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Recent Developments in Functional Nanocomposite Photocatalysts for Wastewater Treatment: A Review

机译:最近的事态发展在功能性纳米复合材料催化剂污水处理:复习一下

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Abstract The dyes and nitroaromatic pollutants from wastewater have attracted much attention due to their huge safety risks to human society. At present, nanomaterials as catalysts of photocatalytic degradation have emerged as attractive and effective materials for wastewater treatment. On the one hand, much work has been focused on the search for nanomaterials with high catalytic activity, such as precious metal nanoparticles (NPs) and other advanced functional materials (e.g. graphene oxide (GO), MXenes, metal organic frameworks (MOFs), etc.). On the other hand, modifications of existing photocatalysts to enhance their photocatalytic activity have also been explored. In this paper, photocatalysts in various dimensions (including precious metal nanoparticles, nanofibres, 2D nanosheets such as MXenes, and MOFs) are been described. The deposition of nano photocatalysts by different techniques such as the formation of hydrogel structures to immobilize the catalysts, the treatment of nanocatalysts using electrospinning technique, and the formation of core‐shell structures to enhance catalytic activity are also discussed. These techniques not only solve the aggregation of NPs due to their high surface energy but also impart unique properties to the nano photocatalysts. This review explores the synthesis of nano photocatalysts in different dimensions and their application in the catalytic degradation of dyes and nitro compounds, providing good leads for nano photocatalysts in materials design and environmental remediation.
机译:摘要染料和硝基芳香化合物污染物从废水已经备受关注人类社会巨大的安全风险。现在,纳米材料作为催化剂光催化降解已成为吸引力和废水的有效材料治疗。专注于寻找高的纳米材料催化活性,如贵金属纳米颗粒(NPs)和其他高级功能材料(如石墨烯氧化物(去),MXenes,金属有机框架(mof),等等)。另一方面,修改现有的论文以提高其光催化活动也一直在探索。各维度(包括催化剂贵金属纳米颗粒、纳米纤维、2 dnanosheets MXenes等和财政部)描述。等不同的技术的形成水凝胶结构的固定催化剂,nanocatalysts使用的治疗电纺的技术,形成的提高催化核心检测壳结构活动进行了讨论。只有解决NPs由于他们的聚合高表面能也传授独特属性的纳米催化剂。回顾探讨纳米的合成在不同的维度及其催化剂在染料的催化降解中的应用和硝基化合物,提供的好领导纳米催化剂的设计和材料环境修复。

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