Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency

Acacia Senegal Gum hydrogel (HASG) with swollen dimension less than 50 μm were fabricated, and chemically modified with versatile diethylenetriamine (d-amine) to tailor the surface properties for environmental remediation.Negatively charged metal ions, for example, chromate (Cr(III)), dichromate (Cr...

Full description

Bibliographic Details
Main Author: Rasha M.K. Mohamed
Format: Article
Language:English
Published: Elsevier 2023-06-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844023044055
_version_ 1797802822817808384
author Rasha M.K. Mohamed
author_facet Rasha M.K. Mohamed
author_sort Rasha M.K. Mohamed
collection DOAJ
description Acacia Senegal Gum hydrogel (HASG) with swollen dimension less than 50 μm were fabricated, and chemically modified with versatile diethylenetriamine (d-amine) to tailor the surface properties for environmental remediation.Negatively charged metal ions, for example, chromate (Cr(III)), dichromate (Cr(VI)), and arsenate (As(V)) were removed from aqueous media by using modified hydrogels (m-HASG). The FT-IR spectra revealed some new peaks due to d-amine treatment. The zeta potential measurements confirm a positively charged surface of HASG upon d-amine modification at ambient conditions. The absorption studies revealed that 0.05 g feed of m-(HASG) possesses 69.8, 99.3, and 40.00% cleaning potential against As(V), Cr(VI), and Cr(III), respectively with 2 h contact time in deionized water. Almost comparable adsorption efficiency was achieved by the prepared hydrogels towards the targeted analytes dissolved in real water samples. Adsorption isotherms, for example, Langmuir, Freundlich and modified Freundlich isotherms were applied to the collected data. Briefly, Modified Freundlich isotherm manifested comparatively agreeable line for the all adsorbents pollutants with highest R2 figure.In addition, maximum adsorption capacity (Qm) with 217, 256, and 271 mg g−1 numerical values were obtained against As(V), Cr(VI), and Cr(III), respectively. In real water samples, 217, 256, and 271 mg g−1 adsorption capacity was represented by m-(HASG).In brief, m-(HASG) is a brilliant material for environmental application as cleaner candidate towards toxic metal ions.
first_indexed 2024-03-13T05:11:31Z
format Article
id doaj.art-f52ad7777edd4cf6a7ba98ed4026c3dd
institution Directory Open Access Journal
issn 2405-8440
language English
last_indexed 2024-03-13T05:11:31Z
publishDate 2023-06-01
publisher Elsevier
record_format Article
series Heliyon
spelling doaj.art-f52ad7777edd4cf6a7ba98ed4026c3dd2023-06-16T05:10:23ZengElsevierHeliyon2405-84402023-06-0196e17197Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiencyRasha M.K. Mohamed0Department of Chemistry, College of Science, Jouf University, P.O. Box: 2014, Sakaka, Saudi Arabia; Department of Chemistry, Faculty of Science, Assiut University, P.O. Box: 71515, Assiut, EgyptAcacia Senegal Gum hydrogel (HASG) with swollen dimension less than 50 μm were fabricated, and chemically modified with versatile diethylenetriamine (d-amine) to tailor the surface properties for environmental remediation.Negatively charged metal ions, for example, chromate (Cr(III)), dichromate (Cr(VI)), and arsenate (As(V)) were removed from aqueous media by using modified hydrogels (m-HASG). The FT-IR spectra revealed some new peaks due to d-amine treatment. The zeta potential measurements confirm a positively charged surface of HASG upon d-amine modification at ambient conditions. The absorption studies revealed that 0.05 g feed of m-(HASG) possesses 69.8, 99.3, and 40.00% cleaning potential against As(V), Cr(VI), and Cr(III), respectively with 2 h contact time in deionized water. Almost comparable adsorption efficiency was achieved by the prepared hydrogels towards the targeted analytes dissolved in real water samples. Adsorption isotherms, for example, Langmuir, Freundlich and modified Freundlich isotherms were applied to the collected data. Briefly, Modified Freundlich isotherm manifested comparatively agreeable line for the all adsorbents pollutants with highest R2 figure.In addition, maximum adsorption capacity (Qm) with 217, 256, and 271 mg g−1 numerical values were obtained against As(V), Cr(VI), and Cr(III), respectively. In real water samples, 217, 256, and 271 mg g−1 adsorption capacity was represented by m-(HASG).In brief, m-(HASG) is a brilliant material for environmental application as cleaner candidate towards toxic metal ions.http://www.sciencedirect.com/science/article/pii/S2405844023044055Acacia Senegal GumHASGm-(HASG)Cr(III)/Cr(VI)/As(V)Pollutant removal
spellingShingle Rasha M.K. Mohamed
Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency
Heliyon
Acacia Senegal Gum
HASG
m-(HASG)
Cr(III)/Cr(VI)/As(V)
Pollutant removal
title Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency
title_full Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency
title_fullStr Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency
title_full_unstemmed Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency
title_short Surface modified Acacia Senegal Gum based spherical hydrogel; fabrication, characterization, and kinetically optimized waste water treatment with remarkable adsorption efficiency
title_sort surface modified acacia senegal gum based spherical hydrogel fabrication characterization and kinetically optimized waste water treatment with remarkable adsorption efficiency
topic Acacia Senegal Gum
HASG
m-(HASG)
Cr(III)/Cr(VI)/As(V)
Pollutant removal
url http://www.sciencedirect.com/science/article/pii/S2405844023044055
work_keys_str_mv AT rashamkmohamed surfacemodifiedacaciasenegalgumbasedsphericalhydrogelfabricationcharacterizationandkineticallyoptimizedwastewatertreatmentwithremarkableadsorptionefficiency