无效抗生素处理对环境的影响:策略和补救途径:综合综述

IF 1.5 Q4 ENGINEERING, ENVIRONMENTAL
Rajendran Geetha
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引用次数: 0

摘要

抗生素的发现和使用彻底改变了医学,大大降低了传染病的死亡率。然而,广泛且往往不分青红皂白地使用抗生素导致了环境污染,培育了耐抗生素细菌,并对公众健康构成严重威胁。这篇综述探讨了环境污染的主要来源,包括家庭、医疗机构、农业和制药制造的不当处理。这些来源有助于抗生素残留的持续存在和抗生素耐药基因(ARGs)在自然生态系统中的增殖。抗生素在环境中的存在破坏了微生物群落,影响了生态系统功能,如养分循环和生物多样性。有各种各样的修复策略可以解决这个问题,从吸附和高级氧化过程(AOPs)等物理化学方法到生物修复和电化学技术。生物修复利用天然存在或工程微生物来降解或解毒抗生素,而电化学过程,包括微生物电化学系统(MES)和阴极降解,利用电流来分解抗生素分子。这些方法已经在不同的环境中证明了有效性,但在扩大其应用方面仍然存在挑战。将生物修复与电化学处理相结合的混合方法有望增强污染物去除,使其在解决复杂污染情况方面变得可行。未来的研究应侧重于优化这些方法以获得更广泛的应用,促进可持续的解决方案,以减轻抗生素对环境的影响,保障公众健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental Impact of Ineffective Antibiotic Disposal: Strategies and Remedial Pathways: A Comprehensive Review

The discovery and use of antibiotics revolutionized medicine, significantly reducing mortality from infectious diseases. However, widespread and often indiscriminate antibiotic use has led to environmental contamination, fostering antibiotic-resistant bacteria and posing serious public health threats. This review explores the primary sources of environmental contamination, including improper disposal by households, healthcare institutions, agriculture, and pharmaceutical manufacturing. These sources contribute to the persistence of antibiotic residues and the proliferation of antibiotic resistance genes (ARGs) in natural ecosystems. The environmental presence of antibiotics disrupts microbial communities, impacting ecosystem functions such as nutrient cycling and biodiversity. Various remediation strategies exist to address this issue, ranging from physicochemical methods like adsorption and advanced oxidation processes (AOPs) to bioremediation and electrochemical techniques. Bioremediation employs naturally occurring or engineered microorganisms to degrade or detoxify antibiotics, while electrochemical processes, including microbial electrochemical systems (MES) and cathodic degradation, use electrical currents to break down antibiotic molecules. These approaches have demonstrated effectiveness in different environments, but challenges remain in scaling up their application. Hybrid methods, integrating bioremediation with electrochemical treatments, show promise for enhanced contaminant removal, making them feasible for addressing complex contamination scenarios. Future research should focus on optimizing these methods for broader application, promoting a sustainable solution to mitigate the environmental impact of antibiotics and safeguard public health.

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来源期刊
Environmental Quality Management
Environmental Quality Management Environmental Science-Management, Monitoring, Policy and Law
CiteScore
2.20
自引率
0.00%
发文量
94
期刊介绍: Four times a year, this practical journal shows you how to improve environmental performance and exceed voluntary standards such as ISO 14000. In each issue, you"ll find in-depth articles and the most current case studies of successful environmental quality improvement efforts -- and guidance on how you can apply these goals to your organization. Written by leading industry experts and practitioners, Environmental Quality Management brings you innovative practices in Performance Measurement...Life-Cycle Assessments...Safety Management... Environmental Auditing...ISO 14000 Standards and Certification..."Green Accounting"...Environmental Communication...Sustainable Development Issues...Environmental Benchmarking...Global Environmental Law and Regulation.
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