Yan Mingquan, Dryer Deborah, Korshin Gregory V
Department of Environmental Engineering, Peking University, Key Laboratory of Water and Sediment Sciences, Ministry of Education, Beijing 100871, China.
Hazen & Sawyer, 498 Seventh Avenue, New York, NY 10018, United States.
Chemosphere. 2016 Apr;148:426-35. doi: 10.1016/j.chemosphere.2016.01.055. Epub 2016 Feb 4.
The deprotonation-protonation properties of dissolved organic matter (DOM) in drinking water produced at critical treatment points were quantified using absorbance spectra in combination with DOM fractionation data. Analysis of differential spectra of DOM present in inlet, settled and filtered waters from two large treatment plants and their fractions were obtained. The data demonstrated the presence of six Gaussian bands largely associated with carboxylic and phenolic DOM functionalities. Properties of the protonation-active groups of DOM in raw and treated waters were further examined based on data of potentiometric titrations at pH from 2.5 to 10. Interpretation of the differential log-transformed absorbance at wavelength 350 nm (DlnA350) based on the NICA-Donnan model showed that the normalized concentrations of low- and high-affinity protonation-active groups in residual DOMs increases as a result of water treatment. This was consistent with the results of DOM fractionation. This study demonstrates that changes of the composition and reactivity of DOM found in drinking water treatment sequences can be quantified based on the examination of their optical properties.
利用吸光度光谱结合溶解有机物(DOM)分级数据,对关键处理点产生的饮用水中DOM的去质子化-质子化特性进行了量化。分析了来自两个大型处理厂的进水、沉淀水和过滤水中DOM的差分光谱及其组分。数据表明存在六个主要与羧酸和酚类DOM官能团相关的高斯峰。基于pH值在2.5至10范围内的电位滴定数据,进一步研究了原水和处理水中DOM质子化活性基团的性质。基于NICA-Donnan模型对波长350 nm处的差分对数变换吸光度(DlnA350)进行解释表明,水处理导致残留DOM中低亲和力和高亲和力质子化活性基团的归一化浓度增加。这与DOM分级结果一致。本研究表明,通过检查饮用水处理过程中DOM的光学性质,可以量化其组成和反应性的变化。