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水溶液中模型化合物对发色溶解有机质(CDOM)的光生产过氧化氢。

Photoproduction of hydrogen peroxide in aqueous solution from model compounds for chromophoric dissolved organic matter (CDOM).

机构信息

School of Earth and Environmental Sciences, Schmid College of Science and Technology, Chapman University, Orange, CA 92866, United States.

School of Earth and Environmental Sciences, Schmid College of Science and Technology, Chapman University, Orange, CA 92866, United States.

出版信息

Mar Pollut Bull. 2014 Feb 15;79(1-2):54-60. doi: 10.1016/j.marpolbul.2014.01.001. Epub 2014 Jan 17.

Abstract

To explore whether quinone moieties are important in chromophoric dissolved organic matter (CDOM) photochemistry in natural waters, hydrogen peroxide (H2O2) production and associated optical property changes were measured in aqueous solutions irradiated with a Xenon lamp for CDOM model compounds (dihydroquinone, benzoquinone, anthraquinone, napthoquinone, ubiquinone, humic acid HA, fulvic acid FA). All compounds produced H2O2 with concentrations ranging from 15 to 500 μM. Production rates were higher for HA vs. FA (1.32 vs. 0.176 mM h(-1)); values ranged from 6.99 to 0.137 mM h(-1) for quinones. Apparent quantum yields (Θ app; measure of photochemical production efficiency) were higher for HA vs. FA (0.113 vs. 0.016) and ranged from 0.0018 to 0.083 for quinones. Dihydroquinone, the reduced form of benzoquinone, had a higher production rate and efficiency than its oxidized form. Post-irradiation, quinone compounds had absorption spectra similar to HA and FA and 3D-excitation-emission matrix fluorescence spectra (EEMs) with fluorescent peaks in regions associated with CDOM.

摘要

为了探究醌类物质在天然水体中类色氨酸溶解有机质(CDOM)光化学中的重要性,用氙灯对 CDOM 模型化合物(氢醌、苯醌、蒽醌、萘醌、泛醌、腐殖酸(HA)、富里酸(FA))的水溶液进行了辐照,测量了过氧化氢(H2O2)的产生及其相关光学性质的变化。所有化合物均产生了浓度为 15 至 500 μM 的 H2O2。HA 比 FA 的生成速率更高(1.32 比 0.176 mM h(-1));醌类物质的生成速率范围为 6.99 至 0.137 mM h(-1)。表观量子产率(Θ app;光化学生成效率的度量)HA 比 FA 更高(0.113 比 0.016),醌类物质的范围为 0.0018 至 0.083。氢醌是苯醌的还原形式,其生成速率和效率均高于其氧化形式。辐照后,醌类化合物的吸收光谱与 HA 和 FA 相似,三维激发-发射矩阵荧光光谱(EEM)具有与 CDOM 相关的荧光峰。

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