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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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 <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 <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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