Herzsprung Peter, Sobolev Aleksandr, von Tümpling Wolf, Kamjunke Norbert, Schwidder Michael, Lechtenfeld Oliver J
UFZ - Helmholtz Centre for Environmental Research, Department Lake Research, Brückstraße 3a, Magdeburg D-39114, Germany.
Otto-von-Guericke University Magdeburg, Universitätsplatz 2, Magdeburg D-39106, Germany.
Environ Sci Technol. 2025 Jul 15;59(27):13787-13797. doi: 10.1021/acs.est.5c01986. Epub 2025 Jun 28.
The complex composition of dissolved organic matter (DOM) has been extensively studied by modern high-resolution analytical methods. However, DOM reactivity is still enigmatic due to a lack of experimental data with sufficiently high temporal resolution to resolve the intrinsic dynamics within DOM. Likewise, extensive isomeric overlap prevents studying transformation of DOM components with respect to their chemical properties, e.g., molecular polarity. Online ultrahigh-performance liquid chromatography with ultrahigh-resolution mass spectrometry (UHPLC-UHRMS) increases the resolution of isomeric DOM composition across a wide range of polarity. We performed a TiO-aided photo-irradiation experiment with wastewater treatment plant effluent with high temporal sampling resolution (8 time points, 5 h irradiation). Besides new products (<10%) and removed components (25-60%), intermediate products () were also found, representing 20-60% of components within distinct polarity fractions. The reaction time to reach the peak magnitude maximum was positively related to the H/C ratio of . About 35% of the DOM components showed different reactivities for different polarity fractions. If applied to experiments in the future, our approach offers new perspectives for biogeochemical interpretation and provides important information for drinking water processing or wastewater treatment with respect to potential toxic .
溶解有机物(DOM)的复杂组成已通过现代高分辨率分析方法得到广泛研究。然而,由于缺乏具有足够高时间分辨率的实验数据来解析DOM内部的内在动力学,DOM的反应性仍然是个谜。同样,广泛的同分异构体重叠阻碍了对DOM组分化学性质(如分子极性)转化的研究。在线超高效液相色谱与超高分辨率质谱联用(UHPLC-UHRMS)提高了不同极性范围内同分异构DOM组成的分辨率。我们对污水处理厂出水进行了TiO辅助光照射实验,采样时间分辨率高(8个时间点,5小时照射)。除了新产物(<10%)和去除的组分(25 - 60%)外,还发现了中间产物(),其占不同极性组分中组分的20 - 60%。达到峰值幅度最大值的反应时间与的H/C比呈正相关。约35%的DOM组分在不同极性组分中表现出不同的反应性。如果未来应用于实验,我们的方法为生物地球化学解释提供了新视角,并为饮用水处理或污水处理中潜在毒性方面提供了重要信息。