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Iron modified bentonite: Enhanced adsorption performance for organic pollutant and its regeneration by heterogeneous visible light photo-Fenton process at circumneutral pH

机译:铁改性膨润土:在环境pH值下通过异质可见光光芬顿法增强了对有机污染物的吸附性能及其再生

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Iron modified bentonite (FeMB) was prepared and used as an inexpensive adsorbent to rapidly remove organic pollutant (Rhodamine B, RhB) from aqueous solution. The iron modification significantly improved the adsorption performance of FeMB for RhB and permitted an easy separation of FeMB from the treated effluent. The equilibrium adsorption studies indicated that the dye molecules obeyed Langmuir type of adsorption with the calculated maximum adsorption capacity of 168.13 mg g(-1) for FeMB. The heterogeneous photo-Fenton process operated at circumneutral pH in the presence of visible light irradiation was found to be effective for the regeneration of the spent FeMB. Furthermore, the regeneration efficiency of as high as 79% was still achieved after 5 consecutive adsorption-regeneration cycles. Considering that, the visible light photo-Fenton approach could be applied as an excellent alternative for regenerating clay-based adsorbents by avoiding the use of dissolved iron salts. (C) 2015 Elsevier B.V. All rights reserved.
机译:制备了铁改性膨润土(FeMB),并用作廉价的吸附剂,可从水溶液中快速去除有机污染物(若丹明B,RhB)。铁改性显着改善了FeMB对RhB的吸附性能,并使FeMB易于从处理后的废水中分离出来。平衡吸附研究表明,染料分子遵循Langmuir型吸附,对FeMB的最大计算吸附容量为168.13 mg g(-1)。发现在可见光辐射的存在下在环境pH下操作的非均相光芬顿法对废FeMB的再生有效。此外,在连续5次吸附再生循环后,再生效率仍高达79%。考虑到这一点,通过避免使用溶解的铁盐,可见光光芬顿法可以作为再生粘土基吸附剂的极好替代方法。 (C)2015 Elsevier B.V.保留所有权利。

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