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P-ZBCT复合吸附剂在低剂量下对废水中铀的高效稳定吸附

Efficient and stable adsorption uranium from wastewater by P-ZBCT composite adsorbent at low dosage.

作者信息

Luo Kaiwen, Zhang Lieyu, Wang Qingliang, Xin Qi, Lei Zhiwu, Hu Eming, Li Le, Liang Feng, Wang Hongqiang

机构信息

School of Resource & Environment and Safety Engineering, University of South China, Hengyang 421001, China.

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, China.

出版信息

Int J Biol Macromol. 2025 May;306(Pt 1):141405. doi: 10.1016/j.ijbiomac.2025.141405. Epub 2025 Feb 22.

Abstract

In this research, a new synthesis approach was developed for an adsorbent, namely the phosphorylated ZIF-8/bamboo charcoal/chitosan/tannic acid (P-ZBCT) composite, for the efficient adsorption of uranyl ions from wastewater at low dosages. Impressively, the uranium adsorption rate of P-ZBCT reaches up to 98 % at a low dosage of 0.056 g/L in a 10-mg/L uranium solution, outperforming most reported uranium adsorption materials. The theoretical maximum adsorption capacity of P-ZBCT for uranium at 308 K and pH 6.0 is 2357.69 mg/g, with uranium adsorption being a spontaneous endothermic chemical reaction. Mechanistic analysis reveals that surface functional groups such as PO, amino group, and CN play a pivotal role in uranium adsorption. A competitive adsorption experiment shows that zinc is the most competitive with uranium adsorption; however, the partition coefficient of U is 11 times that of zinc, indicating that the absorption of uranium is more selective than that of other metal ions, such as zinc. Adsorption treatment using P-ZBCT successfully reduces the uranium content in real uranium tailings-containing pond wastewater to 34 μg/L. P-ZBCT demonstrates exceptional recycling performance, maintaining an adsorption rate of 85 % even after 10 sorption-desorption cycles. Therefore, P-ZBCT exhibits significant potential for efficiently extracting uranium from low-concentration uranium-containing wastewater.

摘要

在本研究中,开发了一种用于吸附剂的新合成方法,即磷酸化ZIF-8/竹炭/壳聚糖/单宁酸(P-ZBCT)复合材料,用于从废水中低剂量高效吸附铀酰离子。令人印象深刻的是,在10mg/L铀溶液中,P-ZBCT在0.056g/L的低剂量下铀吸附率高达98%,优于大多数已报道的铀吸附材料。P-ZBCT在308K和pH 6.0时对铀的理论最大吸附容量为2357.69mg/g,铀吸附是一个自发的吸热化学反应。机理分析表明,表面官能团如PO、氨基和CN在铀吸附中起关键作用。竞争吸附实验表明,锌在铀吸附方面竞争最激烈;然而,U的分配系数是锌的11倍,这表明铀的吸附比其他金属离子(如锌)更具选择性。使用P-ZBCT进行吸附处理成功地将实际含铀尾矿池废水中的铀含量降低到34μg/L。P-ZBCT表现出优异的循环性能,即使经过10次吸附-解吸循环后仍保持85%的吸附率。因此,P-ZBCT在从低浓度含铀废水中高效提取铀方面具有巨大潜力。

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