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Bent Fiber Sensor for Preservative Detection in Milk
Omer Galip Saracoglu1, Sekip Esat Hayber2
1Department of Electrical and Electronic Engineering, Erciyes University, Kayseri 38039, Turkey. saracog@erciyes.edu.tr.
Sensors (Basel, Switzerland)
|December 13, 2016
Summary
This study presents a novel fiber optic sensor for detecting changes in milk
Area of Science:
- Optical Sensors
- Biomedical Engineering
- Food Science
Background:
- Refractive index sensing is crucial for analyzing liquid properties.
- Plastic optical fibers offer a cost-effective sensing platform.
- Detecting milk adulteration requires sensitive and accurate methods.
Purpose of the Study:
- To develop and characterize a bent plastic optical fiber sensor.
- To assess the sensor's sensitivity to refractive index changes in milk.
- To evaluate the sensor's capability for detecting milk preservatives.
Main Methods:
- Utilizing bent plastic optical fibers with varying bending lengths.
- Measuring refractive index changes in low-fat milk samples.
- Introducing common milk preservatives (formaldehyde, hydrogen peroxide, sodium carbonate) at varying concentrations (0-14.3%).
Main Results:
- The sensor demonstrated high sensitivity, detecting refractive index changes below 0.4%.
- A strong linear correlation was observed between preservative concentration and the sensor's normalized response.
- Refractive indices ranged from 1.34550 to 1.35093 with increasing sodium carbonate concentration.
Conclusions:
- Bent plastic optical fiber sensors offer a promising approach for milk quality monitoring.
- The sensor's linearity and sensitivity enable accurate detection of adulteration.
- This technology can be applied to ensure food safety and authenticity.

