...
首页> 外文期刊>Environmental Science and Pollution Research >Long trend reduction of phosphorus wastewater loading in the Seine: determination of phosphorus speciation and sorption for modeling algal growth
【24h】

Long trend reduction of phosphorus wastewater loading in the Seine: determination of phosphorus speciation and sorption for modeling algal growth

机译:塞纳河磷废水载荷的长期减少:藻类生长磷样品和吸附的测定

获取原文
获取原文并翻译 | 示例

摘要

The lower Seine River is severely affected by the release of the treated wastewater from the 12 million inhabitants of the Paris agglomeration. Whereas urban effluents were the major source of phosphorus pollution in the late 1980s, the ban on polyphosphates from detergents in 1991 considerably reduced the phosphorus (P) loading to the Seine River and was followed in 2000 by the implementation of phosphorus treatment in the largest wastewater treatment plant of Paris conurbation (Seine Aval). Phosphorus discharged to the rivers from domestic wastewater was reduced by 80 %, significantly decreasing phytoplankton biomass in the large branches of the Seine River. Considering that phosphorus treatment (the use of ferric salts in the P treatment line) might change the adsorption of ortho-phosphates on suspended matter, we experimentally studied again their sorption processes in these new conditions. We found parameters of the Langmuir equation (Pac = 0.003 mgP mgSS(-1); Kps = 0.04 mgP L-1) that significantly differed from the values previously considered for modeling of the whole Seine, especially for Kps (Pac = 0.0055 mgP mgSS(-1); Kps = 0.7 mgP L-1). Using the Seneque-Rivertrahler modeling approach, we showed a better agreement between P observations and simulations with the new P sorption parameters, with slight effect on the simulation of the development of phytoplankton in the water column.
机译:下塞纳河受到从1200万居民的群群中释放治疗废水的严重影响。虽然城市污水是20世纪80年代后期磷污染的主要来源,但1991年禁止洗涤剂的多磷酸盐大大降低了塞纳河的磷(P)装载,并在2000年通过实施最大废水中的磷治疗。巴黎发生处理厂(塞纳河AVAL)。排放到国内废水的河流的磷减少了80%,显着降低了塞纳河的大分支中的浮游植物生物量。考虑到磷治疗(在P治疗管线中使用铁盐)可能会改变磷酸盐对悬浮物质的吸附,我们在这些新条件下再次研究了它们的吸附过程。我们发现Langmuir方程的参数(PAC = 0.003 mgP MgSS(-1); KPS = 0.04 mgP L-1),与先前考虑的值显着不同,用于对整个Seine建模,特别是对于KPS(PAC = 0.0055 mgP MGSS) (-1); kps = 0.7 mgp l-1)。使用Seneque-Riverrahler建模方法,我们在P观察和模拟与新的P吸附参数之间表现出更好的一致性,对水柱浮游植物的发展进行了轻微影响。

著录项

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