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通过钛铁矿简便合成新型三维花状磁性La@Fe/C复合材料用于高效去除水溶液中的磷酸盐。

Facile synthesis of novel 3D flower-like magnetic La@Fe/C composites from ilmenite for efficient phosphate removal from aqueous solution.

作者信息

Wang Pengchen, Armutlulu Andac, Jiang Wenju, Lai Bo, Xie Ruzhen

机构信息

College of Architecture and Environment, Sichuan University Chengdu 610065 P. R. China

Department of Mechanical and Process Engineering, ETH Zurich Leonhardstrasse 27 8092 Zurich Switzerland.

出版信息

RSC Adv. 2019 Sep 9;9(49):28312-28322. doi: 10.1039/c9ra05606h.

DOI:10.1039/c9ra05606h
PMID:35529664
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9071215/
Abstract

In this study, a novel 3D flower-like La@Fe/C magnetic composite was successfully synthesized by carbothermal reduction of ilmenite microwave radiation. The physico-chemical properties of the composite were investigated. The results showed that La@Fe/C features a 3D flower-like morphology with an and of 114 m g and 0.017 cm g, respectively. Zerovalent iron and metal oxides were detected by XRD and XPS on the surface of the adsorbent, which formed as a result of carbothermal reduction of ilmenite using coconut shell-based carbon followed by the introduction of lanthanum. This resultant magnetic La@Fe/C exhibited remarkable phosphate selectivity performance even in the presence of a 50-fold excess of competing ions, which is superior to the pristine ilmenite and coconut activated carbon. Adsorption isotherms and adsorption kinetics fitted well with the Langmuir model and pseudo-second-order model, respectively. A thermodynamic study indicated that the adsorption of phosphate was spontaneous and endothermic. The adsorption-regeneration cyclic experiments of the La@Fe/C composite demonstrated a good level of recyclability. These results indicated that carbothermal reduction of ilmenite followed by the introduction of lanthanum could result in highly efficient and recoverable magnetic particles for the removal of phosphate from wastewater.

摘要

在本研究中,通过钛铁矿的碳热还原微波辐射成功合成了一种新型的三维花状La@Fe/C磁性复合材料。对该复合材料的物理化学性质进行了研究。结果表明,La@Fe/C具有三维花状形态,其比表面积和孔容分别为114 m²/g和0.017 cm³/g。通过XRD和XPS在吸附剂表面检测到零价铁和金属氧化物,它们是由钛铁矿用椰壳基碳进行碳热还原后再引入镧而形成的。这种所得的磁性La@Fe/C即使在存在50倍过量竞争离子的情况下也表现出显著的磷酸盐选择性性能,优于原始钛铁矿和椰壳活性炭。吸附等温线和吸附动力学分别与Langmuir模型和伪二级模型拟合良好。热力学研究表明,磷酸盐的吸附是自发的且吸热的。La@Fe/C复合材料的吸附-再生循环实验表明其具有良好的可回收性。这些结果表明,钛铁矿的碳热还原后引入镧可以产生用于从废水中去除磷酸盐的高效且可回收的磁性颗粒。

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