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使用多匝飞行时间质谱仪“MULTUM-S II”对土壤排放的气体进行实时监测。

Real time monitoring of gases emitted from soils using a multi-turn time-of-flight mass spectrometer "MULTUM-S II".

作者信息

Anan Takahiro, Shimma Shuichi, Toma Yo, Hashidoko Yasuyuki, Hatano Ryusuke, Toyoda Michisato

机构信息

Department of Physics, Graduate School of Science, Osaka University, Japan.

出版信息

Environ Sci Process Impacts. 2014 Dec;16(12):2752-7. doi: 10.1039/c4em00339j.

Abstract

Many miniaturized mass spectrometers used for on-site analysis have been designed and developed recently utilizing a broad range of analyzer platforms. These instruments are expected to have widespread applications covering many fields of interest. In our laboratory, a miniaturized multi-turn time-of-flight (TOF) mass spectrometer "MULTUM-S II" was designed and constructed. The size and weight of the developed "MULTUM-S II" are 45 cm × 23 cm × 64 cm and 36 kg. Irrespective of this small platform, it still boasts a high mass resolution capability of more than 30,000. In this study, we attempted to carry out real-time monitoring of gaseous compounds such as N2, O2, CO2, N2O and CH4. Using conventional miniaturized mass spectrometers, CO2 and N2O cannot be detected simultaneously due to the low mass resolution inherent to these established analyzer designs. Using a new method, "GC/high resolution mass spectrometry" described in this paper, real time monitoring of gases emitted from soils can be achieved. In a soil incubation experiment, CO2 and N2O started to increase just after water supplement and these gases varied similarly during the experiment, thus showing that this improved gas analyzing system could monitor the short time response of gaseous production in soil.

摘要

近年来,人们利用多种分析器平台设计并开发了许多用于现场分析的小型质谱仪。这些仪器有望在众多感兴趣的领域得到广泛应用。在我们实验室,设计并构建了一台小型多匝飞行时间(TOF)质谱仪“MULTUM-S II”。所开发的“MULTUM-S II”的尺寸和重量分别为45厘米×23厘米×64厘米和36千克。尽管平台小巧,但它仍拥有超过30000的高质量分辨率能力。在本研究中,我们尝试对N₂、O₂、CO₂、N₂O和CH₄等气态化合物进行实时监测。使用传统的小型质谱仪,由于这些既定分析器设计固有的低质量分辨率,无法同时检测CO₂和N₂O。使用本文所述的一种新方法“气相色谱/高分辨率质谱法”,可以实现对土壤排放气体的实时监测。在一项土壤培养实验中,补水后CO₂和N₂O立即开始增加,并且在实验过程中这些气体的变化情况相似,这表明这种改进的气体分析系统能够监测土壤中气体产生的短期响应。

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