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可持续的磁性可回收铱涂覆的 FeO 纳米颗粒用于增强水中有机污染物的催化还原。

Sustainable magnetically recoverable Iridium-coated FeO nanoparticles for enhanced catalytic reduction of organic pollutants in water.

机构信息

Department of Applied Sciences, Punjab Engineering College (Deemed to Be University), Sector-12, Chandigarh, India.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(19):56464-56483. doi: 10.1007/s11356-023-26267-z. Epub 2023 Mar 15.

Abstract

The reduction of nitroarenes to aromatic amines is one of the potential pathways to remediate the hazardous impact of toxic nitroarenes on the aquatic environment. Aromatic amines obtained from the reduction of nitroaromatics are not only less toxic than nitroaromatics but also act as important intermediates in the synthesis of dyes, drugs, pigments, herbicides, and polymers. There is a huge demand for the development of cost-effective, and eco-friendly catalysts for the efficient reduction of nitroarenes. In the present study, FeO@trp@Ir nanoparticles were explored as efficient catalysts for the reduction of nitroarenes. FeO@trp@Ir magnetic nanoparticles were fabricated by surface coating of FeO with tryptophan and iridium by co-precipitation method. As-prepared FeO@trp@Ir nanoparticles are environmentally benign efficient catalysts for reducing organic pollutants such as 4-nitrophenol (4-NP), 4-nitroaniline (4-NA), and 1-bromo-4-nitrobenzene (1-B-4-NB). The key parameters that affect the catalytic activity like temperature, catalyst loading, and the concentration of reducing agent NaBH were optimized. The obtained results proved that FeO@trp@Ir is an efficient catalyst for reducing nitroaromatics at ambient temperature with a minimal catalyst loading of 0.0025%. The complete conversion of 4-nitrophenol to 4-aminophenol took only 20 s with a minimal catalyst loading of 0.0025% and a rate constant of 0.0522 s. The high catalytic activity factor (1.040 s mg) and high turnover frequency (9 min) obtained for FeO@trp@Ir nanocatalyst highlight the possible synergistic effect of the two metals (Fe and Ir). The visible-light photocatalytic degradation of 4-NP was also investigated in the presence of FeO@trp@Ir. The photocatalytic degradation of 4-NP by FeO@trp@Ir is completed in 20 min with 95.15% efficiency, and the rate of photodegradation of 4-NP (0.1507 min) is about twice the degradation rate of 4-NP in the dark (0.0755 min). The catalyst was recycled and reused for five cycles without significant reduction in the conversion efficiency of the catalyst.

摘要

将硝基芳烃还原为芳香胺是修复有毒硝基芳烃对水生环境的潜在途径之一。由硝基芳烃还原得到的芳香胺不仅毒性比硝基芳烃低,而且还是合成染料、药物、颜料、除草剂和聚合物的重要中间体。因此,开发经济高效且环保的催化剂来高效还原硝基芳烃具有巨大的需求。在本研究中,我们探索了 FeO@trp@Ir 纳米粒子作为高效还原硝基芳烃的催化剂。通过共沉淀法,用色氨酸和铱对 FeO 进行表面包覆,制备了 FeO@trp@Ir 磁性纳米粒子。所制备的 FeO@trp@Ir 纳米粒子是环境友好的高效催化剂,可用于还原有机污染物,如 4-硝基苯酚(4-NP)、4-硝基苯胺(4-NA)和 1-溴-4-硝基苯(1-B-4-NB)。优化了影响催化活性的关键参数,如温度、催化剂负载量和还原剂 NaBH 的浓度。结果证明,在环境温度下,FeO@trp@Ir 以最小的催化剂负载量 0.0025%即可有效还原硝基芳烃。以最小的催化剂负载量 0.0025%和 0.0522 s 的速率常数,4-硝基苯酚完全转化为 4-氨基酚仅需 20 s。FeO@trp@Ir 纳米催化剂的高催化活性因子(1.040 s·mg)和高转化频率(9 min)表明两种金属(Fe 和 Ir)之间可能存在协同效应。还研究了 FeO@trp@Ir 存在下 4-NP 的可见光光催化降解。FeO@trp@Ir 对 4-NP 的光催化降解在 20 min 内完成,效率为 95.15%,4-NP 的光降解速率(0.1507 min)约为暗降解速率(0.0755 min)的两倍。催化剂经过五次循环回收和再利用,转化率没有明显降低。

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