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利用多模干涉光纤传感器进行实时应用的乙醇汽油质量控制。

Gasohol quality control for real time applications by means of a multimode interference fiber sensor.

作者信息

Rodríguez Adolfo J Rodríguez, Baldovino-Pantaleón Oscar, Cruz Rene F Domínguez, Zamarreño Carlos R, Matías Ignacio R, May-Arrioja Daniel A

机构信息

Fiber and Integrated Optics Laboratory, Electronics Engineering Department, UAM Reynosa Rodhe, Universidad Autónoma de Tamaulipas, Carr. Reynosa-San Fernando S/N, Reynosa, Tamaulipas 88779, Mexico.

Departamento de Ingeniería Eléctrica y Electrónica, Universidad Pública de Navarra, Edif. Los Tejos, Campus Arrosadia, Pamplona 31006, Spain.

出版信息

Sensors (Basel). 2014 Sep 25;14(9):17817-28. doi: 10.3390/s140917817.

Abstract

In this work we demonstrate efficient quality control of a variety of gasoline and ethanol (gasohol) blends using a multimode interference (MMI) fiber sensor. The operational principle relies on the fact that the addition of ethanol to the gasohol blend reduces the refractive index (RI) of the gasoline. Since MMI sensors are capable of detecting small RI changes, the ethanol content of the gasohol blend is easily determined by tracking the MMI peak wavelength response. Gasohol blends with ethanol contents ranging from 0% to 50% has been clearly identified using this device, which provides a linear response with a maximum sensitivity of 0.270 nm/% EtOH. The sensor can also distinguish when water incorporated in the blend has exceeded the maximum volume tolerated by the gasohol blend, which is responsible for phase separation of the ethanol and gasoline and could cause serious engine failures. Since the MMI sensor is straightforward to fabricate and does not require any special coating it is a cost effective solution for real time and in-situ monitoring of the quality of gasohol blends.

摘要

在这项工作中,我们展示了使用多模干涉(MMI)光纤传感器对多种汽油和乙醇(汽油醇)混合物进行高效质量控制。其工作原理基于这样一个事实:向汽油醇混合物中添加乙醇会降低汽油的折射率(RI)。由于MMI传感器能够检测到微小的RI变化,通过跟踪MMI峰值波长响应,就能轻松确定汽油醇混合物中的乙醇含量。使用该设备已清晰识别出乙醇含量在0%至50%范围内的汽油醇混合物,其提供线性响应,最大灵敏度为0.270 nm/%乙醇。该传感器还能区分混合物中掺入的水何时超过了汽油醇混合物所能耐受的最大体积,这会导致乙醇和汽油发生相分离,并可能引发严重的发动机故障。由于MMI传感器制造简单且不需要任何特殊涂层,它是实时原位监测汽油醇混合物质量的一种经济有效的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7354/4208251/e06286e34858/sensors-14-17817f1.jpg

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