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Constructing amidoxime-modified porous adsorbents with open architecture for cost-effective and efficient uranium extraction

机译:用开放式建筑构建偕胺肟改性多孔吸附剂,用于成本效益高效的铀提取

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The dense structure of polymeric matrices exposes only 10–20% of adsorption (amidoxime) groups, thus detracting from the extraction efficiency of uranium from seawater. Herein, the amidoxime-modified building units were cross-linked via the Scholl reaction into porous aromatic frameworks (PAFs). Due to the formation of open architecture, PAF adsorbents reveal a larger utilization ratio (>60%) of amidoxime groups. Consequently, PAF samples enable an ultrahigh uranium capacity of 702 mg g ~(?1) , which creates a 16-fold capacity enhancement and gains a 7-fold adsorption rate improvement compared with polymer-based adsorbents. Notably, PAF solids are able to be integrated into various devices, thus realizing versatile and efficacious uranium extraction from real seawater (meeting the commercial standard ~6 mg g ~(?1) in 21 days). In addition, the final cost using our PAF-based adsorbent is US $189.77 per kg uranium, it is in accordance with the prevailing market cost ($100–335 per kg).
机译:聚合物基质的致密结构仅暴露10-20%的吸附(偕胺肟)基团,从而损害海水中铀的提取效率。在此,偕胺肟改性的构建单元通过舒尔反应交联到多孔芳族框架(PAF)中。由于开放式架构的形成,PAF吸附剂揭示了偕胺肟基团的更大的利用率(> 60%)。因此,PAF样品能够使超高铀容量为702mg g〜(α1),其产生16倍的容量增强,与聚合物基吸附剂相比,增加了7倍的吸附速率改善。值得注意的是,PAF固体能够集成到各种器件中,从而实现了来自真正的海水(在21天内满足商业标准〜6mg G〜(?1)的通用和有效的铀萃取)。此外,使用我们的PAF的吸附剂的最终成本为每公斤铀的189.77美元,因此符合现行市场成本(每公斤100-335美元)。

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