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Photocatalytic Degradation of Recalcitrant POME Waste by using Silver Doped Titania: Photokinetics and Scavenging Studies

机译:银掺杂二氧化钛对难降解的POME废料的光催化降解:光动力学和清除研究

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摘要

The current paper reports on the photo-degradation of palm oil mill effluent over silver-modified titania (Ag/TiO2) under visible light irradiation. TiO2-based photocatalysts with 0.25–5.0 wt% of Ag metal loadings were prepared by impregnating TiO2 with chemically-reduced Ag nanoparticles from the AgNO3 solution. The XRD characterization suggests that anatase was the predominant phase for all the as-synthesized photocatalysts. In addition, UV–Vis DRS confirmed that the Ag inclusion has extended the absorbance of photocatalysts to the visible light region. Moreover, the band gap energy of TiO2 was successively reduced to 2.69 eV (5.0 wt% Ag/TiO2), a drop from 3.1 eV (bare TiO2). Consequently, the POME degradation efficiency jumped 300–15.03% by photoreaction over 1.0 g/L of 0.25 wt% Ag/TiO2 compared to the bare TiO2. The optimum loading of Ag was found to be 0.5 wt%, with corresponding degradation of 19.73%, and can be enhanced further to 26.77% with the optimum catalyst loading of 1.5 g/L. Moreover, scavenging study confirmed that the primary reactive species for POME degradation in the current system was OHradical dot free radicals. In recycling test, the degradation efficiency of 0.5 wt% Ag/TiO2 dropped to 11% and 13% for second and third cycle, respectively, due to leaching of Ag metal as proven by ICP-MS, post-reaction.
机译:本文报道了在可见光照射下,棕榈油厂废水在银改性的二氧化钛(Ag / TiO2)上的光降解。通过将Ag2O3溶液中的化学还原的Ag纳米颗粒浸渍到TiO2中,可以制备出Ag金属含量为0.25-5.0%(重量)的TiO2基光催化剂。 XRD表征表明,锐钛矿是所有合成的光催化剂的主要相。此外,UV-Vis DRS证实,Ag夹杂物已将光催化剂的吸收范围扩展到了可见光区域。此外,TiO2的带隙能被连续降低至2.69eV(5.0 wt%Ag / TiO2),而从3.1eV(裸TiO2)下降。因此,相较于裸露的TiO2,通过1.0 g / L的0.25 wt%Ag / TiO2的光反应,POME的降解效率跃升了300–15.03%。发现Ag的最佳负载量为0.5wt%,相应地降解为19.73%,并且在1.5g / L的最佳催化剂负载量下可以进一步提高至26.77%。此外,清除研究证实,当前系统中POME降解的主要反应物种是OH自由基点自由基。在循环测试中,由于ICP-MS证实了反应后的Ag金属的浸出,第二和第三次循环中0.5 wt%Ag / TiO2的降解效率分别降至11%和13%。

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