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Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment

In-situ chemical oxidation (ISCO) is a commonly used method for the remediation of environmental contaminants in groundwater systems. However, traditional ISCO methods are associated with several limitations, including safety and handling concerns, rebound of groundwater contaminants, and difficulty...

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Autores principales: Lamssali, Mehdi, Luster-Teasley, Stephanie, Deng, Dongyang, Sirelkhatim, Nafisa, Doan, Yen, Kabir, Mosarrat Samiha, Zeng, Qingan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10585301/
https://www.ncbi.nlm.nih.gov/pubmed/37867834
http://dx.doi.org/10.1016/j.heliyon.2023.e20858
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author Lamssali, Mehdi
Luster-Teasley, Stephanie
Deng, Dongyang
Sirelkhatim, Nafisa
Doan, Yen
Kabir, Mosarrat Samiha
Zeng, Qingan
author_facet Lamssali, Mehdi
Luster-Teasley, Stephanie
Deng, Dongyang
Sirelkhatim, Nafisa
Doan, Yen
Kabir, Mosarrat Samiha
Zeng, Qingan
author_sort Lamssali, Mehdi
collection PubMed
description In-situ chemical oxidation (ISCO) is a commonly used method for the remediation of environmental contaminants in groundwater systems. However, traditional ISCO methods are associated with several limitations, including safety and handling concerns, rebound of groundwater contaminants, and difficulty in reaching all areas of contamination. To overcome these limitations, novel Controlled-Release Biodegradable Polymer (CRBP) pellets containing the oxidant KMnO₄ were designed and tested. The CRBP pellets were encapsulated in Polyvinyl Acetate (CRBP-PVAc) and Polyethylene Oxide (CRBP-PEO) at different weight percentages, baking temperatures, and time. Their release efficiency was tested in water, soil, and water and soil mixture media. Results showed that CRBP-PVAc pellets with 60 % KMnO₄ and baked at 120 °C for 2 min had the highest release percentage and rate across different conditions tested. Natural organic matter was also found to be an important factor to consider for in-field applications due to its potential reducing effect with [Formula: see text]. Overall, the use of CRBP pellets offers an innovative and sustainable solution to remediate contaminated groundwater systems, with the potential to overcome traditional ISCO limitations. These findings suggest that CRBP pellets could provide sustained and controlled release of the oxidant, reducing the need for multiple injections and minimizing safety and handling concerns. This study represents an important step towards developing a new and effective approach for ISCO remediation.
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spelling pubmed-105853012023-10-20 Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment Lamssali, Mehdi Luster-Teasley, Stephanie Deng, Dongyang Sirelkhatim, Nafisa Doan, Yen Kabir, Mosarrat Samiha Zeng, Qingan Heliyon Research Article In-situ chemical oxidation (ISCO) is a commonly used method for the remediation of environmental contaminants in groundwater systems. However, traditional ISCO methods are associated with several limitations, including safety and handling concerns, rebound of groundwater contaminants, and difficulty in reaching all areas of contamination. To overcome these limitations, novel Controlled-Release Biodegradable Polymer (CRBP) pellets containing the oxidant KMnO₄ were designed and tested. The CRBP pellets were encapsulated in Polyvinyl Acetate (CRBP-PVAc) and Polyethylene Oxide (CRBP-PEO) at different weight percentages, baking temperatures, and time. Their release efficiency was tested in water, soil, and water and soil mixture media. Results showed that CRBP-PVAc pellets with 60 % KMnO₄ and baked at 120 °C for 2 min had the highest release percentage and rate across different conditions tested. Natural organic matter was also found to be an important factor to consider for in-field applications due to its potential reducing effect with [Formula: see text]. Overall, the use of CRBP pellets offers an innovative and sustainable solution to remediate contaminated groundwater systems, with the potential to overcome traditional ISCO limitations. These findings suggest that CRBP pellets could provide sustained and controlled release of the oxidant, reducing the need for multiple injections and minimizing safety and handling concerns. This study represents an important step towards developing a new and effective approach for ISCO remediation. Elsevier 2023-10-10 /pmc/articles/PMC10585301/ /pubmed/37867834 http://dx.doi.org/10.1016/j.heliyon.2023.e20858 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Lamssali, Mehdi
Luster-Teasley, Stephanie
Deng, Dongyang
Sirelkhatim, Nafisa
Doan, Yen
Kabir, Mosarrat Samiha
Zeng, Qingan
Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment
title Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment
title_full Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment
title_fullStr Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment
title_full_unstemmed Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment
title_short Release efficiencies of potassium permanganate controlled-release biodegradable polymer (CRBP) pellets embedded in polyvinyl acetate (CRBP-PVAc) and polyethylene oxide (CRBP- PEO) for groundwater treatment
title_sort release efficiencies of potassium permanganate controlled-release biodegradable polymer (crbp) pellets embedded in polyvinyl acetate (crbp-pvac) and polyethylene oxide (crbp- peo) for groundwater treatment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10585301/
https://www.ncbi.nlm.nih.gov/pubmed/37867834
http://dx.doi.org/10.1016/j.heliyon.2023.e20858
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