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A superior liquid phase catalyst for enhanced absorption of NO_2 together with SO_2 after low temperature ozone oxidation for flue gas treatment

机译:一种优异的液相催化剂,可在低温臭氧氧化后提高烟道气处理中NO_2与SO_2的吸收率

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NOx and SO2 are the main air pollutants emitted from the coal-fired combustors. Since the typical combination of selective catalytic reduction (SCR) and we flue gas desulfurization (WFGD) is not suitable for some of industrial flue gas treatment due to their unsuitable temperature window and limited retrofitting space, new technologies must be developed. This paper proposes an effective we method for simultaneous removal of NOx and SO2. The insoluble NO was first oxidized into NO2 by ozone, and then NO2 together with SO2 were both absorbed in one we wash tower. To further improve NO2 removal efficiency, a new kind of additive was proposed and tested. Effects of various influence factors, such as additive concentration, residence time in the wash tower, liquid/gas ratios, initial NO/SO2/O-2 concentration and slurry pH value, were carefully evaluated in a home-designed experimental platform. Results indicated that the NOx removal efficiency was positively correlated with the increasing the additive concentration, while the maximum denitration and desulfurization efficiency were more than 95% and 86%. The NOx removal efficiency was enhanced with the increasing residence time and liquid/gas ratios. The alkaline environment was verified to be beneficial for the simultaneous absorption process. The exiting O-2 in flue gas would not consume additives, and the denitration and desulfurization efficiency were insensitive to the initial NO and SO 2 concentration as well. Only 2% decrease of the denitration efficiency was observed after 300 mins stability test, while the desulfurization efficiency kept > 98%. With the characterizations of Ion Chromatograph (IC), NO2-, NO3- and SO42- were detected as the main absorption by-products anions, whereas NO2- accumulation would inhibit the overall NOx removal. Finally, the mechanism of simultaneous removal of SO2 and NO using the novel liquid phase catalyst was proposed and discussed.
机译:NOx和SO2是燃煤燃烧器排放的主要空气污染物。由于选择性催化还原(SCR)和我们的烟气脱硫(WFGD)的典型组合由于其不合适的温度范围和有限的改造空间而不适用于某些工业烟气处理,因此必须开发新技术。本文提出了一种同时去除NOx和SO2的有效方法。不溶性NO首先被臭氧氧化为NO2,然后将NO2与SO2一起吸收到我们洗涤塔中。为了进一步提高NO 2去除效率,提出并测试了一种新型的添加剂。在自制的实验平台上仔细评估了各种影响因素的影响,例如添加剂浓度,在洗涤塔中的停留时间,液/气比,初始NO / SO2 / O-2浓度和浆料pH值。结果表明,NOx去除效率与添加剂浓度的增加呈正相关,而最大脱硝效率和脱硫效率分别超过95%和86%。随着停留时间和液/气比的增加,NOx去除效率得到提高。碱性环境经验证对同时吸收过程有利。烟气中存在的O-2不会消耗添加剂,并且脱硝和脱硫效率也对初始NO和SO 2浓度不敏感。 300分钟的稳定性测试后,仅观察到脱硝效率下降了2%,而脱硫效率则保持> 98%。通过离子色谱仪(IC)的表征,NO2-,NO3-和SO42-被检测为主要的吸收副产物阴离子,而NO2-的积累会抑制总的NOx去除。最后,提出并讨论了新型液相催化剂同时去除SO2和NO的机理。

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