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用于量化土壤气体通量的静态箱样本采集的便携式自动化

Portable Automation of Static Chamber Sample Collection for Quantifying Soil Gas Flux.

作者信息

Davis Morgan P, Groh Tyler A, Parkin Timothy B, Williams Ryan J, Isenhart Thomas M, Hofmockel Kirsten S

出版信息

J Environ Qual. 2018 Mar;47(2):270-275. doi: 10.2134/jeq2017.10.0387.

Abstract

Quantification of soil gas flux using the static chamber method is labor intensive. The number of chambers that can be sampled is limited by the spacing between chambers and the availability of trained research technicians. An automated system for collecting gas samples from chambers in the field would eliminate the need for personnel to return to the chamber during a flux measurement period and would allow a single technician to sample multiple chambers simultaneously. This study describes hamber utomated ampling quipment (Flux) to collect and store chamber headspace gas samples at assigned time points for the measurement of soil gas flux. The FluxCASE design and operation is described, and the accuracy and precision of the FluxCASE system is evaluated. In laboratory measurements of nitrous oxide (NO), carbon dioxide (CO), and methane (CH) concentrations of a standardized gas mixture, coefficients of variation associated with automated and manual sample collection were comparable, indicating no loss of precision. In the field, soil gas fluxes measured from FluxCASEs were in agreement with manual sampling for both NO and CO. Slopes of regression equations were 1.01 for CO and 0.97 for NO. The 95% confidence limits of the slopes of the regression lines included the value of one, indicating no bias. Additionally, an expense analysis found a cost recovery ranging from 0.6 to 2.2 yr. Implementing the FluxCASE system is an alternative to improve the efficiency of the static chamber method for measuring soil gas flux while maintaining the accuracy and precision of manual sampling.

摘要

使用静态箱法对土壤气体通量进行量化需要耗费大量人力。能够采样的箱子数量受到箱子间距和训练有素的研究技术人员数量的限制。一种用于在野外从箱子中采集气体样本的自动化系统,将消除在通量测量期间人员返回箱子的需求,并允许一名技术人员同时对多个箱子进行采样。本研究描述了用于在指定时间点收集和存储箱内顶空气体样本以测量土壤气体通量的箱式自动采样设备(FluxCASE)。介绍了FluxCASE的设计和操作,并评估了FluxCASE系统的准确性和精密度。在对标准气体混合物中的一氧化二氮(N₂O)、二氧化碳(CO₂)和甲烷(CH₄)浓度进行实验室测量时,与自动和手动采样相关的变异系数相当,表明精密度没有损失。在野外,从FluxCASE测量的土壤气体通量与N₂O和CO₂的手动采样结果一致。CO₂回归方程的斜率为1.01,N₂O为0.97。回归线斜率的95%置信区间包括1的值,表明没有偏差。此外,一项费用分析发现成本回收时间为0.6至2.2年。实施FluxCASE系统是提高静态箱法测量土壤气体通量效率的一种替代方法,同时保持手动采样的准确性和精密度。

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