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首页> 外文期刊>Hydrology and Earth System Sciences >Metal contamination budget at the river basin scale: an original Flux-Flow Analysis (F2A) for the Seine River
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Metal contamination budget at the river basin scale: an original Flux-Flow Analysis (F2A) for the Seine River

机译:流域规模的金属污染预算:塞纳河的原始流量分析(F2A)

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摘要

Material flow analysis and environmental contamination analysis are merged into a Flux-Flow analysis (F2A) as illustrated for the metal circulation in the Seine River catchment. F2A combines about 30 metal flows in the anthroposphere (14 million people) and/or metal fluxes in the environment (atmosphere, soils, and aquatic system) originating from two dozens of sources. The nature and quality of data is very heterogeneous going from downscaled national economic statistics to upscaled daily environmental surveys. A triple integration is performed: space integration over the catchment (65 000 km(2)), time integration for the 1950-2000 trend analysed at 5 year resolution, and a conceptual integration resulting in two F2A indicators. Despite the various data sources an average metal circulation is established for the 1994-2003 period and illustrated for zinc: (i) metal circulation in the anthroposphere is now two orders of magnitude higher than river outputs, (ii) long term metal storage, and their potential leaks, in soils, wastedumps and structures is also orders of magnitude higher than present river fluxes. Trend analysis is made through two F2A indicators, the per capita excess load at the river outlet and the leakage ratio (excess fluxes/metal demand). From 1950 to 2000, they both show a ten fold improvement of metal recycling while the metal demand has increased by 2.5 to 5 for Cd, Cu, Cr, Pb and Zn, and the population by 50%.
机译:物质流分析和环境污染分析合并为流量分析(F2A),如图所示塞纳河流域的金属循环。 F2A结合了人类活动中约30种金属流(1400万人口)和/或环境中的金属通量(大气,土壤和水生系统),它们来自两个来源。从缩小的国家经济统计数据到放大的日常环境调查数据的性质和质量是非常不同的。进行了三重整合:流域(6.5万公里(2))上的空间整合,以5年分辨率分析的1950-2000年趋势的时间整合,以及产生两个F2A指标的概念整合。尽管有各种数据来源,但仍为1994-2003年建立了平均金属循环并以锌为例:(i)人类圈中的金属循环现在比河流的产出高两个数量级,(ii)长期金属存储,以及它们在土壤,废料和建筑物中的潜在泄漏也比目前的河流量高出几个数量级。通过两个F2A指标进行趋势分析,这两个指标是河流出口处的人均超负荷和泄漏率(通量/金属需求过量)。从1950年到2000年,它们都显示出金属循环利用率提高了十倍,而Cd,Cu,Cr,Pb和Zn及其人口的金属需求却增加了2.5至5,而人口增加了50%。

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