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Enhanced Performance of nZVI/MXene@CNTs for Rapid As(III) Removal from Aqueous Solutions

Applied Sciences 2022 12 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 35 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Shihai Li, Ping Wang Ping Wang Siyuan Luo, Si Wan, Si Wan, Ping Wang Runhua Chen, Ping Wang Gang Zhou, Wenming Wang, Runhua Chen, Ping Wang Ping Wang Ping Wang

Summary

Researchers prepared a nZVI/MXene@CNTs composite material using liquid reduction precipitation and tested it for rapid removal of As(III) from aqueous solutions through combined adsorption and oxidation. The composite achieved a maximum As(III) removal capacity of 44 mg/g, outperforming individual components and demonstrating improved stability against aggregation compared to bare nanoscale zero-valent iron.

Transition metal compounds demonstrated good performance in the removal of environmentally harmful contaminants, such as arsenic, while the aggregation propensity and poor chemical stability should be noticed. In this study, the nZVI/MXene@CNTs was adequately prepared by liquid reduction precipitation method for adsorption and oxidation of As(III) from the aqueous solution. The results of batch removal experiments showed that the maximum removal capacity of the nZVI/MXene@CNTs for As(III) was 443.32 mg/g with the pH = 3.0 at 25 °C. The effects of initial pH, dosage of materials and ionic strength on As(III) removal were explored. According to the various characterization analyses, the most plausible mechanisms of As(III) removal were the surface complexation, solid phase precipitation and the catalytic oxidation by the •OH. Furthermore, the nZVI/MXene@CNTs could be readily activated and reused via leaching with 0.1 M NaOH solution, due to the three-dimensional mesh intercalation structure. Therefore, it is a potential nanocomplex for removing and recovering As(III) from water with excellent capacity and environmental friendliness.

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