Issue 4, 2023

Development of an automated colorimeter controlled by Raspberry Pi4

Abstract

A low-cost new instrument to carry out automated colorimetric analysis has been developed. The device consists of a carousel sampler, built by a 3D-printer, and a Raspberry Pi4-controlled signal measurement module based on the RGBC (red, green, blue and clear) responses of a TCS34725 color light-to-digital converter with IR filter. The device has been tested with calibration standards of different food dyes (Tartrazine, Red Allure AC and Brilliant Blue FCF) and three food samples containing one of each food dye. The new device provides R2 > 0.995 and a LOD of 1.1, 1.4 and 0.1 μmol L−1 for each food dye, respectively. The results are statistically comparable to those obtained with a conventional benchtop spectrophotometer. The proposed device achieves a reduction in sample and waste volume and in analysis time, minimizes the use of energy, and allows in situ measurements, being an automated method it is safer for operators in comparison to the reference method, yielding similar analytical results and following the principles of green analytical chemistry.

Graphical abstract: Development of an automated colorimeter controlled by Raspberry Pi4

Supplementary files

Article information

Article type
Paper
Submitted
21 Sep 2022
Accepted
02 Jan 2023
First published
03 Jan 2023

Anal. Methods, 2023,15, 512-518

Development of an automated colorimeter controlled by Raspberry Pi4

K. U. Antela, R. Sáez-Hernández, M. L. Cervera, Á. Morales-Rubio and M. J. Luque, Anal. Methods, 2023, 15, 512 DOI: 10.1039/D2AY01532C

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