Penicillin removal from the aqueous environment based on AOPs/challenges and outlook. A review

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES Applied Water Science Pub Date : 2024-06-27 DOI:10.1007/s13201-024-02223-1
Shima Goodarzi, Masoomeh Torabideh, Gholamreza Parsaseresht, Hossein Abdipour, Hossein Kamani, Tayebe Zomorrodi Jangaee
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Abstract

Today, the deterioration of water quality is still a big concern among researchers, whose essential strategy is to develop water purification processes. The presence of contamination of emerging concerns has become a challenging issue, their toxicity, persistence in the aquatic environment, and their mass accumulation at low concentrations have had adverse effects on human health and aquatic organisms. Biological disposal or improper disposal, these pollutants cause serious damage to the population of non-target groups. Penicillin is a broad-spectrum group of beta-lactam antibiotics that has caused concerns for human health and the environment due to its slow decomposition in water sources. This review article focuses on the application of advanced oxidation processes to eliminate these antibiotics. Several studies have investigated the effects of different parameters on species with both ultraviolet and non-ultraviolet light. The results have been promising, with an average efficiency above 80% for these processes. Despite the limitations of various methods, the knowledge gap in future studies has been addressed by proposing the use of Fenton, ultrasound method and Integrated processes like Synergistic Remediation-Advanced Oxidation Processes.

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基于 AOPs/挑战和展望从水环境中去除青霉素。综述
如今,水质恶化仍然是研究人员十分关注的问题,他们的基本策略是开发水净化工艺。新出现的污染问题已成为一个具有挑战性的问题,它们的毒性、在水生环境中的持久性以及在低浓度下的大量累积对人类健康和水生生物产生了不利影响。生物处理或处理不当,这些污染物会对非目标群体造成严重损害。青霉素是一类广谱的β-内酰胺类抗生素,由于在水源中分解缓慢,已引起人类健康和环境的关注。这篇综述文章重点介绍了如何应用高级氧化工艺来消除这些抗生素。有几项研究利用紫外光和非紫外光调查了不同参数对物种的影响。研究结果令人鼓舞,这些工艺的平均效率超过 80%。尽管各种方法都有其局限性,但通过建议使用芬顿法、超声波法和协同修复-高级氧化工艺等综合工艺,解决了未来研究中的知识空白问题。
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来源期刊
Applied Water Science
Applied Water Science WATER RESOURCES-
CiteScore
9.90
自引率
3.60%
发文量
268
审稿时长
13 weeks
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