Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, College of Chemistry, Central China Normal University, Wuhan 430079, People's Republic of China.
J Hazard Mater. 2010 Apr 15;176(1-3):678-84. doi: 10.1016/j.jhazmat.2009.11.085. Epub 2009 Dec 11.
In this study, we demonstrate an electro-Fenton (E-Fenton) system constructed with a novel sandwich film cathode (SFC). For the fabrication of SFC, Fe(2+)-chitosan (Fe-CHI) was first deposited on foam nickel (Fe-CHI/Ni). Then two pieces of Fe-CHI/Ni was used to fasten one piece of activated carbon fiber (ACF) to obtain a Fe-CHI/Ni|ACF|Fe-CHI/Ni sandwich film cathode. We interestingly found that this SFC based E-Fenton system could effectively degrade rodamine B with in situ generating both hydrogen peroxide and iron ions. Its degradation efficiency was significantly higher than those of the E-Fenton systems constructed with composite cathodes of carbon nanotubes with Fe@Fe(2)O(3) core-shell nanowires or Cu(2)O nanocubes reported in our previous studies. Hydrogen peroxide electrogenerated through the reduction of O(2) adsorbed on the sandwich film cathode and the iron ions produced by the leakage from Fe(2+)-chitosan film during the E-Fenton reaction were, respectively, monitored, providing clues to understand the high efficiency of this novel SFC based E-Fenton system. More importantly, this low-cost sandwich film cathode was very stable and could be reused without catalytic activity decrease, suggesting its potential application in the wastewater treatment.
在本研究中,我们展示了一种采用新型三明治膜阴极(SFC)构建的电芬顿(E-Fenton)系统。为了制备 SFC,首先将 Fe(2+)-壳聚糖(Fe-CHI)沉积在泡沫镍上(Fe-CHI/Ni)。然后,将两块 Fe-CHI/Ni 用于固定一块活性碳纤维(ACF),以获得 Fe-CHI/Ni|ACF|Fe-CHI/Ni 三明治膜阴极。我们有趣地发现,这种基于 SFC 的 E-Fenton 系统可以有效地降解罗丹明 B,并原位生成过氧化氢和铁离子。其降解效率明显高于我们之前研究中采用碳纳米管与 Fe@Fe(2)O(3)核壳纳米线或 Cu(2)O 纳米立方复合阴极构建的 E-Fenton 系统。通过吸附在三明治膜阴极上的 O(2)还原和 E-Fenton 反应中 Fe-CHI 膜泄漏产生的铁离子生成的过氧化氢分别进行监测,为理解这种新型 SFC 基 E-Fenton 系统的高效率提供了线索。更重要的是,这种低成本的三明治膜阴极非常稳定,可重复使用而不会降低催化活性,这表明其在废水处理方面具有潜在的应用前景。