Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin

In the past few decades, dye-based contamination has been considered as a severe environmental problem faced by many developing countries due to increasingly growth of textile industry. Carbon-based materials have found as an excellent adsorbent for organic species because of its porous structure. C...

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Tác giả chính: Bich Ngoc Hoang, Thuong Thi Nguyen, Dai Van Nguyen, Lam Van Tan
Định dạng: journal-article
Ngôn ngữ:en_US
Thông tin xuất bản: 2022
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Truy cập trực tuyến:http://repository.vlu.edu.vn:443/handle/123456789/239
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spelling oai:http:--repository.vlu.edu.vn-:123456789-2392022-10-13T09:19:08Z Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin Bich Ngoc Hoang Thuong Thi Nguyen Dai Van Nguyen Lam Van Tan Adsorption Crystal violet Poly (vinyl alcohol) Water-resistance membrane In the past few decades, dye-based contamination has been considered as a severe environmental problem faced by many developing countries due to increasingly growth of textile industry. Carbon-based materials have found as an excellent adsorbent for organic species because of its porous structure. Conversely, the cost-inefficiency and the difficulty to collect them after use, is the mainly negative mark when applying them in the large-scale. Thus, the development of low-cost, facile processing and ecofriendly membranes with high performance and high adsorption capacity for dye-based pollutants should be considered as a very important and urgent task. Herein, we wish to report the application of poly (vinyl alcohol)-based blend membranes combined with agar and maltodextrin for the elimination of crystal violet (CV) in water media. These blend membranes were fabricated via the simple solvent casting process. Effect of different factors, e.g., contact time between adsorbents and adsorbates, solution pH, and initial crystal violet concentration on the uptake capacity of blend membrane was studied in batch model. The obtained results revealed that adsorption kinetic was well obeyed with Pseudo-second order model, which was mainly controlled by chemisorption process. Langmuir model still well-described for adsorption isotherm for crystal violet dye of poly (vinyl alcohol) membrane combined with agar and maltodextrin. The maximum amount of CV uptake by blend membrane was found to be 84.618 mg g 1. These outcomes indicate a potential use of poly (vinyl alcohol)-based blend membranes combined with agar and maltodextrin for the elimination of CV in water media. 2022-10-13T02:19:08Z 2022-10-13T02:19:08Z 2021 journal-article http://repository.vlu.edu.vn:443/handle/123456789/239 10.1016/j.matpr.2020.09.391 en_US Materials Today: Proceedings 2214-7853 application/pdf
institution Trường Đại học Văn Lang
collection DSpaceVLU
language en_US
topic Adsorption
Crystal violet
Poly (vinyl alcohol)
Water-resistance membrane
spellingShingle Adsorption
Crystal violet
Poly (vinyl alcohol)
Water-resistance membrane
Bich Ngoc Hoang
Thuong Thi Nguyen
Dai Van Nguyen
Lam Van Tan
Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
description In the past few decades, dye-based contamination has been considered as a severe environmental problem faced by many developing countries due to increasingly growth of textile industry. Carbon-based materials have found as an excellent adsorbent for organic species because of its porous structure. Conversely, the cost-inefficiency and the difficulty to collect them after use, is the mainly negative mark when applying them in the large-scale. Thus, the development of low-cost, facile processing and ecofriendly membranes with high performance and high adsorption capacity for dye-based pollutants should be considered as a very important and urgent task. Herein, we wish to report the application of poly (vinyl alcohol)-based blend membranes combined with agar and maltodextrin for the elimination of crystal violet (CV) in water media. These blend membranes were fabricated via the simple solvent casting process. Effect of different factors, e.g., contact time between adsorbents and adsorbates, solution pH, and initial crystal violet concentration on the uptake capacity of blend membrane was studied in batch model. The obtained results revealed that adsorption kinetic was well obeyed with Pseudo-second order model, which was mainly controlled by chemisorption process. Langmuir model still well-described for adsorption isotherm for crystal violet dye of poly (vinyl alcohol) membrane combined with agar and maltodextrin. The maximum amount of CV uptake by blend membrane was found to be 84.618 mg g 1. These outcomes indicate a potential use of poly (vinyl alcohol)-based blend membranes combined with agar and maltodextrin for the elimination of CV in water media.
format journal-article
author Bich Ngoc Hoang
Thuong Thi Nguyen
Dai Van Nguyen
Lam Van Tan
author_facet Bich Ngoc Hoang
Thuong Thi Nguyen
Dai Van Nguyen
Lam Van Tan
author_sort Bich Ngoc Hoang
title Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
title_short Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
title_full Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
title_fullStr Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
title_full_unstemmed Removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
title_sort removal of crystal violet from aqueous solution using environment-friendly and water-resistance membrane based on polyvinyl/agar/maltodextrin
publishDate 2022
url http://repository.vlu.edu.vn:443/handle/123456789/239
work_keys_str_mv AT bichngochoang removalofcrystalvioletfromaqueoussolutionusingenvironmentfriendlyandwaterresistancemembranebasedonpolyvinylagarmaltodextrin
AT thuongthinguyen removalofcrystalvioletfromaqueoussolutionusingenvironmentfriendlyandwaterresistancemembranebasedonpolyvinylagarmaltodextrin
AT daivannguyen removalofcrystalvioletfromaqueoussolutionusingenvironmentfriendlyandwaterresistancemembranebasedonpolyvinylagarmaltodextrin
AT lamvantan removalofcrystalvioletfromaqueoussolutionusingenvironmentfriendlyandwaterresistancemembranebasedonpolyvinylagarmaltodextrin
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