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Not only biocidal products: Washing and cleaning agents and personal care products can act as further sources of biocidal active substances in wastewater

机译:不仅有杀生物产品:清洗剂和个人护理产品还可以作为废水中杀生物活性物质的进一步来源

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The emission sources of biocidal active substances in households have been under discussion since these substances have been detected frequently in municipal wastewater and receiving surface water bodies. Therefore, the goal of this study was to investigate the products responsible for the emission of these substances to wastewater.We analysed the wastewater of two streets for a set of biocidal active substances. Time-proportional sampling was conducted for one week of each season during one year in each street. The 14 substances analysed with liquid chromatography coupled with tandem mass spectrometry were 1,2-benzisothiazol-3(2H)-one (BIT), C-12-benzalkonium chloride, carbendazim, 5-chloro-2-methyl-2H-isothiazol-3-one (CMIT), dichlorooctylisothiazolinone (DCOIT), N,N-diethyl-meta-toluamide (DEET), diuron, icaridine, 2-octyl-2H-isothiazol-3-one (OIT), piperonyl butoxide (PBO), triclosan, tebuconazole, terbutryn and tetramethrin. Using data available from household product inventories of the two streets, we searched the lists of ingredients for the products possibly being responsible for the emissions.Except for four substances, all substances have been detected in at least 10% of the samples. Highest concentrations were measured for C-12-benzalkonium chloride with an average concentration in the daily samples of 7.7 mu g/L in one of the streets. Next to C-12-benzalkonium chloride, BIT, DEET and icaridine were detected in all samples in average concentrations above 1 mu g/L in at least one street. The results show that washing and cleaning agents were important sources for preservatives such as BIT and OIT, while triclosan was apparently mainly emitted through personal care products. The mosquito repelling substances DEET and icaridine were found throughout the year, with highest emissions in summer and autumn.In conclusion, the results demonstrate that the sources of biocidal active substances in municipal wastewater are complex and that measures for the prevention of the emission of biocidal active substances into the aquatic environment have to be carried out under different legislations. This has to be taken into account discussing emission reduction at the source.
机译:由于在市政废水和接收地表水体中经常检测到这些物质,因此家庭中的杀生物活性物质的排放源一直在讨论中。因此,本研究的目的是研究造成这些物质向废水中排放的产物。我们分析了两条街道的废水中的一系列杀菌活性物质。在每个街道的一年中,每个季节进行一周的时间比例抽样。液相色谱-串联质谱分析的14种物质为1,2-苯并噻唑-3(2H)-一(BIT),C-12-苯扎氯铵,多菌灵,5-氯-2-甲基-2H-异噻唑- 3-one(CMIT),二氯辛基异噻唑啉酮(DCOIT),N,N-二乙基间甲苯甲酰胺(DEET),diuron,异丙基吡啶,2-辛基-2H-异噻唑-3-one(OIT),胡椒基丁醚(PBO),三氯生,戊唑醇,叔丁精和丁菊酯。我们使用两条街道的家用产品清单中的数据,搜索了可能造成排放的产品的成分清单,除了四种物质外,至少有10%的样品中检测到了所有物质。在一条街道上,测得的C-12-苯扎氯铵的最高浓度为每日样品中的平均浓度为7.7μg / L。在C-12-苯扎氯铵旁边,在至少一条街道上的所有样品中均检测到BIT,DEET和异丙基吡啶的平均浓度均高于1μg/ L。结果表明,洗涤和清洁剂是BIT和OIT等防腐剂的重要来源,而三氯生显然主要是通过个人护理产品释放的。全年发现驱蚊物质DEET和杀虫剂艾替啶,夏季和秋季排放量最高。结论表明,结果表明,城市废水中的杀生物活性物质来源很复杂,并且有防止杀生物排放的措施。进入水生环境的活性物质必须根据不同的法规进行。在讨论源头的减排时必须考虑到这一点。

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