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首页> 外文期刊>ACS Omega >Iron and pH Regulating the Photochemical Mineralization of Dissolved Organic Carbon
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Iron and pH Regulating the Photochemical Mineralization of Dissolved Organic Carbon

机译:铁和pH调节溶解有机碳的光化学矿化。

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摘要

Solar radiation mineralizes dissolved organic matter (DOM) to dissolved inorganic carbon through photochemical reactions (DIC photoproduction) that are influenced by iron (Fe) and pH. This study addressed as to what extent Fe contributes to the optical properties of the chromophoric DOM (CDOM) and DIC photoproduction at different pH values. We created the associations of Fe and DOM (Fe-DOM) that cover the range of loadings of Fe on DOM and pH values found in freshwaters. The introduced Fe enhanced the light absorption by CDOM independent of pH. Simulated solar irradiation decreased the light absorption by CDOM (i.e., caused photobleaching). Fe raised the rate of photobleaching and steepened the spectral slopes of CDOM in low pH but resisted the slope steepening in neutral to alkaline pH. The combination of a low pH (down to pH 4) and high Fe loading on DOM (up to 3.5 μmol mg DOM~(–1)) increased the DIC photoproduction rate and the apparent quantum yields for DIC photoproduction up to 7-fold compared to the corresponding experiments at pH >6 or without Fe. The action spectrum for DIC photoproduction shifted toward the visible spectrum range at low pH in the presence of Fe. Our results demonstrated that Fe can contribute to DIC photoproduction by up to 86% and produce DIC even at the visible spectrum range in acidic waters. However, the stimulatory effect of Fe is negligible at pH >7.
机译:太阳辐射通过受铁(Fe)和pH影响的光化学反应(DIC光生成)将溶解的有机物(DOM)矿化为溶解的无机碳。这项研究探讨了在不同pH值下,Fe在多大程度上有助于发色DOM(CDOM)和DIC光产生的光学特性。我们创建了Fe和DOM的关联(Fe-DOM),涵盖了Fe在DOM上的负载范围和在淡水中发现的pH值。引入的Fe增强了CDOM的光吸收,而与pH无关。模拟的太阳辐射降低了CDOM的光吸收(即引起光漂白)。铁提高了光致漂白的速度,并在低pH下使CDOM的光谱斜率变陡,但在中性至碱性pH下却阻止了CDOM的斜率变陡。低pH(低至pH 4)和高Fe负载在DOM上(高达3.5μmolmg DOM〜(–1))的组合提高了DIC光生产速率,表观DIC光生产的量子产率高达7倍在pH> 6或无铁的条件下进行相应的实验。在Fe存在下,在低pH下,DIC光生产的作用谱向可见光谱范围移动。我们的研究结果表明,即使在酸性水中可见光范围内,Fe仍可以使DIC的光产生达到86%,并产生DIC。但是,在pH> 7时,Fe的刺激作用可忽略不计。

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