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Recent Advances In Structure And Reactivity Of Dissolved Organic Matter In Natural Waters

机译:天然水中溶解性有机物的结构和反应性的最新研究进展

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The goal of our research is to better understand the structure and reactivity of natural dissolved organic matter (DOM) in aquatic environments. A more detailed knowledge of these DOM characteristics would lead to a better understanding of carbon cycling in natural waters and processes associated with water treatment using free radical chemistry. Our specific interest in DOM in natural waters is several-fold: 1) the photochemical formation of reactive oxygen species, 2) photobleaching of the DOM in coastal oceans, and 3) using chromophoric DOM (CDOM) as a tracer of water masses and in carbon cycling. Our interest in water treatment is that DOM is the major sink of hydroxyl radicals employed in advanced oxidation processes for the destruction of pollutants and thus adversely affects the efficiency of the process. We are using the techniques of radiation chemistry to explore the fundamental free radical and redox chemistry of DOM. we have initiated a study of the free radical reactions of DOM using isolated fractions of Suwannee River fulvic and humic acids and isolates from various anthropogenic sources. We are also investigating the use of model compounds in an attempt to understand the free radical transients formed from DOM either as a result of free radical reactions or photochemical reactions.
机译:我们研究的目的是更好地了解水生环境中自然溶解有机物(DOM)的结构和反应性。对这些DOM特性的更详细的了解将有助于更好地理解天然水中的碳循环以及与使用自由基化学进行水处理有关的过程。我们对天然水中DOM的特别关注有几个方面:1)活性氧的光化学形成,2)沿海海洋中DOM的光漂白,以及3)使用发色DOM(CDOM)作为水团和水的示踪剂碳循环。我们对水处理的兴趣在于,DOM是高级氧化工艺中用于破坏污染物的主要羟基自由基,因此会对工艺效率产生不利影响。我们正在使用放射化学技术来探索DOM的基本自由基和氧化还原化学。我们已经开始使用分离的Suwannee河黄腐酸和腐殖酸以及各种人为来源的分离物研究DOM的自由基反应。我们也正在研究使用模型化合物来了解由于自由基反应或光化学反应而由DOM形成的自由基瞬态。

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