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在 N2、空气或不曝气的不同条件下,Fe/Cu 双金属颗粒和零价铁 (ZVI) 的反应活性比较研究。

Comparative study on the reactivity of Fe/Cu bimetallic particles and zero valent iron (ZVI) under different conditions of N2, air or without aeration.

机构信息

Department of Environmental Science and Engineering, School of Architecture and Environment, Sichuan University, Chengdu 610065, China.

Department of Environmental Science and Engineering, School of Architecture and Environment, Sichuan University, Chengdu 610065, China.

出版信息

J Hazard Mater. 2015 Oct 30;297:261-8. doi: 10.1016/j.jhazmat.2015.05.006. Epub 2015 May 6.

DOI:10.1016/j.jhazmat.2015.05.006
PMID:25978189
Abstract

In order to further compare the degradation capacity of Fe(0) and Fe/Cu bimetallic system under different aeration conditions, the mineralization of PNP under different aeration conditions has been investigated thoroughly. The results show that the removal of PNP by Fe(0) or Fe/Cu system followed the pseudo-first-order reaction kinetics. Under the optimal conditions, the COD removal efficiencies obtained through Fe(0) or Fe/Cu system under different aeration conditions followed the trend that Fe/Cu (air)>Fe/Cu (N2: 0-30 min, air: 30-120 min)>control-Fe (air)>Fe/Cu (without aeration)>Fe/Cu (N2)>control-Fe (N2). It revealed that dissolved oxygen (DO) could improve the mineralization of PNP, and Cu could enhance the reactivity of Fe(0). In addition, the degradation of PNP was further analyzed by using UV-vis, FTIR and GC/MS, and the results suggest that Fe/Cu bimetallic system with air aeration could completely break the benzene ring and NO2 structure of PNP and could generate the nontoxic and biodegradable intermediate products. Meanwhile, most of these intermediate products were further mineralized into CO2 and H2O, which brought about a high COD removal efficiency (83.8%). Therefore, Fe/Cu bimetallic system with air aeration would be a promising process for toxic refractory industry wastewater.

摘要

为了进一步比较不同曝气条件下零价铁(Fe(0))和 Fe/Cu 双金属系统的降解能力,深入研究了不同曝气条件下对 PNP 的矿化作用。结果表明,Fe(0)或 Fe/Cu 体系对 PNP 的去除遵循拟一级反应动力学。在最佳条件下,Fe(0)或 Fe/Cu 体系在不同曝气条件下的 COD 去除效率遵循以下趋势:Fe/Cu(空气)>Fe/Cu(N2:0-30min,空气:30-120min)>对照-Fe(空气)>Fe/Cu(无曝气)>Fe/Cu(N2)>对照-Fe(N2)。这表明溶解氧(DO)可以提高 PNP 的矿化程度,Cu 可以提高 Fe(0)的反应活性。此外,通过使用 UV-vis、FTIR 和 GC/MS 进一步分析 PNP 的降解情况,结果表明,空气曝气的 Fe/Cu 双金属体系可以完全破坏 PNP 的苯环和 NO2 结构,并生成无毒、可生物降解的中间产物。同时,这些中间产物中的大部分进一步矿化为 CO2 和 H2O,从而实现了高 COD 去除效率(83.8%)。因此,空气曝气的 Fe/Cu 双金属体系是一种很有前途的处理有毒难降解工业废水的方法。

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