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泥炭地河流系统中溶解有机氮的粒径分级。

Size Fractionation of Dissolved Organic Nitrogen in Peatland Fluvial Systems.

机构信息

Upland Environments Research Unit, Department of Geography The University of Manchester , Oxford Road , Manchester M13 9PL , United Kingdom.

School of Earth, Atmospheric, and Environmental Sciences , The University of Manchester , Oxford Road , Manchester M13 9PT , United Kingdom.

出版信息

Environ Sci Technol. 2018 Oct 2;52(19):11198-11205. doi: 10.1021/acs.est.8b01417. Epub 2018 Sep 18.

Abstract

Understanding the nature and fate of nitrogen (N) in freshwater systems is crucial for assessing the risk of eutrophication. However, there is a paucity of information on the characterization of fluvial N in upland peat-dominated environments. Here, we employ a combination of field sampling and tangential flow ultrafiltration (TFU) to investigate the concentrations and fluxes of low molecular weight (LMW) and high molecular weight (HMW) dissolved organic N (DON) in a peatland stream-reservoir system in the south Pennines (UK). Our TFU results show that ∼26% of DON concentration is LMW DON and represents an estimated fluvial flux of 3.07 ± 22 kg N ha during the study period. Our mass balance results reveal that the reservoir retains 71% of LMW DON input, which accounts for ∼25% retention of bioavailable (dissolved inorganic N + LMW DON) N. Our study suggests that current understanding of inorganic N as the sole source of bioavailable N with eutrophic significance in upland freshwaters requires a reappraisal. Evaluation of ecosystem response to increased loading of N needs to include a consideration of LMW DON.

摘要

了解淡水系统中氮 (N) 的性质和归宿对于评估富营养化风险至关重要。然而,关于高地泥炭为主的环境中河流 N 的特征的信息却很少。在这里,我们采用野外采样和切向流超滤(TFU)相结合的方法,研究了英国南奔宁山脉泥炭地溪流-水库系统中低分子量 (LMW) 和高分子量 (HMW) 溶解有机氮 (DON) 的浓度和通量。我们的 TFU 结果表明,DON 浓度的约 26%为 LMW DON,这代表了研究期间估计为 3.07±22kgNha 的河流通量。我们的质量平衡结果表明,水库保留了 LMW DON 输入的 71%,这占生物可用(溶解无机氮+LMW DON)N 的约 25%保留。我们的研究表明,当前将无机 N 作为富营养化意义上的生物可用氮的唯一来源的理解需要重新评估。评估生态系统对 N 负荷增加的响应需要考虑 LMW DON。

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