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首页> 外文期刊>Biogeosciences Discussions >Technical note: Facilitating the use of low-cost methane (CH4) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger
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Technical note: Facilitating the use of low-cost methane (CH4) sensors in flux chambers – calibration, data processing, and an open-source make-it-yourself logger

机译:技术说明:促进在磁通室中使用低成本甲烷(CH4)传感器 - 校准,数据处理和开源制作自动记录器

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摘要

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 (CH4) – 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 CH4 sensor in flux chambers. Results show that the change in relative CH4 levels can be determined at rather high accuracy in the 2–700ppm 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 CH4 in flux chambers. To facilitate such measurements, we also provide a?description for building and using an Arduino logger for CH4, carbon dioxide (CO2), relative humidity, and temperature.
机译:A?关于更好地量化温室气体通量,地图源和水槽的努力的主要瓶颈,并了解助焊剂调节是低成本和准确的测量方法的短缺。甲烷(CH4)的研究 - A?长期的温室气体在大气中迅速而不规则地增加,原因不明确,并且源极差的源水槽归因 - 遭受这种方法限制。本研究提出了用于在磁通室中使用的新校准和数据处理方法,用于在磁通室中使用的低成本CH4传感器。结果表明,相对CH4水平的变化可以在2-700ppm摩尔分数范围内以相当高的精度来确定,以适度地采用原位收集参考样品,而不连续地进入昂贵的参考仪器。这打开了在磁通室中更实惠和时间有效测量CH4的可能性。为了便于此类测量,我们还提供了一种用于建筑物的描述和使用用于CH4,二氧化碳(CO2),相对湿度和温度的Arduino记录仪的描述。

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