Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, Chinese Taipei; Material and Chemical Research Laboratories, Industrial Technology Research Institute, Hsinchu, Taiwan, Chinese Taipei.
Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, Chinese Taipei.
J Environ Sci (China). 2016 Jul;45:100-7. doi: 10.1016/j.jes.2016.01.004. Epub 2016 Feb 13.
Complex organics contained in dye wastewater are difficult to degrade and often require electrochemical advanced oxidation processes (EAOPs) to treat it. Surface activation of the electrode used in such treatment is an important factor determining the success of the process. The performance of boron-doped nanocrystalline diamond (BD-NCD) film electrode for decolorization of Acid Yellow (AY-36) azo dye with respect to the surface activation by electrochemical polarization was studied. Anodic polarization found to be more suitable as electrode pretreatment compared to cathodic one. After anodic polarization, the originally H-terminated surface of BD-NCD was changed into O-terminated, making it more hydrophilic. Due to the oxidation of surface functional groups and some portion of sp(2) carbon in the BD-NCD film during anodic polarization, the electrode was successfully being activated showing lower background current, wider potential window and considerably less surface activity compared to the non-polarized one. Consequently, electrooxidation (EO) capability of the anodically-polarized BD-NCD to degrade AY-36 dye was significantly enhanced, capable of nearly total decolorization and chemical oxygen demand (COD) removal even after several times of re-using. The BD-NCD film electrode favored acidic condition for the dye degradation; and the presence of chloride ion in the solution was found to be more advantageous than sulfate active species.
含复杂有机物的染料废水难以降解,通常需要电化学高级氧化工艺 (EAOPs) 进行处理。这种处理中所用电极的表面活化是决定处理成功与否的一个重要因素。研究了硼掺杂纳米晶金刚石 (BD-NCD) 薄膜电极在电化学极化表面活化条件下对偶氮染料酸性黄 (AY-36) 的脱色性能。与阴极极化相比,阳极极化更适合作为电极预处理。阳极极化后,原本由 H 终止的 BD-NCD 表面变成了 O 终止,使其更亲水。由于阳极极化过程中表面官能团和部分 sp(2) 碳的氧化,电极成功地被激活,显示出比非极化电极更低的背景电流、更宽的电位窗口和明显较少的表面活性。因此,经阳极极化处理的 BD-NCD 对 AY-36 染料的电氧化 (EO) 降解能力显著增强,即使经过多次重复使用,也能近乎完全脱色和去除化学需氧量 (COD)。BD-NCD 薄膜电极有利于酸性条件下的染料降解;并且发现溶液中氯离子的存在比硫酸盐活性物种更有利。