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Long-term accumulation and transport of anthropogenic phosphorus in three river basins

机译:3个流域人为磷的长期积累与迁移

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摘要

Global food production depends on phosphorus. Phosphorus is broadly applied as fertilizer, but excess phosphorus contributes to eutrophication of surface water bodies and coastal ecosystems(1). Here we present an analysis of phosphorus fluxes in three large river basins, including published data on fertilizer, harvested crops, sewage, food waste and river fluxes(2-4). Our analyses reveal that the magnitude of phosphorus accumulation has varied greatly over the past 30-70 years in mixed agricultural-urban landscapes of the Thames Basin, UK, the Yangtze Basin, China, and the rural Maumee Basin, USA. Fluxes of phosphorus in fertilizer, harvested crops, food waste and sewage dominate over the river fluxes. Since the late 1990s, net exports from the Thames and Maumee Basins have exceeded inputs, suggesting net mobilization of the phosphorus pool accumulated in earlier decades. In contrast, the Yangtze Basin has consistently accumulated phosphorus since 1980. Infrastructure modifications such as sewage treatment and dams may explain more recent declines in total phosphorus fluxes from the Thames and Yangtze Rivers(3,4). We conclude that human-dominated river basins may undergo a prolonged but finite accumulation phase when phosphorus inputs exceed agricultural demand, and this accumulated phosphorus may continue to mobilize long after inputs decline.
机译:全球粮食生产取决于磷。磷被广泛用作肥料,但是过量的磷会促进地表水体和沿海生态系统的富营养化(1)。在这里,我们对三个大型流域的磷通量进行了分析,包括有关肥料,收获的农作物,污水,食物垃圾和河流通量的公开数据(2-4)。我们的分析表明,在过去的30-70年间,英国泰晤士河盆地,中国长江流域和美国莫米盆地农村地区的农业-城市混合景观中磷的累积量变化很大。化肥,收获的农作物,食物垃圾和污水中的磷通量占河流通量的主导地位。自1990年代后期以来,泰晤士河盆地和莫米盆地的净出口量已超过投入量,这表明净动员了前几十年积累的磷池。相比之下,长江流域自1980年以来一直在积累磷。污水处理和水坝等基础设施的改造可能解释了近期来自泰晤士河和长江的总磷通量的下降(3,4)。我们得出的结论是,当磷的输入量超过农业需求时,人类主导的流域可能会经历一个长期但有限的蓄积阶段,而这种蓄积的磷可能会在磷输入减少后很长时间继续动员。

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