Promoting the suitability of graphitic carbon nitride and metal oxide nanoparticles: A review of sulfonamides photocatalytic degradation

光催化 废水 背景(考古学) 环境修复 降级(电信) 污染物 环境化学 石墨氮化碳 环境科学 废物管理 化学 材料科学 污染 环境工程 催化作用 有机化学 计算机科学 生态学 生物 工程类 古生物学 电信
作者
Zakariyya Uba Zango,Muhammad Abubakar Lawal,Fahad Usman,Abdelmoneim Sulieman,Hanan Akhdar,M. H. Eisa,Osamah Aldaghri,Khalid Hassan Ibnaouf,Jun Wei Lim,Kuan Shiong Khoo,Yoke Wang Cheng
出处
期刊:Chemosphere [Elsevier BV]
卷期号:351: 141218-141218 被引量:31
标识
DOI:10.1016/j.chemosphere.2024.141218
摘要

The widespread consumption of pharmaceutical drugs and their incomplete breakdown in organisms has led to their extensive presence in aquatic environments. The indiscriminate use of antibiotics, such as sulfonamides, has contributed to the development of drug-resistant bacteria and the persistent pollution of water bodies, posing a threat to human health and the safety of the environment. Thus, it is paramount to explore remediation technologies aimed at decomposing and complete elimination of the toxic contaminants from pharmaceutical wastewater. The review aims to explore the utilization of metal-oxide nanoparticles (MONPs) and graphitic carbon nitrides (g-C3N4) in photocatalytic degradation of sulfonamides from wastewater. Recent advances in oxidation techniques such as photocatalytic degradation are being exploited in the elimination of the sulfonamides from wastewater. MONP and g-C3N4 are commonly evolved nano substances with intrinsic properties. They possessed nano-scale structure, considerable porosity semi-conducting properties, responsible for decomposing wide range of water pollutants. They are widely applied for photocatalytic degradation of organic and inorganic substances which continue to evolve due to the low-cost, efficiency, less toxicity, and more environmentally friendliness of the materials. The review focuses on the current advances in the application of these materials, their efficiencies, degradation mechanisms, and recyclability in the context of sulfonamides photocatalytic degradation.
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