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A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening

Ethylene as an indicator for evaluating fruit ripening can be measured by very sensitive electrochemical gas sensors based on a high-resolution current produced by a bias potential applied to the electrodes. For this purpose, a measurement system for monitoring ethylene gas concentrations to evaluat...

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Autores principales: Ma, Liuzheng, Wang, Ling, Chen, Ruipeng, Chang, Keke, Wang, Shun, Hu, Xinran, Sun, Xiaohui, Lu, Zhaohui, Sun, Haifeng, Guo, Qingqian, Jiang, Min, Hu, Jiandong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4851015/
https://www.ncbi.nlm.nih.gov/pubmed/27070614
http://dx.doi.org/10.3390/s16040501
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author Ma, Liuzheng
Wang, Ling
Chen, Ruipeng
Chang, Keke
Wang, Shun
Hu, Xinran
Sun, Xiaohui
Lu, Zhaohui
Sun, Haifeng
Guo, Qingqian
Jiang, Min
Hu, Jiandong
author_facet Ma, Liuzheng
Wang, Ling
Chen, Ruipeng
Chang, Keke
Wang, Shun
Hu, Xinran
Sun, Xiaohui
Lu, Zhaohui
Sun, Haifeng
Guo, Qingqian
Jiang, Min
Hu, Jiandong
author_sort Ma, Liuzheng
collection PubMed
description Ethylene as an indicator for evaluating fruit ripening can be measured by very sensitive electrochemical gas sensors based on a high-resolution current produced by a bias potential applied to the electrodes. For this purpose, a measurement system for monitoring ethylene gas concentrations to evaluate fruit ripening by using the electrochemical ethylene sensor was successfully developed. Before the electrochemical ethylene sensor was used to measure the ethylene gas concentrations released from fruits, a calibration curve was established by the standard ethylene gases at concentrations of 2.99 ppm, 4.99 ppm, 8.01 ppm and 10 ppm, respectively, with a flow rate of 0.4 L·min(−1). From the calibration curve, the linear relationship between the responses and concentrations of ethylene gas was obtained in the range of 0–10 ppm with the correlation coefficient R(2) of 0.9976. The micropump and a novel signal conditioning circuit were implemented in this measurement, resulting in a rapid response in detecting ethylene concentrations down to 0.1 ppm in air and in under 50 s. In this experiment, three kinds of fruits—apples, pears and kiwifruits—were studied at a low concentration (under 0.8 ppm) of trace ethylene content in the air exhaled by fruits. The experimental results showed that a low cost, compact measurement system constructed by using an electrochemical ethylene sensor has a high sensitivity of 0.3907 V·ppm(−1) with a theoretical detection limit of 0.413 ppm, and is non-invasive and highly portable.
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spelling pubmed-48510152016-05-04 A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening Ma, Liuzheng Wang, Ling Chen, Ruipeng Chang, Keke Wang, Shun Hu, Xinran Sun, Xiaohui Lu, Zhaohui Sun, Haifeng Guo, Qingqian Jiang, Min Hu, Jiandong Sensors (Basel) Article Ethylene as an indicator for evaluating fruit ripening can be measured by very sensitive electrochemical gas sensors based on a high-resolution current produced by a bias potential applied to the electrodes. For this purpose, a measurement system for monitoring ethylene gas concentrations to evaluate fruit ripening by using the electrochemical ethylene sensor was successfully developed. Before the electrochemical ethylene sensor was used to measure the ethylene gas concentrations released from fruits, a calibration curve was established by the standard ethylene gases at concentrations of 2.99 ppm, 4.99 ppm, 8.01 ppm and 10 ppm, respectively, with a flow rate of 0.4 L·min(−1). From the calibration curve, the linear relationship between the responses and concentrations of ethylene gas was obtained in the range of 0–10 ppm with the correlation coefficient R(2) of 0.9976. The micropump and a novel signal conditioning circuit were implemented in this measurement, resulting in a rapid response in detecting ethylene concentrations down to 0.1 ppm in air and in under 50 s. In this experiment, three kinds of fruits—apples, pears and kiwifruits—were studied at a low concentration (under 0.8 ppm) of trace ethylene content in the air exhaled by fruits. The experimental results showed that a low cost, compact measurement system constructed by using an electrochemical ethylene sensor has a high sensitivity of 0.3907 V·ppm(−1) with a theoretical detection limit of 0.413 ppm, and is non-invasive and highly portable. MDPI 2016-04-08 /pmc/articles/PMC4851015/ /pubmed/27070614 http://dx.doi.org/10.3390/s16040501 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Liuzheng
Wang, Ling
Chen, Ruipeng
Chang, Keke
Wang, Shun
Hu, Xinran
Sun, Xiaohui
Lu, Zhaohui
Sun, Haifeng
Guo, Qingqian
Jiang, Min
Hu, Jiandong
A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening
title A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening
title_full A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening
title_fullStr A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening
title_full_unstemmed A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening
title_short A Low Cost Compact Measurement System Constructed Using a Smart Electrochemical Sensor for the Real-Time Discrimination of Fruit Ripening
title_sort low cost compact measurement system constructed using a smart electrochemical sensor for the real-time discrimination of fruit ripening
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4851015/
https://www.ncbi.nlm.nih.gov/pubmed/27070614
http://dx.doi.org/10.3390/s16040501
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