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Preparation of air-stable magnetic g-C3N4@Fe-0-graphene composite by new reduction method for simultaneous and synergistic conversion of organic dyes and heavy metal ions in aqueous solution

机译:通过新的还原方法制备空气稳定磁G-C3N4 @ Fe-0-石墨烯复合材料,用于水溶液中有机染料和重金属离子的同时和协同转化

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摘要

Although composites that consist of graphite phase carbon nitride (g-C3N4)/nanoscale zero valent iron had already been proved to be effective for conversion of organic pollutants and heavy metal ions from wastewater, however, nano Fe-0 is prone to be oxidized in air. In order to prevent the oxidation and increase the stability of the aforementioned composite, this research provides a facile and economical g-C3N4@Fe-0-rGO synthesis method with high photocatalytic activity for removal of RhB and Cr(VI) simultaneously under visible light. Characterization results show that dispersibility and stability of nano Fe-0 were significantly increased g-C3N4@Fe-0-rGO. Moreover, g-C3N4@Fe-0-rGO exhibits synergetic effects among each component of the composite, resulting in facilitating the photogenerated charges separation, enhancing the surface activity of nano Fe-0, possessing the magnetic property for facile recycling. In addition, due to the formation of iron-carbon microbatteries between graphene and nano Fe-0, g-C3N4@Fe-0-rGO demonstrates superior activity in removal of RhB and Cr(VI). And g-C3N4@Fe-0-rGO retained excellent stability without apparent loss in catalytic activity after 5 cycles. The photocatalytic tests and quenching tests reveal that nano Fe-0 and center dot OH are main factor for RhB and Cr (VI) removal. Insights into the mechanism of the enhanced reduction of Cr(VI) and photodegradation of RhB at the same time were proposed. This study is expected to provide a novel synthesis method for the design of efficient, visible light driven, and recyclable photocatalysts for environmental remediation of both organic dyes and heavy metal ions.
机译:尽管已经被证明已经证明由石墨相氮化物(G-C3N4)/纳米尺度零价铁铁组成的复合材料对废水中的有机污染物和重金属离子转化有效,但是纳米Fe-0容易被氧化空气。为了防止氧化并提高上述复合材料的稳定性,本研究提供了一种容易和经济的G-C3N4 @ Fe-0-Rgo合成方法,具有高光催化活性,用于在可见光下同时去除RHB和Cr(VI) 。表征结果表明,纳米Fe-0的分散性和稳定性显着增加G-C3N4 @ Fe-0-Rgo。此外,G-C3N4 @ Fe-0-rgo在复合材料的每个组分中表现出协同作用,导致促进光发性的电荷分离,增强纳米Fe-0的表面活性,具有用于容易再循环的磁性。另外,由于石墨烯和纳米Fe-0之间的铁 - 碳微滴定性,G-C3N4 @ Fe-0-Rgo在去除RHB和Cr(VI)中显示出优异的活性。并且G-C3N4 @ Fe-0-rgo保留了优异的稳定性,而在5个循环后催化活性的明显损失。光催化试验和猝灭试验显示纳米Fe-0和中心点OH是RHB和Cr(VI)的主要因素。提出了提出了增强Cr(VI)和 相对rHb的减少的机制的洞察。该研究预计将提供一种新的合成方法,用于设计有机染料和重金属离子的环境修复的高效,可见光驱动和可回收光催化剂。

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