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评估溶解性有机物(DOM)吸光度、荧光以及单线态氧光化学产生的pH依赖性。

Evaluating the pH-dependence of DOM absorbance, fluorescence, and photochemical production of singlet oxygen.

作者信息

Allen Anya, Cheng Kai, McKay Garrett

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843, USA.

Zachry Department of Civil & Environmental Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Environ Sci Process Impacts. 2023 Dec 13;25(12):1974-1985. doi: 10.1039/d3em00316g.

Abstract

The protonation state of dissolved organic matter (DOM) impacts its structure and function in natural and engineered environmental systems, including DOM's ability to absorb light and form photochemically produced reactive intermediates (PPRI). However, the impacts of pH on DOM optical properties and PPRI formation have largely been evaluated separately, with less information being available on their interrelationship as a function of pH for the same set of samples. It is also unclear whether the impact of pH on optical spectra and associated optical surrogates for molecular size (, E2 : E3) of DOM isolates is representative of the behavior of whole water samples. To address these knowledge gaps, spectral pH titrations were performed for seven humic substance and natural organic matter isolates, three whole water samples, and three model compounds. Comparison of the fractional and differential absorption and fluorescence spectra between DOM isolates, whole water samples, and model compounds revealed similar spectral features between all samples. The results show that spectral features observed for DOM isolates also occur for whole water samples, which suggests that there is overlap in the types of chromophores present in DOM isolates and whole waters. Although results from model compounds overlapped with DOM, especially in the ultraviolet region of the spectrum, no model compound replicated DOM's pH dependence perfectly. By measuring apparent quantum yields of singlet oxygen (), we show that aquatic DOM isolates exhibit a different pH-dependence ( ∝ pH) than soil-derived humic acid isolates ( ∝ pH). For aquatic DOM isolates, values measured at different pH were not correlated to apparent fluorescence quantum yields (), suggesting that pH impacts singlet and triplet excited state DOM dynamics in different ways. In contrast, the proportional relationship between and  with increasing pH for soil humic acid isolates suggests that pH impacts singlet and triplet excited DOM in these samples in a similar fashion.

摘要

溶解有机物(DOM)的质子化状态会影响其在自然和工程环境系统中的结构与功能,包括DOM吸收光以及形成光化学产生的反应性中间体(PPRI)的能力。然而,pH对DOM光学性质和PPRI形成的影响在很大程度上是分别评估的,对于同一组样品,关于它们作为pH函数的相互关系的信息较少。同样不清楚的是,pH对DOM分离物的光谱和相关分子大小光学替代指标(如E2∶E3)的影响是否代表整个水样的行为。为了填补这些知识空白,对七种腐殖质和天然有机物分离物、三个整个水样以及三种模型化合物进行了光谱pH滴定。比较DOM分离物、整个水样和模型化合物之间的分数吸收光谱、微分吸收光谱和荧光光谱,发现所有样品之间具有相似的光谱特征。结果表明,在DOM分离物中观察到的光谱特征在整个水样中也存在,这表明DOM分离物和整个水体中存在的发色团类型有重叠。尽管模型化合物的结果与DOM重叠,特别是在光谱的紫外区域,但没有一种模型化合物能完美复制DOM对pH 的依赖性。通过测量单线态氧的表观量子产率(),我们表明水生DOM分离物表现出与土壤来源的腐殖酸分离物不同的pH依赖性( ∝ pH)。对于水生DOM分离物,在不同pH下测得的值与表观荧光量子产率()不相关,这表明pH以不同方式影响单线态和三线态激发态DOM动力学。相比之下,土壤腐殖酸分离物中 与 随pH升高的比例关系表明,pH以类似方式影响这些样品中的单线态和三线态激发DOM。

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