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基于顶空-离子淌度质谱的海水不同石油衍生产品检测与鉴别新方法。

A Novel Method Based on Headspace-Ion Mobility Spectrometry for the Detection and Discrimination of Different Petroleum Derived Products in Seawater.

机构信息

Department of Analytical Chemistry, Faculty of Sciences, IVAGRO, University of Cadiz, 11510 Cadiz, Spain.

出版信息

Sensors (Basel). 2021 Mar 19;21(6):2151. doi: 10.3390/s21062151.

Abstract

The objective of the present study is to develop an optimized method where headspace-ion mobility spectrometry is applied for the detection and discrimination between four petroleum-derived products (PDPs) in water. A Box-Behnken design with a response surface methodology was used, and five variables (incubation temperature, incubation time, agitation, sample volume, and injection volume) with influences on the ion mobility spectrometry (IMS) response were optimized. An IMS detector was used as a multiple sensor device, in which, each drift time acts as a specific sensor. In this way, the total intensity at each drift time is equivalent to multiple sensor signals. According to our results, 2.5 mL of sample incubated for 5 min at 31 °C, agitated at 750 rpm, and with an injection volume of 0.91 mL were the optimal conditions for successful detection and discrimination of the PDPs. The developed method has exhibited good intermediate precision and repeatability with a coefficient of variation lower than 5%, (RSD (Relative Standard Deviation): 2.35% and 3.09%, respectively). Subsequently, the method was applied in the context of the detection and discrimination of petroleum-derived products added to water samples at low concentration levels (2 µL·L). Finally, the new method was applied to determine the presence of petroleum-derived products in seawater samples.

摘要

本研究的目的是开发一种优化方法,其中顶空离子迁移谱法用于检测和区分水中的四种石油衍生产品(PDP)。采用 Box-Behnken 设计和响应面法,优化了五个变量(孵育温度、孵育时间、搅拌、样品体积和进样体积)对离子迁移谱(IMS)响应的影响。IMS 检测器用作多传感器设备,其中每个漂移时间充当特定传感器。通过这种方式,每个漂移时间的总强度相当于多个传感器信号。根据我们的结果,在 31°C 下孵育 5 分钟、以 750rpm 搅拌、进样量为 0.91mL 的 2.5mL 样品是成功检测和区分 PDP 的最佳条件。所开发的方法表现出良好的中间精密度和重复性,变异系数低于 5%(相对标准偏差(RSD)分别为 2.35%和 3.09%)。随后,该方法应用于检测和区分低浓度(2µL·L)添加到水样中的石油衍生产品。最后,该新方法应用于确定海水中石油衍生产品的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69c2/8003363/beba9f6d6536/sensors-21-02151-g001.jpg

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