Max-Planck-Institute for Biogeochemistry, Department of Biogeochemical Processes, Hans-Knöll-Str. 10, 07743 Jena, Germany.
University of Basel, Department of Environmental Sciences - Botany, Schoenbeinstrasse 6, Basel, Switzerland.
Tree Physiol. 2021 Sep 10;41(9):1767-1780. doi: 10.1093/treephys/tpab022.
Tree stem CO2 efflux is an important component of ecosystem carbon fluxes and has been the focus of many studies. While CO2 efflux can easily be measured, a growing number of studies have shown that it is not identical with actual in situ respiration. Complementing measurements of CO2 flux with simultaneous measurements of O2 flux provides an additional proxy for respiration, and the combination of both fluxes can potentially help getting closer to actual measures of respiratory fluxes. To date, however, the technical challenge to measure relatively small changes in O2 concentration against its high atmospheric background has prevented routine O2 measurements in field applications. Here, we present a new and low-cost field-tested device for autonomous real-time and quasi-continuous long-term measurements of stem respiration by combining CO2 (NDIR-based) and O2 (quenching-based) sensors in a tree stem chamber. Our device operates as a cyclic-closed system and measures changes in both CO2 and O2 concentration within the chamber over time. The device is battery powered with a >1-week power independence, and data acquisition is conveniently achieved by an internal logger. Results from both field and laboratory tests document that our sensors provide reproducible measurements of CO2 and O2 exchange fluxes under varying environmental conditions.
树木茎干 CO2 释放是生态系统碳通量的一个重要组成部分,也是许多研究的重点。虽然 CO2 释放很容易测量,但越来越多的研究表明,它与实际的原位呼吸并不完全相同。用同时测量 O2 通量来补充 CO2 通量的测量,可以为呼吸提供一个额外的替代指标,而这两种通量的结合可能有助于更接近实际的呼吸通量测量。然而,到目前为止,测量相对于其高大气背景的 O2 浓度的微小变化的技术挑战,阻止了在野外应用中进行常规的 O2 测量。在这里,我们提出了一种新的、经过现场测试的低成本设备,用于通过在树干室中结合 CO2(基于 NDIR)和 O2(基于猝灭)传感器来进行自主实时和准连续长期的茎干呼吸测量。我们的设备作为一个循环封闭系统运行,随着时间的推移测量室内 CO2 和 O2 浓度的变化。该设备由电池供电,具有超过一周的独立供电能力,并且通过内部记录器方便地实现数据采集。来自现场和实验室测试的结果证明,我们的传感器在不同的环境条件下提供了可重复的 CO2 和 O2 交换通量测量。