Efficient selective removal of cesium using recyclable Prussian blue/luffa fiber: performance and phytotoxicity assessment insights

IF 2.9 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Yan Zhao, Wenqing Zhao, Junqi Li, Haiyan Li, Henan Wu
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Abstract

The treatment of radioactive wastewater has attracted extensive attention. Here, an adsorbent was designed to achieve efficient, stable, and recyclable removal of cesium ion contamination, and its adsorption properties were studied in detail. Prussian blue, a promising adsorbent for radioactive wastewater purification, has been often hindered in application due to its small size and easy agglomeration. To address this issue, the luffa fiber with a large specific surface area was employed to form networks loading Prussian blue particles and enhance adsorption capacity. In this paper, the recyclable Prussian blue/luffa was prepared by an in situ synthesis approach. Means such as XRD, SEM, EDS, FTIR, and XPS were applied to characterize its morphology and physicochemical properties. It exhibited outstanding selective removal efficiency for Cs+ ions and the ability to be rapidly separated from wastewater. The equilibrium and adsorption kinetics followed the Langmuir isotherm and pseudo-second-order model with a maximum adsorption capacity of 102.01 mg/g. Both pH and temperature had effects on the adsorption performance. The removal efficiency of Cs+ by Prussian blue/luffa still retained 71.2% after the 3-cycle test, and the possible mechanism was ion caging and ion exchange. In addition, the presence of co-existing ions only reduced the removal rate by less than 10.0%. Importantly, phytotoxicity assessment is urgently needed to address the adverse effects of applied nanoparticle composites on environmental and human safety. The phytotoxicity assessment was investigated, and the results indicated that the composite had no obvious biotoxicity. It is expected to be a highly potential material for disposing of radioactive wastewater. Future applications may extend to the treatment of various types of radioactive waste, providing a sustainable and effective solution to the field of nuclear waste management.

放射性废水的处理已引起广泛关注。本文设计了一种能够高效、稳定、可回收地去除铯离子污染的吸附剂,并对其吸附特性进行了详细研究。普鲁士蓝是一种很有前景的放射性废水净化吸附剂,但由于其体积小、易团聚,在应用中常常受到阻碍。为解决这一问题,研究人员采用了具有较大比表面积的丝瓜纤维,使普鲁士蓝颗粒形成网状负载,提高了吸附能力。本文采用原位合成法制备了可回收普鲁士蓝/丝瓜纤维。采用 XRD、SEM、EDS、FTIR 和 XPS 等手段对其形貌和理化性质进行了表征。它对 Cs+ 离子具有出色的选择性去除效率,并能从废水中快速分离。其平衡和吸附动力学遵循 Langmuir 等温线和伪二阶模型,最大吸附容量为 102.01 mg/g。pH 值和温度对吸附性能都有影响。普鲁士蓝/luffa 对 Cs+ 的去除率在 3 周期试验后仍保持在 71.2%,可能的机理是离子笼化和离子交换。此外,共存离子的存在只降低了不到 10.0% 的去除率。重要的是,要解决应用纳米粒子复合材料对环境和人类安全的不利影响,迫切需要进行植物毒性评估。研究人员对植物毒性进行了评估,结果表明该复合材料没有明显的生物毒性。它有望成为一种极具潜力的放射性废水处理材料。未来的应用可能会扩展到各类放射性废物的处理,为核废料管理领域提供一种可持续的有效解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental Monitoring and Assessment
Environmental Monitoring and Assessment 环境科学-环境科学
CiteScore
4.70
自引率
6.70%
发文量
1000
审稿时长
7.3 months
期刊介绍: Environmental Monitoring and Assessment emphasizes technical developments and data arising from environmental monitoring and assessment, the use of scientific principles in the design of monitoring systems at the local, regional and global scales, and the use of monitoring data in assessing the consequences of natural resource management actions and pollution risks to man and the environment.
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