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Behaviors and mechanisms of tannic acid adsorption on an amino-functionalized magnetic nanoadsorbent

机译:单宁酸在氨基官能化磁性纳米吸附剂上的吸附行为和机理

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摘要

Tannic acid is known as one of the refractory organic pollutants in water. Amino-functionalized magnetic nanoadsorbent (Fe3O4@SiO2-NH2) exhibited high adsorption capacity for aqueous TA with maximum adsorption amount of 136.23 mg/g at 25 ℃. TA adsorption on the adsorbent could be well described by Langmuir adsorption model and the adsorption process was endothermic. Furthermore, pseudo-second adsorption kinetics can fit TA adsorption data very well, and the adsorption rate decreased with increasing initial TA concentration. The presence of Na~+, K~+, and Ca~(2+) may result in enhanced TA adsorption. In addition, TA adsorption over the adsorbent was highly dependent on solution pH and the maximum adsorption amount was found to be at pH 6.0. The XPS analysis revealed that TA adsorption over the adsorbent may be attributed to the surface complexation between the amino groups of the adsorbent and TA in solution. The TA loaded adsorbent can be effectively desorbed in a 0.5 M HC1 solution, and the regenerated adsorbent can be recycled.
机译:单宁酸是水中难处理的有机污染物之一。氨基官能化的磁性纳米吸附剂(Fe3O4 @ SiO2-NH2)对TA水溶液的吸附能力很高,在25℃时最大吸附量为136.23mg / g。 Langmuir吸附模型可以很好地描述TA在吸附剂上的吸附,吸附过程是吸热的。此外,伪秒吸附动力学可以很好地拟合TA吸附数据,并且随着初始TA浓度的增加,吸附速率降低。 Na〜+,K〜+和Ca〜(2+)的存在可能导致TA吸附增强。另外,TA在吸附剂上的吸附高度依赖于溶液的pH,最大吸附量为pH 6.0。 XPS分析表明,TA在吸附剂上的吸附可能归因于吸附剂的氨基与溶液中TA之间的表面络合。负载有TA的吸附剂可以在0.5 M HCl溶液中有效地解吸,并且再生的吸附剂可以循环使用。

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