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Influence of relative humidity on SO2 oxidation by O-3 and NO2 on the surface of TiO2 particles: Potential for formation of secondary sulfate aerosol

机译:O-3和NO2对TiO2颗粒表面SO2氧化对SO2氧化的影响:二次硫酸盐气溶胶形成潜力

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The heterogeneous reactions of SO2/O-3 and SO2/NO2 with TiO2 particles were studied as a function of relative humidities (RHs). An in situ microscopic Fourier transform infrared (micro-FTIR) spectrometer was used to monitor the reaction kinetics. Rapid conversion of SO2 to sulfate occurs on the surface of TiO2 particles in the presence of O-3 or NO2, which is sensitive to RHs. For unreacted (fresh) partides, the uptake coefficients for SO2 in initial stage are both obviously enhanced over four times with the increasing RH from similar to 4% to similar to 85%. Moreover, the uptake coefficient in the system SO2/O(3 )is about 40% higher than that of SO2/NO2 on TiO2 particles at the similar RH conditions. For TiO2 after exposure to SO2/O-3 or SO2/NO2 (sulfated) particles, the uptake coefficients for SO2 in moisture absorption stage are all higher than that on fresh partides in initial stage at the similar RH, indicating rapid mixture gases adsorption with particle hygroscopic growth. The high production of the secondary sulfate for heterogeneous reaction of mixture gases on TiO2 surface from arid region to humid region provides new insights for better understanding the severe haze under the humid condition. (C) 2019 Elsevier B.V. All rights reserved.
机译:研究了SO2 / O-3和SO2 / NO2与TiO 2颗粒的异质反应作为相对湿度(RHS)的函数。使用原位微观傅里叶变换红外(Micro-FTIR)光谱仪来监测反应动力学。在O-3或NO 2存在下,在TiO 2颗粒的表面上发生SO2至硫酸盐的快速转化,其对RHS敏感。对于未反应的(新鲜)偏,在初始阶段中的SO2的摄取系数明显增强了4次,随着RH的增加,类似于4%至类似于85%。此外,在类似RH条件下,系统SO2 / O(3)中的摄取系数比TiO 2颗粒上的SO2 / NO2的摄取系数高约40%。对于TiO 2暴露于SO2 / O-3或SO2 / NO2(硫酸盐)颗粒后,SO2在吸湿阶段的摄取系数均高于类似RH的初始阶段的新鲜偏见的摄取系数,表明快速混合气体吸附颗粒吸湿性生长。对于与干旱地区对潮湿区域的TiO 2表面混合气体的仲硫酸盐的高产量提供了新的见解,以便更好地了解潮湿条件下的严重雾度。 (c)2019 Elsevier B.v.保留所有权利。

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