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Functionalization of Magnetic Chitosan Particles for the Sorption of U(VI) Cu(II) and Zn(II)—Hydrazide Derivative of Glycine-Grafted Chitosan

机译:磁性壳聚糖颗粒对U(VI)Cu(II)和Zn(II)-甘氨酸接枝的壳聚糖的肼衍生物的吸附作用

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摘要

A new magnetic functionalized derivative of chitosan is synthesized and characterized for the sorption of metal ions (environmental applications and metal valorization). The chemical modification of the glycine derivative of chitosan consists of: activation of the magnetic support with epichlorohydrin, followed by reaction with either glycine to produce the reference material (i.e., Gly sorbent) or glycine ester hydrochloride, followed by hydrazinolysis to synthesize the hydrazide functionalized sorbent (i.e., HGly sorbent). The materials are characterized by titration, elemental analysis, FTIR analysis (Fourrier-transform infrared spectrometry), TGA analysis (thermogravimetric analysis) and with SEM-EDX (scanning electron microscopy coupled to energy dispersive X-ray analysis). The sorption performances for U(VI), Cu(II), and Zn(II) are tested in batch systems. The sorption performances are compared for Gly and HGly taking into account the effect of pH, the uptake kinetics (fitted by the pseudo-second order rate equation), and the sorption isotherms (described by the Langmuir and the Sips equations). The sorption capacities of the modified sorbent reach up to 1.14 mmol U g−1, 1.69 mmol Cu g−1, and 0.85 mmol Zn g−1. In multi-metal solutions of equimolar concentration, the chemical modification changes the preferences for given metal ions. Metal ions are desorbed using 0.2 M HCl solutions and the sorbents are re-used for five cycles of sorption/desorption without significant loss in performances.
机译:合成了壳聚糖的一种新的磁性官能化衍生物,并表征了其对金属离子的吸附作用(环境应用和金属增值作用)。壳聚糖的甘氨酸衍生物的化学修饰包括:用表氯醇活化磁性载体,然后与甘氨酸反应生成参考物质(即甘氨酸吸附剂)或甘氨酸酯盐酸盐,然后进行肼解反应以合成功能化的酰肼吸附剂(即HGly吸附剂)。通过滴定,元素分析,FTIR分析(傅里叶变换红外光谱法),TGA分析(热重分析)和SEM-EDX(扫描电子显微镜与能量色散X射线分析相结合)对材料进行表征。在分批系统中测试了U(VI),Cu(II)和Zn(II)的吸附性能。比较了Gly和HGly的吸附性能,其中考虑了pH的影响,吸收动力学(由拟二级速率方程拟合)和吸附等温线(由Langmuir和Sips方程描述)。改性吸附剂的吸附容量分别达到1.14 mmol U g -1 ,1.69 mmol Cu g -1 和0.85 mmol Zn g -1 / sup>。在等摩尔浓度的多金属溶液中,化学修饰会改变给定金属离子的偏好。金属离子使用0.2 M HCl溶液解吸,吸附剂可重复使用五个吸附/解吸循环,而性能不会显着下降。

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