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Chemical transformation of bromine chloride at the air/water interface

机译:空气/水界面处氯化溴的化学转化

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The uptake of gaseous bromine chloride (BrCl) on aqueous surfaces was measured, as a function of temperature and liquid composition, using the droplet train technique coupled to a mass spectrometer. The uptake rate on pure water was too slow to be directly measured (i.e., y < 10- 3). In order to increase the uptake kinetics above the detection limit of the experimental set-up, NaBr, NaI and NaOH were used as scavengers. The uptake kinetics on sodium bromide solutions were complicated by the interference of C12 and Br2 which are in equilibrium with gaseous BrCl. Therefore, we report results on the other two scavengers. On sodium hydroxide solutions, the uptake is driven by the bulk reactivity ofBrCl toward OH- yielding an average value of the mass accommodation coefficients IX of 0.33 +- 0.18 in the temperature range from 270-285 K. On sodium iodide solutions, the uptake kinetics were again driven by the bulk reactivity of the in-coming bromine chloride but, in addition a surface reaction channel was found.
机译:使用与质谱仪连接的液滴列技术,测量了气态氯化溴(BrCl)在水表面的吸收,该吸收是温度和液体组成的函数。纯水的吸收速度太慢,无法直接测量(即y <10-3)。为了将吸收动力学提高到实验设置的检测极限以上,使用NaBr,NaI和NaOH作为清除剂。溴化钠溶液的吸收动力学由于与气态BrCl平衡的C12和Br2的干扰而变得复杂。因此,我们报告其他两个清除剂的结果。在氢氧化钠溶液中,吸收是由BrCl对OH-的整体反应性驱动的,从而在270-285 K的温度范围内产生了0.33±0.18的质量调节系数IX的平均值。在碘化钠溶液中,吸收动力学再次由传入的溴化氯的本体反应性驱使它们反应,但是另外发现了表面反应通道。

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