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Ultrasound-Assisted Preparation of Chitosan/Nano-Activated Carbon Composite Beads Aminated with (3-Aminopropyl)Triethoxysilane for Adsorption of Acetaminophen from Aqueous Solutions

机译:超声辅助制备由(3-氨丙基)三乙氧基硅烷胺化的壳聚糖/纳米活化碳复合微珠从水溶液中吸附对乙酰氨基酚

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摘要

A composite chitosanano-activated carbon (CS-NAC) aminated by (3-aminopropyl)triethoxysilane (APTES) was prepared in the form of beads and applied for the removal of acetaminophen from aqueous solutions. NAC and APTES concentrations were optimized to obtain a suitable adsorbent structure for enhanced removal of the pharmaceutical. The aminated adsorbent (CS-NAC-APTES beads) prepared with 40% / NAC and 2% / APTES showed higher adsorption capacity (407.83 mg/g) than CS-NAC beads (278.4 mg/g). Brunauer–Emmett–Teller (BET) analysis demonstrated that the surface area of the CS-NAC-APTES beads was larger than that of CS-NAC beads (1.16 times). The adsorption process was well fitted by the Freundlich model ( > 0.95), suggesting a multilayer adsorption. The kinetic study also substantiated that the pseudo-second-order model ( > 0.98) was in better agreement with the experimental data. Finally, it was proved that the prepared beads can be recycled (by washing with NaOH solution) at least 5 times before detectable performance loss.
机译:由(3-氨基丙基)三乙氧基硅烷(APTES)胺化的壳聚糖/纳米活性炭复合材料(CS-NAC)制备成珠状,用于从水溶液中去除对乙酰氨基酚。优化了NAC和APTES的浓度,以获得合适的吸附剂结构,以提高药物的去除率。用40%/ NAC和2%/ APTES制备的胺化吸附剂(CS-NAC-APTES珠)显示出比CS-NAC珠(278.4 mg / g)更高的吸附容量(407.83 mg / g)。 Brunauer–Emmett–Teller(BET)分析表明,CS-NAC-APTES珠的表面积大于CS-NAC珠的表面积(1.16倍)。 Freundlich模型(> 0.95)很好地拟合了吸附过程,表明是多层吸附。动力学研究还证实了伪二级模型(> 0.98)与实验数据更加吻合。最后,证明了所制备的珠粒可以再循环(通过用NaOH溶液洗涤)至少5次,直到可检测到的性能损失。

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