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Sensor for the evaluation of dielectric properties of sulfur-containing heteroatomic hydrocarbon compounds in petroleum based liquids at a microfluidic scale

机译:以微流体尺度在石油基液体中含硫杂原子烃化合物的介电性质的传感器

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Desulfurization of hydrocarbons is an important step in the processing of petroleum products, which requires an accurate and robust method for the sulfur-containing component evaluation. On the other hand, sulfur-containing heteroatomic hydrocarbon additives are harmful for people and the environment. Therefore, it is advantageous to conduct laboratory tests at low volumes to reduce doses of exposure of sulfur-containing vapors to the personnel. Microfluidics is an emerging platform that provides an advantage to operate with low volumes. The microfluidic dielectric spectroscopy approach is proposed in the current contribution as a platform for determination of the concentration of polar heteroatomic components in binary mixtures. The presence of heteroatomic components in petroleum products leads to a perceptible change in the dielectric properties of the blend. This paper shows the technological aspects for the microfluidic sensor chip design. It was successfully used to determine the concentration of thiophene (as a typical sulfur-containing hydrocarbon) in gasoline. We compare the commercially available solution with the developed microfluidic sensor. We demonstrate the developed microfluidic sensor chip that has a comparable sensitivity as a macroscopic commercial measurement cell but at the microscale. It is able to operate at 10 3 times reduced volume of liquid analyte, providing stable control of the sulfur-containing additive concentration. The obtained results are intended to be applied for lab monitoring of sulfur-containing components in petroleum products.
机译:烃的脱硫是石油产品加工过程中的一个重要步骤,这需要准确和稳健的含硫组分评估方法。另一方面,含硫杂原子烃添加剂对人和环境有害。因此,有利的是在低体积下进行实验室测试,以减少对人员的含硫蒸汽的剂量。 Microfluidics是一个新兴平台,可提供低卷的优势。在目前的贡献中提出了微流体介电光谱方法作为用于测定二元混合物中极性杂原子组分浓度的平台。石油产品中杂原子成分的存在导致混合物的介电性质的可察觉变化。本文显示了微流体传感器芯片设计的技术方面。它成功地用于确定汽油中噻吩(作为含典型的含硫烃)的浓度。我们将商业上可获得的微流体传感器与开发的微流体传感器进行比较。我们展示了发育的微流体传感器芯片,其具有与宏观商业测量电池相似的敏感性,而是在微观尺寸。它能够以103倍减少液体分析物的3倍,提供含硫添加剂浓度的稳定控制。所得结果旨在用于石油产品中含硫组分的实验室监测。

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