Upgradation of water hyacinth for decontamination of uranium-containing radioactive wastewater with double environmental benefit

IF 4.9 2区 化学 Q2 CHEMISTRY, PHYSICAL Colloids and Surfaces A: Physicochemical and Engineering Aspects Pub Date : 2024-11-05 DOI:10.1016/j.colsurfa.2024.135709
Jin Yu , Xu Zhang , Hai Wang , Longcheng Liu , Yushan Zhou , Chengtao Yue
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Abstract

Water hyacinth is recognized as one of the top ten invasive weeds that pose significant environmental hazards globally. The resourceful utilization of water hyacinth offers substantial ecological benefits. In this work, water hyacinth is employed to synthesize a phosphorylated biochar for the efficient decontamination of uranium-containing radioactive wastewater, thereby achieving dual environmental benefits. The biochar with a large specific surface area of 1328 m2/g and a large pore volume of 0.94 cm3/g is obtained via carbonization of a freeze-dried water hyacinth-phytic acid composite. It possesses a high density of uranophilic phosphoric acid groups, with the surface phosphorus content reaching 0.78 at%. As anticipated, phosphorylated biochar demonstrates superior adsorption performance for uranium (VI) ions. The removal efficiency achieves 99 % in a uranium solution with an initial concentration of 100 mg/L at a dosage of 1.0 g/L within 30 minutes, while the maximum adsorption capacity reaches 478 mg/g. It is proficient in removing uranium across a pH range of 2.2–6.6 and exhibits tolerance under high ionic strength conditions. The distribution coefficient for uranium attains 28.5 L/g, which is significantly higher than that of many other metal ions. Moreover, the biochar is readily regenerated by elution with diluted HNO₃ and reused up to five times without any loss of efficiency. Delightfully, phosphorylated biochar effectively reduces the uranium concentration in actual nuclear wastewater from 16 μg/L to below 4 μg/L. The effective adsorptive decontamination of radioactive wastewater, followed by the incineration of spent biochar, significantly reduces the volume of radioactive waste.
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提升水葫芦对含铀放射性废水的净化能力,实现双重环境效益
布袋莲是公认的十大入侵杂草之一,对全球环境造成严重危害。对布袋莲的资源化利用具有巨大的生态效益。本研究利用布袋莲合成磷化生物炭,用于有效净化含铀放射性废水,从而实现双重环境效益。通过对冷冻干燥的布袋莲-磷酸复合材料进行碳化,获得了比表面积高达 1328 m2/g、孔隙率高达 0.94 cm3/g 的生物炭。它具有高密度的亲尿磷酸基团,表面磷含量达到 0.78%。正如预期的那样,磷化生物炭对铀(VI)离子具有卓越的吸附性能。在初始浓度为 100 毫克/升、用量为 1.0 克/升的铀溶液中,30 分钟内的去除率达到 99%,最大吸附容量达到 478 毫克/克。它能在 pH 值为 2.2-6.6 的范围内有效去除铀,并在高离子强度条件下表现出耐受性。铀的分布系数达到 28.5 L/g,明显高于许多其他金属离子。此外,用稀释的 HNO₃洗脱后,生物炭很容易再生,并可重复使用五次而不会降低效率。令人欣喜的是,磷化生物炭能有效地将实际核废水中的铀浓度从 16 μg/L 降至 4 μg/L 以下。对放射性废水进行有效的吸附净化,然后对废生物炭进行焚烧,可大大减少放射性废物的体积。
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来源期刊
CiteScore
8.70
自引率
9.60%
发文量
2421
审稿时长
56 days
期刊介绍: Colloids and Surfaces A: Physicochemical and Engineering Aspects is an international journal devoted to the science underlying applications of colloids and interfacial phenomena. The journal aims at publishing high quality research papers featuring new materials or new insights into the role of colloid and interface science in (for example) food, energy, minerals processing, pharmaceuticals or the environment.
期刊最新文献
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