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Nonpoint-source nitrogen and phosphorus behavior and modeling in cold climate: a review

机译:寒冷气候下非点源氮和磷的行为与模拟:综述

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摘要

Pollution from nonpoint-source (NPS) nitrogen (N) and phosphorus (P) are the main causes of eutrophication in lotic, lentic and coastal systems. The climate of cold regions might play an important role in disturbing environmental behavior of NPS N and P, influencing simulation of watershed scale hydrologic and nonpoint-source pollution models. The losses of NPS N and P increase in regions of cold climate. In cold seasons, accumulations of N and P are accelerated in soil with increasing fine root and aboveground biomass mortality, decreasing plant nutrient uptake, as well as freezing soil. N and P transformation is disturbed by soil frost and snow. Moreover, factors such as physical disruption of soil aggregates, pollutant accumulation in snowpack, and snow melting can all increase the NPS N and P losses to the waterbody. Therefore, NPS N and P in first flush are more serious in cold climate. All these effects, especially frozen soil and snowpack, make great challenges to watershed scale hydrologic and nonpoint-source pollution models simulation in cold climate. Model improvements of snowmelt runoff, nutrient losses in frozen soil, as well as N and P behavior have been initiated and will be continued to evaluate in terms of their performances and suitability with different scale, hydrologic and geologic conditions in the future.
机译:非点源(NPS)的氮(N)和磷(P)造成的污染是在抽水,水母和沿海系统富营养化的主要原因。寒冷地区的气候可能在干扰NPS N和P的环境行为中起重要作用,影响流域尺度的水文和非点源污染模型的模拟。在寒冷气候地区,NPS N和P的损失增加。在寒冷季节,土壤中氮和磷的积累会加速,从而增加细根和地上生物量的死亡率,降低植物对养分的吸收并冻结土壤。氮和磷的转化受土壤霜和雪的干扰。此外,诸如土壤团聚体的物理破坏,积雪中的污染物积累和融雪等因素都可能增加水体中NPS的N和P损失。因此,在寒冷的气候下,第一次冲洗的NPS N和P更为严重。所有这些影响,特别是冻土和积雪,对流域规模的水文和非点源污染模型在寒冷气候下的模拟提出了巨大挑战。已经开始进行融雪径流,冻土中养分流失以及氮和磷行为的模型改进,并将在未来针对不同规模,水文和地质条件对它们的性能和适用性进行评估。

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