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Temporal-spatial variations and source identification of dissolved nitrate in the upper Han River basin, China

机译:中国上汉江盆地溶解硝酸盐的时间空间变化及源鉴定

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Human activities have greatly increased the nitrogen (N) loading in rivers over the past century, and consequently, N pollution has become a severe problem in aquatic systems. Nitrate (NO3-) is the predominant form of dissolved N in aquatic environments. In the present study, we evaluated N pollution characteristics and identified N sources using an isotope tracing technique in the upper Han River, a tributary of the Yangtze River with a length of 925 km in China. The objectives of this study were to evaluate the variations of N concentrations and explore the N sources in different time periods and areas. The results revealed that NO3- had significantly higher concentrations in July (22.75 +/- 17.75 mg L-1) than that in other sampling months (14.00 +/- 10.85 mg L-1 in November, 13.70 +/- 11.55 mg L-1 in January, 4.99 +/- 6.10 mg L-1 in April), and it also presented significant spatial variations (p < 0.05) along the riverine network. Isotope analysis indicated a rather large range of isotope values, implying that the NO3- in the upper Han River originated from different sources, primarily from sewage. There was a large overlap of delta(NO3-)-N-15 values between different sources during the growing season (April/July), demonstrating the various inputs of N sources. Our results revealed the degraded water quality and poor control of N run off into the river. With the assessment of temporal-spatial variation and sources of N, improved management practices can be implemented to protect water resource and avoid further water quality deterioration in the upper Han River.
机译:人类活动在过去的世纪中大大增加了河流中的氮气(n)加载,因此,N污染已成为水生系统的严重问题。硝酸盐(NO 3-)是水生环境中溶解的n的主要形式。在本研究中,我们评估了N污染特征,并在上汉河上的同位素描绘技术进行了鉴定的N个来源,这是长江的支流,在中国长度为925公里。本研究的目的是评估N浓度的变化,并在不同的时间段和地区探索N个来源。结果表明,7月份(22.75 +/- 17.75 mg L-1)的浓度明显高于其他采样月份(11月14.00 +/- 10.85 mg L-1,13.70 +/- 11.55 mg- 1月1日,4.99 +/- 6.10 mg L-1 4月),它还沿着河流网络呈现了显着的空间变化(P <0.05)。同位素分析表明了相当大的同位素值,这意味着No3-中汉河的起源于不同来源,主要来自污水。在生长季节(四月/七月)期间,不同来源之间的Delta(No3 - ) - N-15值之间存在大的重叠,展示了N个来源的各种输入。我们的结果揭示了降级的水质和对河流的较差的控制。通过评估时间空间变化和N的来源,可以实施改进的管理实践以保护水资源,避免上汉河进一步的水质恶化。

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