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Use of nitrogen stable isotope ratio of periphyton for monitoring nitrogen sources in a river system

机译:附生植物氮稳定同位素比在监测河流系统氮源中的应用

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In order to confirm the usefulness of the N stable isotope ratio of periphyton (mainly composed of attached algae) as an indicator for monitoring the N sources in river watersheds, we measured the isotope ratio of periphyton along the Chikuma River. In the river, both the concentrations of dissolved total nitrogen (DTN) and the delta(16)N Values of periphyton increased downstream.. Specific nitrogen loading rates (SNLR) calculated from administrative data also showed an increase downstream from 7 to 11 kg N ha(-1) yr(-1), with the increasing contribution by sewage and livestock waste from 6 to 40% to total N loading. There are significant Positive relationships between the DTN concentration and the SNLR (r(2)= 0.54, P<0.05), and the delta(15)N value of periphyton and the SNLR (r(2)= 0.78, P<0.05). The increase in DTN concentration reflected the increase in input of N loading.-The increase in delta(15)N of periphyton might reflect the increase in relative contribution by sewage and livestock waste down the river, especially the increase in sewage. The present study indicates the Usefulness of the N stable isotope ratio of periphyton as an indicator for monitoring N sources in a river system. [References: 13]
机译:为了确认附生植物(主要由附着藻类组成)的N稳定同位素比作为监测河流流域N来源的指标的有用性,我们测量了千曲河沿岸的附生植物的同位素比。在河流中,下游的溶解性总氮(DTN)浓度和围生植物的delta(16)N值均增加。根据行政数据计算的特定氮负荷率(SNLR)也显示下游的氮含量从7 kg增加到11 kg ha(-1)yr(-1),而污水和牲畜废物对总氮负荷的贡献从6%上升到40%。 DTN浓度与SNLR呈显着正相关(r(2)= 0.54,P <0.05),浮游植物与SNLR的delta(15)N值(r(2)= 0.78,P <0.05) 。 DTN浓度的增加反映了氮负荷输入的增加。-周生植物的δ(15)N的增加可能反映了下游污水和牲畜粪便的相对贡献增加,尤其是污水的增加。本研究表明,附生植物的氮稳定同位素比作为监测河流系统中氮源的指标很有用。 [参考:13]

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