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养分输入和水文学共同决定了卢瓦尔河(法国)的生物地球化学状况:现状和可能的未来情景。

Nutrient inputs and hydrology together determine biogeochemical status of the Loire River (France): Current situation and possible future scenarios.

机构信息

Sorbonne Université - CNRS - EPHE, UMR 7619 Metis, BP 123, Tour 56-55, Etage 4, 4 Place Jussieu, 75005 Paris, France.

Sorbonne Université - CNRS - EPHE, UMR 7619 Metis, BP 123, Tour 56-55, Etage 4, 4 Place Jussieu, 75005 Paris, France.

出版信息

Sci Total Environ. 2018 Oct 1;637-638:609-624. doi: 10.1016/j.scitotenv.2018.05.045. Epub 2018 May 11.

Abstract

The Grafs-Seneque/Riverstrahler model was implemented for the first time on the Loire River for the 2002-2014 period, to explore eutrophication after improvement of wastewater treatments. The model reproduced the interannual levels and seasonal trends of the major water quality variables. Although eutrophication has been impressively reduced in the drainage network, a eutrophication risk still exists at the coast, as shown by the N-ICEP indicator, pointing out an excess of nitrogen over silica and phosphorus. From maximum biomass exceeding 120 μgChla l in the 1980's, we observed decreasing maximum values from 80 to 30 μgChla l during the period studied. Several scenarios were explored. Regarding nutrient point sources, a low wastewater treatment scenario, similar to the situation in the 1980's, was elaborated, representing much greater pollution than the reference period (2002-2014). For diffuse sources, two agricultural scenarios were elaborated for reducing nitrogen, one with a strict application of the agricultural directives and another investigating the impact of radical structural changes in agriculture and the population's diet. Although reduced, a risk of eutrophication would remain, even with the most drastic scenario. In addition, a pristine scenario, with no human activity within the basin, was devised to assess water quality in a natural state. The impact of a change in hydrology on the Loire biogeochemical functioning was also explored according to the effect of climate change by the end of the 21st century. The EROS hydrological model was used to force Riverstrahler, considering the most pessimistic SRES A2 scenario run with the ARPEGE model. Nutrient fluxes all decreased due to a >50% reduction in the average annual discharge, overall reducing the risk of coastal eutrophication, but worsening the water quality status of the river network. The Riverstrahler model could be useful to help water managers contend with future threats in the Loire River, at the scale of its basin and at smaller nested scales.

摘要

首次将 Grafs-Seneque/Riverstrahler 模型应用于卢瓦尔河,对 2002-2014 年期间废水处理改善后的富营养化进行了研究。该模型再现了主要水质变量的年际水平和季节性趋势。尽管流域污水治理的成效显著,但氮素超过硅和磷的 N-ICEP 指标仍表明,在河口地区仍存在富营养化风险。20 世纪 80 年代,最大生物量超过 120μgChla·l,而在研究期间,最大生物量值从 80 下降到 30μgChla·l。探索了几种情景。对于营养物质点源,制定了类似于 20 世纪 80 年代的低污水处理方案,其污染程度比参考期(2002-2014 年)大得多。对于扩散源,制定了两种减少氮素的农业情景,一种是严格执行农业指令,另一种则研究了农业结构和人口饮食的根本性变化对富营养化的影响。即使在最严格的情景下,富营养化风险仍会存在。此外,还设计了一个原始情景,即在流域内没有人类活动,以评估自然状态下的水质。根据气候变化对水文的影响,还探索了 Riverstrahler 模型对卢瓦尔河流生物地球化学功能的影响。根据 ARPEGE 模型运行的最悲观的 SRES A2 情景,使用 EROS 水文模型为 Riverstrahler 提供动力。由于平均年径流量减少了>50%,养分通量均有所下降,这整体上降低了河口富营养化的风险,但使河网的水质状况恶化。Riverstrahler 模型可用于帮助流域管理者应对卢瓦尔河未来的威胁,包括流域尺度和更小嵌套尺度的威胁。

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