莫米河湖平原支流河床沉积物和磷滞留的来源和寿命

IF 2.5 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Tanja N. Williamson , Faith A. Fitzpatrick , Diana L. Karwan , Rebecca M. Kreiling , James D. Blount , Dayle J. Hoefling
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引用次数: 0

摘要

本文描述了莫米河(Maumee River)和伊利湖(Lake Erie)西部的一条河道化支流——小Flatrock Creek (LFR)夏季低流量期间,软质、细粒、河床沉积物和伴生磷(ed- p)的丰度和来源。河段水平评估比较了河床泥沙储存和河岸侵蚀。对河床沉积物进行指纹图谱分析,并分析了水柱和河床沉积物之间的磷吸附潜力。两种沉降放射性核素的比例分配了河床储存中的“新沉积物”。全流域河床输沙量均超过年河岸侵蚀量和年悬沙量。河床沉积物通常是河岸和农田来源的混合物,每一种都等于或超过新河床沉积物的丰度,表明在当前的农业周期中,这两种来源的沉积物都有积累。这意味着新旧沉积物和遗留P的混合需要经过多个事件和季节才能向下游输送。河床沉积物具有从水柱中吸附溶解P (DP)的潜力,泥沙+粘土组分中储存的颗粒P(总溶解P)与悬浮沉积物输送的年颗粒P(总溶解P)负荷相似,但浓度低于农田和河滩沉积物。这表明随着沉积物沉降到底部水柱DP的补充,以及陆地和河道管理与河道内P有效性之间的滞后。该湖平原/河床盆地的细粒沉积物和磷的储存与另一条冰川-冰碛控制地貌的莫米源头支流不同。研究结果表明,不同的地貌背景和流域历史对河岸侵蚀、河道内泥沙淤积及其形成的总溶解泥沙P螺旋有不同的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Source and longevity of streambed sediment and phosphorus retention in a lake-plain tributary of the Maumee River
We described abundance and source of soft, fine-grained, streambed sediment and associated phosphorus (sed-P) during summer low flow in Little Flatrock Creek (LFR), a channelized tributary of the Maumee River and western Lake Erie. Reach-level assessments compared streambed-sediment storage to streambank erosion. Streambed sediment was fingerprinted and analyzed for sed-P and the potential for P de/sorption between the water column and streambed sediment. The ratio of two fallout radionuclides apportioned “new sediment” in streambed storage. Basin-wide streambed-sediment storage exceeded both annual streambank erosion and the annual suspended-sediment load. Streambed sediment was generally a mix of streambank and cropland sources and each equaled or exceeded abundance of new streambed sediment, indicating accumulation of sediment from both sources during the current agricultural cycle. The implication is that this mix of new and old sediment, and legacy P, takes multiple events and seasons to be transported downstream. Streambed sediment had the potential to adsorb dissolved P (DP) from the water column, with sed-P stored in the silt + clay fraction similar to the annual particulate-P (total-dissolved) load transported with suspended sediment, but with lower concentrations than cropland- and streambank-sourced sediment. This indicates supplementation of water-column DP as sediment settles to the bottom and a lag between land and channel management and in-channel P availability. Storage of fine-grained sediment and sed-P in this lake-plain/bed basin is distinct from another Maumee headwater tributary with glacial-moraine controlled geomorphology. The implication is that streambank erosion, in-channel sediment accumulation, and the resultant total-dissolved-sediment P spiral differ based on geomorphic setting and drainage history.
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来源期刊
Journal of Great Lakes Research
Journal of Great Lakes Research 生物-海洋与淡水生物学
CiteScore
5.10
自引率
13.60%
发文量
178
审稿时长
6 months
期刊介绍: Published six times per year, the Journal of Great Lakes Research is multidisciplinary in its coverage, publishing manuscripts on a wide range of theoretical and applied topics in the natural science fields of biology, chemistry, physics, geology, as well as social sciences of the large lakes of the world and their watersheds. Large lakes generally are considered as those lakes which have a mean surface area of >500 km2 (see Herdendorf, C.E. 1982. Large lakes of the world. J. Great Lakes Res. 8:379-412, for examples), although smaller lakes may be considered, especially if they are very deep. We also welcome contributions on saline lakes and research on estuarine waters where the results have application to large lakes.
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