A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications
<p>An automated multiplexed pumping system (MPS) for high-frequency water chemistry measurements at multiple locations previously showed the ability to increase spatial and temporal data resolution and improve understanding of biogeochemical processes in aquatic environments and at the land...
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2018-10-01
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doaj-45ae1e4e12ef4599b6fde3b626bcdc492020-11-24T21:47:43ZengCopernicus PublicationsHydrology and Earth System Sciences1027-56061607-79382018-10-01225615562810.5194/hess-22-5615-2018A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applicationsB. M. Maxwell0F. Birgand1B. Smith2K. Aveni-Deforge3Biological and Agricultural Engineering, North Carolina State University, 3110 Faucette Drive, Raleigh, 27695, USABiological and Agricultural Engineering, North Carolina State University, 3110 Faucette Drive, Raleigh, 27695, USASungate Design Group, 905 Jones Franklin Road, Raleigh, 27606, USABiological and Agricultural Engineering, North Carolina State University, 3110 Faucette Drive, Raleigh, 27695, USA<p>An automated multiplexed pumping system (MPS) for high-frequency water chemistry measurements at multiple locations previously showed the ability to increase spatial and temporal data resolution and improve understanding of biogeochemical processes in aquatic environments and at the land–water interface. The design of the previous system precludes its use in volume-limited applications in which highly frequent measurements requiring a large sample volume would significantly affect observed processes. A small-volume MPS was designed to minimize the sample volume while still providing high-frequency data. The system was tested for cross-contamination between multiple sources, and two applications of the technology are reported. Cross-contamination from multiple sources was shown to be negligible when using recommended procedures. Short-circuiting of flow in a bioreactor was directly observed using high-frequency porewater sampling in a well network, and the small-volume MPS showed high seasonal and spatial variability of nitrate removal in stream sediments, enhancing data collected from in situ mesocosms. The results show it is possible to obtain high-frequency data in volume-limited applications. The technology is most promising at the reach or transect scale for observing porewater solute dynamics over daily timescales, with data intervals < 1 h for up to 12 locations.</p>https://www.hydrol-earth-syst-sci.net/22/5615/2018/hess-22-5615-2018.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
B. M. Maxwell F. Birgand B. Smith K. Aveni-Deforge |
spellingShingle |
B. M. Maxwell F. Birgand B. Smith K. Aveni-Deforge A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications Hydrology and Earth System Sciences |
author_facet |
B. M. Maxwell F. Birgand B. Smith K. Aveni-Deforge |
author_sort |
B. M. Maxwell |
title |
A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications |
title_short |
A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications |
title_full |
A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications |
title_fullStr |
A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications |
title_full_unstemmed |
A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications |
title_sort |
small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications |
publisher |
Copernicus Publications |
series |
Hydrology and Earth System Sciences |
issn |
1027-5606 1607-7938 |
publishDate |
2018-10-01 |
description |
<p>An automated multiplexed pumping system (MPS) for high-frequency water
chemistry measurements at multiple locations previously showed the ability to
increase spatial and temporal data resolution and improve understanding of
biogeochemical processes in aquatic environments and at the land–water
interface. The design of the previous system precludes its use in
volume-limited applications in which highly frequent measurements requiring
a large sample volume would significantly affect observed processes. A small-volume MPS was designed to minimize the sample volume while still providing high-frequency data. The system was tested for cross-contamination between
multiple sources, and two applications of the technology are reported. Cross-contamination from multiple sources was shown to be negligible when using
recommended procedures. Short-circuiting of flow in a bioreactor was directly
observed using high-frequency porewater sampling in a well network, and the
small-volume MPS showed high seasonal and spatial variability of nitrate
removal in stream sediments, enhancing data collected from in situ mesocosms.
The results show it is possible to obtain high-frequency data in
volume-limited applications. The technology is most promising at the reach or
transect scale for observing porewater solute dynamics over daily timescales, with data intervals < 1 h for up to 12 locations.</p> |
url |
https://www.hydrol-earth-syst-sci.net/22/5615/2018/hess-22-5615-2018.pdf |
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