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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Large-volume constant-concentration sampling technique coupling with surface-enhanced Raman spectroscopy for rapid on-site gas analysis
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Large-volume constant-concentration sampling technique coupling with surface-enhanced Raman spectroscopy for rapid on-site gas analysis

机译:大容量恒定采样技术与表面增强拉曼光谱耦合,用于快速现场气体分析

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In this work, a portable large-volume constant-concentration (LVCC) sampling technique coupling with surface enhanced Raman spectroscopy (SERS) was developed for the rapid on-site gas analysis based on suitable derivatization methods. LVCC sampling technique mainly consisted of a specially designed sampling cell including the rigid sample container and flexible sampling bag, and an absorption-derivatization module with a portable pump and a gas flowmeter. LVCC sampling technique allowed large, alterable and well-controlled sampling volume, which kept the concentration of gas target in headspace phase constant during the entire sampling process and made the sampling result more representative. Moreover, absorption and derivatization of gas target during LVCC sampling process were efficiently merged in one step using bromine-thiourea and OPA-NH4+ strategy for ethylene and SO2 respectively, which made LVCC sampling technique conveniently adapted to consequent SERS analysis. Finally, a new LVCC sampling-SERS method was developed and successfully applied for rapid analysis of trace ethylene and SO2 from fruits. It was satisfied that trace ethylene and SO2 from real fruit samples could be actually and accurately quantified by this method. The minor concentration fluctuations of ethylene and SO2 during the entire LVCC sampling process were proved to be <4.3% and 2.1% respectively. Good recoveries for ethylene and sulfur dioxide from fruit samples were achieved in range of 95.0-101% and 97.0-104% respectively. It is expected that portable LVCC sampling technique would pave the way for rapid on-site analysis of accurate concentrations of trace gas targets from real samples by SERS. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,为基于合适的衍生化方法的快速现场气体分析开发了一种与表面增强拉曼光谱(SERS)的便携式大容量常数(LVCC)采样技术。 LVCC采样技术主要由特殊设计的采样电池组成,包括刚性样品容器和柔性采样袋,以及带便携式泵和气体流量计的吸收 - 衍生模块。 LVCC采样技术允许大,可变的可更换且受控的采样体积,其在整个采样过程中使页空相位常数的气体目标浓度保持并使采样结果更具代表性。此外,在使用溴 - 硫脲和OPA-NH4 +的乙烯和SO 2的乙烯和OPA-NH4 +策略中,在一步中有效合并了LVCC采样过程中气体靶的吸收和衍生化,这使得LVCC采样技术方便地适应随后的SERS分析。最后,开发了一种新的LVCC采样 - SERS方法,并成功地应用于果实的痕量乙烯和SO2的快速分析。通过这种方法实际上可以准确地量化真实水果样品的痕量乙烯和SO2满意。证明了在整个LVCC采样过程中乙烯和SO2的少量浓度波动分别为<4.3%和2.1%。水果样品的乙烯和二氧化硫的良好回收率分别为95.0-101%和97.0-104%。预计便携式LVCC采样技术将为快速的现场分析铺平道路,从SERS的真实样品中的准确浓度进行快速现场分析。 (c)2017年Elsevier B.V.保留所有权利。

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