Design of a Multisensory Device for Tomato Volatile Compound Detection Based on a Mixed Metal Oxide—Electrochemical Sensor Array and Optical Reader

Author:

Meléndez Félix12ORCID,Sánchez Ramiro3ORCID,Fernández Juan Álvaro1ORCID,Belacortu Yaiza2,Bermúdez Francisco2,Arroyo Patricia1ORCID,Martín-Vertedor Daniel3ORCID,Lozano Jesús1ORCID

Affiliation:

1. Industrial Engineering School, University of Extremadura, 06006 Badajoz, Spain

2. Alianza Nanotecnología Diagnóstica ASJ S.L. (ANT), 28703 San Sebastián de los Reyes, Spain

3. Centro de Investigaciones Científicas y Tecnológicas de Extremadura (CICYTEX), 06006 Badajoz, Spain

Abstract

Insufficient control of tomato ripening before harvesting and infection by fungal pests produce large economic losses in world tomato production. Aroma is an indicative parameter of the state of maturity and quality of the tomato. This study aimed to design an electronic system (TOMATO-NOSE) consisting of an array of 12 electrochemical sensors, commercial metal oxide semiconductor sensors, an optical camera for a lateral flow reader, and a smartphone application for device control and data storage. The system was used with tomatoes in different states of ripeness and health, as well as tomatoes infected with Botrytis cinerea. The results obtained through principal component analysis of the olfactory pattern of tomatoes and the reader images show that TOMATO-NOSE is a good tool for the farmer to control tomato ripeness before harvesting and for the early detection of Botrytis cinerea.

Funder

“PLANtAR: Miniaturized monitoring sensor system for plants and agriculture” project

Center for Technological Development and Innovation of Spain

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

Reference70 articles.

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4. Distefano, M., Mauro, R.P., Page, D., Giuffrida, F., Bertin, N., and Leonardi, C. (2022). Aroma Volatiles in Tomato Fruits: The Role of Genetic, Preharvest and Post-harvest Factors. Agronomy, 12.

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