Novel hydrogel based on natural hybrid backbones: optimized synthesis and effective adsorbent for the removal of malachite green dye from an aqueous solution

被引:2
|
作者
Kumawat, Yogesh Kumar [1 ]
Nair, Abhigith [1 ]
Choudhary, Sonal [2 ]
Nath, Jyotendra [3 ]
Sharma, Kashma [4 ]
Rasool, Tanveer [3 ]
Sharma, Vishal [2 ]
Mishra, Yogendra Kumar [5 ]
Kumar, Vijay [1 ]
机构
[1] Natl Inst Technol Srinagar, Dept Phys, Srinagar 190006, Jammu & Kashmir, India
[2] Panjab Univ, Inst Forens Sci & Criminol, Chandigarh 160014, India
[3] Natl Inst Technol Srinagar, Dept Chem Engn, Srinagar 190006, Jammu & Kashmir, India
[4] DAV Coll, Dept Chem, Sect 10, Chandigarh 160011, India
[5] Univ Southern Denmark, Mads Clausen Inst, Smart Mat, NanoSYD, Alsion 2, DK-6400 Sonderborg, Denmark
关键词
Guar/Locust bean gum; Malachite green; RSM optimization; Wastewater; Kinetics; LOCUST BEAN GUM; GUAR GUM; ACTIVATED CARBON; EFFICIENT REMOVAL; ADSORPTION; COMPOSITE; DELIVERY; NANOCOMPOSITE; SURFACTANT; STABILITY;
D O I
10.1007/s10965-024-03973-x
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this work, we synthesized a novel hydrogel based on poly(acrylamide) grafted Guar/locust bean gums, i.e. (GG/LBG-g-poly(AAm)) through free radical polymerization, aiming for the removal of malachite green (MG) dye from aqueous solutions. Response surface methodology and a full factorial rotatable central composite design were used to optimize various reaction parameters, enhancing the percentage swelling of the synthesized hydrogel. This optimization resulted in a notable increase in swelling capacity, reaching 1050%. The incorporation of acrylamide chains onto the guar/locust bean gum-based hybrid backbone, as well as crosslinking between different polymeric chains, was confirmed through various characterization techniques, including FTIR, TGA, XRD, FE-SEM, wettability studies, and zeta potential analysis. We evaluated the synthesized hydrogel adsorption performance for MG under specific conditions: pH (7.0), contact time (300 min), adsorbent dose (0.08 g), and dye concentration (50 mg/L). Under ambient conditions, GG/LBG-g-poly(AAm) demonstrated a maximum adsorption capacity of 52.96 mg g-1, achieving a removal efficiency of 98%. The Freundlich model best described the adsorption data and followed pseudo-second-order kinetics, indicating a consistent agreement. Furthermore, the Dubinin-Radeshkovich isotherm and Elovich model perfectly depicted the chemisorption nature of the adsorption process. The synthesized GG/LBG-g-poly(AAm) demonstrates significant potential for effectively removing toxic dyes from wastewater.
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页数:24
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