State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
Environ Sci Technol. 2012 Apr 17;46(8):4396-402. doi: 10.1021/es203587q. Epub 2012 Apr 5.
Natural organic matter (NOM) can affect the performance of water treatment processes, and serves as a main precursor for the formation of disinfection byproduct (DBPs) during chlorination. To minimize such undesirable effects, a better understanding of its structural information and reactivity toward chlorine is necessary. In this study, electrospray ionization coupled to Fourier transform ion cyclotron resonance mass spectrometry (ESI FT-ICR MS) was used to study the molecular composition of NOM in source water. More than four thousand NOM components were resolved in the sample. NOM molecules with a low degree of oxidation (low O/C ratio) were found to be more reactive toward chlorine than those with high O/C ratio. Totally, 659 one-chlorine containing products and 348 two-chlorine containing products were detected in the chlorinated sample at a high confidence level. The chlorinated products can be arranged into series, which indicate they were originated from precursor compounds in series related by the replacement of CH(4) against oxygen. Of the 1007 chlorine-containing products observed in this study, only 7 molecular formulas can be found in previous studies, showing the distinct difference from previous studies. This study explored the reactivity of NOM toward chlorine on a molecular level, which was previously explained on the level of whole mixtures or fractions of NOM, and the identified chlorinated products may contribute to our knowledge of the unknown total organic halide (TOX).
天然有机物 (NOM) 会影响水处理工艺的性能,并作为氯化过程中消毒副产物 (DBP) 形成的主要前体。为了尽量减少这种不良影响,有必要更好地了解其结构信息和对氯的反应性。在这项研究中,采用电喷雾电离与傅里叶变换离子回旋共振质谱(ESI FT-ICR MS)联用的方法研究了原水中 NOM 的分子组成。在样品中解析出了超过 4000 种 NOM 成分。与高 O/C 比的 NOM 分子相比,低氧化程度(低 O/C 比)的 NOM 分子对氯更具反应性。在高置信度水平下,在氯化样品中检测到 659 种一氯含氯产物和 348 种二氯含氯产物。氯化产物可以排列成系列,表明它们是由 CH(4)被氧取代的系列前体化合物衍生而来。在本研究中观察到的 1007 种含氯产物中,只有 7 种分子式在以前的研究中被发现,这表明与以前的研究有明显的区别。本研究从分子水平上探讨了 NOM 对氯的反应性,而以前的研究是在 NOM 的整体混合物或馏分水平上进行的,所鉴定的氯化产物可能有助于我们了解未知的总有机卤化物 (TOX)。