首页> 外文期刊>Journal of Macromolecular Science. Physics >Synthesis of Tapioca Cellulose-based Poly(amidoxime) Ligand for Removal of Heavy Metal Ions
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Synthesis of Tapioca Cellulose-based Poly(amidoxime) Ligand for Removal of Heavy Metal Ions

机译:基于木薯纤维素的聚(酰胺肟)配体的合成除去重金属离子

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摘要

Poly(acrylonitrile)/cellulose block copolymer (PAN-b-cell) was prepared by using a free radical initiating process and then the nitrile functional groups of the PAN blocks of the copolymers were transformed into amidoxime ligands. The resulting poly(amidoxime) ligands could complex with heavy metal ions; for example, the reflectance spectra of the [Cu -ligand](n+) was found to be at the highest absorbance, about 94%, at pH 6. The pH was the key parameter for metal ions sensing by the ligand. The adsorption capacity for copper was very good, 272mg g(-1), with a fast adsorption rate (t(1/2) = 10 min). The adsorption capacities for other heavy metal ions such as Fe3+, Cr3+, Co3+ and Ni2+ were also good, being 242, 219, 201 and 195mg g(-1), respectively, at pH 6. The heavy metal ions removal efficiency from water was 98% at low concentration. The data proved that the heavy metal ions adsorption onto the polymer ligands were well fitted with the Langmuir isotherm model (R-20.99), which suggests that the cellulose-based adsorbent surface namely the poly(amidoxime) ligand, was homogenous and a monolayer. The reusability was examined by a sorption/desorption process for six cycles and the extraction efficiency was determined. This new adsorbent could be reused for 6 cycles without any significant loss in its original removal function.
机译:通过使用自由基引发方法制备聚(丙烯腈)/纤维素嵌段共聚物(Pan-B细胞),然后将共聚物的丁基嵌段的腈官能团转化为偕胺肟配体。得到的聚(偕胺肟)配体可与重金属离子复合;例如,发现[Cu -ligand](N +)的反射率光谱在pH6处处于最高吸光度,约94%,pH是用配体感测金属离子的关键参数。铜的吸附容量非常好,272mg g(-1),吸附速率快(T(1/2)= 10分钟)。其他重金属离子如Fe3 +,Cr3 +,CO 3 +和Ni2 +的吸附容量也良好,分别在pH6中分别为242,219,201和195mg(-1),重金属离子从水中去除效率是低浓度为98%。该数据证明,重金属离子吸附在聚合物配体上良好地配备了Langmuir等温模型(R-2> 0.99),这表明基于纤维素的吸附表面即聚(偕胺肟)配体,是均匀的和a单层。通过吸附/解吸过程检查可重用性6个循环,测定提取效率。这种新的吸附剂可以重复使用6个循环,而在其原始清除功能中没有任何显着损失。

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