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Application of advanced materials in sonophotocatalytic processes for the remediation of environmental pollutants

机译:先进材料在整修催化过程中的应用环境污染物的修复

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摘要

Significant advances in various industrial processes have resulted in the discharge of toxic pollutants into the environment. Consequently, it is essential to develop efficient wastewater treatment processes to reduce water contamination and increase recycling/reuse. Photocatalytic degradation is considered as an efficient method for the degradation of toxic pollutants in industrial wastewater. However, the use of photocatalytic approaches is associated with numerous limitations, such as lengthy procedures and the necessity for large amounts of catalysts. Hence, it has been proposed that photocatalysis could be combined with other techniques, including sonolysis, electrochemical, photothermal, microwave, ultrafiltration, and biological reactor. The integration of photocatalysis with sonolysis could be remarkably beneficial for environmental remediation. The combination of these processes has the advantages of using uniformly dispersed catalysts, regeneration of the catalyst surface, improved mass transfer, enhanced surface area due to smaller catalyst particles, and production of more active radicals for the degradation of organic pollutants. In this review, an overview on employing sonophotocatalysis for the removal of toxic organic contaminants from aqueous environments is provided. Additionally, the limitations of photocatalysis alone and the fundamental sonophotocatalytic mechanistic pathways are discussed. The importance of utilizing advanced two-dimensional (2D) semiconductor materials in sonophotocatalysis and the common synthetic approaches for the preparation of 2D materials are also highlighted. Lastly, the review provides comprehensive insights into different materials based on metal oxides, chalcogenides, graphene, and metal organic frameworks (MOFs), which are involved in sonophotocatalytic processes employed for the remediation of environmental pollutants.
机译:各种工业过程中的显着进展导致将有毒污染物排放到环境中。因此,必须开发有效的废水处理过程,以减少水污染并增加回收/再利用。光催化降解被认为是工业废水中有毒污染物降解的有效方法。然而,使用光催化方法与许多限制相关,例如冗长的程序和大量催化剂的必要性。因此,已经提出了光催化可以与其他技术组合,包括声学,电化学,光热,微波,超滤和生物反应器。光催化与声学分析的整合可能对环境修复显着有益。这些方法的组合具有使用均匀分散的催化剂,催化剂表面的再生的优点,改善了由于较小的催化剂颗粒引起的传质,增强的表面积,以及用于有机污染物的降解的更活跃的自由基。在该审查中,提供了用于从水性环境中去除有毒有机污染物的超声催化分析的概述。另外,讨论了单独的光催化和基本声光催化机械途径的局限性。还强调了利用先进的二维(2D)半导体材料的重要性和制备2D材料的普通合成方法。最后,审查提供了基于金属氧化物,硫属元素化物,石墨烯和金属有机框架(MOF)的不同材料的全面见解,这些材料涉及用于修复环境污染物的声光催化过程。

著录项

  • 来源
    《Journal of Hazardous Materials 》 |2021年第15期| 125245.1-125245.19| 共19页
  • 作者单位

    Gyeongsang Natl Univ Res Inst Nat Sci Dept Chem Core Facil Ctr Photochem & Nanomat Jinju 52828 South Korea;

    Gyeongsang Natl Univ Res Inst Nat Sci Dept Chem Core Facil Ctr Photochem & Nanomat Jinju 52828 South Korea;

    Dongguk Univ Div Elect & Elect Engn Seoul 04620 South Korea;

    Bannari Amman Inst Technol Dept Chem Sathyamangalam 638401 Tamil Nadu India;

    Anna Univ Dept Appl Sci & Technol AC Tech Campus Chennai 600025 Tamil Nadu India;

    Univ Melbourne Sch Chem Parkville Campus Melbourne Vic 3010 Australia;

    Gyeongsang Natl Univ Res Inst Nat Sci Dept Chem Core Facil Ctr Photochem & Nanomat Jinju 52828 South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sonophotocatalysis; Organic pollutants; Degradation; Photocatalysis; 2D materials;

    机译:Sonophotocatysis;有机污染物;降解;光催化;2D材料;

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