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Strategies to design modified activated carbon fibers for the decontamination of water and air

机译:设计改性活性炭纤维的策略,用于净化水和空气

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摘要

The rapid industrialization has induced the entry of organic and inorganic contaminants into the environment at a rate greater than environmental cleaning. As a consequence, pollutants have accumulated in environmental media, thus posing health risk for living organisms. Here, we present surface treatment strategies that modify physicochemical properties of activated carbon fibers for environmental remediation. In particular, we review metals, metal oxides and various advanced materials used for modifying activated carbon fibers. We discuss the utilization of modified activated carbon fibers for adsorption of organic pollutants and inorganic pollutants, and for thedegradation of organic pollutants by photocatalysis, electrocatalysis, Fenton process and dielectric barrier discharge. We also discuss air pollutant removal, capacitive deionization, removal of inorganic ions and microbial decontamination by modified activated carbon fibers.
机译:快速的工业化诱导以大于环境清洁的速度将有机和无机污染物进入环境中。 因此,污染物积累在环境培养基中,从而造成生物体的健康风险。 在此,我们存在改变活性炭纤维的物理化学性质的表面处理策略,用于环境修复。 特别地,我们审查金属,金属氧化物和用于改性活性炭纤维的各种先进材料。 我们探讨了改性活性炭纤维的利用,用于吸附有机污染物和无机污染物,并通过光催化,电催化,芬顿工艺和介电阻挡放电进行有机污染物的结束。 我们还通过改性活性炭纤维讨论空气污染物去除,电容去离子,除去无机离子和微生物去污。

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