Solar-photocatalytic treatment of industrial wastewater using mechanically doped CNS-TiO2 and synergistic TiO2 incorporation: A promising cost-effective approach for industrial wastewater treatment

光催化 废水 工业废水处理 兴奋剂 材料科学 污水处理 废物管理 化学工程 纳米技术 化学 环境科学 环境工程 催化作用 光电子学 工程类 有机化学
作者
Harish Kuruva,Vedasri Bai Khavala,B.R. Mishra,K. Murugan,Tiju Thomas,B. S. Murty
出处
期刊:Materials Research Bulletin [Elsevier BV]
卷期号:177: 112825-112825 被引量:2
标识
DOI:10.1016/j.materresbull.2024.112825
摘要

TiO2 alone demonstrated limited efficiency in degrading industrial wastewater. This study aims to the effectiveness of CNS-doped TiO2 nanoparticles for the degradation of anionic dyes, cationic dyes, and industrial wastewater. For the first time, mechanical milling is employed to synthesize CNS-doped TiO2 nanoparticles using thiourea as a precursor. This results in lattice strains and concomitant crystal and electronic structure changes. We note that these lead to increased photocatalytic activity. Mechanical milling creates a new phase known as brookite, which further improves photocatalytic efficiency through synergistic effects. The physicochemical properties and photocatalytic performance of CNS-TiO2 are evaluated and compared with mspd-TiO2 and commercially available Degussa P-25 TiO2. In photocatalytic degradation tests, remarkably, CNS-TiO2 exhibited beter degradation efficiency for anionic dyes (MO - 65±3% in 120min; CR - 100% in 30min), cationic dyes (MB - 100% in 30min; Rh B 100% in 120min) and industrial wastewater (∼100% in 120min). The treated wastewater TDS (56 ± 2 ppm), TSS (0.16 g/L), CHNS, and COD (190 ± 10 mg/L) results are closer to drinking water quality. The reusability test revealed lower activity in the mspd-TiO2 and CNS-TiO2 attributed to particle aggregation, the loss of activation sites, and mass loss. This study demonstrates CNS-TiO2 enhanced photocatalytic properties and cost-effectiveness making them highly promising for treating any industrial effluents containing dyes.
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