Application of Natural Antibacterial Plants in the Extraction of Uranium from Seawater.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-10 DOI:10.1021/acsabm.4c00605
Xue Zhang, Qianhong Gao, Yao Yuan, Dadong Shao
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Abstract

Marine biofouling directly affects the performance and efficiency of uranium (U(VI)) extraction from seawater. Compared to traditional chemical methods, natural plant extracts are generally biodegradable and nontoxic, making them an environmentally friendly alternative to synthetic chemicals in solving the marine biofouling problem. The effectiveness of natural antibacterial plants (i.e., pine needle, peppermint, Acorus gramineus Soland, Cacumen platycladi, and wormwood) in solving the marine biofouling problem was evaluated in this work. Experimental results showed that natural antibacterial plants could kill Vibrio alginolyticus in solution and effectively solve the marine biofouling problem of U(VI) extraction. To improve the adsorption capacity of natural plants for U(VI) in seawater, poly(vinylphosphonic acid) (PVPA) was modified on natural antibacterial plant surfaces by irradiation grafting technology. PVPA and natural antibacterial plants work as active sites and base materials for the U(VI) extraction material, respectively. The recovery performance of PVPA/pine needle for U(VI) was preliminarily studied. Results show that the adsorption of U(VI) on PVPA/pine needle follows pseudo-second-order and Langmuir models, and the maximum adsorption capacity is 111 mg/g at 298 K and pH 8.2.

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应用天然抗菌植物从海水中提取铀。
海洋生物污损直接影响从海水中提取铀(U(VI))的性能和效率。与传统的化学方法相比,天然植物提取物通常可生物降解且无毒,是解决海洋生物污损问题的合成化学品的环保替代品。本研究评估了天然抗菌植物(即松针、薄荷、Acorus gramineus Soland、Cacumen platycladi 和艾草)在解决海洋生物污损问题方面的有效性。实验结果表明,天然抗菌植物能杀死溶液中的藻溶弧菌,有效解决了萃取铀(VI)的海洋生物污损问题。为提高天然植物对海水中六价铀的吸附能力,采用辐照接枝技术在天然抗菌植物表面改性聚乙烯基膦酸(PVPA)。PVPA 和天然抗菌植物分别作为六价铀萃取材料的活性位点和基底材料。初步研究了 PVPA/松针对 U(VI)的回收性能。结果表明,PVPA/松针对U(VI)的吸附遵循伪二阶和Langmuir模型,在298 K和pH值为8.2的条件下,最大吸附容量为111 mg/g。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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