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Technical note: Greenhouse gas flux studies: an automated online system for gas emission measurements in aquatic environments

机译:技术说明:温室气体通量研究:水产环境中的气体排放测量自动化在线系统

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Aquatic ecosystems are major sources of greenhouse gases (GHGs). Robust measurements of natural GHG emissions are vital for evaluating regional to global carbon budgets and for assessing climate feedbacks of natural emissions to improve climate models. Diffusive and ebullitive (bubble) transport are two major pathways of gas release?from surface waters. To capture the high temporal variability of these fluxes in a well-defined footprint, we designed and built an inexpensive device that includes?an easily mobile diffusive flux chamber and a bubble counter all in one. In addition to automatically collecting gas samples for subsequent various analyses in the laboratory, this device also utilized a low-cost carbon dioxide (CO2) sensor (SenseAir, Sweden) and methane (CH4) sensor (Figaro, Japan) to measure GHG fluxes. Each of the devices was equipped with an XBee module to enable local radio communication (DigiMesh network) for time synchronization and data readout at a server controller station on the lakeshore. The software of this server controller was operated on a low-cost computer (Raspberry Pi), which has a 3G connection for remote control and monitor functions from anywhere in the world. This study shows the potential of a low-cost automatic sensor network system for studying GHG fluxes on lakes in remote locations.
机译:水生生态系统是温室气体(GHG)的主要来源。自然温室气体排放的强大测量对于评估区域到全球碳预算至关重要,以及评估自然排放的气候反馈,以改善气候模型。扩散和沸腾(泡沫)运输是气体释放的两个主要途径?来自表面水域。为了在明确的占地面积中捕获这些通量的高时间变化,我们设计并构建了廉价的设备,包括易于移动的扩散磁通室和一体的气泡柜台。除了自动收集用于随后在实验室中的各种分析的随后进行各种分析之外,该装置还利用了低成本的二氧化碳(CO2)传感器(SenseAIR,瑞典)和甲烷(CH4)传感器(Figaro,Japan)来测量温室气体通量。每个设备都配备有Xbee模块,以使本地无线电通信(Digimesh网络)能够在LakeShore的服务器控制器站处进行时间同步和数据读数。该服务器控制器的软件在低成本计算机(Raspberry PI)上运行,该计算机具有3G连接,可用于来自世界任何地方的远程控制和监控功能。本研究显示了用于在远程位置的湖泊上研究GHG通量的低成本自动传感器网络系统的潜力。

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