Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger

<p>A major bottleneck regarding the efforts to better quantify greenhouse gas fluxes, map sources and sinks, and understand flux regulation is the shortage of low-cost and accurate-enough measurement methods. The studies of methane (<span class="inline-formula">CH<sub>4&l...

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Main Authors: D. Bastviken, J. Nygren, J. Schenk, R. Parellada Massana, N. T. Duc
Format: Article
Language:English
Published: Copernicus Publications 2020-07-01
Series:Biogeosciences
Online Access:https://www.biogeosciences.net/17/3659/2020/bg-17-3659-2020.pdf
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spelling doaj-f3cb6a3605754207b1ad3ac0f96ddd022020-11-25T02:59:58ZengCopernicus PublicationsBiogeosciences1726-41701726-41892020-07-01173659366710.5194/bg-17-3659-2020Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself loggerD. BastvikenJ. NygrenJ. SchenkR. Parellada MassanaN. T. Duc<p>A major bottleneck regarding the efforts to better quantify greenhouse gas fluxes, map sources and sinks, and understand flux regulation is the shortage of low-cost and accurate-enough measurement methods. The studies of methane (<span class="inline-formula">CH<sub>4</sub></span>) – a long-lived greenhouse gas increasing rapidly but irregularly in the atmosphere for unclear reasons, and with poorly understood source–sink attribution – suffer from such method limitations. This study presents new calibration and data processing approaches for use of a low-cost <span class="inline-formula">CH<sub>4</sub></span> sensor in flux chambers. Results show that the change in relative <span class="inline-formula">CH<sub>4</sub></span> levels can be determined at rather high accuracy in the 2–700&thinsp;<span class="inline-formula">ppm</span> mole fraction range, with modest efforts of collecting reference samples in situ and without continuous access to expensive reference instruments. This opens possibilities for more affordable and time-effective measurements of <span class="inline-formula">CH<sub>4</sub></span> in flux chambers. To facilitate such measurements, we also provide a description for building and using an Arduino logger for <span class="inline-formula">CH<sub>4</sub></span>, carbon dioxide (<span class="inline-formula">CO<sub>2</sub></span>), relative humidity, and temperature.</p>https://www.biogeosciences.net/17/3659/2020/bg-17-3659-2020.pdf
collection DOAJ
language English
format Article
sources DOAJ
author D. Bastviken
J. Nygren
J. Schenk
R. Parellada Massana
N. T. Duc
spellingShingle D. Bastviken
J. Nygren
J. Schenk
R. Parellada Massana
N. T. Duc
Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
Biogeosciences
author_facet D. Bastviken
J. Nygren
J. Schenk
R. Parellada Massana
N. T. Duc
author_sort D. Bastviken
title Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
title_short Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
title_full Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
title_fullStr Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
title_full_unstemmed Technical note: Facilitating the use of low-cost methane (CH<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
title_sort technical note: facilitating the use of low-cost methane (ch<sub>4</sub>) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
publisher Copernicus Publications
series Biogeosciences
issn 1726-4170
1726-4189
publishDate 2020-07-01
description <p>A major bottleneck regarding the efforts to better quantify greenhouse gas fluxes, map sources and sinks, and understand flux regulation is the shortage of low-cost and accurate-enough measurement methods. The studies of methane (<span class="inline-formula">CH<sub>4</sub></span>) – a long-lived greenhouse gas increasing rapidly but irregularly in the atmosphere for unclear reasons, and with poorly understood source–sink attribution – suffer from such method limitations. This study presents new calibration and data processing approaches for use of a low-cost <span class="inline-formula">CH<sub>4</sub></span> sensor in flux chambers. Results show that the change in relative <span class="inline-formula">CH<sub>4</sub></span> levels can be determined at rather high accuracy in the 2–700&thinsp;<span class="inline-formula">ppm</span> mole fraction range, with modest efforts of collecting reference samples in situ and without continuous access to expensive reference instruments. This opens possibilities for more affordable and time-effective measurements of <span class="inline-formula">CH<sub>4</sub></span> in flux chambers. To facilitate such measurements, we also provide a description for building and using an Arduino logger for <span class="inline-formula">CH<sub>4</sub></span>, carbon dioxide (<span class="inline-formula">CO<sub>2</sub></span>), relative humidity, and temperature.</p>
url https://www.biogeosciences.net/17/3659/2020/bg-17-3659-2020.pdf
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