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The effect of advanced secondary municipal wastewater treatment on the molecular composition of dissolved organic matter

机译:市政二次污水深度处理对溶解有机物分子组成的影响

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摘要

There is a growing interest in water reuse and in recovery of nutrients from wastewater. Because many advanced treatment processes are designed to remove organic matter, a better understanding of the composition of dissolved organic matter (DOM) in wastewater is needed. To that end, we assessed DOM in the Nine Springs Wastewater Treatment Plant in Madison, Wisconsin by UV–visible spectroscopy and Fourier transform-ion cyclotron resonance mass spectrometry. Samples were collected from the influent and effluent of two different secondary treatment processes and their respective secondary clarifiers, the UV disinfection unit, and an Ostara treatment system, which produces struvite via chemical precipitation. The optical properties reveal that DOM throughout the plant is relatively aliphatic and is low in molecular weight compared to DOM in freshwater systems. Furthermore, the DOM is rich in heteroatoms (e.g., N, S, P, and Cl) and its molecular formulas are present in the lipid-, protein-, carbohydrate-, and lignin-like regions of van Krevelen diagrams. Secondary treatment produces DOM that is more aromatic and more complex, as shown by the loss of highly saturated formulas and the increase in the number of CHO, CHON, and CHOP formulas. The two secondary treatment processes produce DOM with distinct molecular compositions, while the secondary clarifiers and UV disinfection unit result in minimal changes in DOM composition. The Ostara process decreases the molecular weight of DOM, but does not otherwise alter its composition. The optical properties agree with trends in the molecular composition of DOM within the main treatment train of the Nine Springs plant.
机译:人们对水的再利用以及废水中养分的回收越来越感兴趣。由于设计了许多先进的处理工艺来去除有机物,因此需要对废水中溶解性有机物(DOM)的组成有更好的了解。为此,我们通过紫外-可见光谱和傅立叶变换离子回旋共振质谱法对威斯康星州麦迪逊市九泉废水处理厂的DOM进行了评估。从两个不同的二级处理工艺及其各自的二级净化器,紫外线消毒装置和一个通过化学沉淀产生鸟粪石的Ostara处理系统的进水和出水中收集样品。光学性质表明,与淡水系统中的DOM相比,整个植物中的DOM是相对脂肪族的,分子量较低。此外,DOM富含杂原子(例如N,S,P和Cl),其分子式存在于van Krevelen图的脂质,蛋白质,碳水化合物和木质素样区域。二级处理产生的DOM更芳香,更复杂,如高饱和配方的损失和CHO,CHON和CHOP配方数量的增加所表明。两种二级处理工艺产生的DOM具有不同的分子组成,而二级澄清剂和紫外线消毒装置可使DOM组成的变化最小。 Ostara工艺可降低DOM的分子量,但不会改变其组成。光学特性与九泉工厂主要处理工艺中DOM分子组成的变化趋势一致。

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