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Reactive Uptake of Ozone by Chlorophyll at Aqueous Surfaces

机译:叶绿素在水表面对臭氧的反应性吸收

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We report the results of two complementary studies of the heterogeneous reaction between gas-phase ozone and aqueous chlorophyll. In the first experiment, the chlorophyll is present at the air-water interface and its concentration is measured as a function of time, using laser-induced fluorescence, to obtain the surface kinetics. Under most experimental conditions, these are well described using a Langmuir-Hinshelwood formalism. The second experiment was carried out in a wetted-wall flowtube apparatus and measured the uptake coefficient of ozone by the chlorophyll solution. The uptake coefficient decreases with increasing ozone concentration, consistent with the surface mechanism found in the fluorescence experiment. The two experiments agree that the uptake coefficient for ozone by such chlorophyll samples is ~2-5 × 10~(-6)with unpolluted boundary layer ozone concentrations. At low wind speed, the reaction between ozone and chlorophyll at the sea surface may represent the driving force for ozone deposition at the ocean surface, significantly increasing its deposition velocity there.
机译:我们报告了气相臭氧和叶绿素水溶液之间异质反应的两个互补研究的结果。在第一个实验中,叶绿素存在于空气与水的界面,并使用激光诱导的荧光测量其浓度随时间的变化,以获得表面动力学。在大多数实验条件下,使用Langmuir-Hinshelwood形式主义可以很好地描述它们。第二实验在湿壁流管装置中进行,并测量叶绿素溶液对臭氧的吸收系数。吸收系数随着臭氧浓度的增加而降低,这与荧光实验中发现的表面机理一致。这两个实验一致认为,在没有污染边界层臭氧浓度的情况下,此类叶绿素样品对臭氧的吸收系数为〜2-5×10〜(-6)。在低风速下,海面臭氧与叶绿素之间的反应可能代表了臭氧在海面沉积的驱动力,从而大大增加了其在海面的沉积速度。

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