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  4. Sub-Ocean: Subsea Dissolved Methane Measurements Using an Embedded Laser Spectrometer Technology
 
research article

Sub-Ocean: Subsea Dissolved Methane Measurements Using an Embedded Laser Spectrometer Technology

Grilli, Roberto
•
Triest, Jack
•
Chappellaz, Jerome
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August 16, 2018
Environmental Science & Technology

We present a novel instrument, the Sub-Ocean probe, allowing in situ and continuous measurements of dissolved methane in seawater. It relies on an optical feedback cavity enhanced absorption technique designed for trace gas measurements and coupled to a patent-pending sample extraction method. The considerable advantage of the instrument compared with existing ones lies in its fast response time of the order of 30 s, that makes this probe ideal for fast and continuous 3D-mapping of dissolved methane in water. It could work up to 40 MPa of external pressure, and it provides a large dynamic range, from subnmol of CH4 per liter of seawater to mmol L-1. In this work, we present laboratory calibration of the instrument, intercomparison with standard method and field results on methane detection. The good agreement with the headspace equilibration technique followed by gas-chromatography analysis supports the utility and accuracy of the instrument. A continuous 620-m depth vertical profile in the Mediterranean Sea was obtained within only 10 min, and it indicates background dissolved CH4 values between 1 and 2 nmol L-1 below the pycnocline, similar to previous observations conducted in different ocean settings. It also reveals a methane maximum at around 6 m of depth, that may reflect local production from bacterial transformation of dissolved organic matter. © 2018 American Chemical Society.

  • Details
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Type
research article
DOI
10.1021/acs.est.7b06171
Web of Science ID

WOS:000445441000035

Author(s)
Grilli, Roberto
Triest, Jack
Chappellaz, Jerome
Calzas, Michel
Desbois, Thibault
Jansson, Par
Guillerm, Christophe
Ferre, Benedicte
Lechevallier, Loic
Ledoux, Victor
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Date Issued

2018-08-16

Publisher

American Chemical Society (ACS)

Published in
Environmental Science & Technology
Volume

52

Issue

18

Start page

10543

End page

10551

Subjects

Biological materials

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Dissolution

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Extraction

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Gas chromatography

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Probes

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Seawater

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Bacterial transformation

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Continuous measurements

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Dissolved organic matters

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Equilibration techniques

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External pressures

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Gas chromatography analysis

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Laser spectrometers

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Trace gas measurement

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Methane

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dissolved organic matter

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methane

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sea water

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water

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accuracy assessment

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dissolved gas

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extraction method

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laser method

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microbial activity

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pycnocline

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seawater

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spectrometer

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trace gas

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absorption

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absorption spectroscopy

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accuracy

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Article

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bacterium transformation

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concentration (parameters)

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embedded laser spectrometry

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gas chromatography

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laser spectroscopy

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Mediterranean Sea

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optical feedback enhanced absorption spectroscopy

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reaction time

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salinity

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water temperature

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laser

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Bacteria (microorganisms)

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Lasers

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Water

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
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Available on Infoscience
November 23, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/192695
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