Dep. of Biology, Univ. of Winnipeg, 515 Portage Ave., Winnipeg, MB, R3B 2E9, Canada.
Dep. of Geography, Univ. of Winnipeg, 515 Portage Ave., Winnipeg, MB, R3B 2E9, Canada.
J Environ Qual. 2021 May;50(3):653-666. doi: 10.1002/jeq2.20234. Epub 2021 May 12.
Cold agricultural regions are getting warmer and experiencing shifts in precipitation patterns, which affect hydrological transport of nutrients through reduced snowpack and higher annual proportions of summer rainfall. Previous work has demonstrated that the timing of phosphorus (P) concentrations is regionally coherent in streams of the northern Great Plains, suggesting a common climatic driver. There has been less investigation into patterns of stream nitrogen (N), despite its importance for water quality. Using high-frequency water quality data collected over 6 yr from three southern Manitoba agricultural streams, the goal of this research was to investigate seasonal patterns in N and P concentrations and the resultant impacts of these patterns on N/P stoichiometry. In the spring, high concentrations of inorganic N were associated with snowmelt runoff, while summer N was dominated by organic forms; inorganic N concentrations remained consistently low in the summer, suggesting increased biological N transformation and N removal. Relationships between N concentration and discharge showed generally weak model fits (r values for significant relationships ranging from .33 to .48), and the strength and direction of model fits differed among streams, seasons, and forms of N. Dissolved organic N concentrations were strongly associated with dissolved organic carbon. Nitrogen-to-phosphorus ratios varied among streams but were significantly lower during summer storm events (p < .0001). These results suggest that climate-driven shifts in temperature and precipitation may negatively affect downstream water quality in this region.
寒冷的农业地区正在变暖,并经历着降水模式的转变,这会通过减少积雪和增加夏季降雨比例来影响营养物质的水文输送。先前的研究表明,在大平原北部的溪流中,磷(P)浓度的时间变化具有区域一致性,这表明存在共同的气候驱动因素。尽管氮(N)对水质很重要,但对其模式的研究却较少。本研究使用从曼尼托巴省南部的三条农业溪流中采集的 6 年高频水质数据,旨在调查 N 和 P 浓度的季节性模式,以及这些模式对 N/P 化学计量的影响。在春季,高浓度的无机 N 与融雪径流有关,而夏季 N 则主要以有机形式为主;夏季无机 N 浓度持续较低,表明生物 N 转化和 N 去除增加。N 浓度与流量之间的关系通常拟合较差(显著关系的 r 值范围从.33 到.48),并且模型拟合的强度和方向在溪流、季节和 N 形式之间存在差异。溶解有机 N 浓度与溶解有机碳密切相关。氮磷比在各溪流之间存在差异,但在夏季风暴事件中显著降低(p<.0001)。这些结果表明,温度和降水的气候驱动变化可能会对该地区下游的水质产生负面影响。