Valadez-Renteria Ernesto, Oliva Jorge, Navarro-Garcia Nayeli E, Rodriguez-Gonzalez Vicente
División de Materiales Avanzados, Instituto Potosino de Investigación Científica Y Tecnológica A.C, 78216, San Luis Potosí, SLP, México.
Environ Sci Pollut Res Int. 2022 Nov;29(51):76752-76765. doi: 10.1007/s11356-022-21301-y. Epub 2022 Jun 7.
In this research, W-doped sodium nanotube titanate (NaTNT) nanoparticles were used for the photocatalytic degradation of the bromophenol blue (BPB) dye. The NaTNT powder was mixed with car's tire powder (TP) to enhance its light absorption or was supported on recycled car's air filters (AFs) to facilitate its removal from the cleaned water after the degradation of the BPB. The SEM analysis indicated that the NaTNT nanoparticles and the TP had sizes in the range of 150-325 nm and 8-37 µm, respectively. Both powders were also studied by X-ray diffraction and found that the sodium titanate corresponds to the NaTiO with monoclinic phase, while the TP is formed by rubber, silicon, ZnS, and ZnO. The photocatalytic activity of the NaTNT powder was evaluated for the degradation of BPB dye (20 ppm) and obtained a maximum degradation of 95 and 80% under UV-Vis and natural solar light, respectively, after 4 h of irradiation. For the NaTNT + TP composite mixture, the maximum degradation was 87 and 68% under UV-Vis and solar light, respectively. The NaTNT and NaTNT + TP powders were supported on the AFs to form the AF + NaTNT and AF + NaTNT + TP composites. Those ones produced maximum degradation of 86% and 74% (under UV-Vis light), respectively. Besides, several initial pHs were tested for the contaminated water and determined that the maximum degradation of BPB (93-95%) is reached for the pHs of 3 and 7. Reuse experiments (3 cycles) revealed that the diminution of the BPB degradation percentage was 23% and 20% for the NaTNT and NaTNT + TP powders, respectively. Overall, it was demonstrated that the wasted car's air filters can be used as a support for photocatalytic powders, and this combination of AF + powder degrades the BPB with high efficiency.
在本研究中,W掺杂的钠钛矿纳米管(NaTNT)纳米颗粒用于光催化降解溴酚蓝(BPB)染料。将NaTNT粉末与汽车轮胎粉末(TP)混合以增强其光吸收,或将其负载在回收的汽车空气滤清器(AFs)上,以便在BPB降解后便于从净化水中去除。扫描电子显微镜(SEM)分析表明,NaTNT纳米颗粒和TP的尺寸分别在150 - 325纳米和8 - 37微米范围内。还通过X射线衍射对两种粉末进行了研究,发现钛酸钠对应于单斜相的NaTiO,而TP由橡胶、硅、ZnS和ZnO组成。评估了NaTNT粉末对BPB染料(20 ppm)的光催化活性,在紫外 - 可见光和自然太阳光照射4小时后,其最大降解率分别为95%和80%。对于NaTNT + TP复合混合物,在紫外 - 可见光和太阳光下的最大降解率分别为87%和68%。将NaTNT和NaTNT + TP粉末负载在AFs上形成AF + NaTNT和AF + NaTNT + TP复合材料。这些复合材料在紫外 - 可见光下的最大降解率分别为86%和74%。此外,对受污染水的几个初始pH值进行了测试,确定在pH值为3和7时BPB的降解率最高(93 - 95%)。重复使用实验(3个循环)表明,NaTNT和NaTNT + TP粉末的BPB降解率分别降低了23%和20%。总体而言,证明了废弃的汽车空气滤清器可作为光催化粉末的载体,并且这种AF + 粉末的组合能高效降解BPB。