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Cr(VI) remediation from aqueous environment through modified-TiO2-mediated photocatalytic reduction

机译:通过修饰的TiO2介导的光催化还原作用从水环境中去除Cr(VI)

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摘要

Cr(VI) exhibits cytotoxic, mutagenic and carcinogenic properties; hence, effluents containing Cr(VI) from various industrial processes pose threat to aquatic life and downstream users. Various treatment techniques, such as chemical reduction, ion exchange, bacterial degradation, adsorption and photocatalysis, have been exploited for remediation of Cr(VI) from wastewater. Among these, photocatalysis has recently gained considerable attention. The applications of photocatalysis, such as water splitting, CO2 reduction, pollutant degradation, organic transformation reactions, N2 fixation, etc., towards solving the energy crisis and environmental issues are briefly discussed in the Introduction of this review. The advantages of TiO2 as a photocatalyst and the importance of its modification for photocatalytic reduction of Cr(VI) has also been addressed. In this review, the photocatalytic activity of TiO2 after modification with carbon-based advanced materials, metal oxides, metal sulfides and noble metals towards reduction of Cr(VI) was evaluated and compared with that of bare TiO2. The photoactivity of dye-sensitized TiO2 for reduction of Cr(VI) was also discussed. The mechanism for enhanced photocatalytic activity was highlighted and attributed to the resultant properties, namely, effective separation of photoinduced charge carriers, extension of the light absorption range and intensity, increase of the surface active sites, and higher photostability. Advantages and limitations for photoreduction of Cr(VI) over modified TiO2 are depicted in the Conclusion. The various challenges that restrict the technology from practical applications in remediation of Cr(VI) from wastewater were addressed in the Conclusion section as well. The future perspectives of the field presented in this review are focused on the development of whole-solar-spectrum responsive, TiO2-coupled photocatalysts which provide efficient photocatalytic reduction of Cr(VI) along with their good recoverability and recyclability.
机译:六价铬具有细胞毒性,致突变性和致癌性。因此,来自各种工业过程的含Cr(VI)的废水对水生生物和下游使用者构成威胁。各种处理技术,如化学还原,离子交换,细菌降解,吸附和光催化,已被用于从废水中修复六价铬。其中,光催化最近受到了相当大的关注。在本综述的简介中,简要讨论了光催化在解决能源危机和环境问题方面的应用,例如水分解,CO2还原,污染物降解,有机转化反应,N2固定等。 TiO2作为光催化剂的优点以及其修饰对于光催化还原Cr(VI)的重要性也已得到解决。在这篇综述中,评估了用碳基高级材料,金属氧化物,金属硫化物和贵金属改性后的TiO2对Cr(VI)还原的光催化活性,并将其与裸露的TiO2进行了比较。还讨论了染料敏化的TiO2还原Cr(VI)的光活性。强调了增强光催化活性的机制,并将其归因于所得的性质,即有效分离光致电荷载流子,扩展光吸收范围和强度,增加表面活性位和提高光稳定性。结论中描述了在改性TiO2上光还原Cr(VI)的优势和局限性。结论部分还解决了限制该技术在废水中六价铬的实际应用中受到限制的各种挑战。在这篇综述中提出的该领域的未来观点集中在全太阳能响应的,TiO 2偶联的光催化剂的开发上,该催化剂提供了有效的光催化还原Cr(VI)以及良好的可回收性和可循环性。

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