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首页> 外文期刊>Journal of Hazardous Materials >Photoelectrochemical degradation of 2,4-dichlorophenoxyacetic acid using electrochemically self-doped Blue TiO_2 nanotube arrays with formic acid as electrolyte
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Photoelectrochemical degradation of 2,4-dichlorophenoxyacetic acid using electrochemically self-doped Blue TiO_2 nanotube arrays with formic acid as electrolyte

机译:以甲酸为电解质的电化学自掺杂蓝TiO_2纳米管阵列光电化学降解2,4-二氯苯氧基乙酸

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Blue TiO2 nanotube arrays (Blue-TNTs) were fabricated via an electrochemical reduction method with formic acid as the electrolyte. The optimum reduction conditions were obtained as bias potential of -1.3 V, reduction time of 5 min and formic acid of 3 M. Blue-TNTs were remarkably corroded compared with the intact TNTs. Similar crystal structures of the two catalysts were observed using X-ray diffraction, while red-shift was observed for Blue-TNTs using Raman spectra. X-ray photoelectron spectroscopy indicated of the presence of Ti3+ in Blue-TNTs that resulted from the reduction of Ti4+ and reduced the resistance of the catalyst. Blue-TNTs exhibited much stronger light-absorption than intact TNTs over the entire ultraviolet-visible region, especially in the visible region. The catalyst was used toward the photoelectrochemical oxidation of 2,4-dichlorophenoxyacetic acid (2,4-D) for the first time where the influencing factors were studied. Photoelectrocatalysis with Blue-TNTs presented a 2,4-D degradation rate constant (0.0295 min(-1)) more than twice the sum of that of electrocatalysis (0.0055 min(-1)) and photocatalysis (0.0089 min(-1)). Blue-TNTs fabricated in formic acid showed a better photoelectrocatalytic performance for 2,4-D removal compared with that prepared in ethylene glycol, Na2SO4 and NaNO3 solution. Blue-TNTs is considered to be a promising photoelectric anode for contaminant degradation.
机译:以甲酸为电解质,通过电化学还原法制备了蓝色TiO2纳米管阵列(Blue-TNTs)。获得最佳还原条件为:偏置电位为-1.3 V,还原时间为5分钟,甲酸为3M。与完整的TNT相比,Blue-TNT受到明显腐蚀。使用X射线衍射观察到了两种催化剂的相似晶体结构,而使用拉曼光谱观察到了蓝色TNT的红移。 X射线光电子能谱表明在Blue-TNT中存在Ti 3+,这是由于Ti 4+的还原和催化剂电阻的降低所致。在整个紫外可见光区域,尤其是在可见光区域,蓝色TNT的光吸收性比完整TNT强得多。首次将催化剂用于2,4-二氯苯氧基乙酸(2,4-D)的光电化学氧化,研究了影响因素。 Blue-TNTs的光电催化表现出2,4-D降解速率常数(0.0295 min(-1))两倍于电催化(0.0055 min(-1))和光催化(0.0089 min(-1))之和。与在乙二醇,Na2SO4和NaNO3溶液中制备的Blue-TNT相比,在甲酸中制备的Blue-TNT具有更好的光电催化性能,可去除2,4-D。蓝色TNT被认为是有希望的用于污染物降解的光电阳极。

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