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Photolability of pyrogenic dissolved organic matter from a thermal series of laboratory-prepared chars

机译:从热量系列制备的磁性系列的热原溶解有机物的光性性

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While pyrogenic dissolved organic matter (pyDOM) is known to be photolabile, the rates and components of pyDOM that are lost via photochemical degradation, and how these vary with pyrogenic source, are poorly understood. Thus, pyDOM was leached from an oak thermal series and a grass chars (250-650 °C) and photoirradiated in a solar simulator. About 10-20% of oak char leachate organic C was mineralized over five days, with greater proportions lost from leachates of higher temperature parent chars. Ultraviolet and fluorescence spectroscopy suggested that mainly aromatic components (e.g., fulvic-, humic-, aromatic-like) were lost. Quantification of benzenepolycarboxylic acids (BPCAs), molecular markers indicated that 75-94% of condensed aromatic C was lost during the first five days of photoincubation, with preferential loss of larger aromatic clusters. Using a 2-component exponential decay model, this most photolabile fraction was calculated to have experimental half-lives of about 1 day. It represented 16 to 23% of the dissolved C, was primarily condensed aromatics, and was likely lost through primary photoreactions. A non-condensed component was lost at half-lives of about 1-2 d, likely through radical-driven propagation reactions. Using the same model, about 43% of pyrogenic C was predicted to be photomineralized over the course of 1 year. These results highlight the contrasting reactivity of condensed and non-condensed portions of pyDOM, and both should be considered when evaluating the potential of pyDOM to alter aquatic ecology and the environmental mobility of priority pollutants.
机译:虽然已知热解溶解有机物质(Pydom)是光致的,通过光化学降解损失的Pydom的速率和组分以及如何用热原源变化,理解得很差。因此,Pydom从橡木热序列和草花(250-650°C)浸出并在太阳模拟器中照相。大约10-20%的橡木酸渗滤液有机C在五天内矿化,从较高温度母体酸盐液中损失更大的比例。紫外线和荧光光谱表明,主要是芳族成分(例如,富发 - ,腐殖质,芳香样)丧失。苯并聚羧酸(BPCA)的定量,分子标记表明,在光尼尼管的前五天内损失75-94%的浓缩芳香族C,优先损失较大的芳香簇。使用2分量指数衰减模型,这种最大的光级分数计算为具有约1天的实验半衰期。它表示16至23%的溶解C,主要是浓缩的芳族化合物,并且可能通过初级光电反应丢失。在大约1-2d的半衰期下,可能通过激进驱动的传播反应丢失非浓缩组分。使用相同的模型,预计约43%的热原C在1年内是光素化。这些结果突出了Pydom的浓缩和非浓缩部分的对比反应性,并且在评估Pydom的潜力以改变水生生态和优先级污染物的环境流动时,都应考虑两者。

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