Reusable aminated lignin-based hydrogel biocomposite for effective dye adsorption in wastewater

被引:4
作者
Diaz, Juan [1 ]
Roa, Karina [1 ]
Boulett, Andres [1 ]
Azocar, Laura [2 ,3 ]
Sanchez, Julio [4 ]
机构
[1] Univ Santiago de Chile USACH, Fac Quim & Biol, Dept Ciencias Ambiente, Santiago, Chile
[2] Univ Catol Santisima Concepcion UCSC, Fac Ciencias, Dept Quim Ambiental, Concepcion, Chile
[3] Univ Catolica Santisima Concepcion, Ctr Energia, Concepcion, Chile
[4] Pontificia Univ Catolica Chile, Fac Quim & Farm, Dept Quim Organ, Santiago, Chile
关键词
Adsorption; Amination; Biocomposite; Dyes; Hydrogel; Lignin; Wastewater; AQUEOUS-SOLUTIONS; REMOVAL; CONTAMINANTS; DEGRADATION; EFFICIENCY; ADSORBENT; ISOTHERM;
D O I
10.1016/j.ijbiomac.2025.140842
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
This study reports enhanced organic dye adsorption capacity from aqueous solutions of a synthesized novel biocomposite hydrogel based on aminated lignin (AL) and poly(3-acryloamidopropyl)-trimethylammonium chloride P(ClAPTA). The biocomposites were characterized via Fourier-transform infrared spectroscopy, thermogravimetric analysis, scanning electron microscopy, and elemental analysis, confirming successful functionalization and polymerization. A factorial design was used to screen the operational parameters, showing that the P(ClAPTA-AL) composition was the most significant factor affecting dye adsorption compared to the amination ratio. Optimization of the adsorption process was achieved using alizarin red S (ARS) as a model dye through a Box-Behnken design, revealing optimal conditions: pH 12.0, 20 degrees C, 120 min contact time, and a composite-to-ARS mass ratio of 10, resulting in a high adsorption capacity of 102.1 mg g(-1) and a maximum adsorption of 3889 mg g(-1). Kinetic studies showed an adsorption process followed a pseudo-second-order model, confirming chemisorption as the predominant mechanism, while thermodynamic analysis revealed a spontaneous and endothermic adsorption process. Furthermore, promissory results demonstrated high reusability, with adsorption efficiency remaining at similar to 99 % until the fourth cycle and maintaining 81.1 % after seven cycles.
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页数:13
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