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Capture of organic iodides from nuclear waste by metal-organic framework-based molecular traps

机译:通过基于金属有机骨架的分子阱从核废料中捕获有机碘化物

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摘要

Effective capture of radioactive organic iodides from nuclear waste remains a significant challenge due to the drawbacks of current adsorbents such as low uptake capacity, high cost, and non-recyclability. We report here a general approach to overcome this challenge by creating radioactive organic iodide molecular traps through functionalization of metal-organic framework materials with tertiary amine-binding sites. The molecular trap exhibits a high CH3I saturation uptake capacity of 71 wt% at 150 °C, which is more than 340% higher than the industrial adsorbent Ag0@MOR under identical conditions. These functionalized metal-organic frameworks also serve as good adsorbents at low temperatures. Furthermore, the resulting adsorbent can be recycled multiple times without loss of capacity, making recyclability a reality. In combination with its chemical and thermal stability, high capture efficiency and low cost, the adsorbent demonstrates promise for industrial radioactive organic iodides capture from nuclear waste. The capture mechanism was investigated by experimental and theoretical methods.Capturing radioactive organic iodides from nuclear waste is important for safe nuclear energy usage, but remains a significant challenge. Here, Li and co-workers fabricate a stable metal-organic framework functionalized with tertiary amine groups that exhibits high capacities for radioactive organic iodides uptake.
机译:由于当前吸附剂的缺点,如低吸收能力,高成本和不可回收性,从核废料中有效捕获放射性有机碘化物仍然是一项重大挑战。我们在这里报告了一种通用方法,可以通过具有叔胺结合位点的金属有机骨架材料的功能化来创建放射性有机碘分子陷阱来克服这一挑战。该分子阱在150°C时具有71 wt%的高CH3I饱和吸收能力,在相同条件下比工业吸附剂Ag0 @ MOR高出340%以上。这些功能化的金属有机骨架在低温下也可作为良好的吸附剂。此外,所得到的吸附剂可以多次循环而不损失容量,从而使可循环性成为现实。结合其化学和热稳定性,高捕获效率和低成本,该吸附剂显示出从核废料中捕获工业放射性有机碘化物的希望。通过实验和理论方法研究了捕获机理。从核废料中捕获放射性有机碘对于安全使用核能很重要,但仍然是一个重大挑战。 Li和他的同事在这里制造出了一种稳定的金属有机骨架,该骨架被叔胺基团官能化,并具有很高的放射性有机碘吸收能力。

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