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首页> 外文期刊>Journal of Polymers and the Environment >Synthesis, Characterization and Experimental Studies of Nano Zn-AI-Fe_3O_4 Blended Alginate/Ca Beads for the Adsorption of Rhodamin B
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Synthesis, Characterization and Experimental Studies of Nano Zn-AI-Fe_3O_4 Blended Alginate/Ca Beads for the Adsorption of Rhodamin B

机译:纳米Zn-Al-Fe_3O_4海藻酸钠/钙微珠复合吸附罗丹明B的合成,表征及实验研究

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In the present study, adsorptive removal of rhodamin-B (RMN-B) from aqueous solution was investigated by using nano Zn-Al-Fe3O4 incorporated sodium alginate (SA) beads. SA is a natural polysaccharide, non toxic and biodegradable material. The incorporation of Zn-Al-Fe3O4 into SA was done by ionic polymerization method using CaCl2. A batch mode study was used for the adsorption of RMN-B onto Zn-Al-Fe3O4/ alginate beads. The adsorption efficiency of RMN-B was investigated by the following modeling equations like Freundlich, Langmuir, Pseudo-first order, Pseudo-second order, Intraparticle diffusion, Gibbs free energy, Enthalpy and Entropy. The predicted experimental results of various modeling equations were implied that the process follow Langmuir and pseudo-second order equations. The intraparticle diffusion parameters indicate that the diffusion between RMN-B and nano beads were predominant in throughout of process. The surface morphology of nano beads of before and after adsorption were show that RMN-B is strongly adhered on whole surface of the nano material. The FTIR spectrum indicates that the RMN-B strongly adsorbed on the surface and TGA study reveals that the alginate/Zn-Al-Fe3O4/Ca material has an excellent temperature withstand capacity.
机译:在本研究中,通过使用掺入藻酸钠(SA)的纳米Zn-Al-Fe3O4珠,研究了从水溶液中吸附去除若丹明B(RMN-B)的过程。 SA是一种天然多糖,无毒且可生物降解。 Zn-Al-Fe3O4结合到SA中是通过使用CaCl2的离子聚合方法完成的。批处理模式研究用于将RMN-B吸附到Zn-Al-Fe3O4 /藻酸盐微珠上。通过以下模型方程研究了RMN-B的吸附效率,例如Freundlich,Langmuir,伪一级,伪二级,粒子内扩散,吉布斯自由能,焓和熵。各种建模方程的预测实验结果表明,该过程遵循Langmuir和伪二阶方程。颗粒内扩散参数表明在整个过程中,RMN-B和纳米珠之间的扩散是主要的。吸附前后纳米珠的表面形貌表明,RMN-B牢固地粘附在纳米材料的整个表面上。 FTIR光谱表明RMN-B强烈吸附在表面上,TGA研究表明藻酸盐/ Zn-Al-Fe3O4 / Ca材料具有出色的耐温性。

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