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通过冰晶分散法制备的酵母发酵聚偕胺肟水凝胶用于从海水中高效提取铀。

Yeast-Raised Polyamidoxime Hydrogel Prepared by Ice Crystal Dispersion for Efficient Uranium Extraction from Seawater.

作者信息

Wang Hui, Yao Weikun, Yuan Yihui, Shi Se, Liu Tao, Wang Ning

机构信息

State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan University, Haikou, 570228, China.

出版信息

Adv Sci (Weinh). 2024 May;11(17):e2306534. doi: 10.1002/advs.202306534. Epub 2024 Feb 13.

Abstract

Uranium extraction from seawater has attracted worldwide attention due to the massive reserves of uranium. Due to the straightforward synthesis and strong affinity toward uranyl ions (UO ), the amidoxime group shows promise for use in highly efficient uranium capture.  However, the low mass transfer efficiency within traditional amidoxime-based adsorbents severely limits the adsorption rate and the utilization of adsorption sites. In this work, a macroporous polyamidoxime (PAO) hydrogel is prepared by yeast-based biological foaming combined with ice crystal dispersion that effectively maintained the yeast activity. The yeast-raised PAO (Y-PAO) adsorbent has numerous bubble-like holes with an average pore diameter >100 µm. These macropores connected with the intrinsic micropores of PAO to construct efficient diffusion channels for UO provided fast mass transporting channels, leading to the sufficient exposure of hidden binding sites. The maximum adsorption capacity of Y-PAO membrane reached 10.07 mg-U/g-ads, ≈1.54 times higher than that of the control sample. It took only eight days for Y-PAO to reach the saturation adsorption capacity of the control PAO (6.47 mg-U/g-ads, 28 days). Meanwhile, Y-PAO possessed excellent ion selectivity, good reusability, and low cost. Overall, the Y-PAO membrane is a highly promising adsorbent for use in industrial-scale uranium extraction from seawater.

摘要

由于海水中铀储量巨大,从海水中提取铀已引起全球关注。由于偕胺肟基团合成简单且对铀酰离子(UO)具有很强的亲和力,因此在高效铀捕获方面显示出应用前景。然而,传统偕胺肟基吸附剂内的传质效率低,严重限制了吸附速率和吸附位点的利用率。在这项工作中,通过基于酵母的生物发泡结合冰晶分散制备了一种大孔聚偕胺肟(PAO)水凝胶,有效维持了酵母活性。酵母培养的PAO(Y-PAO)吸附剂有许多平均孔径>100 µm的气泡状孔。这些大孔与PAO的固有微孔相连,为UO构建了高效的扩散通道,提供了快速的传质通道,导致隐藏的结合位点充分暴露。Y-PAO膜的最大吸附容量达到10.07 mg-U/g-ads,约为对照样品的1.54倍。Y-PAO仅用8天就达到了对照PAO的饱和吸附容量(6.47 mg-U/g-ads,28天)。同时,Y-PAO具有优异的离子选择性、良好的可重复使用性和低成本。总体而言,Y-PAO膜是一种极有前景的吸附剂,可用于工业规模的海水提铀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/913d/11077670/fbe998d930b0/ADVS-11-2306534-g002.jpg

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