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钯/FeFe3O4 纳米复合材料增强 2,4-二氯苯酚的脱氯。

Enhanced dechlorination of 2,4-dichlorophenol by Pd/FeFe3O4 nanocomposites.

机构信息

Department of Environmental Engineering, Zhejiang University, Hangzhou 310058, People's Republic of China.

出版信息

J Hazard Mater. 2013 Jan 15;244-245:628-36. doi: 10.1016/j.jhazmat.2012.10.051. Epub 2012 Nov 2.

Abstract

The Pd/FeFe(3)O(4) nanocomposites showed higher dechlorination efficiency of 2,4-dichlorophenol (2,4-DCP) rather than bare Pd/Fe nanoparticles in the batch dechlorination experiments. nFe(3)O(4) provided a convenient way to recycle the nanocomposites with an external magnetic field and significantly enhanced 2,4-DCP dechlorination. 2.0 g L(-1) nFe(3)O(4) was the optimal dosage in the presence of 3 g L(-1) Pd/Fe nanoparticles in our system, removing 76.4% 2,4-DCP within 5h in the aqueous environment. This was much higher than bare Pd/Fe nanoparticles (35.8%), 1.0 g L(-1) nFe(3)O(4) (58.0%) and 2.5 g L(-1) nFe(3)O(4) (66.3%) employed under the same conditions. However, excessive nFe(3)O(4) (3.0 g L(-1)) partially overlapped on Pd/Fe nanoparticles to obstruct their contact with 2,4-DCP, and then 2,4-DCP removal efficiency was dropped to 7.4%. Efficiencies of dechlorination and phenol formations were increased significantly when the amount of Pd increased, whereas the highest 2,4-DCP removal efficiency was observed 98.2% at 0.20 wt% Pd loading. Moreover, SO(4)(2-) would also inhibit the dechlorination while Cu(2+), Ni(2+) and Fe(2+) enhanced the dechlorination of 2,4-DCP by Pd/FeFe(3)O(4) nanocomposites. The nanocomposites showed stable catalytic activity, fairly good mechanic stability, and promising to recycle during the process.

摘要

Pd/FeFe(3)O(4) 纳米复合材料在批量脱氯实验中表现出比纯 Pd/Fe 纳米粒子更高的 2,4-二氯苯酚 (2,4-DCP) 脱氯效率。nFe(3)O(4) 通过外加磁场为回收纳米复合材料提供了一种便捷的方式,并显著增强了 2,4-DCP 的脱氯效率。在我们的体系中,当存在 3 g L(-1) 的 Pd/Fe 纳米粒子时,2.0 g L(-1) 的 nFe(3)O(4) 是最佳用量,在水相环境中 5 h 内可去除 76.4%的 2,4-DCP。这远高于纯 Pd/Fe 纳米粒子 (35.8%)、1.0 g L(-1) nFe(3)O(4) (58.0%) 和 2.5 g L(-1) nFe(3)O(4) (66.3%) 在相同条件下的去除率。然而,过量的 nFe(3)O(4) (3.0 g L(-1)) 部分覆盖在 Pd/Fe 纳米粒子上,阻碍了它们与 2,4-DCP 的接触,导致 2,4-DCP 的去除效率下降至 7.4%。当 Pd 的用量增加时,脱氯和苯酚生成的效率显著提高,而当 Pd 负载量为 0.20 wt%时,观察到 2,4-DCP 的去除效率最高,为 98.2%。此外,SO(4)(2-) 会抑制 2,4-DCP 的脱氯,而 Cu(2+)、Ni(2+)和 Fe(2+) 则增强了 Pd/FeFe(3)O(4) 纳米复合材料对 2,4-DCP 的脱氯作用。该纳米复合材料表现出稳定的催化活性、相当好的机械稳定性,并且在处理过程中有望回收。

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