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Removal of PFASs from water with ionic liquids: Quantum-mechanical and experimental studies

机译:用离子液体从水中除去PFASS:量子 - 机械和实验研究

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This PFASs are man-made chemicals with vast number of useful applications. Wide use of the chemicals during last decades resulted in their common widespread in natural environment, especially in water. Recent studies revealed toxic and bio-accumulative character of PFASs for human and wildlife. Many remediation techniques for removal of PFASs from water were performed, however, due to the high stability of C-F bonds, PFASs exhibit exceptional resistance to most of the conventional removal methods. The most common solution for the removal of PFASs remains, so far, adsorption using activated carbon. However, the major problem of this technique is expensive regeneration of the carbonaceous material. New technological solutions for removal of the emerging contaminants from water environment are in high demand. The paper presents recent developments in separation of persistent organic pollutants with a usage of ionic liquids and introduces theoretical approach for identification and design of ionic liquids useful for efficient separation of PFASs from water environment.
机译:这款PFASS是具有广大有用应用的人造化学品。在过去几十年中,在过去几十年中广泛使用了它们在自然环境中普遍的普遍性,特别是在水中。最近的研究揭示了人类和野生动物PFASS的毒性和生物累积性质。然而,通过C-F键的高稳定性,进行许多用于从水中除去水的修复技术,PFASS对大多数常规去除方法表现出具有卓越性抗性。到目前为止,去除PFASS的最常见的解决方案仍然存在使用活性炭的吸附。然而,这种技术的主要问题是碳质材料的昂贵再生。用于从水环境中移除新出现的污染物的新技术解决方案都有很高的需求。本文介绍了持久性有机污染物与离子液体的用途分离的最新发展,并介绍了用于鉴定和设计离子液体的理论方法,可用于从水环境中有效分离施用。

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