Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye

In electrocoagulation, the gas bubbles develop as bubble nuclei, grow in size, break off from the electrode surface and rise in the liquid. Unfortunately, over time, the gas bubbles tend to adhere and accumulate on the electrode surface, deactivate the parts of the electrode surface that reduce the...

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Published in:Science, Engineering and Health Studies
Main Author: Simbuluk R.A.; Niza N.M.
Format: Article
Language:English
Published: Silpakorn University 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192934837&partnerID=40&md5=ab4823de8ee9d3e2107d6efbac38eb7c
id 2-s2.0-85192934837
spelling 2-s2.0-85192934837
Simbuluk R.A.; Niza N.M.
Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
2023
Science, Engineering and Health Studies
17


https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192934837&partnerID=40&md5=ab4823de8ee9d3e2107d6efbac38eb7c
In electrocoagulation, the gas bubbles develop as bubble nuclei, grow in size, break off from the electrode surface and rise in the liquid. Unfortunately, over time, the gas bubbles tend to adhere and accumulate on the electrode surface, deactivate the parts of the electrode surface that reduce the mass transfer of ions. This paper aimed to investigate the feasibility of electrocoagulation with enhanced flocculation-flotation to remove color from synthetic dye. Vibration of plates was utilized in electrocoagulation treatment, with the variables studied including pH (pH 5 and pH 9), vibration intensity (1.5 – 3.5 Volts), current intensity (0.5 – 2.5 A) and operating time (15 – 60 min). From the results, the optimum color removal percentage was 74.76%, achieved at a pH of 9 with optimum vibration and current intensities of 2.5 V and 2.5 A, respectively. For the kinetic study, the rate obtained for the highest R2 value was the first-order reaction with a rate constant of 0.0037 min-1 at acidic pH and 0.0022 min-1 at alkaline pH. The vibration of plates enhanced the rate of coagulant ions as well as bubbles dispersion during the treatment due to the oscillation of plates, which generated a stirring mechanism around the electrode plates. © 2023 Silpakorn University. All rights reserved.
Silpakorn University
26300087
English
Article

author Simbuluk R.A.; Niza N.M.
spellingShingle Simbuluk R.A.; Niza N.M.
Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
author_facet Simbuluk R.A.; Niza N.M.
author_sort Simbuluk R.A.; Niza N.M.
title Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
title_short Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
title_full Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
title_fullStr Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
title_full_unstemmed Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
title_sort Feasibility and kinetic study of electrocoagulation with enhanced flocculation-flotation in removal of color from synthetic dye
publishDate 2023
container_title Science, Engineering and Health Studies
container_volume 17
container_issue
doi_str_mv
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192934837&partnerID=40&md5=ab4823de8ee9d3e2107d6efbac38eb7c
description In electrocoagulation, the gas bubbles develop as bubble nuclei, grow in size, break off from the electrode surface and rise in the liquid. Unfortunately, over time, the gas bubbles tend to adhere and accumulate on the electrode surface, deactivate the parts of the electrode surface that reduce the mass transfer of ions. This paper aimed to investigate the feasibility of electrocoagulation with enhanced flocculation-flotation to remove color from synthetic dye. Vibration of plates was utilized in electrocoagulation treatment, with the variables studied including pH (pH 5 and pH 9), vibration intensity (1.5 – 3.5 Volts), current intensity (0.5 – 2.5 A) and operating time (15 – 60 min). From the results, the optimum color removal percentage was 74.76%, achieved at a pH of 9 with optimum vibration and current intensities of 2.5 V and 2.5 A, respectively. For the kinetic study, the rate obtained for the highest R2 value was the first-order reaction with a rate constant of 0.0037 min-1 at acidic pH and 0.0022 min-1 at alkaline pH. The vibration of plates enhanced the rate of coagulant ions as well as bubbles dispersion during the treatment due to the oscillation of plates, which generated a stirring mechanism around the electrode plates. © 2023 Silpakorn University. All rights reserved.
publisher Silpakorn University
issn 26300087
language English
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