State Key Laboratory of Clean Energy, Department of Energy Engineering, Zhejiang University, Hangzhou, 310027, PR China.
State Key Laboratory of Clean Energy, Department of Energy Engineering, Zhejiang University, Hangzhou, 310027, PR China.
Chemosphere. 2020 Sep;255:126973. doi: 10.1016/j.chemosphere.2020.126973. Epub 2020 May 4.
Ti/SnO-Sb is a promising anode for electrochemical advanced oxidation process with advantages of low cost and no secondary pollution, while suffers from low work economy due to the short service life. In this study, a facile strategy was proposed to fabricate Ti/SnO-Sb electrode with high oxidation ability and long service life based on novelly sealing electrodeposited Sn-Sb coating with stannous citrate complex. The treated Ti/SnO-Sb electrode exhibited an accelerated service life of 41.5 h (100 mA cm; 0.5 M HSO) and a degradation rate constant for methylene blue dye of 1.02 h which were respectively 11.9 and 2.5 times as that of the untreated electrode. It was found out that the complex could well repair the coating defects inside or outside and form a covering film to tighten the coating, and was then mineralized during the following calcination process to achieve a uniform, rough and highly active SnO-Sb catalytic layer. The distinctive structure was confirmed by XRD, SEM, XPS and FT-IR. The sealing treatment could be achieved by in situ electrodepositing Sn-Sb coating from or ex situ dipping Sn-Sb coating in solution containing stannous citrate complex followed by drying in air. This study provided a novel, facile and effective strategy to enhance performance of Ti/SnO-Sb electrode that could be easily achieved in both laboratory and industrial scales and combined with other strategies.
钛/氧化锡-氧化锑(Ti/SnO-Sb)是电化学高级氧化过程中一种很有前途的阳极,具有成本低、无二次污染等优点,但由于使用寿命短,其工作经济性较差。本研究提出了一种简便的策略,通过新颖的柠檬酸亚锡络合物密封电沉积 Sn-Sb 涂层,来制备具有高氧化能力和长使用寿命的 Ti/SnO-Sb 电极。处理后的 Ti/SnO-Sb 电极的使用寿命加速至 41.5 h(100 mA cm-2;0.5 M HSO4),亚甲基蓝染料的降解速率常数为 1.02 h-1,分别是未经处理电极的 11.9 倍和 2.5 倍。研究发现,该络合物可以很好地修复涂层内外的缺陷,并形成覆盖膜以紧固涂层,然后在随后的煅烧过程中矿化,从而形成均匀、粗糙和高活性的 SnO-Sb 催化层。独特的结构通过 XRD、SEM、XPS 和 FT-IR 得到了证实。密封处理可以通过原位电沉积 Sn-Sb 涂层或在空气中干燥后在含有柠檬酸亚锡络合物的溶液中外加浸渍 Sn-Sb 涂层来实现。本研究提供了一种新颖、简便且有效的策略来增强 Ti/SnO-Sb 电极的性能,这种策略在实验室和工业规模上都很容易实现,并可以与其他策略结合使用。