首页> 外文期刊>Science of the total environment >Modelling the fate of nonylphenolic compounds in the Seine River - part 2: Assessing the impact of global change on daily concentrations
【24h】

Modelling the fate of nonylphenolic compounds in the Seine River - part 2: Assessing the impact of global change on daily concentrations

机译:塞纳河中壬基酚化合物命运的建模-第2部分:评估全球变化对日浓度的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This study aims at modelling the daily concentrations of nonylphenolic compounds such as 4-nonylphenol (4-NP), nonylphenol monoethoxylate (NP_1EO) and nonylphenoxy acetic acid (NP_1EC) within the Seine River downstream of Paris City for over a year, firstly in the present state (year 2010) and for years 2050 and 2100 in order to assess the consequences of global change on the fate of nonylphenolic compounds in the Seine river. Concentrations were first simulated for the year 2010 and compared to monthly measured values downstream of Paris. To achieve this goal, the hydrodynamic and biogeochemical model, ProSe, was updated to simulate the fate of 4-NP, NP_1EO and NP_1EC. The Seine upstream and Oise River (tributaries of the Seine River) concentrations are estimated according to concentrations-flow relationships. For Seine Aval wastewater treatment plant (SA-WWTP), the concentrations are considered constant and the median values of 11 campaigns are used. The biodegradation kinetics of 4-NP, NP_1EO and NP|EC in the Seine River were deduced from the results of the companion paper. The Nash-Sutcliffe coefficient indicates a good efficiency to simulate the concentrations of 4-NP, NP_1EC and NP_1EO over an entire year. Eight scenarios were built to forecast the impacts of global warming (flow decrease), population growth (SA-WWTP flow increase) and optimisation of wastewater treatment (improvement of the quality of effluents) on annual concentrations of 4-NP, NP_1EO and NP_1EC at Meulan by 2050 and 2100. As a result, global warming and population growth may increase the concentrations of 4-NP, NP_1EC and NP_1EO, especially during low-flow conditions, while the optimisation of wastewater treatment is an efficient solution to balance the global change by reducing WWTP outflows.
机译:这项研究旨在模拟巴黎市塞纳河下游一年中壬基酚化合物(例如4-壬基酚(4-NP),壬基酚单乙氧基化物(NP_1EO)和壬基苯氧基乙酸(NP_1EC))的日浓度,目前状态(2010年)以及2050年和2100年,以评估全球变化对塞纳河中壬基酚类化合物命运的影响。首先对2010年的浓度进行了模拟,然后将其与巴黎下游的月度测量值进行了比较。为了实现这一目标,更新了水动力和生物地球化学模型ProSe,以模拟4-NP,NP_1EO和NP_1EC的命运。根据浓度-流量关系估算塞纳河上游和瓦兹河(塞纳河支流)的浓度。对于塞纳河污水处理厂(SA-WWTP),浓度被认为是恒定的,并且使用11个活动的中位数。根据配套论文的结果推导了塞纳河中4-NP,NP_1EO和NP | EC的生物降解动力学。 Nash-Sutcliffe系数表示在整个一年中模拟4-NP,NP_1EC和NP_1EO浓度的良好效率。建立了八个方案来预测全球变暖(流量减少),人口增长(SA-WWTP流量增加)和废水处理优化(废水质量改善)对4-NP,NP_1EO和NP_1EC年浓度的影响。到2050年和2100年达到穆兰。结果,全球变暖和人口增长可能会增加4-NP,NP_1EC和NP_1EO的浓度,尤其是在低流量条件下,而废水处理的优化是平衡全球变化的有效解决方案通过减少污水处理厂的流出量。

著录项

  • 来源
    《Science of the total environment》 |2014年第15期|1059-1068|共10页
  • 作者单位

    Universite Paris-Est, LEESU (UMR MA102), UPEC, UPEMLV, ENPC, AgroParisTech, 94010 Creteil, France;

    Universite Paris-Est, LEESU (UMR MA102), UPEC, UPEMLV, ENPC, AgroParisTech, 94010 Creteil, France;

    Geosciences Department, MINES ParisTech, 35 Rue Saint-Honore, 77305 Fontainebleau, France;

    Universite Paris-Est, LEESU (UMR MA102), UPEC, UPEMLV, ENPC, AgroParisTech, 94010 Creteil, France;

    Geosciences Department, MINES ParisTech, 35 Rue Saint-Honore, 77305 Fontainebleau, France;

    Geosciences Department, MINES ParisTech, 35 Rue Saint-Honore, 77305 Fontainebleau, France;

    Universite Paris-Est, LEESU (UMR MA102), UPEC, UPEMLV, ENPC, AgroParisTech, 94010 Creteil, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nonylphenol; Nonylphenol ethoxylate; Endocrine disrupting compounds; Global change;

    机译:壬基酚壬基酚乙氧基化物;内分泌干​​扰化合物;全球变化;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号