Department of Chemical Engineering, National Institute of Technology Durgapur, Durgapur, West Bengal 713209, India.
Department of Chemical Engineering, National Institute of Technology Durgapur, Durgapur, West Bengal 713209, India.
Sci Total Environ. 2023 Nov 10;898:166425. doi: 10.1016/j.scitotenv.2023.166425. Epub 2023 Aug 19.
Microplastics (MPs) are deemed to be a global concern due to their harmful negative effects on the aquatic environment and human beings. MPs have a significant impact on both fresh and marine water ecosystems. In many countries, there is concern about the deleterious consequences of MPs on human health due to the presence of MPs in aquatic life for higher intake of marine food (fish and shellfish). Exposure to MPs causes fish to suffer from growth retardation, neurotoxicity, and behavioural abnormalities and it affects human as well. It causes oxidative stress, neurotoxicity, cytotoxicity, and immune system disruption after being ingested to these contaminated fish in human body. Due to these reasons, it has become imperative to find ways to resolve this problem. This review paper represents a pioneering endeavor by consolidating comprehensive information on microplastic-polluted Indian riverine ecosystems and effective MPs removal methods into a single, cohesive document. It meticulously evaluates the principles, removal efficiency, benefits, and drawbacks of various techniques, aiming to identify the most optimal solution. Furthermore, this paper provides a comprehensive exploration of the interesting interactions between MPs and microalgae, delving into the intricate processes of hetero-aggregation. Additionally, it shines a spotlight on the latest advancements in understanding the efficacy of microalgae in removing MPs, showcasing recent breakthroughs in this field of research. Moreover, the work goes beyond conventional assessments by elucidating the characteristics of MPs and exploring diverse influencing parameters that impact MPs removal by microalgae and also addresses the potential future aspects. This thorough investigation uncovers important factors that could significantly contribute to the development of more efficient and sustainable remediation strategies.
微塑料(MPs)被认为是一个全球性的关注点,因为它们对水生环境和人类健康造成了有害的负面影响。 MPs 对淡水和海洋水生态系统都有重大影响。在许多国家,由于 MPs 存在于水生生物中,人们担心 MPs 对人类健康的有害后果,因为人们会摄入更多的海洋食物(鱼类和贝类)。暴露于 MPs 会导致鱼类生长迟缓、神经毒性和行为异常,也会对人类产生影响。它会导致氧化应激、神经毒性、细胞毒性和免疫系统紊乱,因为这些受污染的鱼类被人体摄入。由于这些原因,找到解决这个问题的方法变得至关重要。
这篇综述论文代表了一项开创性的努力,它将有关受微塑料污染的印度河流生态系统和有效 MPs 去除方法的综合信息整合到一个单一的、有凝聚力的文件中。它仔细评估了各种技术的原理、去除效率、优点和缺点,旨在确定最优化的解决方案。此外,本文还全面探讨了 MPs 与微藻类之间有趣的相互作用,深入研究了异质聚集的复杂过程。此外,它还聚焦于理解微藻类去除 MPs 的功效的最新进展,展示了该研究领域的最新突破。
此外,这项工作超越了传统的评估,阐明了 MPs 的特性,并探讨了影响微藻类去除 MPs 的各种影响参数,还解决了潜在的未来方面。这项全面的调查揭示了一些重要因素,这些因素可能会对开发更有效和可持续的修复策略做出重大贡献。