首页> 外文期刊>Journal of Solid State Chemistry >Magnetic adsorbent constructed from the loading of amino functionalized Fe3O4 on coordination complex modified polyoxometalates nanoparticle and its tetracycline adsorption removal property study
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Magnetic adsorbent constructed from the loading of amino functionalized Fe3O4 on coordination complex modified polyoxometalates nanoparticle and its tetracycline adsorption removal property study

机译:配位配合物修饰的多金属氧酸盐纳米粒子上负载氨基官能化的Fe3O4构成的磁性吸附剂及其四环素吸附去除性能的研究

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摘要

A magnetic polyoxometalates based adsorbent has been synthesized successfully through the loading of amino functionalized Fe3O4 (NH2-Fe3O4) on nanoparticle of a coordination complex modified polyoxometalates (CC/POMNP). FTIR illustrate there exist intense hydrogen bonds between NH2-Fe3O4 and CC/POMNP, which keep the stability of this adsorbent. At room temperature, this adsorbent exhibits ferromagnetic character with saturation magnetization of 8.19 emu g(-1), which provides prerequisite for fast magnetic separation. Water treatment experiment illustrates this POM based magnetic adsorbent exhibits high adsorption capacity on tetracycline. The adsorption process can be described well with Temkin model, which illustrates the interaction between adsorbent and tetracycline plays the dominated role in tetracycline removal. The rapid, high efficient tetracycline adsorption ability suggests this POM based magnetic adsorbent exhibits promising prospect in medical and agriculture waste water purification.
机译:通过将氨基官能化的Fe3O4(NH2-Fe3O4)负载在配位配合物修饰的多金属氧酸盐(CC / POMNP)的纳米颗粒上,已成功合成了基于磁性多金属氧酸盐的吸附剂。 FTIR表明NH2-Fe3O4与CC / POMNP之间存在强烈的氢键,从而保持了该吸附剂的稳定性。在室温下,这种吸附剂表现出铁磁特性,饱和磁化强度为8.19 emu g(-1),为快速磁分离提供了前提条件。水处理实验表明,这种基于POM的磁性吸附剂在四环素上显示出高吸附能力。 Temkin模型可以很好地描述吸附过程,该模型说明了吸附剂和四环素之间的相互作用在四环素的去除中起着主导作用。快速,高效的四环素吸附能力表明,这种基于POM的磁性吸附剂在医疗和农业废水净化方面具有广阔的前景。

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