赤泥基光催化材料降解水中有机污染物的应用现状及发展趋势

Review on the application and development of red mud-based photocatalytic materials for degradation of organic pollutants in water

  • 摘要: 光催化作为一种低成本且高效安全的环境净化技术,被认为是全球能源危机和环境污染问题最好的解决方式之一。赤泥作为一种固废不仅含有丰富的铁氧化物,且具有较高的比表面积、孔结构等特点,近年来,赤泥基光催化材料在光催化降解水中有机污染物的研究中备受关注。本文介绍了赤泥的特性,概括了赤泥基光催化材料的制备方法,总结了赤泥基光催化材料在光催化降解水中有机污染物方面的应用,阐述了赤泥基光催化材料催化降解水中有机污染物的机理,探讨了现有赤泥基光催化材料存在的问题。最后,基于以往的研究结果对赤泥基光催化材料未来的发展趋势提出了展望及建议。

     

    Abstract: Red mud is a strong alkaline solid waste that is discharged from alumina production process. Its cumulative storage and annual emission are huge with about 0.8–1.5 t of red mud emitted for 1 t of alumina produced. As of 2018, the global cumulative emissions of red mud were about 4 billion t and increased by 120 million tons annually. In China, about 100 million tons of red mud are discharged annually and the comprehensive utilization rate of red mud is about 4%, which is mainly stored in the Red Mud Dam. This often causes serious damage to the surrounding environment, as the red mud with high alkalinity and radioactivity raises the alkalization of soil and leaching into the groundwater through diffusion and infiltration. The comprehensive utilization of red mud is mainly to prepare building materials, ceramics materials, new functional materials, and recover valuable metals. As a low-cost, efficient, and safe environment-friendly environmental purification technology, photocatalytic technology is considered to be one of the best solutions to the severe energy crisis and environmental pollution problems that the world is currently facing. Semiconductor photocatalytic materials (such as Fe2O3, TiO2, ZnO) have been widely studied in the degradation of organic pollutants in water. Red mud is rich in iron oxides and has a high specific surface area and pore structure. In recent years, red mud-based photocatalytic materials have attracted much attention in the photocatalytic degradation of organic pollutants in water. In this paper, the characteristics of red mud were introduced. The preparation methods of red mud-based photocatalytic materials were summarized and its application in the photocatalytic degradation of organic pollutants in water was summarized. The mechanism of red mud-based photocatalytic materials for degradation of organic pollutants in water was described, and the existing problems of these materials were discussed. Finally, the future development trend of red mud-based photocatalytic materials was proposed based on previous research results.

     

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