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Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption

This study presents composite aerogel beads prepared by mixing dissolved cellulose with Chlamydomonas angulosa and Nostoc commune cells, respectively, at 0.1, 0.3, and 0.5% (w/w). The manufactured composites (termed regenerated cellulose (RC)), with C. angulosa (RCCA-(1, 3, and 5)), and with N. comm...

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Autores principales: Hwang, Kyojung, Kwon, Gu-Joong, Yang, Jiwook, Kim, Minyoung, Hwang, Won Joung, Youe, Wonjae, Kim, Dae-Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5951446/
https://www.ncbi.nlm.nih.gov/pubmed/29621190
http://dx.doi.org/10.3390/ma11040562
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author Hwang, Kyojung
Kwon, Gu-Joong
Yang, Jiwook
Kim, Minyoung
Hwang, Won Joung
Youe, Wonjae
Kim, Dae-Young
author_facet Hwang, Kyojung
Kwon, Gu-Joong
Yang, Jiwook
Kim, Minyoung
Hwang, Won Joung
Youe, Wonjae
Kim, Dae-Young
author_sort Hwang, Kyojung
collection PubMed
description This study presents composite aerogel beads prepared by mixing dissolved cellulose with Chlamydomonas angulosa and Nostoc commune cells, respectively, at 0.1, 0.3, and 0.5% (w/w). The manufactured composites (termed regenerated cellulose (RC)), with C. angulosa (RCCA-(1, 3, and 5)), and with N. commune (RCNC-(1, 3, and 5)) were analyzed. Both RCCA-5 and RCNC-5 showed the high specific surface area to be about 261.3 and 332.8 m(2)·g(−1). In the microstructure analysis, network structures were observed in the cross-sections of RC, RCCA-5, and RCNC-5. The pyrolysis temperature of the RCCA-5 and RCNC-5 composite aerogel beads was rapidly increased about 250 °C during the mixing of cellulose with C. angulosa and N. commune. The chemical analysis of RC, RCCA-5, and RCNC-5 showed peaks corresponding to various functional groups, such as amide, carboxyl, and hydroxyl groups from protein, lipid, and carbohydrate. RCNC-5 at pH 6 demonstrated highest Cd(2+) removal rate about 90.3%, 82.1%, and 63.1% at 10, 25, and 50 ppm Cd(2+), respectively. At pH 6, Cd(2+) adsorption rates per unit weight of the RCNC-5 were about 0.9025, 2.0514, and 3.1547 mg/g at 10, 25, and 50 ppm, respectively. The peaks assigned to the amide, carboxyl, and hydroxyl groups in RCCA-5, RCNC-5, and RC were shifted or disappeared immediately after adsorption of Cd(2+). The specific surface area, total pore volume, and mean pore diameter of composites was decreased due to adsorption of Cd(2+) on the developed materials. As can be seen in the X-ray powder diffraction (XRD) spectrum, significant changes in the molecular structure of the composite aerogel beads were not observed even after adsorption of Cd(2+).
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spelling pubmed-59514462018-05-15 Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption Hwang, Kyojung Kwon, Gu-Joong Yang, Jiwook Kim, Minyoung Hwang, Won Joung Youe, Wonjae Kim, Dae-Young Materials (Basel) Article This study presents composite aerogel beads prepared by mixing dissolved cellulose with Chlamydomonas angulosa and Nostoc commune cells, respectively, at 0.1, 0.3, and 0.5% (w/w). The manufactured composites (termed regenerated cellulose (RC)), with C. angulosa (RCCA-(1, 3, and 5)), and with N. commune (RCNC-(1, 3, and 5)) were analyzed. Both RCCA-5 and RCNC-5 showed the high specific surface area to be about 261.3 and 332.8 m(2)·g(−1). In the microstructure analysis, network structures were observed in the cross-sections of RC, RCCA-5, and RCNC-5. The pyrolysis temperature of the RCCA-5 and RCNC-5 composite aerogel beads was rapidly increased about 250 °C during the mixing of cellulose with C. angulosa and N. commune. The chemical analysis of RC, RCCA-5, and RCNC-5 showed peaks corresponding to various functional groups, such as amide, carboxyl, and hydroxyl groups from protein, lipid, and carbohydrate. RCNC-5 at pH 6 demonstrated highest Cd(2+) removal rate about 90.3%, 82.1%, and 63.1% at 10, 25, and 50 ppm Cd(2+), respectively. At pH 6, Cd(2+) adsorption rates per unit weight of the RCNC-5 were about 0.9025, 2.0514, and 3.1547 mg/g at 10, 25, and 50 ppm, respectively. The peaks assigned to the amide, carboxyl, and hydroxyl groups in RCCA-5, RCNC-5, and RC were shifted or disappeared immediately after adsorption of Cd(2+). The specific surface area, total pore volume, and mean pore diameter of composites was decreased due to adsorption of Cd(2+) on the developed materials. As can be seen in the X-ray powder diffraction (XRD) spectrum, significant changes in the molecular structure of the composite aerogel beads were not observed even after adsorption of Cd(2+). MDPI 2018-04-05 /pmc/articles/PMC5951446/ /pubmed/29621190 http://dx.doi.org/10.3390/ma11040562 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hwang, Kyojung
Kwon, Gu-Joong
Yang, Jiwook
Kim, Minyoung
Hwang, Won Joung
Youe, Wonjae
Kim, Dae-Young
Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption
title Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption
title_full Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption
title_fullStr Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption
title_full_unstemmed Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption
title_short Chlamydomonas angulosa (Green Alga) and Nostoc commune (Blue-Green Alga) Microalgae-Cellulose Composite Aerogel Beads: Manufacture, Physicochemical Characterization, and Cd (II) Adsorption
title_sort chlamydomonas angulosa (green alga) and nostoc commune (blue-green alga) microalgae-cellulose composite aerogel beads: manufacture, physicochemical characterization, and cd (ii) adsorption
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5951446/
https://www.ncbi.nlm.nih.gov/pubmed/29621190
http://dx.doi.org/10.3390/ma11040562
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