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Influence of graphene oxide additive on physical, microstructure, adsorption, and photocatalytic properties of calcined kaolinite-based geopolymer ceramic composites

机译:石墨烯氧化物添加剂对煅烧高岭石岩层陶瓷复合材料物理,微观结构,吸附和光催化性能的影响

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摘要

A kaolin-based geopolymer with graphene oxide additions was fabricated. The metakaolin (MK) was derived from heated kaolinite (750 degrees C for 3 h), and the graphene oxide was synthesized by Hummer's method. The composite samples were fabricated via a geopolymerization process. The influence of the graphene oxide additions (0-10 wt%) on the obtained geopolymer products' physical, microstructure, and adsorption properties were investigated. The phase formations and microstructures of the studied materials were characterized by several techniques. The results suggest that the obtained samples are a type of 0-3 composite. The adsorption activity of the materials shows that the graphene oxide addition increased the adsorption ability of the studied composites, with removal efficiency for the GP - 10 % GO samples being very high, i.e. similar to 93 % for methylene blue (MB) solution and 65 % for Cr(VI) tests at the adsorption equilibrium. The graphene oxides also improved the photocatalytic activities of the samples. Based on these results, this composite has potential for water treatment applications.
机译:制造具有石墨烯添加剂的高岭土的地质聚合物。 MetaKaolin(MK)衍生自加热高岭石(750℃,3小时),并通过悍马的方法合成石墨烯氧化物。通过地质聚合方法制造复合样品。研究了石墨烯氧化物添加(0-10重量%)对所获得的地质聚合物产品物理,微观结构和吸附性能的影响。通过几种技术表征研究的相形成和微观结构。结果表明所获得的样品是0-3复合材料的类型。材料的吸附活性表明,石墨烯氧化物添加增加了研究复合材料的吸附能力,对GP - 10%的去除效率非常高,即与亚甲基蓝(MB)溶液的93%相似,而65在吸附平衡时Cr(VI)测试的%。石墨烯氧化物还改善了样品的光催化活性。基于这些结果,该复合材料具有水处理应用的潜力。

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