吸附
阳离子聚合
化学工程
化学
钠
共聚物
结晶紫
海藻酸钠
朗缪尔
多孔性
相(物质)
化学改性
多糖
材料科学
朗缪尔吸附模型
高分子化学
沸石
过程(计算)
多孔介质
工作(物理)
化学结构
聚电解质
水处理
聚丙烯酸钠
动力学
色谱法
过滤(数学)
作者
Xiaohang Shi,Tao Lou,Xuejun Wang
标识
DOI:10.1002/slct.202507405
摘要
ABSTRACT The chemical modification of natural polysaccharides is an effective way to synthesise high‐performance adsorbents to deal with complex wastewater. Herein, by means of graft copolymerization of sodium alginate and sodium p‐styrenesulfonate combined with thermally induced phase separation technology, a foam with both abundant negative charge sites and a 3D porous and fibrous structure was constructed, realizing efficient adsorption of cationic dyes. The adsorption capacity for crystal violet reached 807.1 mg/g, 2.55 times greater than that of the pure sodium alginate foam. The efficiency remained over 90% after 5 cycles. Moreover, the fibrous foams exhibited superior adsorption performance under alkaline conditions. The adsorption process was well described by the pseudo‐second‐order kinetic equation and conformed to the Langmuir isotherm, suggesting that the uptake was primarily governed by chemical interactions. The thermodynamic results demonstrated that the dye adsorption was spontaneous. This work introduces a valuable approach for enhancing the adsorption performance of natural polysaccharide‐based materials, offering great potential in the treatment of dye‐contaminated wastewater.
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