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Synthesis and Characterization of Magnetic Superadsorbent Fe3O4-PEG-Mg-Al-LDH Nanocomposites for Ultrahigh Removal of Organic Dyes

机译:磁超吸收性Fe3O4-PEG-Mg-Al-LDH纳米复合材料的合成与表征用于超高清有机染料

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Considering the huge demands for economical and reliable eco-remediation applications, the goal of the present work is to synthesize cost-effective and functionally efficient magnetic layered nanocomposite adsorbents for the effective adsorption of dyes followed by easy separation from wastewater. This would ensure good reusability of adsorbents without altering its adsorption capacity in a relatively short time manner. To achieve this, different molecular weights of polyethylene glycol (PEG)-modified Fe_(3)O_(4) combined with Mg–Al-layered double hydroxides (MAN-LDH) were synthesized and characterized using powder X-ray diffraction, Fourier transform infrared, scanning electron microscopy, transmission electron microscopy, thermogravimetric analysis, differential thermal analysis, energy-dispersive X-ray, and inductively coupled plasma optical emission spectroscopy. The efficacy of various adsorption parameters for the removal of methyl orange (MO) from water using Fe_(3)O_(4)-PEG-Mg-Al-LDH (FPL) adsorbents with different molecular weights of PEG (2FPL, 4FPL, and 6FPL) were investigated, and the results were compared. The maximum adsorption capacities of 2FPL, 4FPL, and 6FPL for MO were found to be 775.19, 826.44, and 833.33 mg/g, respectively. Detailed adsorption studies confirm that the higher adsorption capacity of 6FPL is due to the fast exchange of anions (NO_(3)~(–)) by MO in the interlayers of MAN-LDH, larger surface area, hydrogen bonding, and electrostatic interaction between adsorbate and adsorbent. The thermodynamic data indicate that the adsorption behavior is spontaneous and endothermic in nature. The reusability of all FPL adsorbents is observed to be excellent. The MAN-LDH recoated after the 31st-cycle nanocomposites show a recovery of 100% adsorption efficiency, similar to the freshly prepared 6FPL. Such systematic studies greatly help in advancing the applications of newly functionalized nanomaterials toward eco-remediation approaches.
机译:考虑到对经济和可靠的生态修复应用的巨大需求,本作工作的目的是合成成本有效和功能高效的磁性分层纳米复合剂吸附剂,用于有效吸附染料,然后易于从废水中分离。这将确保吸附剂的良好可重用性而不以相对较短的方式改变其吸附容量。为了实现这一点,使用粉末X射线衍射合并与Mg-Al层叠双氢氧化物(MAN-LDH)组合的聚乙二醇(PEG)制片二氧化物(3)O_(4)的不同分子量。使用粉末X射线衍射,傅立叶变换红外,扫描电子显微镜,透射电子显微镜,热重分析,差分热分析,能量分散X射线和电感耦合等离子体光发射光谱。使用Fe_(3)O_(4)-PEG-Mg-Al-LDH(FPL)吸附剂用不同分子量的PEG(2FPL,4FPL,和研究了6FPL),并比较结果。 MO的2FPL,4FPL和6FPL的最大吸附容量分别为775.19,826.44和833.33mg / g。详细的吸附研究证实,6FPL的吸附容量越高,由于MA-LDH,较大的表面积,氢键和静电相互作用中的MO在MO中的阴离子(NO_(3)〜())的快速交换吸附和吸附剂。热力学数据表明吸附行为在自然中是自发性和吸热的。观察到所有FPL吸附剂的可重用性是优异的。在第31次循环纳米复合材料显示出100%吸附效率的回收率之后,重新携带的人-LDH恢复,类似于新制备的6FPL。这种系统研究大大有助于推进新官能化纳米材料对生态修复方法的应用。

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