木质素
纳米纤维
吸附
静电纺丝
碘
放射性废物
放射性碘
化学工程
化学
生物量(生态学)
材料科学
纳米技术
有机化学
核化学
聚合物
医学
海洋学
甲状腺
地质学
内科学
工程类
作者
Mengtian Yu,Yanzhu Guo,Xing Wang,Hongwei Zhu,Wenchao Li,Jinghui Zhou
标识
DOI:10.1016/j.ijbiomac.2022.03.184
摘要
The capture of radioactive iodine has recently attracted much attention due to the release of radioactive iodine during nuclear waste disposal and disasters. Exploring highly efficient, sustainable, and eco-friendly materials for capturing radioactive iodine has great significance in developing safe nuclear energy. We reported highly efficient, natural, lignin-based, electrospun nanofibers (LNFs) for reversible radioiodine capture. Abundant iodine adsorption sites, such as functional groups and the interaction between the intermolecular forces exist in LNFs. The capacity of the LNFs for the saturated adsorption of iodine was found to be 220 mg·g-1, which is higher than that of the majority of bio-based adsorbents studied. Moreover, the LNFs exhibited an excellent recycling behavior, and their absorption capacity remained at 84.72% after 10 recycles. Therefore, the results imply that the lignin-based nanofibers can act as a natural, sustainable and eco-friendly packed material for the purification columns in industrial applications. The results demonstrate that the novel, nanostructured, natural biomass, as an ideal candidate has the potential for practical nuclear wastewater purification.
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