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Photo-assisted degradation of 2,4,5-trichlorophenol by Electro-Fe(II)/Oxone® process using a sacrificial iron anode : performance optimization and reaction mechanism

机译:牺牲铁阳极通过Electro-Fe(II)/Oxone®工艺光辅助降解2,4,5-三氯苯酚:性能优化和反应机理

摘要

The degradation of chlorinated organic compound (2,4,5-trichlorophenol, 2,4,5-TCP) in Electro-Fe(II)/Oxone® system simultaneously exposed to UV (254. nm) irradiation (i.e., EFOU) was investigated in this study. In this oxidation process, once an electric current is applied between the anode (an iron sheet) and the cathode (a graphite bar), a predetermined amount of Oxone® is added to the reactor and UV light is simultaneously irradiated. It was found that an acidic condition is favorable to the process and over 92% removal of 0.2. mM 2,4,5-TCP in the pH range of 2.5-4.35 was rapidly obtained by the proposed EFOU process. Nevertheless, around 80% of 2,4,5-TCP was decayed at pH of 7.70 in 20. min suggesting that the proposed EFOU process is efficient even at neutral pH. Experimental results show that applied current of 1. mA results in the best performance, while the process is slightly inhibited at higher currents due to excessive generation of ferrous ions. The investigation on the mode of current-application shows that the EFOU process can be further optimized by controlling a proper electrolytic duration to reach a balance of Fe(II) generation and energy consumption. Additionally, it is found that tandem addition of Oxone® could minimize the scavenging effect between the radicals (from the first dose) and fresh Oxone® (from the second dose) and improve the overall performance of EFOU. Furthermore, aromatic intermediates such as 2,5-dichlorohydroquinone, 4,6-dichlororesorcinol, 2,4-chlorophenol, and many others are identified by using LC-ESI/MS analysis, based on which a possible decay pathway of 2,4,5-TCP by EFOU process is therefore proposed.
机译:同时暴露于紫外线(254. nm)的El​​ectro-Fe(II)/Oxone®系统中的氯化有机化合物(2,4,5-三氯苯酚,2,4,5-TCP)的降解为在这项研究中进行了调查。在该氧化过程中,一旦在阳极(铁片)和阴极(石墨棒)之间施加电流,就将预定量的Oxone®添加到反应器中,并同时照射UV光。发现酸性条件对该方法是有利的并且超过92%的0.2被去除。通过提出的EFOU方法可快速获得pH值为2.5-4.35的mM 2,4,5-TCP。然而,大约20%的2,4,5-TCP在20分钟的pH为7.70时衰减了,这表明所提出的EFOU工艺即使在中性pH下也是有效的。实验结果表明,施加的电流为1. mA可获得最佳性能,而由于亚铁离子的过量生成,该过程在较高电流下会受到轻微抑制。对电流施加方式的研究表明,可以通过控制适当的电解时间以达到Fe(II)生成和能量消耗的平衡来进一步优化EFOU工艺。另外,发现串联添加Oxone®可以使自由基(从第一个剂量开始)和新鲜的Oxone®(从第二个剂量开始)之间的清除作用最小化,并改善EFOU的整体性能。此外,使用LC-ESI / MS分析鉴定了2,5,5-二氯氢醌,4,6-二氯间苯二酚,2,4-氯苯酚等芳香族中间体,并据此推测了2,4,因此,提出了基于EFOU的5-TCP。

著录项

  • 作者

    Wang YR; Chu W;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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