首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Elution by Le Chatelier's principle for maximum recyclability of adsorbents: applied to polyacrylamidoxime adsorbents for extraction of uranium from seawater
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Elution by Le Chatelier's principle for maximum recyclability of adsorbents: applied to polyacrylamidoxime adsorbents for extraction of uranium from seawater

机译:利用Le Chatelier原理洗脱吸附剂的最大可回收性:应用于聚丙烯酰胺肟吸附剂,用于从海水中提取铀

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Amidoxime-based polymer adsorbents have attracted interest within the last decade due to their high adsorption capacities for uranium and other rare earth metals from seawater. The ocean contains an approximated 4-5 billion tons of uranium and even though amidoxime-based adsorbents have demonstrated the highest uranium adsorption capacities to date, they are still economically impractical because of their limited recyclability. Typically, the adsorbed metals are eluted with a dilute acid solution that not only damages the amidoxime groups (metal adsorption sites), but is also not strong enough to remove the strongly bound vanadium, which decreases the adsorption capacity with each cycle. We resolved this challenge by incorporating Le Chatelier's principle to recycle adsorbents indefinitely. We used a solution with a high concentration of amidoxime-like chelating agents, such as hydroxylamine, to desorb nearly a 100 of adsorbed metals, including vanadium, without damaging the metal adsorption sites and preserving the high adsorption capacity. The method takes advantage of knowing the binding mode between the amidoxime ligand and the metal and mimics it with chelating agents that then in a Le Chatelier's manner removes metals by shifting to a new chemical equilibrium. For this reason the method is applicable to any ligand-metal adsorbent and it will make an impact on other extraction technologies.
机译:酰胺肟基聚合物吸附剂因其对海水中铀和其他稀土金属的高吸附能力而在过去十年中引起了人们的兴趣。海洋中含有大约40-50亿吨铀,尽管基于酰胺肟的吸附剂已显示出迄今为止最高的铀吸附能力,但由于其可回收性有限,它们在经济上仍然不切实际。通常,吸附的金属用稀酸溶液洗脱,该溶液不仅会破坏酰胺肟基团(金属吸附位点),而且强度也不足以去除强结合的钒,这会降低每次循环的吸附能力。我们通过采用Le Chatelier的原则来无限期地回收吸附剂,从而解决了这一挑战。我们使用含有高浓度酰胺肟样螯合剂(如羟胺)的溶液,解吸了包括钒在内的近100%的吸附金属,而不会破坏金属吸附位点并保持高吸附能力。该方法利用了了解酰胺肟配体和金属之间的结合模式,并用螯合剂模拟它,然后以Le Chatelier的方式通过转向新的化学平衡来去除金属。因此,该方法适用于任何配体金属吸附剂,并将对其他提取技术产生影响。

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