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Study on DOM Fluorescence Characteristics and Coagulation Mechanism of Secondary Effluent in Wastewater Treatment Plant

机译:污水处理厂次要废水的DOM荧光特性及凝结机理研究

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In order to study the differences of dissolved organic matter (DOM) characteristics between the secondary effluent and the surface water, ultrafiltration (UF) was combined with threedimensional excitation-emission matrix (EEM) spectroscopy to investigate the fluorescence characteristics of total DOM and different molecular weight fractions of them. Moreover, the DOM removal characteristics by coagulation were analyzed also under the respective optimal dosage of coagulant (PAC). The results showed that: DOM of secondary effluent contained four notable fluorescence peaks: humic acid-, fulvic acid-, aromatic protein- and soluble microbial product-like fluorophores, which were more than surface water. Coagulation was easy to remove macromolecules as humus, but the removal efficiency was not high enough for the relative small molecules as protein and microbial products. Fluorescence index (FI) indicated that secondary effluent after biotreatment were mainly from microbial sources. The correlation relationship between the humus-, protein-like fluorescence intensity and UV254 are strong in secondary effluent.
机译:为了研究次生废水与地表水之间的溶解性有机物(DOM)特性差异,将超滤(UF)与三维激发-发射矩阵(EEM)光谱相结合,研究了总DOM和不同分子的荧光特性。他们的重量分数。此外,还在各自最佳的凝结剂(PAC)剂量下分析了凝结后的DOM去除特性。结果表明:次要废水的DOM包含四个显着的荧光峰:腐殖酸,黄腐酸,芳香蛋白和可溶性微生物产物样荧光团,其含量超过地表水。凝结易于去除大分子,如腐殖质,但对于蛋白质和微生物产品等相对较小的分子,去除效率还不够高。荧光指数(FI)表明,生物处理后的二级废水主要来自微生物。在次要废水中,腐殖质,蛋白质样荧光强度与UV254之间的相关关系很强。

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