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Photochemistry of excited-state species in natural waters: A role for particulate organic matter

机译:天然水中激发态物质的光化学:对颗粒有机物的作用

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Laser flash photolysis (LFP) was used to characterize a triplet excited state species isolated from Black River and San Joaquin wetlands particulate organic matter (POM). The solubi-lized organic matter, isolated from POM by pH-independent diffusion in distilled water, was named PdOM. UV-visible absorption spectroscopy, excitation-emission matrix spectroscopy (EEMs), and ~1H NMR were used to characterize the PdOM. While LFP of dissolved organic matter (DOM) is known to generate the solvated electron, LFP of the PdOM transient in argon-, air-, and nitrous oxide-saturated solutions indicated that this was a triplet excited state species (~3PdOM). The lifetime and the reactivity of ~3PdOM with sorbic acid, a triplet state quencher, were compared with that of the triplet excited state of benzophenone, a DOM proxy. A second excited state species (designated DOM), with a longer lifetime, was reported in a number of previous studies but not characterized. The lifetime of DOM, measured for seventeen organic matter isolates, lignin, tannic acid, and three wetlands plant extracts, was shown to differentiate allochthonous from autochthonous DOM. ~3POM and DOM were also observed in lake water and a constructed wetlands' water. Aqueous extracts of fresh and aged plant material from the same wetland were shown to be one source of these excited state species. This study provides evidence of a role for POM in the photochemistry of natural and constructed wetland waters.
机译:激光闪光光解法(LFP)用于表征从黑河和圣华金湿地颗粒有机物(POM)中分离出的三重激发态物种。通过在蒸馏水中通过pH无关的扩散从POM中分离出来的可溶有机物称为PdOM。紫外可见吸收光谱,激发发射矩阵光谱(EEM)和〜1H NMR用于表征PdOM。虽然已知溶解的有机物(DOM)的LFP会生成溶剂化电子,但在氩气,空气和一氧化二氮饱和的溶液中,PdOM瞬态的LFP表示这是三重激发态物质(〜3PdOM)。将〜3PdOM与山梨酸(一种三重态猝灭剂)的寿命和反应性与DOM替代物二苯甲酮的三重激发态进行了比较。在先前的许多研究中都报道了具有更长寿命的第二种激发态物种(称为DOM),但没有表征。 DOM的寿命可以测量十七种有机物分离物,木质素,单宁酸和三种湿地植物提取物的寿命,可以区分异源和本地DOM。在湖水和人工湿地水中也观察到〜3POM和DOM。来自同一湿地的新鲜和老化植物材料的水提物被证明是这些激发态物种的来源之一。该研究提供了POM在天然和人工湿地水的光化学中的作用的证据。

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