首页> 外文期刊>Hydrobiologia >Photochemical degradation of chromophoric-dissolved organic matter exposed to simulated UV-B and natural solar radiation.
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Photochemical degradation of chromophoric-dissolved organic matter exposed to simulated UV-B and natural solar radiation.

机译:暴露于模拟UV-B和自然太阳辐射下的发色团溶解的有机物的光化学降解。

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Photochemical degradation of chromophoric-dissolved organic matter (CDOM) by UV-B radiation decreases CDOM absorption in the UV region and fluorescence intensity, and alters CDOM composition. CDOM absorption, fluorescence, and the spectral slope indicating the CDOM composition were studied using 0.22- micro m-filtered samples of Meiliang Bay water from Lake Taihu that were exposed to short-term (0-12 h) simulated UV-B radiation and long-term (0-12 days) natural solar radiation in summer. CDOM absorption coefficient and fluorescence decreased with increasing exposure time, which relates to the amounts of absorbed light energy. The decreases of CDOM absorption and normalized fluorescence corresponded to first order kinetics reactions. Different decreases of CDOM absorption and fluorescence at different wavelengths suggested that the composition of CDOM changed when it absorbed ultraviolet radiation. Photochemical degradation increased the spectral slope during 275-295 nm region (S275-295) but decreased the spectral slope during 275-295 nm region (S350-400). The slope ratio SR (S275-295:S350-400) increased in the photochemical process, which could be used as an indicator of photobleaching and composition change of CDOM. Our results show that photochemical degradation is important in the cycling of CDOM, which indicated change in the composition of CDOM.
机译:UV-B辐射对发色团溶解的有机物(CDOM)进行光化学降解会降低CDOM在UV区的吸收和荧光强度,并改变CDOM的组成。使用来自太湖的美良湾水的0.22微米/ m过滤样品研究了CDOM的吸收,荧光和表明CDOM组成的光谱斜率,这些样品暴露于短期(0-12 h)模拟的UV-B辐射并长时间夏季(0-12天)自然太阳辐射。 CDOM吸收系数和荧光随着曝光时间的增加而降低,这与吸收光能的量有关。 CDOM吸收和归一化荧光的降低对应于一级动力学反应。 CDOM吸收和荧光在不同波长下的不同下降表明,CDOM吸收紫外线后会发生变化。光化学降解增加了275-295 nm区域( S 275-295 )的光谱斜率,但是降低了275-295 nm区域( S 350-400 )。斜率 S R ( S 275-295 : S 350-400 )在光化学过程中的增加,可以作为光致变色和CDOM组成变化的指标。我们的结果表明,光化学降解在CDOM循环中很重要,这表明CDOM的组成发生了变化。

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