Nature:易於再生的高性能活性碳替代材料,快速去除水中有機微污染

一種高表面積介孔β-環糊精。水體淨化和修復經常是用各種形式的活性碳進行的,這種方式成本低,但只能將很多有機污染物部分清除。然而,活性碳的再生利用能耗高,需要高溫,而且再生之後性能也會下降。現在William Dichtel、Damian Helbling及同事研發出一種用於水體修復的活性碳替代產品:一種基於交聯環糊精的多孔材料。這種材料不僅在吸附一系列藥物、殺蟲劑和其他污染物方面性能超過活性碳,而且還容易通過在室溫下衝洗來再生。β-CD polymer networks derived from nucleophilic aromatic substitution reactions.


對這方面研究感興趣的讀者,可自行下載全文查看:

http://www.nature.com/nature/journal/v529/n7585/full/nature16185.html


如下是文章摘要:

The global occurrence in water resources of organic micropollutants, such as pesticides and pharmaceuticals, has raised concerns about potential negative effects on aquatic ecosystems and human health. Activated carbons are the most widespread adsorbent materials used to remove organic pollutants from water but they have several deficiencies, including slow pollutant uptake (of the order of hours) and poor removal of many relatively hydrophilic micropollutants. Furthermore, regenerating spent activated carbon is energy intensive (requiring heating to 500–900 degrees Celsius) and does not fully restore performance. Insoluble polymers of β-cyclodextrin, an inexpensive, sustainably produced macrocycle of glucose, are likewise of interest for removing micropollutants from water by means of adsorption. β-cyclodextrin is known to encapsulate pollutants to form well-defined host–guest complexes, but until now cross-linked β-cyclodextrin polymers have had low surface areas and poor removal performance compared to conventional activated carbons. Here we crosslink β-cyclodextrin with rigid aromatic groups, providing a high-surface-area, mesoporous polymer of β-cyclodextrin. It rapidly sequesters a variety of organic micropollutants with adsorption rate constants 15 to 200 times greater than those of activated carbons and non-porous β-cyclodextrin adsorbent materials. In addition, the polymer can be regenerated several times using a mild washing procedure with no loss in performance. Finally, the polymer outperformed a leading activated carbon for the rapid removal of a complex mixture of organic micropollutants at environmentally relevant concentrations. These findings demonstrate the promise of porous cyclodextrin-based polymers for rapid, flow-through water treatment.

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