Electronic Nose with Digital Gas Sensors Connected via Bluetooth to a Smartphone for Air Quality Measurements

Author:

Arroyo PatriciaORCID,Meléndez Félix,Suárez José IgnacioORCID,Herrero José LuisORCID,Rodríguez Sergio,Lozano JesúsORCID

Abstract

This paper introduces a miniaturized personal electronic nose (39 mm × 33 mm), which is managed through an app developed on a smartphone. The electronic nose (e-nose) incorporates four new generation digital gas sensors. These MOx-type sensors incorporate a microcontroller in the same package, being also smaller than the previous generation. This makes it easier to integrate them into the electronics and improves their performance. In this research, the application of the device is focused on the detection of atmospheric pollutants in order to complement the information provided by the reference stations. To validate the system, it has been tested with different concentrations of NOx including some tests specifically developed to study the behavior of the device in different humidity conditions. Finally, a mobile application has been developed to provide classification services. In this regard, a neural network has been developed, trained, and integrated into a smartphone to process the information retrieved from e-nose devices.

Funder

European Commission

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference36 articles.

1. 9 Out of 10 People Worldwide Breathe Polluted Air, but More Countries are Taking Action https://www.who.int/news-room/detail/02-05-2018-9-out-of-10-people-worldwide-breathe-polluted-air-but-more-countries-are-taking-action

2. Impact of air pollution on the burden of chronic respiratory diseases in China: time for urgent action

3. Air pollution and skin diseases: Adverse effects of airborne particulate matter on various skin diseases

4. Air Pollution and Cardiovascular Disease;Arden Pope;Curr. Probl. Cardiol.,2015

5. Characteristics and applications of small, portable gaseous air pollution monitors

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