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Sources and Dynamics of Dissolved Inorganic Carbon, Nitrogen, and Phosphorus in a Large Agricultural River Basin in Arid Northwestern China

机译:西北干旱地区大型农业河流域溶解态无机碳,氮和磷的来源和动态

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The present study assessed the export of inorganic carbon, nitrogen, and phosphorus within a large agricultural basin in arid northwestern China. Groundwater of various depths and river water along a 160 km reach were sampled during contrasting flow conditions. Dissolved inorganic carbon (DIC) concentrations and δ 13 C-DIC values indicate that lithogenic carbonate weathering was the main source of DIC in the basin. Discharge played an important role in regulating the amount and flowpath of nutrients mobilized from soils to the river. Ammonium was mobilized mostly by storm flows whereas the other nutrients were exported through both storm and groundwater flows. Hydrological events, occurring on only about 10% of the days for a year, were responsible for more than 40% of annual nutrient exports. Shallow groundwater was an important source of DIC and nitrate in river water within the alluvial plain, where groundwater discharges regulated their longitudinal variability along the river. According to a mixing model using δ 13 C-DIC and chloride, groundwater comprised 9–34% and 39–60% of river water at high discharge and baseflow, respectively. Together, our data highlight the importance of reducing storm runoffs and monitoring nutrient pollution within this large basin.
机译:本研究评估了西北干旱地区一个大型农业盆地内无机碳,氮和磷的出口情况。在不同的流动条件下,对不同深度的地下水和沿160 km的河水进行了采样。溶解的无机碳(DIC)浓度和δ13 C-DIC值表明,成岩碳酸盐岩风化作用是盆地中DIC的主要来源。排放在调节从土壤运到河流的养分的数量和流向中起着重要作用。铵主要是通过暴风雨来流动的,而其他养分则通过暴风雨和地下水流动而被输出。一年中只有大约10%的日子发生的水文事件占年度养分出口量的40%以上。浅层地下水是冲积平原河水中DIC和硝酸盐的重要来源,那里的地下水排放量调节了河流沿河的纵向变化。根据使用δ13 C-DIC和氯化物的混合模型,在高流量和底流量下,地下水分别占河水的9–34%和39–60%。总之,我们的数据突出了在这个大盆地内减少暴雨径流和监测养分污染的重要性。

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