海藻酸钠
吸附
纤维素
检出限
复合数
化学
化学工程
解吸
双酚A
朗缪尔吸附模型
色谱法
钠
核化学
材料科学
复合材料
有机化学
吸附
环氧树脂
工程类
作者
Jiayu Ouyang,Xuefeng Zhang,Xinmiao Qi,Caichao Wang,Yuan Yao,Xiangjing Xie,Jianzheng Qiao,Xin Guo,Yiqiang Wu
标识
DOI:10.1016/j.ijbiomac.2024.132198
摘要
To address the issue of bisphenol A (BPA) contamination in wastewater, a novel hydrogel, sodium alginate/cellulose nanofibrils/ZIF-8 composite hydrogel (SCZC), was synthesized for efficient BPA removal. The SCZC exhibited an exceptional adsorption capacity of 1696 mg/g, aligning well with both Langmuir and pseudo-second-order models. Furthermore, it exhibited remarkable regeneration properties, maintaining 89.1 % of its adsorption capacity even after undergoing five adsorption-desorption cycles. The synthesized SCZC also acted as a fluorescent sensor for detecting BPA, employing dynamic quenching and offering linear detection ranges of 10-100 mg/L and 0.2-1.0 μg/L, with a low detection limit of 0.06 μg/L. Analysis of adsorption and detection mechanisms revealed that SCZC's exceptional performance could be attributed to the three-dimensional (3D) porous structure formed by sodium alginate and cellulose nanofibrils. Economic analysis indicated that SCZC, in comparison to commercially activated carbon, was relatively inexpensive. This study introduces a novel approach for designing and preparing a sodium alginate-based hydrogel incorporating metal-organic frameworks, offering simultaneous BPA detection and removal capabilities.
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