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首页> 外文期刊>European Journal of Soil Science >Diffusion probe for gas sampling in undisturbed soil
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Diffusion probe for gas sampling in undisturbed soil

机译:扩散探针,用于原状土壤中的气体采样

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摘要

Soil-atmosphere fluxes of trace gases such as methane (CH4) and nitrous oxide (N2O) are determined by complex interactions between biological activity and soil conditions. Soil gas concentration profiles may, in combination with other information about soil conditions, help us to understand emission controls. This paper describes a simple and robust diffusion probe for soil gas sampling as part of flux monitoring programmes. It can be deployed with minimum disturbance of in-situ conditions, and also at sites with a high or fluctuating water table. Separate probes are used for each sampling depth, in this study ranging from 5 to 100 cm. The probe has a 10-ml diffusion cell with a 3-mm diameter opening covered by a 0.5-mm silicone membrane. At sampling the diffusion cell is flushed with 10 ml N-2 containing 50 mu l l(-1) ethylene (C2H4) as a tracer; tracer recovery is used to calculate sample concentrations. Ethylene is immediately removed by flushing with unamended N-2. Equations are presented to correct for dead volumes of connecting tubing and valves. Laboratory tests evaluated recovery of CH4, N2O and carbon dioxide (CO2), removal of C2H4 and equilibration of CH4, N2O and CO2 in air and water. Field tests on peat soils used for grazing showed soil gas concentrations of CH4 and N2O as influenced by topography, site conditions and season. The applicability of the diffusion probe for trace gas monitoring is discussed
机译:甲烷(CH4)和一氧化二氮(N2O)等微量气体在土壤中的大气通量是由生物活性和土壤条件之间的复杂相互作用决定的。土壤气体浓度曲线可能与其他有关土壤状况的信息结合在一起,有助于我们了解排放控制。本文介绍了一种简单而坚固的土壤气体采样扩散探头,作为通量监测程序的一部分。它可以在对现场条件造成最小干扰的情况下进行部署,也可以在地下水位较高或波动的位置进行部署。对于每个采样深度,使用单独的探头,在本研究中范围为5到100 cm。该探头有一个10 ml的扩散池,其直径为3 mm的开口被0.5 mm的硅树脂膜覆盖。采样时,将扩散池用10 ml N-2冲洗,其中含有50μl-1(-1)乙烯(C2H4)作为示踪剂。示踪剂回收率用于计算样品浓度。立即用未改性的N-2冲洗除去乙烯。给出方程式以校正连接管和阀门的死体积。实验室测试评估了空气和水中CH4,N2O和二氧化碳(CO2)的回收,C2H4的去除以及CH4,N2O和CO2的平衡。在用于放牧的泥炭土壤上的现场测试表明,土壤CH4和N2O的浓度受地形,场地条件和季节的影响。讨论了扩散探头在痕量气体监测中的适用性

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