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Membrane Based Measurement Technology for in situ Monitoring of Gases in Soil

机译:基于膜的土壤中气体监测技术

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摘要

The representative measurement of gas concentration and fluxes in heterogeneous soils is one of the current challenges when analyzing the interactions of biogeochemical processes in soils and global change. Furthermore, recent research projects on CO2-sequestration have an urgent need of CO2-monitoring networks. Therefore, a measurement method based on selective permeation of gases through tubular membranes has been developed. Combining the specific permeation rates of gas components for a membrane and Dalton's principle, the gas concentration (or partial pressure) can be determined by the measurement of physical quantities (pressure or volume) only. Due to the comparatively small permeation constants of membranes, the influence of the sensor on its surrounding area can be neglected. The design of the sensor membranes can be adapted to the spatial scale from the bench scale to the field scale. The sensitive area for the measurement can be optimized to obtain representative results. Furthermore, a continuous time-averaged measurement is possible where the time for averaging is simply controlled by the wall-thickness of the membrane used. The measuring method is demonstrated for continuous monitoring of O2 and CO2 inside of a sand filled Lysimeter. Using three sensor planes inside the sand pack, which were installed normal to the gas flow direction and a reference measurement system, we demonstrate the accuracy of the gas-detection for different flux-based boundary conditions.
机译:在分析土壤中生物地球化学过程与全球变化之间的相互作用时,非均质土壤中气体浓度和通量的代表性测量是当前的挑战之一。此外,有关二氧化碳封存的最新研究项目迫切需要二氧化碳监测网络。因此,已经开发出基于气体选择性地透过管状膜的测量方法。结合膜中气体组分的特定渗透率和道尔顿原理,只能通过测量物理量(压力或体积)来确定气体浓度(或分压)。由于膜的渗透常数比较小,因此可以忽略传感器对其周围区域的影响。传感器膜片的设计可以适应从实验室规模到现场规模的空间规模。可以优化测量的敏感区域以获得代表性的结果。此外,连续时间平均测量是可能的,其中平均时间仅通过所用膜的壁厚来控制。演示了该测量方法可用于连续监测充满沙子的测渗仪内部的O2和CO2。使用沙包内部的三个传感器平面(垂直于气体流动方向安装)和参考测量系统,我们展示了在基于通量的不同边界条件下气体检测的准确性。

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