Reviewing Perovskite Oxide-Based Materials for the Effective Treatment of Antibiotic-Polluted Environments: Challenges, Trends, and New Insights

Surfaces Pub Date : 2024-01-11 DOI:10.3390/surfaces7010005
Afonso Henrique da Silva Júnior, Carlos Rafael Silva de Oliveira, Tarcisio Wolff Leal, Leandro Pellenz, Selene de Souza, Antônio de Souza, A. Mapossa, Robert Tewo, Hilary Rutto, Luciano da Silva, Adriano da Silva
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Abstract

Society confronts the pressing environmental challenges posed by the pervasive presence of toxic pollutants in aquatic ecosystems. The repercussions of contaminant release extend far and wide, endangering marine life and human well-being. While various techniques such as bioremediation, filtration, and adsorption have been employed for wastewater treatment, they grapple with cost effectiveness and overall efficiency issues. Advanced oxidative processes, including photocatalysis and Fenton, have emerged as viable solutions in response to the emerging contaminants. However, the efficacy of photocatalysis largely hinges on the choice of catalyst. Their distinctive attributes, such as chemical defects and exceptional stability, make perovskite oxides a promising catalyst. These materials can be synthesized through diverse methods, rendering them versatile and adaptable for widespread applications. Ongoing research endeavors are diligently focused on enhancing the performance of perovskite oxides, optimizing their integration into catalytic processes, and exploring innovative approaches for material immobilization. This comprehensive review seeks to elucidate the most pivotal advances in perovskite oxides and their composites within the wastewater treatment domain. Additionally, it sheds light on burgeoning research trends and multifaceted challenges confronting this field, which present insights into techniques for treating the antibiotic-contaminated environment, delving into innovative strategies, green technologies, challenges, and emerging trends.
回顾有效处理抗生素污染环境的氧化物包光体材料:挑战、趋势和新见解
水生生态系统中普遍存在的有毒污染物给社会带来了紧迫的环境挑战。污染物的排放影响深远,危及海洋生物和人类福祉。虽然废水处理采用了生物修复、过滤和吸附等多种技术,但这些技术都存在成本效益和整体效率问题。针对新出现的污染物,光催化和 Fenton 等高级氧化工艺已成为可行的解决方案。然而,光催化的功效在很大程度上取决于催化剂的选择。过氧化物氧化物具有独特的属性,如化学缺陷和优异的稳定性,因此是一种很有前景的催化剂。这些材料可通过多种方法合成,因此用途广泛,适用性强。目前的研究工作主要集中在提高包晶石氧化物的性能、优化其在催化过程中的整合以及探索材料固定化的创新方法。本综述旨在阐明在废水处理领域中包晶石氧化物及其复合材料的最重要进展。此外,它还揭示了这一领域蓬勃发展的研究趋势和面临的多方面挑战,深入探讨了处理抗生素污染环境的技术、创新战略、绿色技术、挑战和新兴趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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