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Comprehensive study of the antidiabetic drug metformin and its transformation product guanylurea in Greek wastewaters

机译:希腊废水中抗糖尿病药二甲双胍及其转化产物鸟尿素的综合研究

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Many pollutants such as Pharmaceuticals and their transformation products (TPs) are not efficiently removed from wastewater treatment plants and enter into surface waters. The aim of this study was to investigate the occurrence and behavior of metformin, one of the most prescribed drugs worldwide, and its biological transformation product guanylurea, in eight wastewater treatment plants (WWTPs) of Greece. All WWTPs were equipped with conventional activated sludge treatment and the samples were taken from the influents and the effluents, over the four seasons of one year. The analytical method developed based on SPE followed by LC-UV/Vis-ESI/MS analysis, while positive findings were confirmed also by means of LTQ Orbitrap mass spectrometer. High polarity of both compounds led to the extraction with Oasis HLB and the use of the anionic surfactant SDS. The results showed that metformin dominated in the influents (bql-1167 ng/L), while guanylurea in the effluents (bql-627 ng/L) of the wastewater treatment plants, with Metformin/ Guanylurea ratio ranging between 0.88 and 81.3 in the influents and between 0.005 and 0.78 in the effluents. Lack of a clear seasonal tendency in the occurrence and removal or formation was observed. Finally, an ecotoxicological risk assessment of metformin in effluent wastewaters took place by calculating the ratio between the environmental concentrations (MEC) and the predicted no effect concentrations (PNEC). Despite the fact that metformin presented low risk in all cases, an environmental concern is suspected for guanylurea since it is continuously released into the aquatic environment.
机译:制药厂及其转化产物(TPs)等许多污染物无法从废水处理厂中有效去除,并进入地表水。这项研究的目的是调查在希腊的八个废水处理厂(WWTP)中二甲双胍(世界上处方最广泛的药物之一)及其生物转化产物鸟尿素的发生和行为。所有的污水处理厂都配备了常规的活性污泥处理,并且在一年的四个季节中从进水和出水中取样。基于SPE的分析方法,然后进行LC-UV / Vis-ESI / MS分析,而LTQ Orbitrap质谱仪也证实了积极的发现。两种化合物的高极性导致用Oasis HLB萃取和使用阴离子表面活性剂SDS。结果表明,废水处理厂的进水中二甲双胍占主导(bql-1167 ng / L),而废水中的鸟粪尿(bql-627 ng / L)占主导地位,进水中的二甲双胍/鸟嘌呤脲比在0.88至81.3之间在废水中介于0.005至0.78之间。观察到缺乏明显的季节性趋势,发生,去除或形成。最后,通过计算环境浓度(MEC)与预测的无效浓度(PNEC)之间的比率,对废水中的二甲双胍进行了生态毒理学风险评估。尽管二甲双胍在所有情况下均具有较低的风险,但由于胍尿素不断释放到水生环境中,因此怀疑其对环境的影响。

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