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Riparian biogeochemical hot moments induced by stream fluctuations

Publication ,  Journal Article
Gu, C; Anderson, W; Maggi, F
Published in: Water Resources Research
October 8, 2012

[1] Hyporheic exchanges in riparian zones induced by stream stage fluctuations, referred to as bank storage, can influence contaminant transport and transformation when mixing of groundwater and surface waters with distinct chemical signatures occur, which might lead to a high biochemical activity. The effect of bank storage on nutrient transport was analyzed here using a two-dimensional, variably saturated and multispecies reactive transport model, which accounted for the water flow and solute transport and reactions within riparian zones. After verification with field observations, our model demonstrated that high biogeochemical activities occurred at the near-stream riparian zone during stage fluctuation, a process referred to as bank storage hot moment (BSHM). We used Monte Carlo simulations to study the uncertainty of BSHM and related nutrient dynamics to biogeochemical and hydrological factors. The results indicated that stream fluctuations can lead to maximum bank storage volume ranging from 0 to 259 m3 m-1 of stream linear length (median = 9.7 m3 and SD = 53.2 m3). Taking denitrification as an example, BSHM can lead to considerable NO-3 removal with a median removal rate of 2.1 g d-1 and SD of 17.2 g d-1 per meter of stream linear length. The NO -3 uptake velocity (median = 2.7 x 10-5 and SD = 2.4 × 10-4 mmin-1) was comparable to that of in-stream transient storage from the literature. This result suggests that BSHM may be a significant process contributing to the nutrient budget at the ecosystem level. Finally, a theoretical framework representing the coupled hydrobiogeochemical controls on riparian hot spots was developed to help predicting when BSHM can become important in a particular stream. © 2012. American Geophysical Union.

Duke Scholars

Published In

Water Resources Research

DOI

ISSN

0043-1397

Publication Date

October 8, 2012

Volume

48

Issue

9

Related Subject Headings

  • Environmental Engineering
  • 4011 Environmental engineering
  • 4005 Civil engineering
  • 3707 Hydrology
  • 0907 Environmental Engineering
  • 0905 Civil Engineering
  • 0406 Physical Geography and Environmental Geoscience
 

Citation

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MLA
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Gu, C., Anderson, W., & Maggi, F. (2012). Riparian biogeochemical hot moments induced by stream fluctuations. Water Resources Research, 48(9). https://doi.org/10.1029/2011WR011720
Gu, C., W. Anderson, and F. Maggi. “Riparian biogeochemical hot moments induced by stream fluctuations.” Water Resources Research 48, no. 9 (October 8, 2012). https://doi.org/10.1029/2011WR011720.
Gu C, Anderson W, Maggi F. Riparian biogeochemical hot moments induced by stream fluctuations. Water Resources Research. 2012 Oct 8;48(9).
Gu, C., et al. “Riparian biogeochemical hot moments induced by stream fluctuations.” Water Resources Research, vol. 48, no. 9, Oct. 2012. Scopus, doi:10.1029/2011WR011720.
Gu C, Anderson W, Maggi F. Riparian biogeochemical hot moments induced by stream fluctuations. Water Resources Research. 2012 Oct 8;48(9).
Journal cover image

Published In

Water Resources Research

DOI

ISSN

0043-1397

Publication Date

October 8, 2012

Volume

48

Issue

9

Related Subject Headings

  • Environmental Engineering
  • 4011 Environmental engineering
  • 4005 Civil engineering
  • 3707 Hydrology
  • 0907 Environmental Engineering
  • 0905 Civil Engineering
  • 0406 Physical Geography and Environmental Geoscience