Key Laboratory for Palygorskite Science and Applied Technology of Jiangsu Province, National & Local Joint Engineering Research Center for Mineral Salt Deep Utilization, Faculty of Chemical Engineering, Huaiyin Institute of Technology, Huaian 223003, PR China.
Key Laboratory for Palygorskite Science and Applied Technology of Jiangsu Province, National & Local Joint Engineering Research Center for Mineral Salt Deep Utilization, Faculty of Chemical Engineering, Huaiyin Institute of Technology, Huaian 223003, PR China.
Sci Total Environ. 2024 Feb 25;913:169489. doi: 10.1016/j.scitotenv.2023.169489. Epub 2023 Dec 28.
Globally recognized as emergent contaminants, microplastics (MPs) are prevalent in aquaculture habitats and subject to intense management. Aquaculture systems are at risk of microplastic contamination due to various channels, which worsens the worldwide microplastic pollution problem. Organic contaminants in the environment can be absorbed by and interact with microplastic, increasing their toxicity and making treatment more challenging. There are two primary sources of microplastics: (1) the direct release of primary microplastics and (2) the fragmentation of plastic materials resulting in secondary microplastics. Freshwater, atmospheric and marine environments are also responsible for the successful migration of microplastics. Until now, microplastic pollution and its effects on aquaculture habitats remain insufficient. This article aims to provide a comprehensive review of the impact of microplastics on aquatic ecosystems. It highlights the sources and distribution of microplastics, their physical and chemical properties, and the potential ecological consequences they pose to marine and freshwater environments. The paper also examines the current scientific knowledge on the mechanisms by which microplastics affect aquatic organisms and ecosystems. By synthesizing existing research, this review underscores the urgent need for effective mitigation strategies and further investigation to safeguard the health and sustainability of aquatic ecosystems.
微塑料(MPs)作为全球公认的新兴污染物,广泛存在于水产养殖环境中,需要加强管理。水产养殖系统存在多种微塑料污染的途径,增加了其面临的风险,加剧了全球微塑料污染问题。环境中的有机污染物可以被微塑料吸收并与之相互作用,增加其毒性,使处理更加困难。微塑料有两个主要来源:(1)原生微塑料的直接释放,(2)塑料材料的碎片化导致次生微塑料的形成。淡水、大气和海洋环境也促成了微塑料的成功迁移。到目前为止,微塑料污染及其对水产养殖环境的影响仍不明确。本文旨在全面综述微塑料对水生生态系统的影响。文中强调了微塑料的来源和分布、物理化学特性,以及它们对海洋和淡水环境造成的潜在生态后果。本文还研究了微塑料影响水生生物和生态系统的机制的现有科学知识。通过综合现有研究,本文强调了迫切需要采取有效的缓解策略,并进一步研究以保护水生生态系统的健康和可持续性。