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Potential tracers for tracking septic tank effluent discharges in watercourses

机译:用于追踪水道中化粪池废水排放的潜在示踪剂

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Septic tank effluent (STE) contributes to catchment nutrient and pollutant loads. To assess the role of STE discharges in impairment of surface water, it is essential to identify the sources of pollution by tracing contaminants in watercourses. We examined tracers that were present in STE to establish their potential for identifying STE contamination in two stream systems (low and high dilution levels) against the background of upstream sources. The studied tracers were microbial, organic matter fluorescence, caffeine, artificial sweeteners and effluent chemical concentrations. The results revealed that tracer concentration ratios Cl/EC, Cl/NH4-N, Cl/TN, Cl/TSS, Cl/turbidity, Cl/total coliforms, Cl/sucralose, Cl/saccharin and Cl/Zn had potential as tracers in the stream with low dilution level (P < 0.05). Fluorescence spectroscopy could detect STE inputs through the presence of the tryptophan-like peak, but was limited to water courses with low level of dilution and was positively correlated with stream Escherichia coil (E. coil) and soluble reactive phosphorus (SRP). The results also suggested that caffeine and artificial sweeteners can be suitable tracers for effluent discharge in streams with low and high level of dilution. Caffeine and saccharin were positively correlated with faecal coliforms, E. coil, total P and SRP, indicating their potential to trace discharge of a faecal origin and to be a marker for effluent P. Caffeine and SRP had similar attenuation behaviour in the receiving stream waters suggesting caffeine's potential role as a surrogate indicator for the behaviour of P downstream of effluent inputs. Taken together, results suggest that a single tracer alone was not sufficient to evaluate STE contamination of watercourses, but rather a combination of multiple chemical and physical tracing approaches should be employed. A multiple tracing approach would help to identify individual and cumulative STE inputs that pose risks to stream waters in order to prioritise and target effective mitigation measures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:化粪池废水(STE)有助于集水区的养分和污染物负荷。为了评估STE排放物在地表水损害中的作用,必须通过追踪水道中的污染物来确定污染源。我们检查了STE中存在的示踪剂,以确定它们在上游源背景下在两个物流系统(低和高稀释水平)中识别STE污染的潜力。研究的示踪剂是微生物,有机物荧光,咖啡因,人造甜味剂和废水中的化学物质浓度。结果显示示踪剂浓度比Cl / EC,Cl / NH4-N,Cl / TN,Cl / TSS,Cl /浊度,Cl /总大肠菌群,Cl /三氯蔗糖,Cl /糖精和Cl / Zn具有示踪潜力低稀释度的水流(P <0.05)。荧光光谱法可以通过色氨酸样峰的存在来检测STE的输入,但仅限于稀释程度较低的水过程,并且与溪流大肠杆菌(E. coil)和可溶性活性磷(SRP)呈正相关。结果还表明,咖啡因和人造甜味剂可以作为低浓度和高浓度稀释液中废水排放的合适示踪剂。咖啡因和糖精与粪便大肠菌群,大肠杆菌,总磷和SRP呈正相关,表明它们有可能追踪粪便来源的排放并成为废水P的标志物。咖啡因和SRP在接收溪流水中具有相似的衰减行为。提示咖啡因可能是污水输入中磷下游行为的替代指标。两者合计,结果表明,仅使用一个示踪剂不足以评估水道中的STE污染,而应采用多种化学和物理示踪方法的组合。多重跟踪方法将有助于识别对河水构成风险的单个和累积的STE输入,以便确定优先次序并确定有效的缓解措施。 (C)2017 Elsevier Ltd.保留所有权利。

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