mechanism of removal process were investigated. The results reveal that SO2 is almost completely removed in most experimental conditions due to its very high solubility and good reactivity. Addition of US enhances NO removal, and US of lower frequency is more effective than that of higher frequency. Vacuum ultraviolet light was found to be the most effective light source for removal of NO in VUV/US/chlorine system. Removal of NO was enhanced at a higher ClO- concentration, light intensity, ultrasonic energy density or oxygen concentration, but was inhibited with the increase of NO, SO2 or CO2 concentration. Initial solution pH and reaction temperature were found to have double effect on NO removal. The key active species in different systems were detected, indicating that VUV/US/chlorine system had the highest hydroxyl radical yield. High oxygen concentration favors the generation of ozone. NO is mainly removed by oxidations of hydroxyl radical, ClO- and O center dot/O-3. Amplification of removal process were also discussed.
机译:开发了在VUV-US偶联反应器中使用真空紫外线(VUV)/超声(US)/氯系统的NO和SO2的NO和整合除去方法的除去方法。研究了可行性,关键影响因素和去除过程机制。结果表明,由于其非常高的溶解性和良好的反应性,SO2在大多数实验条件下几乎完全除去。添加我们增强不拆卸,并且较低频率的频率比较高频率更有效。发现真空紫外线是最有效的光源,用于在VUV / US /氯系统中去除NO。在更高的Clo-浓度,光强度,超声能量密度或氧浓度下,不增强NO,但抑制不增加NO,SO2或CO 2浓度。发现初始溶液pH和反应温度没有脱离除去。检测到不同系统中的关键活性物质,表明VUV / US /氯系统具有最高的羟基自由基产量。高氧浓度有利于臭氧的产生。否主要通过羟基,ClO-和O中心点/ O-3氧化除去。还讨论了去除过程的扩增。

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