Institut de Combustion, Aérothermique, Réactivité et Environnement, CNRS, 45071 Orléans Cedex 2, France.
Environ Sci Technol. 2013 Jun 18;47(12):6325-31. doi: 10.1021/es400794c. Epub 2013 Jun 5.
Kinetics and products of the reaction of HONO with solid films of Fe2O3 and Arizona Test Dust (ATD) were investigated using a low pressure flow reactor (1 - 10 Torr) combined with a modulated molecular beam mass spectrometer. The reactive uptake of HONO was studied as a function of HONO concentration ([HONO]0 = (0.6 - 15.0) × 10(12) molecules cm(-3)), relative humidity (RH = 3 × 10(-4) - 84.1%) and temperature (T = 275 - 320 K). Initial reactive uptake coefficients were found to be similar under dark conditions and in the presence of UV irradiation (JNO2 = 0.012 s(-1)) and independent of the HONO concentration and temperature. In contrast, the relative humidity (RH) was found to have a strong impact on the uptake coefficients: γ (ATD) = 3.8 × 10(-6) (RH)(-0.61) and γ (Fe2O3) = 1.7 × 10(-6) (RH)(-0.62) (γ calculated with BET surface area, 30% conservative uncertainty). In both reactions of HONO studied, NO2 and NO were observed as gaseous products with yields of (60 ± 9) and (40 ± 6) %, respectively, independent of relative humidity, temperature, concentration of HONO and UV irradiation intensity. The observed data point to minor importance of the HONO uptake on mineral aerosol compared with other known sinks of HONO in the atmosphere, which are its dry deposition and photolysis in night-time and during the day, respectively.
使用低压流动反应器(1-10 托)结合调制分子束质谱仪,研究了 HONO 与 Fe2O3 和亚利桑那试验粉尘(ATD)的固相薄膜的反应动力学和产物。研究了 HONO 的反应吸收与 HONO 浓度([HONO]0 = (0.6-15.0) × 10(12) 分子 cm(-3))、相对湿度(RH = 3 × 10(-4) - 84.1%)和温度(T = 275-320 K)的关系。在黑暗条件下和存在 UV 辐射(JNO2 = 0.012 s(-1))时,发现初始反应吸收系数相似,且与 HONO 浓度和温度无关。相比之下,相对湿度(RH)对吸收系数有很大影响:γ(ATD) = 3.8 × 10(-6) (RH)(-0.61)和γ(Fe2O3) = 1.7 × 10(-6) (RH)(-0.62)(γ 通过 BET 表面积计算,30%保守不确定性)。在所研究的 HONO 的两个反应中,观察到气态产物 NO2 和 NO,其产率分别为(60 ± 9)%和(40 ± 6)%,与相对湿度、温度、HONO 浓度和 UV 辐射强度无关。观察到的数据表明,与 HONO 在大气中的其他已知汇(分别为干沉降和夜间及白天的光解)相比,HONO 在矿物气溶胶上的吸收作用不太重要。