Yu Qiuhan, Yuan Yihui, Wen Jun, Zhao Xuemei, Zhao Shilei, Wang Dong, Li Chaoyang, Wang Xiaolin, Wang Ning
State Key Laboratory of Marine Resource Utilization in South China Sea Hainan University Haikou 570228 P. R. China.
Institute of Nuclear Physics and Chemistry China Academy of Engineering Physics Mianyang 621900 P. R. China.
Adv Sci (Weinh). 2019 Mar 20;6(13):1900002. doi: 10.1002/advs.201900002. eCollection 2019 Jul 3.
The ocean reserves 4.5 billion tons of uranium and amounts to a nearly inexhaustible uranium supply. Biofouling in the ocean is one of the most severe factors that hazard uranium extraction and even cause the failure of uranium extraction. Therefore, development of uranium adsorbents with biofouling resistance is highly urgent. Herein, a strategy for constructing anti-biofouling adsorbents with enhanced uranium recovery capacity in natural seawater is developed. This strategy can be widely applied to modify currently available carboxyl-contained adsorbents, including the most popular amidoxime-based adsorbent and carboxyl metal organic framework adsorbent, using a simple one-step covalent cross-link reaction between the antibacterial compound and the adsorbent. The prepared anti-biofouling adsorbents display broad antibacterial spectrum and show more than 80% inhibition to the growth of marine bacteria. Benefitting from the tight covalent cross-link, the anti-biofouling adsorbents show high reusability. The modified amidoxime-based adsorbents show enhanced uranium recovery capacity both in sterilized and bacteria-contained simulated seawater. The anti-biofouling adsorbent Anti-UiO-66 constructed in this study exhibits 24.4% increased uranium recovery capacity, with a uranium recovery capacity of 4.62 mg-U per g-Ads, after a 30-day field test in real seawater, suggesting the strategy is a promising approach for constructing adsorbents with enhanced uranium extraction performance.
海洋中储存着45亿吨铀,几乎是取之不尽的铀供应源。海洋生物污损是危害铀提取甚至导致铀提取失败的最严重因素之一。因此,开发具有抗生物污损性能的铀吸附剂迫在眉睫。在此,我们开发了一种在天然海水中构建具有增强铀回收能力的抗生物污损吸附剂的策略。该策略可广泛应用于修饰目前可用的含羧基吸附剂,包括最流行的偕胺肟基吸附剂和羧基金属有机框架吸附剂,通过抗菌化合物与吸附剂之间简单的一步共价交联反应来实现。制备的抗生物污损吸附剂具有广谱抗菌性,对海洋细菌的生长抑制率超过80%。得益于紧密的共价交联,抗生物污损吸附剂具有高可重复使用性。改性偕胺肟基吸附剂在灭菌和含细菌的模拟海水中均表现出增强的铀回收能力。本研究构建的抗生物污损吸附剂Anti-UiO-66在实际海水中经过30天的现场测试后,铀回收能力提高了24.4%,达到每克吸附剂4.62毫克铀,表明该策略是构建具有增强铀提取性能吸附剂的一种有前景的方法。