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DOI10.1016/S0309-1708(03)00083-6
A regression approach to estimating reactive solute uptake in advective and transient storage zones of stream ecosystems
Thomas, SA; Valett, HM; Webster, JR; Mulholland, PJ
通讯作者Thomas, SA
来源期刊ADVANCES IN WATER RESOURCES
ISSN0309-1708
EISSN1872-9657
出版年2003
卷号26期号:9页码:965-976
英文摘要

A method is developed, the Regression Partitioning Method (RPM), for estimating the proportion of reactive solute uptake occurring within transient storage zones of streams. The RPM is a technique for analyzing solute addition data in which whole stream uptake (mgm(-2) d(-1)) is determined from the longitudinal pattern in plateau tracer concentrations. At one location, a time series of samples are collected that define the ’rising limb’ of the solute breakthrough curve. The y-intercept estimated by regressing a measure of reactive tracer availability (e.g. NO3-N-15:Cl ratio) and the percentage of tracer that has resided within, and returned from, the transient storage zone (i.e. hyporheic zone) was used to predict channel-specific NO3 uptake rates. Uptake within the transient storage zone of stream-derived material is calculated by difference. Several numerical steps are developed that link uptake rate estimates to first-order reaction rate constants (lambdac and lambdas, min(-1)) more commonly used to describe solute behavior in one-dimensional transport models.


The RPM was used to analyze the results of 2 stable isotope additions performed in Snake Den Branch, a small headwater stream in western North Carolina, USA. Channel-specific uptake rates (U-C) ranged from 10.6 to 23.0 ing NO3-N m(-2) d(-1) and slightly exceeded uptake in the transient storage zone (U-S), which varied from 10. 1 to 18.2 mg NO3-N m(-2) d(-1). Uptake within the transient storage zone accounted for 44-49% of the total uptake. lambdac and lambdas estimates ranged from 0.023 to 0.034 min(-1) and 0.011 to 0.024 min(-1), respectively. These processing rates correspond to solute residence times of 30-44 min and 41-90 min in the channel and storage zones, respectively. Finally, we assess the sensitivity of our approach to variation in the subsurface uptake coefficient and differing proportions of uptake occurring within the hyporheic zone. (C) 2003 Elsevier Ltd. All rights reserved.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000185236900006
WOS关键词SONORAN DESERT STREAM ; VERTICAL HYDROLOGIC EXCHANGE ; SUBSURFACE WATER EXCHANGE ; HYPORHEIC ZONE ; SURFACE-WATER ; HYDRAULIC CHARACTERISTICS ; HEADWATER STREAMS ; PHOSPHORUS UPTAKE ; MOUNTAIN STREAMS ; FOREST STREAM
WOS类目Water Resources
WOS研究方向Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/143973
作者单位(1)Virginia Tech, Dept Biol, Blacksburg, VA 24061 USA;(2)Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA
推荐引用方式
GB/T 7714
Thomas, SA,Valett, HM,Webster, JR,et al. A regression approach to estimating reactive solute uptake in advective and transient storage zones of stream ecosystems[J],2003,26(9):965-976.
APA Thomas, SA,Valett, HM,Webster, JR,&Mulholland, PJ.(2003).A regression approach to estimating reactive solute uptake in advective and transient storage zones of stream ecosystems.ADVANCES IN WATER RESOURCES,26(9),965-976.
MLA Thomas, SA,et al."A regression approach to estimating reactive solute uptake in advective and transient storage zones of stream ecosystems".ADVANCES IN WATER RESOURCES 26.9(2003):965-976.
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