首页> 外文期刊>The Science of the Total Environment >Psychiatrics and selected metabolites in hospital and urban wastewaters: Occurrence, removal, mass loading, seasonal influence and risk assessment
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Psychiatrics and selected metabolites in hospital and urban wastewaters: Occurrence, removal, mass loading, seasonal influence and risk assessment

机译:医院和城市废水中的精神病学和某些代谢物:发生,清除,负荷,季节影响和风险评估

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The occurrence, removal, mass loading, seasonal influence and environmental risk assessment of nine psychiatric pharmaceuticals and four of their selected metabolites, were studied in one hospital and one urban wastewater treatment plant (WWTP) in Ioannina city, in northwestern Greece, providing information about the efficiency of the plants and their contribution into the final receiver's flow. Samples were collected from the influents and the effluents of the plants in different sampling campaigns, from July to December 2016. Analytical methodology was based on ultra-high performance liquid chromatography-Orbitrap high-resolution mass spectrometry, after solid-phase extraction through Oasis HLB cartridges. Concentrations in both WWTPs ranged between bLOQ and 1126.3 ng/L in the influents and between bLOQ and 1127.4 ng/L, in the effluents. Results indicated that venlafaxine and its metabolite O-desmethyl venlafaxine were the most frequently detected compounds in the influents and the effluents of both WWTPs. Metabolite to parent compound ratio ranged in the influents between 0.01 and 87.2 while in the effluents between 0.01 and 47.7. Based on mass loads in the influents, venlafaxine is consumed in high amounts (up to 67.1 mg/day/1000 inhab.), and consequently its metabolite O-desmethyl venlafaxine (up to 139.1 mg/day/1000 inhab.). Similarly to the influents, environmental emissions, were also higher for venlafaxine and O-desmethyl venlafaxine (10.1 and 13.3 mg/d/1000 inhab., respectively). Removal efficiencies in the hospital WWTP ranged from -100% to 98.9%, while in the city WWTP from -49.9% to 99.8%. Furthermore, an important outcome was the evaluation of the potential ecotoxicological risk, by means of risk quotients (RQs), where none of the target psychiatrics or their metabolites showed RQ above 1. (c) 2019 Elsevier B.V. All rights reserved.
机译:在希腊西北部约阿尼纳市的一家医院和一家城市废水处理厂(WWTP)中研究了9种精神药物及其4种选定代谢物的发生,去除,质量负荷,季节性影响和环境风险评估,提供了有关以下方面的信息:植物的效率及其对最终接收者流量的贡献。通过2016年7月至2016年12月的不同采样活动,从植物的进水和出水中收集样品。分析方法基于超高效液相色谱-Orbitrap高分辨率质谱,并通过Oasis HLB进行固相萃取墨盒。两种污水处理厂的进水浓度在bLOQ和1126.3 ng / L之间,出水在bLOQ和1127.4 ng / L之间。结果表明,文拉法辛及其代谢产物O-去甲基文拉法辛是两种污水处理厂进水和出水中最常检测到的化合物。代谢物与母体化合物的比例在进水量在0.01和87.2之间,而出水在0.01和47.7之间。根据进水中的质量负荷,文拉法辛被大量消耗(高达67.1 mg /天/ 1000 inhab。),因此其代谢产物O-去甲基文拉法辛(高达139.1 mg / day / 1000 inhab。)。与进水类似,文拉法辛和O-去甲基文拉法辛的环境排放也更高(分别为10.1和13.3 mg / d / 1000 inhab)。医院污水处理厂的去除效率为-100%至98.9%,而城市污水处理厂的去除效率为-49.9%至99.8%。此外,重要的结果是通过风险商(RQ)评估潜在的生态毒理风险,其中目标精神科医师或其代谢产物均未显示RQ高于1.(c)2019 Elsevier B.V.保留所有权利。

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