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Assessing UV-and fluorescence-based metrics as disinfection byproduct precursor surrogate parameters in a water body influenced by a heavy rainfall event

机译:评估基于紫外线和荧光的指标,作为受强降雨事件影响的水体中消毒副产物前体替代参数

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Although disinfection byproducts (DBPs) were discovered decades ago and surrogate parameters have been developed to track their precursors, the accuracy of these metrics in waters impacted by heavy rainfall events is largely unknown. We measured DBPs and their precursor surrogate parameters in a water body impacted by 28 cm of rain between 4/24/11 and 4/26/11. Raw waters collected from four locations within the water body from April to August 2011 were treated by coagulation and anion exchange. Ultraviolet absorbance at 254 nm (UV_(254)) and fluorescence excitation-emission pairs (I_(Ex/Em))were measured. Excitation-emission matrices (EEMs) were processed with parallel factor (PARAFAC) analysis, which resulted in six component fluorophore groups (C1-C6), each with a maximum intensity (F_(MAX). DBP formation potential (DBPFP) with free chlorine was used to assess the precursor concentrations. Chloroform (TCM) was the predominant DBP formed, and 37-63% of its precursors were removed by treatment. The trichloromethane formation potential (TCMFP)-UV_(254) correlation was poor (r~2 = 0.25) and adversely impacted by the influx of dissolved iron from the heavy rainfall event; in contrast, correlations with fluorescence-based metrics were strong - TCMFP-I_(278/506) (r~2 = 0.88) and TCMFP-C1 F_(MAX) (r~2 = 0.87) - illustrating the accuracy of these precursor surrogate parameters in waters impacted by a heavy rainfall event.
机译:尽管数十年前就发现了消毒副产物(DBP),并且已经开发了替代参数来跟踪其前体,但是在受强降雨事件影响的水中,这些指标的准确性仍然未知。我们在受4/24/11和4/26/11之间的28 cm降雨影响的水体中测量了DBP及其前驱物替代参数。 2011年4月至2011年8月从水体四个位置收集的原水经过混凝和阴离子交换处理。测量了在254 nm处的紫外线吸收(UV_(254))和荧光激发-发射对(I_(Ex / Em))。激发-发射矩阵(EEM)采用并行因子(PARAFAC)分析进行处理,结果产生了六个组分荧光团(C1-C6),每个荧光团的强度最大(F_(MAX)。带有游离氯的DBP形成电位(DBPFP)用三氯甲烷(TCMFP)-UV_(254)的相关性差(r〜2)进行分析,其中氯仿(TCM)是主要的DBP形成物,通过处理去除了37-63%的前体。 = 0.25),并且受到暴雨事件中溶解铁的涌入的不利影响;相反,与基于荧光的指标相关性很强-TCMFP-I_(278/506)(r〜2 = 0.88)和TCMFP-C1 F_ (MAX)(r〜2 = 0.87)-说明在受强降雨事件影响的水中这些前体替代参数的准确性。

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