Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal

Environmental pollution with dyes released from industrial effluent is one of the major and most critical problems in the world. To alleviate this issue, advanced and safe materials with fast and highly efficient dye removal should be designed. Great attention has been paid recently to hydrogels bas...

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Main Authors: Ahmed M. Elbedwehy, Ayman M. Atta
Format: Article
Language:English
Published: MDPI AG 2020-02-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/12/2/338
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spelling doaj-b12866d61a80403d97f0c8b6309d53fa2020-11-25T01:12:28ZengMDPI AGPolymers2073-43602020-02-0112233810.3390/polym12020338polym12020338Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue RemovalAhmed M. Elbedwehy0Ayman M. Atta1Nanotechnology Center, Mansoura University, Mansoura 3551, EgyptChemistry Department, College of Science, King Saud University, P.O. Box-2455, Riyadh 11451, Saudi ArabiaEnvironmental pollution with dyes released from industrial effluent is one of the major and most critical problems in the world. To alleviate this issue, advanced and safe materials with fast and highly efficient dye removal should be designed. Great attention has been paid recently to hydrogels based on polysaccharides such as Arabic Gum (AG) grafted with polyacrylamide (PAM) and polyacrylic acid (PAA). These materials combine the merits of natural polymers such as biodegradability and non-toxicity with the high adsorption ability of PAM and PAA towards cationic dyes such as methylene blue (MB). Many previous works have been done to enhance three-dimensional (3D) structure and swelling ability of the graft copolymers by using a crosslinking agent or even adding nanomaterials as a filler inside the hydrogel matrix. However, these additives may negatively affect the adsorption ability, and few previous studies could reach 2000 mg/g of maximum MB capacity removal within a good period of time. In our work, we synthesized partially hydrolyzed polyacrylamide grafted Arabic gum (AG-g-PAM/PAA) to have both amide and carboxylate groups. The modified water dissolved graft product undergoes water in oil (W/O) emulsion using paraffin oil as the continuous phase and Triton X-100 as a stabilizing agent; then, the system was inversed to oil in water (O/W) emulsion by increasing the shear mixing rate and cross-linked using Epichlorohydrin (ECH). The precipitated graft product showed hierarchically interconnected micro and macropores&#8217; sponge like shape with fast water swelling and high MB adsorption capacity (2300 mg g<sup>&#8722;1</sup>) after 45 min at near neutral pH conditions.https://www.mdpi.com/2073-4360/12/2/338arabic gumporousemulsion inversionsuperadsorbenthydrogelwater retention
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed M. Elbedwehy
Ayman M. Atta
spellingShingle Ahmed M. Elbedwehy
Ayman M. Atta
Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal
Polymers
arabic gum
porous
emulsion inversion
superadsorbent
hydrogel
water retention
author_facet Ahmed M. Elbedwehy
Ayman M. Atta
author_sort Ahmed M. Elbedwehy
title Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal
title_short Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal
title_full Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal
title_fullStr Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal
title_full_unstemmed Novel Superadsorbent Highly Porous Hydrogel Based on Arabic Gum and Acrylamide Grafts for Fast and Efficient Methylene Blue Removal
title_sort novel superadsorbent highly porous hydrogel based on arabic gum and acrylamide grafts for fast and efficient methylene blue removal
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2020-02-01
description Environmental pollution with dyes released from industrial effluent is one of the major and most critical problems in the world. To alleviate this issue, advanced and safe materials with fast and highly efficient dye removal should be designed. Great attention has been paid recently to hydrogels based on polysaccharides such as Arabic Gum (AG) grafted with polyacrylamide (PAM) and polyacrylic acid (PAA). These materials combine the merits of natural polymers such as biodegradability and non-toxicity with the high adsorption ability of PAM and PAA towards cationic dyes such as methylene blue (MB). Many previous works have been done to enhance three-dimensional (3D) structure and swelling ability of the graft copolymers by using a crosslinking agent or even adding nanomaterials as a filler inside the hydrogel matrix. However, these additives may negatively affect the adsorption ability, and few previous studies could reach 2000 mg/g of maximum MB capacity removal within a good period of time. In our work, we synthesized partially hydrolyzed polyacrylamide grafted Arabic gum (AG-g-PAM/PAA) to have both amide and carboxylate groups. The modified water dissolved graft product undergoes water in oil (W/O) emulsion using paraffin oil as the continuous phase and Triton X-100 as a stabilizing agent; then, the system was inversed to oil in water (O/W) emulsion by increasing the shear mixing rate and cross-linked using Epichlorohydrin (ECH). The precipitated graft product showed hierarchically interconnected micro and macropores&#8217; sponge like shape with fast water swelling and high MB adsorption capacity (2300 mg g<sup>&#8722;1</sup>) after 45 min at near neutral pH conditions.
topic arabic gum
porous
emulsion inversion
superadsorbent
hydrogel
water retention
url https://www.mdpi.com/2073-4360/12/2/338
work_keys_str_mv AT ahmedmelbedwehy novelsuperadsorbenthighlyporoushydrogelbasedonarabicgumandacrylamidegraftsforfastandefficientmethyleneblueremoval
AT aymanmatta novelsuperadsorbenthighlyporoushydrogelbasedonarabicgumandacrylamidegraftsforfastandefficientmethyleneblueremoval
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