Environmental Chemistry and Technology Program, University of Wisconsin─Madison, Madison, Wisconsin 53706, United States.
Department of Chemistry, University of St. Thomas, St. Paul, Minnesota 55105, United States.
Environ Sci Technol. 2023 Apr 25;57(16):6703-6711. doi: 10.1021/acs.est.3c01157. Epub 2023 Apr 11.
Predicting the formation of photochemically produced reactive intermediates (PPRI) during the irradiation of dissolved organic matter (DOM) has remained challenging given the complex nature of this material and differences in PPRI formation mechanisms. We investigate the role of DOM composition in photoreactivity using 48 samples that span the range of DOM in freshwater systems and wastewater. We relate quantum yields for excited triplet-state organic matter (), singlet oxygen (Φ), and hydroxylating species (Φ) to DOM composition determined using spectroscopy, Fourier-transform ion cyclotron resonance mass spectrometry, and electron-donating capacity (EDC). and Φ follow similar trends and are correlated with bulk properties derived from UV-vis spectra and EDC. In contrast, no individual bulk property can be used to predict Φ. At the molecular level, the subset of DOM that is positively correlated to both Φ and EDC is distinct from DOM formulas related to Φ, demonstrating that OH and O are formed from different DOM fractions. Multiple linear regressions are used to relate quantum yields of each PPRI to DOM composition parameters derived from multiple techniques, demonstrating that complementary methods are ideal for characterizing DOM because each technique only samples a subset of DOM.
预测溶解有机质(DOM)辐照过程中光化学产生的反应中间体(PPRI)的形成一直具有挑战性,因为这种物质的性质复杂,且 PPRI 形成机制存在差异。我们使用涵盖淡水系统和废水 DOM 范围的 48 个样本,研究 DOM 组成在光反应性中的作用。我们将激发三重态有机物()、单线态氧(Φ)和羟基化物种(Φ)的量子产率与使用光谱学、傅里叶变换离子回旋共振质谱和电子供体能力(EDC)确定的 DOM 组成相关联。和 Φ 遵循相似的趋势,并与源自 UV-vis 光谱和 EDC 的整体性质相关联。相比之下,没有单个整体性质可以用来预测 Φ。在分子水平上,与 Φ 和 EDC 都呈正相关的 DOM 子集与与 Φ 相关的 DOM 公式不同,表明 OH 和 O 是由不同的 DOM 部分形成的。多元线性回归用于将每种 PPRI 的量子产率与源自多种技术的 DOM 组成参数相关联,证明互补方法是表征 DOM 的理想方法,因为每种技术仅采样 DOM 的一部分。