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首页> 外文期刊>RSC Advances >Degradation of atrazine from the riparian zone with a PEC system based on an anode of N–S–TiO2 nanocrystal-modified TiO2 nanotubes and an activated carbon photocathode
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Degradation of atrazine from the riparian zone with a PEC system based on an anode of N–S–TiO2 nanocrystal-modified TiO2 nanotubes and an activated carbon photocathode

机译:基于N-S-TiO2纳米晶体改性TiO2纳米管阳极和活性炭光电区的阳极,用PEC系统降解河桥与河桥区的降解

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摘要

In this study, we developed a photoelectrochemical (PEC) system based on an anode of N–S–TiO _(2) nanocrystal-modified TiO _(2) nanotubes and an activated carbon photocathode to degrade atrazine from the riparian zone. This material of N–S–TiO _(2) /AC was characterized by SEM, XRD, XPS, EDX and fluorescence detection. The characterization results indicated that the systems of NS–TiO _(2) –TiO _(2) /AC and NS–TiO _(2) NCs/TNTAs-AC/PTFE allowed the highest yield of ˙OH. According to the simulation results of the absorbance of N–S–TiO _(2) with MS, N–S–TiO _(2) has a maximum absorbance at 155 nm and 237 nm in the UV region; the average absorbance of N–S–TiO _(2) in the visible region was 10?000 higher than that of TiO _(2) . At pH 5.9, N–S–TiO _(2) NCs/TiO _(2) NTs-AC/PTFE realized the highest atrazine removal rate, reaching a 93.89% atrazine removal rate within 150 min in water from the riparian buffer zone. The PEC system comprising the anode of N–S–TiO _(2) nanocrystal-modified TiO _(2) nanotubes and the activated carbon photocathode might be an efficient way to remove atrazine in the riparian buffer zone.
机译:在这项研究中,我们开发了一种基于N-S-TiO _(2)纳米晶体改性TiO _(2)纳米管的阳极和活性炭光电阴极的光电化学(PEC)系统,以降解河流区的尿嘧啶。 N-S-TiO _(2)/ AC的这种材料的特征在于SEM,XRD,XPS,EDX和荧光检测。表征结果表明,NS-TiO _(2)-TiO _(2)/ AC和NS-TiO _(2)NCS / TNTAS-AC / PTFE的系统允许最高产率˙OH。根据用MS的N-S-TiO _(2)的吸光度的模拟结果,N-S-TiO _(2)在UV区域的155nm和237nm处具有最大吸光度;可见区域中N-S-TiO _(2)的平均吸光度高于TiO _(2)的10Ω000。在pH 5.9中,N-S-TiO _(2)NCS / TiO _(2)NTS-AC / PTFE实现了最高的尿嘧啶去除率,从河岸缓冲区的150分钟内达到了93.89%的尿嘧啶去除率。包含N-S-TiO _(2)纳米晶体改性TiO _(2)纳米管和活性炭光电处理的阳极的PEC系统可能是除去河流缓冲区中的尿嘧啶的有效方法。

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