首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Advancing Terrestrial Ecosystem Science With a Novel Automated Measurement System for Sun-Induced Chlorophyll Fluorescence for Integration With Eddy Covariance Flux Networks
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Advancing Terrestrial Ecosystem Science With a Novel Automated Measurement System for Sun-Induced Chlorophyll Fluorescence for Integration With Eddy Covariance Flux Networks

机译:用新型自动化测量系统推进陆地生态系统科学,用于与涡流通量网络集成的叶绿素荧光

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Sun-induced chlorophyll fluorescence (SIF) provides critical information on the dynamics of gross primary productivity, a unique role not readily achievable using other methods. Long-term continuous SIF observations have the potential to advance terrestrial ecosystem science. Realizing this potential, however, requires synergistic implementation of SIF measurements within eddy covariance (EC) flux networks. There is a need for SIF systems that can integrate seamlessly with EC instrumentation to maximize synergistic use of obtained data. Here we introduce the Fluorescence Auto-Measurement Equipment (FAME) and protocol that fulfill such a purpose. FAME is designed specifically for plug-and-play integration with existing EC data acquisition systems. Its innovative hardware and software designs provide versatility, extensibility, autonomous operation, and ease of maintenance for acquiring SIF data of high quality and quantity. A major novel feature of FAME is its synchronized sampling of spectral irradiance and environmental variables, allowing for more precise interpretation of the SIF signal. FAME has been deployed since September 2016 at the Missouri Ozark AmeriFlux site, providing high-quality measurements even when air temperatures approached 40 °C. Results reveal that canopy SIF saturated or even slightly decreased at high light, similar to leaf-level photosynthesis. Clear diurnal hysteresis was observed: For the same light, morning SIF was higher than afternoon. Dynamic energy dissipation processes and stress-induced movements of chloroplasts and leaves may explain the observed pattern. The technology and measurement protocol introduced here advances the coordinated observation of SIF and EC fluxes and represents a step change in observational ecosystem and carbon cycle science research.
机译:Sun诱导的叶绿素荧光(SIF)提供了关于总初级生产力的动态的关键信息,使用其他方法无法容易实现的独特作用。长期持续的SIF观察结果有潜力推进陆地生态系统科学。然而,实现这种潜力需要在EDDY协方差(EC)通量网络中的SIF测量的协同实现。需要使用SIF系统与EC仪器无缝集成,以最大限度地利用获得的数据。在这里,我们介绍满足此目的的荧光自动测量设备(名称)和协议。 FAME专门用于与现有EC数据采集系统的即插即用集成。其创新的硬件和软件设计提供了多功能,可扩展性,自主操作,以及用于获取高质量和数量的SIF数据的维护易维护。名称的主要新颖特征是其同步的光谱辐照度和环境变量采样,允许更精确地解释SIF信号。自2016年9月在密苏里州欧扎克·阿米利克斯站点自2016年9月以来部署,即使空气温度接近40°C,也提供了高质量的测量。结果表明,在高光线下饱和或甚至略微降低,类似于叶级光合作用。观察到明确的昼夜滞后:对于相同的光,早晨SIF高于下午。动态能量耗散过程和叶绿体和叶子的应力诱导的运动可以解释观察到的图案。本文介绍的技术和测量协议推进了SIF和EC助焊剂的协调观察,并表示观察生态系统和碳循环科学研究的一步变迁。

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