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功能化黏土负载双金属纳米零价铁/钯用于去除水溶液中的甲基橙。

Functional clay supported bimetallic nZVI/Pd nanoparticles used for removal of methyl orange from aqueous solution.

机构信息

School of Environmental Science and Engineering, Fujian Normal University, Fuzhou 350007, Fujian Province, China; Fujian Key Laboratory of Pollution Control & Resource Reuse, Fujian Normal University, Fuzhou 350007, Fujian Province, China.

出版信息

J Hazard Mater. 2013 Nov 15;262:819-25. doi: 10.1016/j.jhazmat.2013.09.028. Epub 2013 Sep 20.

Abstract

Bentonite supported Fe/Pd nanoparticles (B/nZVI/Pd) were synthesized as composites that exhibit functionalities assisting in the removal of methyl orange (MO) from aqueous solution. The results showed that 91.87% of MO was removed using B/nZVI/Pd, while only 85% and 1.41% of MO were removed using nZVI/Pd and bentonite after 10 min, respectively. The new findings include that the presence of bentonite decreased the aggregation of nZVI/Pd and nZVI in the composite played its role as a reductant, while Pd(0) acted as the catalyst to enhance the degradation of MO, which were confirmed by scanning electron microscopy (SEM), X-ray diffraction (XRD), UV-vis analysis and the batch experiments. The increase in B/nZVI/Pd loading led to greater removal efficiency, while decolorization efficiency declined in the presence of anions such as nitrate, sulfite and carbonate, especially nitrate, which decreased the apparent rate constant k(obs) almost 17.06-fold. The kinetics study indicated that the degradation of MO fitted well to the pseudo-first-order model, where the k(obs) was 0.0721 min(-1). Finally, the reactivity of aged B/nZVI/Pd was investigated, and the application of B/nZVI/Pd in wastewater indicated a removal efficiency higher than 93.75%. This provided a new environmental pollution management option for dyes-contaminated sites.

摘要

膨润土负载的 Fe/Pd 纳米颗粒(B/nZVI/Pd)被合成复合材料,具有去除水溶液中甲基橙(MO)的功能。结果表明,使用 B/nZVI/Pd 可以去除 91.87%的 MO,而使用 nZVI/Pd 和膨润土分别在 10 分钟后仅去除 85%和 1.41%的 MO。新的发现包括膨润土的存在减少了 nZVI/Pd 和复合材料中 nZVI 的聚集,而 nZVI 在复合中起到还原剂的作用,而 Pd(0) 则作为催化剂增强 MO 的降解,这通过扫描电子显微镜(SEM)、X 射线衍射(XRD)、UV-vis 分析和批实验得到证实。B/nZVI/Pd 负载量的增加导致去除效率更高,而阴离子如硝酸盐、亚硫酸盐和碳酸盐的存在会降低脱色效率,特别是硝酸盐,几乎使表观速率常数 k(obs)降低了 17.06 倍。动力学研究表明,MO 的降解很好地符合准一级模型,k(obs)为 0.0721 min(-1)。最后,研究了老化的 B/nZVI/Pd 的反应性,B/nZVI/Pd 在废水处理中的应用表明去除效率高于 93.75%。这为受染料污染的场地提供了一种新的环境污染管理选择。

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