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research article

Colloid transport and distribution in the hyporheic zone

Jin, Guangqiu
•
Zhang, Zhongtian
•
Tang, Hongwu
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2019
Hydrological Processes

Colloids moving from the stream into the hyporheic zone may have a negative impact on aquatic ecosystems as they are potential contaminants or carriers of contaminants. Moreover, retained colloids in the hyporheic zone could not only reduce the exchange flux between the stream and streambed but also change the conditions of the bed, affecting the habitats for aquatic organisms. Previous studies focused on the exchange flux across the sediment–water interface, but the colloid transport processes and distribution of retained colloids in the streambed have received little attention. We conducted experiments within a laboratory flume to examine these processes in a streambed driven by bedform‐induced hyporheic flow. Retained colloids measured in the bed at the end of the experiments revealed colloid retention mainly in the shallow layer of hyporheic zone (0–5 cm below the interface). The results demonstrated significant effects of particle trapping and settling on the colloid transport and distribution in the streambed. Retention leads to the formation of a colloid‐filled shallow layer in the bed. Particle paths based on model simulations showed that colloid settling in pore water modifies the direction of colloid transport and allows the colloid particles to move more deeply in the bed.

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Type
research article
DOI
10.1002/hyp.13375
Author(s)
Jin, Guangqiu
Zhang, Zhongtian
Tang, Hongwu
Xiaoquan, Yang
Li, Ling
Barry, David Andrew  
Date Issued

2019

Published in
Hydrological Processes
Volume

33

Issue

6

Start page

932

End page

944

Subjects

Experiment

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Model

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Streambed

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Hydraulic Conductivity

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RANS

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FLUENT

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COMSOL

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Dispersivity

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Settling

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Retention

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Bedform

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Hyporheic exchange

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Colloid transport

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Colloid retention

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Colloid settling

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
ECOL  
Available on Infoscience
March 7, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/155170
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