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Measurement of Greenhouse Gas Flux from Agricultural Soils Using Static Chambers

机译:使用静态腔室测量农业土壤中的温室气体通量

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摘要

Measurement of greenhouse gas (GHG) fluxes between the soil and the atmosphere, in both managed and unmanaged ecosystems, is critical to understanding the biogeochemical drivers of climate change and to the development and evaluation of GHG mitigation strategies based on modulation of landscape management practices. The static chamber-based method described here is based on trapping gases emitted from the soil surface within a chamber and collecting samples from the chamber headspace at regular intervals for analysis by gas chromatography. Change in gas concentration over time is used to calculate flux. This method can be utilized to measure landscape-based flux of carbon dioxide, nitrous oxide, and methane, and to estimate differences between treatments or explore system dynamics over seasons or years. Infrastructure requirements are modest, but a comprehensive experimental design is essential. This method is easily deployed in the field, conforms to established guidelines, and produces data suitable to large-scale GHG emissions studies.
机译:在有管理和无管理的生态系统中,测量土壤与大气之间的温室气体(GHG)通量,对于理解气候变化的生物地球化学驱动因素以及基于景观管理实践的调节对温室气体减排策略的开发和评估都是至关重要的。这里描述的基于静态腔室的方法基于捕获从腔室内土壤表面释放的气体,并定期从腔室顶部空间收集样品,以进行气相色谱分析。气体浓度随时间的变化用于计算通量。该方法可用于测量基于景观的二氧化碳,一氧化二氮和甲烷的通量,并估计处理之间的差异或探索季节或年份的系统动态。基础设施要求不高,但是全面的实验设计至关重要。这种方法很容易在现场部署,符合既定准则,并产生适合大规模温室气体排放研究的数据。

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