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片状微纳结构零价铁对滴滴涕的强化降解性能。

Enhanced degradation performances of plate-like micro/nanostructured zero valent iron to DDT.

机构信息

Key Laboratory of Materials Physics, Anhui Key Laboratory of Nanomaterials and Nanotechnology, Center for Environmental and Energy Nanomaterials, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, PR China.

Key Laboratory of Materials Physics, Anhui Key Laboratory of Nanomaterials and Nanotechnology, Center for Environmental and Energy Nanomaterials, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, PR China.

出版信息

J Hazard Mater. 2016 Apr 15;307:145-53. doi: 10.1016/j.jhazmat.2015.12.063. Epub 2016 Jan 4.

Abstract

Micro/nanostructured zero valent iron (MNZVI) is successfully mass-synthesized by ball-milling the industrially-reduced iron powders. The as-prepared MNZVI is plate-like in morphology with about 2-5μm in planar size and 35-55nm in thickness, and ∼16m(2)/g in specific surface area. Such plate-like MNZVI has demonstrated much higher degradation performances to DDT [or 1,1,1-trichloro-2,2-bis(4-chlorophenyl) ethane] in the aqueous solution than the commercial ZVI powders under acidic conditions. The MNZVI-induced DDT degradation is also much faster than the previously reported results. The time-dependent DDT removal amount can be described by the pseudo first-order kinetic model. Further experiments have shown that more than 50% of DDT can be mineralized in 20min and the rest is dechlorinated to DDX (the products with less chlorine). It has been revealed that the DDT degradation could be attributed to the acid assisted ZVI-induced mineralization and dechlorination. The mineralization process is dominant during the initial stage within 20min, and the dechlorination is the main reaction in the anaphase of the degradation. This work not only deepens understanding of DDT degradation but also could provide a highly efficient material for the practical treatment of the DDT in a real environment.

摘要

通过球磨工业还原铁粉成功地大规模合成了微/纳结构零价铁(MNZVI)。所制备的 MNZVI 呈板状形貌,平面尺寸约为 2-5μm,厚度为 35-55nm,比表面积约为 16m²/g。与酸性条件下的商业 ZVI 粉末相比,这种片状 MNZVI 在水溶液中对 DDT[或 1,1,1-三氯-2,2-双(4-氯苯基)乙烷]的降解性能要高得多。MNZVI 诱导的 DDT 降解速度也比以前报道的结果快得多。随时间变化的 DDT 去除量可以用伪一级动力学模型来描述。进一步的实验表明,超过 50%的 DDT 可以在 20min 内矿化,其余的则脱氯为 DDX(含氯较少的产物)。已经揭示出 DDT 的降解可以归因于酸辅助 ZVI 诱导的矿化和脱氯。在最初的 20min 内,矿化过程是主要的,而在降解的后期,脱氯是主要的反应。这项工作不仅加深了对 DDT 降解的理解,而且为实际环境中 DDT 的实际处理提供了一种高效的材料。

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