Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response

An electrical conductivity (EC) sensor is a conductometric sensor used to measure a solution's ability to transmit electrical charges. However, EC sensing accuracy and stability are not consistent due to many factors, such as gap spacing between electrodes, concentration of the solution, and el...

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Published in:International Journal of Advances in Applied Sciences
Main Author: Zulkarnain I.W.; Abdullah W.F.H.; Halim I.S.A.; Muslan M.I.A.
Format: Article
Language:English
Published: Intelektual Pustaka Media Utama 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85215066837&doi=10.11591%2fijaas.v13.i3.pp620-627&partnerID=40&md5=50c5341bc13b1bc2bf7e41857b65f2be
id 2-s2.0-85215066837
spelling 2-s2.0-85215066837
Zulkarnain I.W.; Abdullah W.F.H.; Halim I.S.A.; Muslan M.I.A.
Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
2024
International Journal of Advances in Applied Sciences
13
3
10.11591/ijaas.v13.i3.pp620-627
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85215066837&doi=10.11591%2fijaas.v13.i3.pp620-627&partnerID=40&md5=50c5341bc13b1bc2bf7e41857b65f2be
An electrical conductivity (EC) sensor is a conductometric sensor used to measure a solution's ability to transmit electrical charges. However, EC sensing accuracy and stability are not consistent due to many factors, such as gap spacing between electrodes, concentration of the solution, and electrical biassing. This study investigates the influence of the gap spacing between electrodes, the concentration of the solution, frequency, and voltage input applied to the EC sensor electrode on EC sensor measurement and provides insights into the relationship between these parameters and the sensor's performance using the voltage divider rule which is the simpler way to measure the conductivity of the solution. From this investigation, gap spacing between the electrodes, the concentration of the solution, frequency below 50 Hz, and voltage input have been found to directly affect the EC sensor measurement. However, there is no significant change in EC sensor measurement regarding the frequency applied to graphite electrodes when the frequency is above 50 Hz. The findings of this study highlight the complex interplay between the physical setup parameters and EC sensor measurement. © 2024, Intelektual Pustaka Media Utama. All rights reserved.
Intelektual Pustaka Media Utama
22528814
English
Article
All Open Access; Gold Open Access
author Zulkarnain I.W.; Abdullah W.F.H.; Halim I.S.A.; Muslan M.I.A.
spellingShingle Zulkarnain I.W.; Abdullah W.F.H.; Halim I.S.A.; Muslan M.I.A.
Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
author_facet Zulkarnain I.W.; Abdullah W.F.H.; Halim I.S.A.; Muslan M.I.A.
author_sort Zulkarnain I.W.; Abdullah W.F.H.; Halim I.S.A.; Muslan M.I.A.
title Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
title_short Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
title_full Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
title_fullStr Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
title_full_unstemmed Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
title_sort Effect of spacing, concentration of NaCl solution, and biasing of graphite electrodes towards conductometric sensor response
publishDate 2024
container_title International Journal of Advances in Applied Sciences
container_volume 13
container_issue 3
doi_str_mv 10.11591/ijaas.v13.i3.pp620-627
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85215066837&doi=10.11591%2fijaas.v13.i3.pp620-627&partnerID=40&md5=50c5341bc13b1bc2bf7e41857b65f2be
description An electrical conductivity (EC) sensor is a conductometric sensor used to measure a solution's ability to transmit electrical charges. However, EC sensing accuracy and stability are not consistent due to many factors, such as gap spacing between electrodes, concentration of the solution, and electrical biassing. This study investigates the influence of the gap spacing between electrodes, the concentration of the solution, frequency, and voltage input applied to the EC sensor electrode on EC sensor measurement and provides insights into the relationship between these parameters and the sensor's performance using the voltage divider rule which is the simpler way to measure the conductivity of the solution. From this investigation, gap spacing between the electrodes, the concentration of the solution, frequency below 50 Hz, and voltage input have been found to directly affect the EC sensor measurement. However, there is no significant change in EC sensor measurement regarding the frequency applied to graphite electrodes when the frequency is above 50 Hz. The findings of this study highlight the complex interplay between the physical setup parameters and EC sensor measurement. © 2024, Intelektual Pustaka Media Utama. All rights reserved.
publisher Intelektual Pustaka Media Utama
issn 22528814
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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