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Threats of organophosphate esters (OPEs) in surface water to ecological system in Haihe River of China based on species sensitivity distribution model and assessment factor model

机译:基于物种敏感性分布模型及评估因子模型,中国海河地表水对地表水中的有机磷酸酯(OPES)对生态系统的威胁

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Organophosphate esters (OPEs) are a kind of emerging contaminants, but the information about their pollution profile and ecological risk are still scarce in China. In this study, 31 surface water samples of Haihe River (China) were collected in November 2017, and 11 OPEs were measured, and the ecological risk of OPEs was assessed by means of species sensitivity distribution (SSD) method and assessment factor method. Additionally, Pearson correlation analysis and an international comparison with other rivers in the world were conducted. The results showed that total OPEs ranged from 23.98 to 824.72 ng L-1, and the mean value was 228.70 ng L-1. The concentration of OPEs decreased as follows: Tri(2-chloroisopropyl) phosphate (TCPP) > Tri(2-chloroethyl) phosphate (TCEP) > Triethyl phosphate (TEP) > Tributoxyethyl phosphate (TBEP) > Triphenyl phosphate (TPhP) > Tripropyl phosphate (TPrP) > Tri(2-ethylhexyl) phosphate (TEHP) > 2-ethylhexyl diphenyl phosphate (EHDPP) > Tri(1,3-dichloro-2-propyl)phosphate (TDCPP) > Tri-n-butyl phosphate (TnBP) > Tri-m-cresyl phosphate (TMPP). TCPP (19.54-160.82 ng L-1) and TCEP (N.D.-151.99 ng L-1) with the mean value of 76.67 and 53.13 ng L-1 respectively were identified as the richest OPEs in Haihe River. The concentration of OPEs slowly increased in the upper reaches of Haihe River, and it tended to be stable in the middle reaches of Haihe River and decreased rapidly from the downstream to the outer sea. Significantly positive correlations occurred among three chlorinated alkyl OPEs (TCEP, TCPP, and TDCPP), suggesting that they might come from the same source. Based on the comparison, the pollution condition of OPEs in Haihe River was low, and TCEP was found to be the most abundant OPEs in China but it was not that in Europe. The ecological risk assessment on the basis of assessment factor method suggested that the risk of OPEs in Haihe River for algae, crustacean, and fish was limited. In addition, the results of SSD method suggested that the combined ecological risk of four OPEs in Haihe River was also low. This study provides information about the pollution status of OPEs in the surface water of China to some extents and a project for the risk estimation based on SSD for prior and emerging flame retardants.
机译:有机磷酸酯(OPE)是一种新兴污染物,但有关污染概况和生态风险的信息仍然在中国稀缺。在本研究中,2017年11月收集了31种海河(中国)的地表水样,并测量了11次,通过物种敏感性分布(SSD)方法和评估因子方法评估了展开的生态风险。此外,进行了Pearson相关分析和世界其他河流的国际比较。结果表明,总适应范围为23.98至824.72ng l-1,平均值为228.70ng l-1。作品的浓度如下:三(2-氯异丙基)磷酸酯(TCPP)>三乙酯(TCEP)>三乙酯>磷酸三乙酯(TBEP)>三苯基磷酸酯(TPHP)>磷酸三苯基(TprP)>三(2-乙基己基)磷酸盐(Tehp)> 2-乙基己二苯基磷酸(EHDPP)>三(1,3-二氯-2-丙基)磷酸酯(TDCPP)>三丁基磷酸酯(TNBP) >三-M-磷酸酯(TMPP)。 TCPP(19.54-160.82 Ng L-1)和TCEP(N4-151.99 NG L-1)分别被鉴定为海河河的最富有的官方价值为76.67和53.13 ngl-1。在海河河上游的作品浓度慢慢增加,往往在海河中游稳定,从外海的下游迅速下降。三种氯化烷基(TCEP,TCPP和TDCPP)中发生显着阳性相关性,表明它们可能来自同一来源。在比较的基础上,海河河流的污染状况低,而TCEP被发现是中国最丰富的官方,但并不是在欧洲。基于评估因子方法的生态风险评估表明,海河藻类,甲壳类动物和鱼类的运作风险有限。此外,SSD方法的结果表明,海河河中四项款项的综合生态风险也很低。本研究提供了有关在中国地表水域的污染状况的信息,以某种范围和基于SSD的风险估算项目,以进行先前和新兴阻燃剂。

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